Jump directly to content

DAS for vibration monitoring and passive seismic exploration of rock

DAS passive seismic

The present project is a feasibility test that focuses on the exploration and characterization of the mining site of Malmberget via an acoustic technique based on optical fibers (Distributed Acoustic Sensing, DAS). It is a unique opportunity to evaluate fiber optic sensing in parallel to traditional seismic acquisitions performed by LKAB.

Participant
Active
Fibre optics and photonics Production and manufacturing
3 years
3.5 Msek
Division: Division Digital Systems and Societal Transformation

Monitoring by passive acoustic vibrations, generated by the moving infrastructure or mining works, is a powerful method for extensively imaging the rock quality. Passive acquisition, where the underground excavation activities act as a source of acoustic energy, enables investigation of the deeper portion of the rock volume. 

Optical fibers have several advantages as they are low cost, small and lightweight, robust to high temperatures, immune to electromagnetic interference, versatile, and in addition have a low environmental impact. They are therefore a suitable sensing solution for the demanding underground environment. 

The DAS technology allows for continuous monitoring of large areas, up to several kilometers in range, with a dense spatial sampling (1-10 m) along the fiber (corresponding to one geophone every 1-10 meter). The system is capable of measuring vibrations ranging from a few millihertz to tens of kilohertz using a single optical fiber and requires access to only one end of the fiber. In addition, the active elements of the sensor, e.g., the electronic readout system and the data processing unit, can be placed kilometers away from the designated sensing area, increasing the safety of the sensor operators and guaranteeing long-term monitoring since the sensing probe can be permanently installed in the area of interest. 

In this scenario, the advantages of DAS technology compared to traditional seismic sensors are the higher spatial resolution and the capability to provide several measurement points in a single and totally passive optical fiber that works simultaneously as sensing probe and data transmission cable. Such features enable less complex installation of acoustic monitoring in complex environments, such as in boreholes or along tunnels, and will most likely improve the ability of 3D characterization of the rock volume.

The same techniques, developed and fine-tuned in the present project, could also be applied during the excavation of underground infrastructures in urban environments, where the geological model can be updated while the excavation face moves forward.  

Kenny Hey Tow

Gruppchef *
+46 10 228 41 24 Read more about Kenny
Profile image

Contact Kenny

CAPTCHA

* Mandatory 

By submitting the form, RISE will process your personal data.
12. Responsible consumption and production
Project end date: Fiber optics and photonics Sekundär områdes navigation:
Metrology
Sensors and sensor systems
Risk and security

Degradation of railway ballast for high-speed rail

Railway ballast for high-speed rail
Ballast after degradation test

What requirements should be set for macadam ballast for high-speed track? In the project, the degradation processes are studied, test methods and the availability of materials is mapped around previously planned routes for high-speed tracks (> 250 km/km) in Sweden. Today's requirements abroad for ballast for high-speed lines are compiled.

Projektledare, deltagare
Completed
Infrastructure Mobility Built environment
1 år, 6 månader
1 600 000 kr
Division: Division Materials and Industry

Macadam ballast in railway tracks

In a ballasted track, the loads from passing trains are transferred down to the railway embankment via sleepers. Sleepers are embedded in the ballast in the track superstructure at the top of the embankment. The ballast is subjected to high and repeated loads when the track is in operation. This leads to a gradual degradation of the aggregate grains that differs at different locations in the ballast layer.

Image: Lars Jacobsson

The degradation processes are complex and depend not only on the loads but also on the basic properties of the chosen rock material, microcracks in the grains, grain shapes and grain size distribution, how the material is laid out and compacted in the track. The design of the substructure has an impact on bed stiffness. Degradation also occurs during track mainenance work, e.g. in conjunction with track alignment. The production methods of aggregates affect the quality of the aggregates and their resistance to degradation.

A literature review is conducted where the degradation mechanisms are studied and research on aggregate degradation is compiled. The relevance of today's requirements and standardized test methods is evaluated.

