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Expanding Nuclear Power, Layer by Layer

Ringhals Photo: Ringhals

Sweden is planning to reclaim its position as a leading nuclear power nation, but the long period of downsizing has taken its toll. There is a shortage of qualified suppliers and components. Could 3D printing be part of the solution? Ringhals believes so, having spent years exploring and developing new manufacturing processes for the nuclear industry in collaboration with the Application Center for Additive Manufacturing at RISE.

In 2016, a broad political agreement was reached to make all energy production renewable by 2040, bringing nuclear power back into the spotlight of public debate. Since then, the goal of expanding the nuclear energy sector has gained even more traction, especially with the government's roadmap for new nuclear power unveiled in the fall of 2023. However, after years of phasing out nuclear facilities, the industry now faces a significant challenge.

"The main issue is the availability of suppliers and various components that meet the nuclear specific requirements," says Björn Forssgren, Senior Specialist Materials Technology at the nuclear power plant Ringhals, and continues:

"The requirements for nuclear power components are complex. There are several different demands that need to be met, both regulatory and company-specific. The regulatory requirements are typically national. During the fifty to sixty years that nuclear power has been around, the number of qualified and approved suppliers has decreased, and now we are facing a situation where they are hard to come by. Suppliers and obsolete components have caused considerable uncertainty for us."

The nuclear industry holds a societal responsibility to provide electricity to the community, a responsibility expected to grow in line with the government's goal of new nuclear power equivalent to at least two large-scale reactors by 2035. This means that both current and future reactors must have access to the components necessary to ensure operational stability. Can that be guaranteed, if suppliers are scarce? 

When we noticed that the metal side of the technology was starting to mature, we recognized it as a potential solution for us

New technology, new supply chains

In 2017, the year after the energy agreement was reached, Björn Forssgren came into contact with RISE.

"Naturally, we had heard about 3D printing and had been producing plastic prototypes for several years. But when we noticed that the metal side of the technology was starting to mature, we recognized it as a potential solution for us. We joined the RISE-coordinated industrial collaboration Concept Line, where our understanding of the technology's possibilities deepened. Following that, it felt like a natural step for us to participate in RISE's next initiative, the Application Center for Additive Manufacturing."

The range of components in a nuclear power plant is vast. It includes small, medium, and very large components made from various types of materials. The initial focus of Ringhals was to look into the possibility of producing qualified test blocks for non-destructive testing (NDT). The encounter with 3D printing, or additive manufacturing (AM), in metal generated several insights. One key realization was that AM, as an emerging manufacturing technology, has entirely different supply chains – supply chains that are less vulnerable.

From drawing board to finished product

A variety of pilot projects were soon launched. These projects explored the potential to print everything from weld heads to compressor covers. As of today, two of these initiatives have successfully produced components that have gone through the entire process, from design to finished and installed product.

Björn Forssgren examines the 3D printed anti-vibration supports.
Image: Ringhals

"During the spring and summer of 2024, we installed anti-vibration supports, which were printed at RISE, in Ringhals 3 and Ringhals 4, and they are now fully integrated into the plants. Additionally, we have recently collaborated with the French nuclear reactor company Framatome to install 3D-printed anti-debris filters in four of the fuel bundles at Ringhals 4. The plan is for the filters, mounted onto the fuel bundles' bottom nozzle, to be exposed over a complete fuel cycle that will last approximately five years,” says Björn Forssgren.

Ringhals has also developed its own quality assurance protocols, a qualification process for the PBF-LB (Powder Bed Fusion-Laser Beam) technology and the 316L material (stainless austenitic steel), based on the insights they have acquired through years of collaboration with RISE, suppliers, and industry partners in the center.

"The access to the expertise at RISE, along with the opportunity to actively apply the technology for our own studies, has been incredibly important for us. Our collaboration has provided us with a deep understanding of the manufacturing process and its various stages, allowing us to ensure that we construct components in the best possible manner to meet our specific quality standards. Additionally, through the center membership, we have been able to exchange ideas with other industry sectors and benefit from their perspectives. This has been valuable. I believe we have all learned a great deal along the way,” says Björn Forssgren.

