🇵🇱 SIEĆ BADAWCZA ŁUKASIEWICZ - PL
Materials & polymersConstructionMetrology & calibrationFood & beverages
SIEĆ BADAWCZA ŁUKASIEWICZ - is a laboratory accredited by PCA under number AB 792 (Warszawa, Poland). Its accreditation scope covers 17 test methods in the following areas: Materials & polymers, Construction, Metrology & calibration, Food & beverages. Test objects include: Metal materials and products, Metals, metal alloys, Complete mechanical constructions, their assemblies, components or…, Complete mechanical constructions/structures, their assemblies, com…. Most frequently used techniques: Eddy current method, Magnetic particle method, Optical microscopy method.
At a glance
- Accreditation number: PCA AB 792
- Methods in scope: 17
- Types of test objects: 5
- Techniques used: 7
- City: Warszawa, Poland
- Accreditation number
- AB 792
- Accreditation body
- PCA
- Address
- INSTYTUT LOTNICTWA, ZESPÓŁ LABORATORIÓW BADAŃ MATERIAŁÓW I KONSTRUKCJI, Aleja Krakowska 110/114, 02-256 Warszawa
- City
- Warszawa, Poland
What this laboratory tests (5)
- Metal materials and products — 8 methods
- Metals, metal alloys — 6 methods
- Complete mechanical constructions, their assemblies, components or structural fragments. Maximum object dimensions: 40m x 10m x 4.5m — 1 method
- Complete mechanical constructions/structures, their assemblies, components or structural fragments, Maximum object dimensions: 3000 mm x 2000 mm x 1300 mm — 1 method
- Products made of ferromagnetic materials — 1 method
Analytical techniques used (7)
- Eddy current method — 1 method
- Magnetic particle method — 1 method
- Optical microscopy method — 1 method
- Penetrant testing method — 1 method
- Rockwell method — 1 method
- Vickers method — 1 method
- Visual method — 1 method
Accreditation scope — test methods (17)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Test methods | |||||
| 1 | Complete mechanical constructions, their assemblies, components or structural fragments. Maximum object dimensions: 40m x 10m x 4.5m | Static and quasi-static strength under combined states of loading applied by force systems in the range from 0,5 daN to 1350 kN at: displacements 0,05 mm - 1000 mm deformations 0,05 mm - 1000 mm relative strains 500 μm/m 60000 μm/m |
Procedura badawcza JPB.LMK.01, wydanie 5 z dnia 11.09.2023 r. Testing procedure JPB.LMK.01, issue 5 dated 11.09.2023 | ||
| 2 | Complete mechanical constructions/structures, their assemblies, components or structural fragments, Maximum object dimensions: 3000 mm x 2000 mm x 1300 mm | Energy absorption of the structure Static, quasi-static and dynamic strength under complex load conditions Functionality Quasi-static characteristic force do 400 kN displacements and deformations up to Range 2400 mm relative deformations do 15000 μm/m rotational speed do 20000 obr/min acceleration do 200 m/s2 pressure of liquids and gases do 60 MPa temperature from -40 °C to +1087 °C (od 233,15 K do 1357,15 K) time from 0,01 s or in a specified range with a resolution of 4 μs mass do 10000 kg Dynamic, quasi-static, static and functional testing Structure Energy Absorption/Dissipation Static, quasistatic, and dynamic strength in complex loads Functional evaluations Quasistatic characteristics Range: force up to 400 kN displacement and deformation up to 2400 mm relative deformation up to 15000 μm/m rotational speed up to 20000 rpm acceleration up to 200 m/s2 pressure (liquids and gases) up to 60 MPa temperature from -40 °C to +1087 °C |
Procedura Badawcza JPB.LMW.01 wydanie 6 z dnia 11.09.2023 Procedura Badawcza JPB.LMW.02 wydanie 7 z dnia 11.09.2023 Procedura Badawcza JPB.LMW.03 wydanie 6 z dnia 11.09.2023 Procedura Badawcza JPB.LMW.04 wydanie 7 z dnia 11.09.2023 Procedura Badawcza JPB.LMW.05 wydanie 7 z dnia 11.09.2023 Test Procedure JPB.LMW.01 issue 06 dated 11.09.2023 Test Procedure JPB.LMW.02 issue 07 dated 11.09.2023 Test Procedure JPB.LMW.03 issue 06 dated 11.09.2023 Test Procedure JPB.LMW.04 issue 07 dated 11.09.2023 Test Procedure JPB.LMW.05 issue 07 dated 11.09.2023 | ||