Availability of materials for high-speed lines

The geological conditions and existing aggregate quarries along the routes are described. Materials from a number of selected quarries are selected and evaluated using the test methods specified in the standard for railway ballast; EN 13450. The materials represent different ballast grades that have a spread in technical properties within today's requirements for railway ballast for conventional tracks that are not intended for high speed.

Lars Jacobsson

Senior forskare
+46 10 516 56 19 Read more about Lars
Profile image

Contact Lars

CAPTCHA

* Mandatory 

By submitting the form, RISE will process your personal data.

Björn Schouenborg

Filosofie doktor
+46 70 520 25 51 Read more about Björn
Profile image

Contact Björn

CAPTCHA

* Mandatory 

By submitting the form, RISE will process your personal data.
9. Industry, innovation and infrastructure
11. Sustainable cities and communities
Project end date: Mobility and transport systems Sekundär områdes navigation:
Infrastructure
Metrology
Materials and durability

DAS for mapping of soil depth and rock properties in water passages

DAS underwater geophysics
Field test in lake

Projektets mål är att förbättra förundersökning för undervattenspassager (tunnlar) genom att visa möjligheten att använda fiberoptiska mätmetoder som tex distribuerade akustiska sensorer (DAS) för seismiska mätningar istället för konventionella hydrofonkablar.

Deltagare
Active
Fiberoptik och fotonik Sensorer och sensorsystem
3 years
2.6M SEK
Division: Division Digitala system och samhällsomställning

Distributed Acoustic Sensing (DAS) är en avancerad mätteknik som omvandlar optisk telekomfiber till en lång serie fiberoptiska hydrofoner som kan mäta vibrationer med ett par meters spatial upplösning längs flera kilometer fiberkabel. På detta sätt kan seismisk aktivitet kartläggas och analyseras i såväl tids- som frekvensdomänen. Dessa sensorer har också de generella fördelar som fiberoptiken medför. Ingen elektrisk energi behöver tillföras, de är immuna mot elektromagnetiska störningar, de är korrosionsbeständiga, och de är även små till storleken. Alla mätinstrument kan placeras långt ifrån mätpunkterna på fibern vilket ökar säkerheten för operatörerna.

En annan positiv aspekt som DAS-teknologin medför är möjligheten till hög spatial upplösning av seismiska data vilket ger mer detaljerade resultat för seismisk tomografi men även möjliggör analys av ytvågor. Det senare kräver en hög upplösning och kan ge relevant information om berggrundens beskaffenhet genom bestämning av ytvågornas utbredningshastighet. Utöver detta är DAS-system flexibla och mätområde och upplösning kan enkelt ändras under en pågående mätning. 

Projektets mål är att förbättra förundersökning för undervattenspassager (tunnlar) genom att visa möjligheten att använda fiberoptiska mätmetoder som tex distribuerade akustiska sensorer (DAS) för seismiska mätningar istället för konventionella hydrofonkablar.  Särskilt kommer projektpartnerna att utveckla DAS-baserade undersökningsmetoder för undersökningar i grunt vatten med syfte att integrera seismiska och elektriska mätningar i en och samma instrumentuppsättning.

Lösningen kommer att leda till enklare och mer exakta seismiska karakteriseringar, vilket resulterar i mindre tidskrävande och mer kostnadseffektiva geofysiska undersökningar. Dessutom kommer metoden med samtidiga mätningar att ge en mer tillförlitlig bergkvalitetsanalys, vilket resulterar i säkrare och mer robusta konstruktioner av underjordiska anläggningar.

Kenny Hey Tow

Gruppchef *
+46 10 228 41 24 Read more about Kenny
Profile image

Contact Kenny

CAPTCHA

* Mandatory 

By submitting the form, RISE will process your personal data.
9.Hållbar industri, innovationer och infrastruktur
Project end date: Vatten Sekundär områdes navigation:
Fiberoptik och fotonik
Metrologi och mätteknik
Byggd miljö
Sensorer och sensorsystem

Traceable measurements of speed

Developing a speed standard
Speed camera

Since 2012, RISE has verified Sweden's speed cameras and other speed measuring equipment with its own traceable reference system. But the need for traceable speed measurements is great from industry and business. To respond to the need, this project will develop a speed standard for traceable comparison measurements of speed.