3D printed anti-vibration supports.
Image: Ringhals

Additive manufacturing gaining ground

Additive manufacturing has emerged as a promising option for producing various components within the nuclear industry, although further advancements are necessary, especially in post-processing. Björn Forssgren believes that we are merely at the start of a journey with no end in sight, where additive manufacturing will increasingly become the standard rather than the exception.

“Powder Bed Fusion (PBF) and Directed Energy Deposition (DED) are both promising technologies for the nuclear industry. The primary limitation currently lies in the dimensions, particularly for PBF, which can only produce smaller components at this time. However, technological advancements on the hardware side are progressing rapidly with the goal of enabling the manufacturing of larger components using these technologies. For components with the correct dimensions, I believe PBF will emerge as one of the major players in terms of manufacturing. The technology must, of course, mature, and standardization and regulations need to be put in place, but it's merely a matter of time. Additive manufacturing is set to become standard in the future.” 

 

Photo source: Vattenfall / Ringhals

About the Application Center for Additive Manufacturing

The Application Center for Additive Manufacturing is open to all industries, businesses and public sectors interested in exploring additive manufacturing. RISE provides expertise, test environments, and a wide range of equipment and materials to find the most suitable path for each company and product. This means that even small and medium-sized companies can have quick and easy access to the latest technology.

The Application Center for Additive Manufacturing is run by RISE together with the center's partners and through support from the Västra Götaland region, Vinnova and the European Union. 

Sustainability:
7. Affordable and clean energy
9. Industry, innovation and infrastructure
Nuclear power Sekundär områdes navigation:
Metrology
Materials and durability
Additive manufacturing

ISO 10993-23 Skin Irritation - in vitro

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): ISO 10993-23 Skin Irritation - in vitro Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

Irritation testing is a critical component of the biological evaluation of medical devices and a necessary step to meet the requirements of the Medical Device Regulation (MDR). RISE conducts irritation tests according to ISO 10993-23 and adheres to Good Laboratory Practice (GLP).

Purpose/Benefit:

Conducting irritation testing is crucial to ensuring that your medical device is safe for use. These tests help identify whether the product may cause irritation when it comes into contact with the skin.

By performing irritation testing, potential issues can be detected and addressed early in the development process, reducing the risk of adverse reactions for users. This is essential not only to protect patient health and safety but also to comply with regulatory requirements under the Medical Device Regulation (MDR) and international standards such as ISO 10993-23.

Furthermore, irritation testing helps build trust among users and healthcare professionals by demonstrating that your product has undergone rigorous safety evaluations. This not only prevents costly recalls and legal challenges but also ensures that your products are reliable and effective.

Method (what/which methods are used to perform the service):

Our skin irritation tests are based on a model consisting of human epidermal keratinocytes. These have been cultured to form a differentiated model of the human skin layer, which is comparable to the in vivo skin structure.

We perform skin irritation testing according to ISO 10993–23. The product extraction is conducted according to ISO 10993-12. We also conduct skin irritation tests according to OECD Test Guideline 439, where the skin model is directly exposed to a test chemical, without prior extraction.

We follow GLP

We adhere to Good Laboratory Practice (GLP), which ensures that the irritation tests are conducted in a scientifically valid and regulatory-compliant manner.

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

After completing the irritation test according to ISO 10993-23, you will receive a detailed test report in English. The report includes data showing the skin's reaction after exposure to the test material.

Area: Medical devices Contact person (Enter one name per field. Activated personal contact pages will appear automatically): Karin Nydahl, Laboratorieingenjör
MDR, medical,
Field measurements: No Price type: 1 Division: Division Materials and Industry Preparation: No preparation required Standards:

ISO 10993–23

ISO 10993-12

Certification and marking: Not applicable Type of service: Testing / Analysis / Evaluation Instrument: Not applicable General area: Not applicable Delivery level: Non-accredited
karin.nydahl@ri.se,
/en/node/9710
More information:

At RISE, we are pleased to offer testing services for medical devices according to both ISO 10993-5 and ISO 10993-23.

We also provide services to ensure that your products can be cleaned, disinfected, and sterilized safely and effectively according to ISO 17664-1/2 and ISO 17665.

By combining our services under these standards, we can help ensure that your medical devices are both biocompatible, sterile, and suitable for reuse—critical factors for patient safety and the product's success in the market.

Feel free to contact us for more information or to schedule a consultation.