Project leader
Active
Generic metrology and measurement technology
Not applicable
2026-12-18
0.875 MSEK
Division: Division Safety and Transport

Speed is important to measure both when it comes to vehicles and industrial processes. One example in industrial processes is to measure the speed of production lines to indirectly calculate how much has been produced.

There are several methods of measuring speed. For larger objects or vehicles, radar or laser are most common. For vehicle-borne systems, inertial navigation with accelerometers and gyroscopes combined with GNSS (Global Navigation Satellite Systems such as GPS or European Galileo) is state of the art. Industrial processes are usually measured with encoders, equipment that is attached directly to or built into moving parts. Camera-based technology is also common both for vehicles and industrial processes.

Weak traceability to SI

Common to all methods is weak traceability to SI. The methods are often validation rather than calibration. There is also a lack of standards that can be used to compare different speed measuring systems with each other.

Accurate measurements of speed require accurate measurements of both time and length. But even if it is possible to measure both time and length with very low measurement uncertainty, speed measurements are complicated and often have high measurement uncertainty. This is because, for example, the time that an object's speed can be measured is limited and often not possible to repeat. Comparative measurements are also complicated as the systems must be coordinated in time and space.

RISE has previously developed a traceable reference system to be able to verify Sweden's system for automatic traffic safety control, i.e. speed cameras. But the need for traceable speed measurements is great from industry and business and currently there is a lack of equipment to be able to meet these needs.

A speed standard

The principle of a speed standard or reference is simple. The system needs to contain something that moves at a well-defined and known speed, with traceability to both length and time. During calibration, the speed of the standard is measured with the equipment to be calibrated, and then the measured value is compared with the known speed in the system. In practice, it is more difficult than it sounds. Speed standards with established measurement uncertainty and traceability chain are currently missing in the literature and BIPM's database does not contain any approved calibration methods for speed.

The goal is therefore to investigate two principles for speed standards, choose based on practical feasibility and measurement uncertainty and then construct the speed standard, evaluate and disseminate the results. The speed standard must be able to realize different speeds to be able to verify different existing reference systems for speed measurement and other speed measuring instruments.

Carl-Henrik Hanquist

Forskare
+46 10 516 54 59 Read more about Carl-Henrik
Profile image

Contact Carl-Henrik

CAPTCHA

* Mandatory 

By submitting the form, RISE will process your personal data.
Project end date: Metrology Sekundär områdes navigation: Production and manufacturing

Textiles - Tests of odours from textile materials

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

We offer odour tests that allows us to carry out practical tests. The methods involve recognising odours from textile materials.

Purpose/Benefit:

During the testing, a scent test is carried out and analysed by specially trained testers working in a dedicated room.

The methods aim to determine the odours (intensity and characteristics) emitted by textile finishes in all forms of processing under conditions of normal wear and tear.

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

SNR 195651:2015

OEKO-TEX method

Other methods according to request

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

A report is submitted in Swedish or English covering the results obtained.

Delivery time:

Normal delivery time is 5-10 working days. A more precise delivery time is indicated in the order confirmation sent after receipt of the order and sample material.

 

Area: Textile Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Olha Kvasko, Forsknings- och utvecklingsingenjör
Amanda Bakos, Forsknings- och utvecklingsingenjör
We offer a scent test service that allows you to carry out practical tests. These identify the scents present in the textile mat
Field measurements: No Price type: 1 Division: Division Materials and Industry Preparation: No preparation required Standards:

SS_EN_ISO_8586_2023 

SS_EN_ISO_8589_2010 

Certification and marking: Not applicable Type of service: Testing / Analysis / Evaluation Instrument: Not applicable General area: Not applicable Divison (OLD): Division Materials and Industry Delivery level: Non-accredited
olha.kvasko@ri.se
/en/node/9710
12. Responsible consumption and production
Purpose - Header: Testing of odours from textile materials Metod - Header: Method Delivery - Header: Leverans More information - Header: More information
form
Textiles Sekundär områdes navigation:
Metrology
Health and life science
Tjänstetyp tagg: Provning

Modular evaluation of measuring instruments according to WELMEC Guide 8.8

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

RISE offers certification of components and accessories for measuring instruments in accordance with WELMEC Guide 8.8. We issue Parts Certificates and Evaluation Certificates that can be used as a basis for certification according to MID and NAWI.

Purpose/Benefit:

The purpose of a Parts Certificate, or an Evaluation Certificate is to be a part of basis for a type examination of a complete measuring system according to the Measuring Instrument Directive 2014/32/EU (MID) or Non-Automatic Weighing Instrument Directive 2014/31/EU (NAWI).

All evaluation and testing are based on the requirements in WELMEC Guide 8.8. For parts of measuring systems an Evaluation Certificate (EC), or Parts Certificate (PC), can be issued in accordance with WELMEC Guide 8.8. Older Test Certificates (TC) can be transferred to Parts Certificates. New Test Certificates cannot be issued. 

What can be certified? 

RISE offers certification of the following components and accessories:

  1. Lastceller
  2. Parts with A/D converters without load cell
  3. Fully Digital Components (PDP)
  4. Cash register system (POS)
  5. Measuring instruments for liquids other than water (LOTW)

The certification is carried out in accordance with the requirements of WELMEC Guide 8.8. Older Test Certificates can in some cases be reworked into a Parts Certificate.

A clear definition of the measuring instrument and its intended use must be provided at the initial contact with RISE

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

The process begins with submitting an application together with technical documentation for the component or product to be certified. Based on the documentation, RISE develops an evaluation plan that describes the assessments and tests that are required. The technical documentation is reviewed and any tests are carried out in accordance with WELMEC Guide 8.8. Tests can be performed in RISE laboratories. 

If the product meets the requirements, a Parts Certificate or Evaluation Certificate is issued that can be used as a basis for certification of the complete measuring instrument. A Parts Certificate or Evaluation Certificate is normally valid for ten years. Validity requires, among other things, that the product is not altered and that the requirements on which the certification was based are still up-to-date. 

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

RISE is a an accredited certification body with extensive experience in measurement technology, testing and certification. As an independent third party, we carry out assessments that provide you as a manufacturer or market participant with a reliable basis for certification according to MID and NAWI. 

Area: Certification Contact person (Enter one name per field. Activated personal contact pages will appear automatically): Josefin Damberg, TIC-ingenjör Field measurements: No Price type: 1 Division: Do not use - Division Built Environment Preparation: Description of preparation Preparation information:

A first contact with Certification at RISE should be made as early as possible when a product is to be certified.

Our product certification services help you get the right conditions for a successful certification, understand the requirements and plan the process. Read more here

Standards:

RISE certification rule SPCR 181

Certification and marking: Product certification Type of service: Certification Instrument: Not applicable General area: Not applicable URL: https://www.ri.se/en/certification-at-rise/product-certification/certification-… Divison (OLD): Do not use - Division Built Environment Delivery level: Non-accredited
josefin.damberg@ri.se,
More information:

For more information about the regulations, please refer to WELMEC Guide 8.8 or contact us to discuss your certification needs. 

Purpose - Header: Purpose Metod - Header: The process and delivery Delivery - Header: Why choose RISE? More information - Header: More information
Order
link
Metrology Sekundär områdes navigation: Production and manufacturing Tjänstetyp tagg: Certifiering

SS-EN 13726:2023 Fluid handling capacity

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Test methods for wound dressings SS-EN 13726:2023 Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

There are different types of dressings with specific properties. Dressings can be used to manage wound fluid, create an optimal wound environment and protect wounds against external influences such as bacteria and viruses.

 

Purpose/Benefit:

Being able to test dressings according to EN 13726 gives the manufacturer and the procurer certainty that the dressing material has been tested in the same way and that the data are therefore comparable. This in turn can provide higher quality for the user because functional dressings can, reduce leakage, reduce the frequency of changes and thus favor wound healing.

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

We perform according to SS-EN 13726:2023, which is the latest edition.