3. Good health and well-being
Purpose - Header: Why conduct irritation tests? Metod - Header: Which methods do we use? Delivery - Header: Delivery
Request for quote
form
Medtech Sekundär områdes navigation:
Metrology
Biotechnology
Tjänstetyp tagg: Provning

Battery Impact test

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Battery impact test Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

Impact test means the battery being subjected to an impact from another body that is dropped or hurled at the battery.

Purpose/Benefit:

The impact test is done to examine the mechanical integrity of the battery of battery cells, battery models and battery packs. The test aims to evaluate the risks of e.g. collision or sudden shocks that may occur during production. 

Method (what/which methods are used to perform the service):

The speed of the fall, acceleration and battery deformation are recorded with a high-speed camera and evaluated through advanced image analysis, so-called DIC, digital Image Correlation.  DIC works by comparing digital images of an object taken at different times. A computer algorithm analyzes these images to track changes in a pattern on the object's surface, making it possible to accurately determine how much the surface has been displaced or deformed.

Weights from a standardized weight of 9.1 kg up to 250 kg that can fall at speeds of up to 5 m/s can be tested here with us in one of our test beds. 

The standards associated with this test are IEC 62619.

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

All tests take place in modern labs where flue gases and water are handled and purified in an environmentally sustainable way. We can help design tests so that they can be carried out safely and efficiently. 

All tests are preceded by risk analyses and with the entire institute's collective expertise from technicians to researchers in a variety of areas, we can meet your specific needs throughout your process of testing and evaluating your product. 

Area:
Batteries
Fire safety
Risk and safety
Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Joel Blom, Forsknings- och utvecklingsingenjör
Anton K Gustafsson, Forsknings- och utvecklingsingenjör
test rig for impact tests
Field measurements: No Price type: 1 Division: Division Safety and Transport Preparation: Description of preparation Preparation information:

In dialogue between client and RISE.

Standards:

The standards associated with this test are IEC 62619.

Certification and marking: Not applicable Type of service: Testing / Analysis / Evaluation Instrument: Not applicable General area: Not applicable Delivery level: Non-accredited
joel.blom@ri.se,anton.k.gustafsson@ri.se
/en/node/9710
More information:

Are you doing research or are you involved in a project that includes impact testing? Then we are happy to participate, either as a project partner or we help you apply for research grants.

Here you can read more about battery research at RISE.

Purpose - Header: Purpose Metod - Header: Method Delivery - Header: Perform impact test of batteries at RISE More information - Header: We are a project and research partner in battery testing
Application of interest
form
Batteries Sekundär områdes navigation: Metrology Tjänstetyp tagg: Provning

Forced deformation test of batteries

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Forced deformation test of batteries Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

Forced deformation tests of batteries involve exposing the battery to a force that strains the battery for a certain period of time.

Purpose/Benefit:

Press tests are used to mimic situations that batteries may be exposed to in the event of an accident or simulate different situations that the battery may be exposed to during its lifetime. Results and data from tests are also used to verify simulations and calculations.

Press tests differ from free fall and impact tests in that they are a slower process and not a sudden transient event.

Method (what/which methods are used to perform the service):

Forced deformation testing involves testing the mechanical integrity of the battery by loading the battery structure with a force that can be increased until the battery structure fails.

In a forced deformation test, battery modules or battery packs that are normally found in electric vehicles are tested. In our laboratory, we can load battery modules and battery packs with forces of up to 700 kN, equivalent to about 70 tons.

Deformation is evaluated during the test and loading usually lasts until thermal runaway occurs. During the test, the battery's status is measured on structural change at the same time as voltage, how propagation between cells takes place and temperature development is measured. 

During testing, equipment can also be connected to the battery's BMS (battery management system) to evaluate the battery's performance and health status in real time.

Standards that are affected by this type of test are UNECE r100 and GB 38031.

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

In all of our tests, the customer is present during the test and involved in the set-up and execution. Together with our broad expertise on site, we ensure that the tests are carried out in a safe, sustainable and reliable manner. 

RISE has a broad range of expertise and we are happy to help you in the development and evaluation of your product. In connection with our destructive tests, there are also vibration and climate tests, which also need to be evaluated for the safe use of batteries. 