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

We can offer a complete report, or a simplified report for development purposes, you as the customer decide for yourself.

Delivery time:

Agreed with customer

Area: Medical devices Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Linda Eriksson, Laboratorieingenjör
Erik Lindhagen, Civilingenjör
13726 Fluid handling capacity
Field measurements: No Price type: 1 Division: Division Materials and Industry Preparation: No preparation required Standards:

SS-EN 13726:2023 Annex E (Accredited

SS-EN 13726:2023 Annex H

SS-EN 13726:2023 Annex I

SS-EN 13726:2023 Annex K

SS-EN 13726:2023 Annex C 

SS-EN 13726:2023 Annex B 

SS-EN 13726:2023 Annex J

SS-EN 13726:2023 Annex D

SS-EN ISO 9073-2, Method A: 1996

Certification and marking:
Not applicable
Product certification
Type of service: Testing / Analysis / Evaluation Instrument: Not applicable General area: Not applicable Divison (OLD): Division Materials and Industry Delivery level: Not applicable
linda.eriksson@ri.se,erik.lindhagen@ri.se
/en/node/10120
3. Good health and well-being
Purpose - Header: Purpose Metod - Header: SS-EN 13726 Delivery - Header: Delivery More information - Header: Mer information
Request for quote
form
Medtech Sekundär områdes navigation:
Metrology
Textiles
Tjänstetyp tagg: Provning

Testing of personal protective equipment against bullets, sharp and blunt violence

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

To achieve the best possible protection for individuals in high-risk professions, it is essential to thoroughly test and verify equipment against ballistic protection requirements, as well as resistance to sharp and blunt force impacts.

Purpose/Benefit:

Through standardised and accredited testing of protective vests and helmets in our test bed, we help ensure that equipment used by personnel in organisations such as the Armed Forces and Police, as well as security guards, stewards, and protective service officers, meets recognised standards.

As an independent provider, we prioritise meeting your needs and ensuring your equipment meets the highest standards of safety and performance. In addition to standard testing, we offer consultancy services and the opportunity to conduct experimental tests during the development process. You are also welcome to observe the testing process. 

Contact us for more information.

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

Body Armor Testing Standards

MIL-STD-662 

V50 BALLISTIC TEST FOR ARMOR

NIJ Standard 0108.01 “Ballistic Resistant Protective Materials”

NIJ Standard 0106.01 “Ballistic Helmets”

NIJ Standard 0101.06 “Ballistic Resistance of Body Armor”

NIJ  Standard 0115.00 “Stab Resistance of Personal Body Armor”

VPAM APR 2006 “General basis for ballistic material, construction and product testing”

VPAM BSW 2006 “Ballistic Protective Vests”

VPAM KDIW 2004 “Stab and Impact Resistance”

VPAM HVN 2009 "Durchschusshemmender Helm mit Visier und Nackenschutz"

Home Office – Body Armour standard (2017) 

GOST 34286-2017 “Armored Clothing”

STANG 2920 “ballistic test method for personal armour materials and combat clothing”

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

We provide accredited reports after testning is done. 

The work include both accredited and non-accredited testing methods. The scope of accreditation is available upon request – please feel free to contact us for more information.

Delivery time:

Accordning to agreement. Our short lead times is an advantage.

Area:
Product safety
Risk and safety
Total defence and crisis preparedness
Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Christian Larsson, TIC-ingenjör
Klas-Gustaf Andersson, Ingenjör
Testning of personal protective equipment against bullets, sharp and blunt violence
Field measurements: No Price type: 1 Division: Division Materials and Industry Preparation: No preparation required Certification and marking: Product certification Type of service:
Certification
Testing / Analysis / Evaluation
Available from remote
Instrument: Not applicable General area: Not applicable Divison (OLD): Division Materials and Industry Delivery level:
Accredited
Non-accredited
christian.larsson@ri.se,klas-gustaf.andersson@ri.se
/en/about-rise/operations/mission-governance/policy-documents/privacy-policy
More information:
11. Sustainable cities and communities
16. Peace, justice and strong institutions
Purpose - Header: Personal protective equipment requirements against bullets, stabbing and cutting violence Metod - Header: Selection of methods Delivery - Header: Delivery More information - Header: Discover our offering
Request for quote
form
Physical protection and safety Sekundär områdes navigation:
Metrology
Health and life science
Tjänstetyp tagg: Provning

Colour fastness- Test for colour fastness to water SS-EN ISO 105-E01

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Test for colour fastness to water SS-EN ISO 105-E01 Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

It is important that dyed textiles maintain their intended colour and do not bleed onto other fabrics and materials through staining. When a piece of fabric come in contact with water it can cause unwanted staining. 