Area:
Batteries
Testing
Risk and safety
Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Joel Blom, Forsknings- och utvecklingsingenjör
Anton K Gustafsson, Forsknings- och utvecklingsingenjör
test rig for impact tests
Field measurements: No Price type: 1 Division: Division Safety and Transport Preparation: No preparation required Standards:

Standards that are affected by this type of test are UNECE r100 and GB 38031.

Certification and marking: Not applicable Type of service: Not applicable Instrument: Not applicable General area: Not applicable Delivery level: Non-accredited
joel.blom@ri.se,anton.k.gustafsson@ri.se
/en/node/9710
More information:

There are opportunities to adapt and develop a test according to our customer's wishes. Contact us for feasibility studies, evaluations, research projects or inquiries. 

Purpose - Header: Purpose Metod - Header: Method Delivery - Header: Perform a forced deformation test at RISE More information - Header: Contact us
Application of interest
form
Batteries Sekundär områdes navigation:
Electromobility
Metrology
Risk and security
Tjänstetyp tagg: Provning

Battery free fall test

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Battery free fall test Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

Free fall-testing involves dropping the battery from a certain height onto a hardened surface.

Purpose/Benefit:

Battery free fall-tests are used to evaluate the safe handling of batteries during use, transport and production. The damage a battery can get from dropping or falling can cause, for example, deformation that can cause leakage, overheating and explosion. 

Method (what/which methods are used to perform the service):

Free fall-tests are done on battery cells, battery modules or battery packs. The fall scenario to be used, such as height, orientation and the type of surface the battery is falling towards, depends on both what the battery is to be used for and what test standards are to be followed. 

Free fall-tests are adapted to mimic real-world conditions as much as possible, taking into account repeatability and reliability. After the free fall-test, the battery is analyzed for deformation, temperature increase, propagation, damage, cracks and leaks. 

During free fall-tests, equipment can also be connected to the battery's BMS (Battery Management System) to evaluate the battery's performance and health status in real time.

Fall tests are included in some standards such as UN38.3, KMVSS TP48 and IEC 62619.

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

Want to conduct free fall-tests on batteries? Maybe you don't really know what kind of fall test is required for a particular standard? Then you can contact us, and we will help you! 

We keep track of both regulations and legal requirements that exist, which means that you get guidance to carry out the right fall test with us. We also design tests outside of standards, based on our customers' needs. 

When you hire RISE, you get access to our test facility but also to the entire institute's collective expertise and experience. You are in safe hands.

Area:
Batteries
Testing
Risk and safety
Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Joel Blom, Forsknings- och utvecklingsingenjör
Anton K Gustafsson, Forsknings- och utvecklingsingenjör
Field measurements: No Price type: 1 Division: Division Safety and Transport Preparation: Description of preparation Preparation information:

In dialogue between client and RISE

Standards:

Fall tests are included in some standards such as UN38.3, KMVSS TP48 and IEC 62619.

Certification and marking: Not applicable Type of service: Testing / Analysis / Evaluation Instrument: Not applicable General area: Not applicable Delivery level: Not applicable
joel.blom@ri.se,anton.k.gustafsson@ri.se
/en/node/9710
More information:

Are you doing research or are you involved in a project that includes free fall-tests? Then we are happy to participate, either as a project partner or we help you apply for research grants.

Here you can read more about battery research at RISE.

Purpose - Header: Purpose Metod - Header: Method Delivery - Header: Perform free fall-tests of batteries at RISE More information - Header: We are a project and research partner in battery testing
Application of interest
form
Batteries Sekundär områdes navigation:
Metrology
Logistics
Risk and security
Tjänstetyp tagg: Provning

ISO 10993-5 Cytotoxicity Test - in vitro

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): ISO 10993-5 Cytotoxicity Test - in vitro Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

Cytotoxicity testing is a crucial part of the biological evaluation of medical devices and is a necessary step to meet the requirements of the Medical Device Regulation (MDR). RISE conducts cytotoxicity testing according to ISO 10993-5 and is accredited under ISO/IEC 17025 or GLP (Good Laboratory Practice).

Purpose/Benefit:

By conducting cytotoxicity testing, you ensure that your medical device meets the necessary regulatory requirements under the Medical Device Regulation (MDR) and international standards such as ISO 10993-5.

The test is crucial for guaranteeing patient safety, ensuring that your product does not have harmful effects on cells when it comes into contact with the body. Additionally, cytotoxicity testing helps minimize risks by identifying and eliminating potentially harmful effects at the cellular level early in the product development process, protecting your company from costly recalls and legal issues.

Method (what/which methods are used to perform the service):

We conduct cytotoxicity testing according to ISO 10993–5 Annex C, the MTT test. This method is used to measure cell viability, i.e., the ability of cells to survive and function normally after exposure to extracts from a test material.

The MTT test is based on the principle that metabolically active cells can convert MTT, a yellow tetrazolium salt, into a blue-purple formazan crystal. The amount of formazan formed is proportional to the number of viable cells, providing a measure of the material’s cytotoxicity.

If the viability of the extract is reduced to <70% of the blank sample, the test is considered to have cytotoxic potential according to the standard.

We follow GLP

We are accredited under ISO/IEC 17025 and follow GLP (Good Laboratory Practice), ensuring that cytotoxicity tests are conducted in a scientifically valid and regulatory-compliant manner.

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

After completing the MTT test according to ISO 10993-5, you will receive a detailed test report in English. The report includes quantitative data showing cell viability after exposure to the test material.

Area: Medical devices Contact person (Enter one name per field. Activated personal contact pages will appear automatically): Karin Nydahl, Laboratorieingenjör
Ensure regulatory compliance with MDR and get support with biocompatibility testing/cytotoxicity testing according to ISO 10993-
Field measurements: No Price type: 1 Division: Division Bioeconomy Preparation: No preparation required Standards:

ISO 10993–5

ISO/IEC 17025

Certification and marking: Not applicable Type of service: Testing / Analysis / Evaluation Instrument: Not applicable General area: Not applicable Delivery level: Accredited
karin.nydahl@ri.se,
/en/about-rise/operations/mission-governance/policy-documents/privacy-policy
More information:

At RISE, we are pleased to offer testing services for medical devices according to both ISO 10993-5:2009 and ISO 10993-23.

We also provide services to ensure that your products can be cleaned, disinfected, and sterilized safely and effectively according to ISO 17664-1/2 and ISO 17665.

By combining our services under these standards, we can help ensure that your medical devices are biocompatible, sterile, and suitable for reuse—critical factors for patient safety and the product’s success in the market.

3. Good health and well-being
Purpose - Header: Why conduct cytotoxicity tests? Metod - Header: Which methods do we use? Delivery - Header: Delivery
Request for quote
form
Medtech Sekundär områdes navigation:
Metrology
Chemical and biological analysis
Drug development
Tjänstetyp tagg: Provning

Distributed Acoustic Sensing (DAS) – trycksensorer med vanlig datakabel

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Distributed Acoustic Sensing – Turn telecom fibres into microphones Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

DAS is a new technology for using fiber optic cable as a sensor to measure temperature and vibration, e.g., in bedrock or underwater. The technology transforms optical telecom fiber into a long series of fiber optic hydrophones capable with high spatial and temporal resolution along many kilometers of fiber cable.

Purpose/Benefit:

Seismic activity can be mapped and analyzed in both time and frequency domains. The DAS technology can, for example, provide relevant information about the nature of the bedrock by determining the propagation speed of surface waves. Fiber optic measurement methods create distributed acoustic sensors (DAS) for seismic measurements instead of conventional hydrophone cables.

Advantages of DAS technology

  • Robust and corrosion resistant - Withstands harsh environments
  • Low power comsumption: the optical fibre does not need elecrticity to operate
  • Immune to electromagnetic interference
  • High spatial resolution of seismic data, providing more detailed results for seismic tomography and enabling surface wave analysis
  • Flexible - measurement area and resolution can be easily changed during an ongoing measurement
  • Suitable for underground installations
  • Can continuously monitor large areas along an optical fiber, up to several kilometers, and enables measurement with high spatial resolution (1-10 m) along the fiber (equivalent to a geophone every 1-10 meters)
  • All measuring instruments can be placed far from the measurement points on the fiber, increasing operator safety
  • DAS can measure vibrations from a few millihertz to tens of kilohertz with a single fiber optic cable installation, requiring access to only one end of the fiber. The DAS instrument can thus be placed several kilometers from the area of interest, increasing operator safety and ensuring long-term monitoring possibilities as the fiber can be permanently installed in the monitoring area