Purpose/Benefit:

One of the most common sources of consumer complaints is when dyed textiles change and vary too much from the purchased product and become unacceptable to the user. A piece of fabric can have good colour fastness in one state but worse in another. It can therefore be important to test a textile’s colour fastness when exposed to water.

Poor colour fastness can be due to pretreatment, choice of dye, dyeing process, aftertreatment, and use.

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

The fabric is moistened with room temperature water and placed under pressure at 37°C for 4 hours together with staining-fabric of the chosen fiber type. Colour change and staining are assessed in a light box under standardized light against a gray scale.

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

A report in Swedish or English is provided with obtained results. 

Delivery time:

Normal delivery time is 5-10 business days. A more exact delivery time is specified in the order confirmation that is sent after recieved order and sample material.

Area:
Testing
Textile
Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Ingegerd Hartmann, Forsknings- och utvecklingsingenjör
Mary Rockström, Laboratorieingenjör
Field measurements: No Price type: 1 Division: Division Materials and Industry Preparation: No preparation required Standards:

SS-EN ISO 105-E01

Certification and marking: Not applicable Type of service: Testing / Analysis / Evaluation Instrument: Not applicable General area: Not applicable Divison (OLD): Division Materials and Industry Delivery level: Accredited
ingegerd.hartmann@ri.se
/en/node/10120
Purpose - Header: Syfte Metod - Header: Metod Delivery - Header: Leverans More information - Header: Mer information
Order
form
Textiles Sekundär områdes navigation:
Metrology
Food
Tjänstetyp tagg: Provning

Analysis of Dimethylfumarate (DMFu)

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

It is important that the textiles on the market are free of harmful and regulated substances. Chemical analysis is a way to gain control over the products' chemical content.

Purpose/Benefit:

Dimethylfumarate (DMFu) is used to counteract fungus growth in clothes, shoes and other leather items. DMFu can e.g. be found in silica gel bags, but is also applied on the product both as a powder and in tablet form.

It is a fungicide and is harmful to skin and a strongly allergenic (skin sensitizer) substance.

Society and consumers set high demands on companies and their products. The legislation also means that you as an actor must have complete information and control over the chemicals in your product. It is especially important with products for children and goods with skin contact, such as clothes and accessories.

We can help you interpret the legal requirements in REACH and POPs and propose appropriate analyzes.

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

OEKO-TEX analysis method.

This method is applicable to textile in any form (fibres, yarn, fabrics, etc.) and for leather materials.

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

Written report in Swedish or English.

Delivery time:

After order and arrival of sample material - normal delivery time 10 working days

Area:
Chemical and biological analysis
Textile
Contact person (Enter one name per field. Activated personal contact pages will appear automatically): Jenny Friedrichsen, Forsknings- och utvecklingsingenjör Field measurements: No Price type: 1 Division: Division Materials and Industry Preparation: No preparation required Certification and marking: Not applicable Type of service: Testing / Analysis / Evaluation Instrument: Not applicable General area: Not applicable Divison (OLD): Division Materials and Industry Delivery level: Not applicable
jenny.friedrichsen@ri.se
/om-rise/hallbarhet/policydokument/personuppgiftsbehandling/behandling-av-kunders-och
Purpose - Header: Purpose Metod - Header: Method Delivery - Header: Deliveries More information - Header: More information
Request for quote
form
Chemical and biological analysis Sekundär områdes navigation:
Metrology
Textiles
Health and life science
Tjänstetyp tagg: Provning