Examples of areas:

  • Underwater passages
  • Tunnels of all kinds - train, car, road, public transport
  • Rock engineering in general
  • Underwater cables, ports
Method (what/which methods are used to perform the service):

We support customers in performing advanced measurements in various ways:

  1. Preliminary investigations and feasibility studies
  2. Field measurements, with or together with the customer
  3. We combine equipment with our expertise in fiber optics and photonics
Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

A typical delivery in a "DAS project" is a study with measurement protocols to help the customer better assess seismological impact (for example), but it depends entirely on the application area, and the delivery is discussed on a case-by-case basis.

Delivery time:

A DAS-study or field measurement is quick to install, measurements and delivery of results all depends on customer requirements.

Area:
Energy
Resource-efficient cities
Total defence and crisis preparedness
Water
Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Kenny Hey Tow, Gruppchef *
Åsa Claesson
Field measurements: Yes Price type: 1 Division: Division Digital Systems and Societal Transformation Preparation: No preparation required Certification and marking: Not applicable Type of service:
Inspection
Innovation services
Testing / Analysis / Evaluation
Instrument:
Not applicable
Field meters and probes
General area:
Electricity
Photometry and radiometry
Temperature
Time and frequency
URL: /en/person/asa-claesson Delivery level: Not applicable
kenny.heytow@ri.se,asa.claesson@ri.se
/en/node/9710
More information:
Example how the DAS technology is used in a tunnel/bedrock.
Image: Kenny Hey Tow

DAS is a passive acoustic (seismic) technology based on the use of optical fibers. There are many applications within seismology - rock engineering such as mines, tunnels, but also in urban contexts - wherever we need better data on how rock masses move.

DAS enables, for example, monitoring of passive acoustic vibrations generated by moving infrastructure or mining and is a powerful method for reading rock quality. Passive data collection, where the source of acoustic energy comes from underground activities, makes it possible to investigate the deeper part of the rock volume.

In this scenario, the advantages of DAS technology compared to traditional seismic sensors are the higher spatial resolution and the ability to provide multiple measurement points in a single and completely passive optical fiber that functions as both a sensor and data transmission cable. The ability to install fiber optics in complex environments, such as in boreholes or along tunnels, is likely to improve 3D characterization of the rock volume even in these environments.

Metod - Header: Method Delivery - Header: Fast installation More information - Header: Mer information
Request for quote
link
Fiber optics and photonics Sekundär områdes navigation:
Infrastructure
Metrology
Energy and electrification
Maritime
Tjänstetyp tagg: Provning

Verification of Sustainable Interior (HI-label)

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Verification of Sustainable Interior (HI-label) Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

By increasing the degree of circularity and reuse in your interior, you contribute to the reduction of the climate footprint. Sustainable Interior supports a systematic reduction of the climate impact. A HI label issued by RISE, as an independent third party, shows that your company complies with the requirement criteria of Sustainable Interior.

Purpose/Benefit:

The Sustainable Interior criteria cover the entire interior of your premises and have been developed to support and contribute to increasing the level of circularity and reuse. Working with Sustainable Interior increases your awareness and competence and equips you for increased sustainability requirements including reporting and accounting. The value a HI label can provide among others is:

  • Support for increased legislative and reporting requirements 
  • Reduced costs for the interior of your premises
  • Promotion of your sustainability work 
  • Contribution to sustainability goals; increased value for environment, economy and social factors 
  • Increased property value 

By letting RISE, as an independent third party, verify and HI-label your premises, you increase the credibility of your sustainability work. Verification of Sustainable Interior is based on the international standards ISO/IEC 17029:2019 and ISO 14024:2018.

Method (what/which methods are used to perform the service):

RISE verifies how your company follows and complies with the criteria in Sustainable Interior. A review of documents and interviews with employees are carried out on site at the premises, in order to be able to assess whether the company fulfils the requirement criteria of the Sustainable Interior Criteria Document version 1.0. The criteria have been developed in a project in collaboration with various actors with research as a basis and you can freely access the criteria document, which is published publicly on the DiVA portal and at Hållbar Interiör. When the verification is completed and approved, RISE issues a verification statement and an HI label.

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

After successful completion of the verification, your company will receive a verification statement and an HI label, showing that the interior of your premises fulfils the requirement criteria of Sustainable Interior.

Area: Certification Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Contact Certification
Lisbeth Magnusson, Revisor
HI label
Field measurements: No Price type: 1 Division: Do not use - Division Built Environment Preparation: No preparation required Preparation information:

Förberedelser enligt föreskriven process

Certification and marking: Not applicable Type of service: Not applicable Instrument: Not applicable General area: Not applicable Delivery level: Non-accredited
ceforsaljning@ri.se,lisbeth.magnusson@ri.se
More information: Purpose - Header: Why verify the interior of your premises for Sustainable Interior? Metod - Header: Verification process Delivery - Header: Deliveries More information - Header: More information
Request for quote
form
Construction Sekundär områdes navigation:
Circular transition
Metrology
Resource-efficient cities
Tjänstetyp tagg: Verifiering och validering

Quality assurance of concrete elements for reuse

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Quality assurance of concrete elements for reuse Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

Concrete is a durable material that can fulfill its function significantly longer than 50 years. Structural parts contributing to approx. 60% of the total carbon dioxide emissions from new construction can be reused. RISE offers quality assurance of concrete elements for reuse by creating a technical basis for the decision on reuse.

Purpose/Benefit:

The Swedish National Board of. Housing, Building and Planning (Boverket) is in the process of introducing limit values ​​for the climate impact of new construction. Approx. 60% of climate emissions in a new house come from the structural frame. At the same time, the construction industry is responsible for the largest waste stream after the mining industry in Sweden with approx. 1.4 tonnes of waste/person/year. Part of the solution can be the reuse of structural elements. There is a high potential in reusing concrete structures that are characterized with long life and durability. We at RISE have many years of experience with condition assessment and quality assurance of concrete structures for reuse from a number of research projects (Återhus) and commercial assignments (e.g. IKEA Kållered or Housing Authority's Karlskrona office).

Method (what/which methods are used to perform the service):

RISE has developed a methodology for quality assurance of concrete elements for reuse that consists of five steps:

  • Analysis of existing documentation (drawings, manufacturing documentation, etc.)
  • Site visit with visual inspection and verification of documentation.
  • Non-destructive testing (testing with GPR, Schmidt-hammer, corrosion measurments, etc.) - can also be carried out on buildings in operation
  • Sampling of drill cores and reinforcement for lab testing to verify results from NDT investigations.
  • Analysis of results and reporting. Can be completed with service-life calculations for use in a new house.

Optional large-scale testing can be ordered to verify performance as elements.

The method is verified in a number of real projects. RISE is currently working in the standardization committee SIS TK191 "Precast concrete products" to publish a standard for the reuse of precast concrete based on that method.

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

Report with results from all steps, statistical analysis and lifetime calculations.

RISE can also support in discussions with constructors, property owners and municipalities to explain the methodology in relation to Building Regulations and the Housing Authority's guidelines.

Delivery time:

Platsbesök inom 2-3 veckor från beställningen. Beroende på omffatningen 3-6 veckor för analys av data och rapportering.

Area:
Cement and concrete
Construction
Built environment
Contact person (Enter one name per field. Activated personal contact pages will appear automatically): Jan Suchorzewski, Marknadschef
NDT
Field measurements: Yes Price type: 1 Division: Do not use - Division Built Environment Preparation: No preparation required Certification and marking: Not applicable Type of service: Testing / Analysis / Evaluation Instrument: Not applicable General area: Not applicable Delivery level: Not applicable
jan.suchorzewski@ri.se
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9. Industry, innovation and infrastructure
11. Sustainable cities and communities
12. Responsible consumption and production
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Tjänstetyp tagg: Verifiering och validering

Certification of heat pumps according to Heat Pump KEYMARK

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Certification of heat pumps according to Heat Pump KEYMARK Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

Heat Pump KEYMARK is a voluntary and independent certification mark for heat pumps and air conditioning units. The certification includes products covered by ecodesign in EU regulations 813/2013, 814/2013 and 206/2012. Products which are intended for space heating, space cooling and domestic hot water heating including combination heaters.

Purpose/Benefit:

The purpose of the certification is to ensure that heat pumps on the European market meet quality and performance requirements according to EU’s ecodesign regulations. At the same time consumer confidence is built through independent third-party testing and continuous factory production control. 

Through a common certification system within Europe, heat pump manufacturers can easily reach large parts of the European market.

KEYMARK is a quality mark that can be used to access public subsidies in most European countries.

RISE is an accredited and empowered certification body, authorized to certify heat pumps according to Heat Pump KEYMARK. RISE has extensive experience in supporting the heat pump industry and has since the beginning of Heat Pump KEYMARK been an active part in the development of the scheme. 

Some of the key benefits of Heat Pump KEYMARK:

  • Unified certification: A single certificate that is accepted across Europe.
  • Third-party testing: Heat pumps are tested by independent testing institutes to ensure they meet current requirements.
  • Recurring inspections and tests: Regular factory and quality inspections to maintain a high standard.
  • Transparency: A transparent system that builds trust among consumers and the market.
Method (what/which methods are used to perform the service):

The heat pump manufacturer applies for KEYMARK certification to Certification at RISE. Subsequently, a heat pump is selected for an initial test at an independent third-party laboratory. RISE has a cooperation agreement with several European test laboratories. The manufacturer has the possibility to choose test laboratory independently. This increases the flexibility and reduces the risk of long lead times. The test laboratories which have been approved by RISE can be found on the KEYMARK website via the link down below. Tests are conducted according to applicable parts of the European standards: EN 14511, EN 14825, EN 16147, EN 12102, and EN 15879-1. 

Factory Production Control (FPC) is carried out at all manufacturing sites by a RISE-qualified auditor, with a strong focus on the production line and quality system. 

The manufacturer declares performance data according to the above-mentioned European standards in the KEYMARK database for comparison against the test report. The FPC report is also evaluated. Once all relevant documentation has been received and assessed to meet current requirements, a KEYMARK certificate can finally be issued.

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

The certificate is published on RISE website as well as in the KEYMARK database of certified heat pumps. A certificate is issued with a validity period of 10 years. After that, the certificate can be renewed. The validity assumes that the certified heat pump continuously placed on the market meets the requirements and that the manufacturers system for self-inspection is continuously reviewed and assessed according to an established plan. 

The certificate holder can label their heat pump with the KEYMARK logo along with the applicable certificate number. The holder can refer to the certificate and show that the product has been tested and certified by a third party.

Delivery time:

By agreement 

Area:
Certification
Energy
Contact person (Enter one name per field. Activated personal contact pages will appear automatically): Anton Falk, Gruppchef
Heat pump
Field measurements: No Price type: 1 Division: Do not use - Division Built Environment Preparation: Description of preparation Preparation information:

The following documentation is required:

- Application
- Relevant manuals (installation, user, service) 
- Drawings/principal sketches 
- Type labels  
- Component list including type, reference and brand for each key component. Compressor, expansion valve, condenser, evaporator, fan motor, circulation pump, pressure switch, type of refrigerant and amount
- Declaration of performance with SCOP calculation
- Test report 
- Other relevant documentation  

Standards:

- EN 14511-1 (Terms and definitions) 
- EN 14511-2 (Test conditions)
- EN 14511-3 (Test methods) 
- EN 14511-4 (Requirements) 
- EN 14825 (Testing and rating at part load conditions and calculation of seasonal performance) 
- EN 16147 (Testing, performance rating and requirements for marking of domestic hot water units)
- EN 12102 (Determination of the sound power level) 
- EN 15879-1 (Direct exchange-to-water heat pumps) 

- EN ISO/IEC 17025 (General competence requirements for testing- and calibration laboratory)
- EN ISO/IEC 17065 (Requirements for bodies certifying products, processes and services)
- EN ISO 9001 (Quality management systems)

Certification and marking: Product certification Type of service: Certification Instrument: Not applicable General area: Not applicable Order information: Download application URL: https://www.ri.se/en/certification-at-rise/product-certification/certification-… Delivery level: Accredited
anton.falk@ri.se,
PDF for order form.:

Heat Pump KEYMARK (pdf, 179.97 KB)

Documents:

Heat Pump KEYMARK (pdf, 906.01 KB)

More information:
7. Affordable and clean energy
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Energy optimisation Sekundär områdes navigation:
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Tjänstetyp tagg: Certifiering