| 3 | Metals, metal alloys | Mechanical properties: Number of cycles to failure Nf Number of cycles to crack initiation Ni force up to ± 200 kN strain from -0,1 do 0,2 temperature max. 2000 °F Force-controlled low-cycle fatigue test Force-controlled high-cycle fatigue tests Strain-controlled low-cycle fatigue test |
ASTM E466-21 | ASTM E606/E606M-21 | ||
| 4 | Metals, metal alloys | Mechanical properties: Elongation Reduction of area Deformation force do 44 kN max. temperature 2000 °F Uniaxial tensile creep test |
ASTM E139-24 | ||
| 5 | Metals, metal alloys | Mechanical properties: Creep rupture time tu Elongation time during creep tfx Percentage elongation after fracture Au Elongation during creep ef Reduction of area after fracture Zu force do 44 kN max. temperature 2000 °F Uniaxial tensile creep test |
ISO 204:2023 | ||
| 6 | Metals, metal alloys | Mechanical properties: Proof strength Rp Tensile strength Rm Percentage elongation after fracture A Percentage reduction of cross-sectional area Z Modulus of elasticity E force F do 200 kN temperature max. 2000 °F Static tensile test at room and elevated temperature Mechanical properties: Proof strength, plastic extension Rp Tensile strength Rm Percentage elongation after fracture A Percentage reduction of area Z |
ASTM E8 / E8M – 25 | ASTM E21-20 | ASTM E111-17 | PN-EN ISO 6892-1:2020-05 | PN-EN ISO 6892-2:2018-08 | ||
| 7 | Metals, metal alloys | Fatigue crack growth rate da/dN Force up to ± 200 kN Crack opening displacement COD +3/-1 mm Measurement base 5 mm Frequency do 50 Hz Specimen geometry C(T), M(T) Fatigue test with constant or variable amplitude of the stress intensity factor K at room temperature |
ASTM E647-24 | ||
| 8 | Metals, metal alloys | Testing of plane strain fracture toughness K1c Linear-Elastic Plane-Strain Fracture Toughness K1c Scope: force range ± 200 kN crack opening displacement range (COD) +3/-1 mm measurement base 5mm specimen geometry C(T), DC(T), LLC(T) |
ASTM E399-24 | ||
| 9 | Metal materials and products | HV hardness Range HV 0.1; HV 10 Hardness HV Range: HV 0.1; HV 10 |
Vickers method | ASTM E384-22 | ASTM E92-17 | ASTM E92-23 | PN-EN ISO 6507-1:2024-04 | |
| 10 | Metal materials and products | HRC hardness Range: HRC, HRB Hardness HRC Range: HRC, HRB |
Rockwell method | PN-EN ISO 6508-1:2024-06 | ASTM E18-25 | |
| 11 | Metal materials and products | Fracture surface appearance, Scanning electron microscopy | Procedura Badawcza JPB.LBM.08 wydanie 1 z dnia 04.08.2025 Testing procedurę JPB.LBM.08, issue 1 dated 04.08.2025 | ||
| 12 | Metal materials and products | Grain size Grain size |
Optical microscopy method | ASTM E 112-25 | ASTM E 930-18 | ASTM E1181-02(2023) | PN-EN ISO 643:2025-02 | |
| 13 | Metal materials and products | Density measurement by the, Archimedes method, Density measurement Archimedes | ASTM B962-23 | ASTM B311-22 | ASTM C693-24 | PN-EN ISO 3369:2010 | ||
| 14 | Metal materials and products | Surface discontinuities Surface discontinuities |
Visual method | PN-EN 13018:2016-04 | PN-EN ISO 17637:2017-02 | |
| 15 | Metal materials and products | Surface discontinuities Surface discontinuities |
Penetrant testing method | PN-EN ISO 3452-1:2013-08 | PN-EN ISO 3452-1:2021-12 | |
| 16 | Metal materials and products | Surface and subsurface discontinuities | Eddy current method | PN-EN ISO 15549:2019-07 | |
| 17 | Products made of ferromagnetic materials | Surface and subsurface discontinuities | Magnetic particle method | PN-EN ISO 9934-1:2017-02 | PN-EN ISO 17638:2017-01 | |
Reference standards (35)
ASTM B311-22
ASTM B962-23
ASTM C693-24
ASTM E 112-25
ASTM E 930-18
ASTM E111-17
ASTM E1181-02(2023)
ASTM E139-24
ASTM E18-25
ASTM E21-20
ASTM E384-22
ASTM E399-24
ASTM E466-21
ASTM E606/E606M-21
ASTM E647-24
ASTM E8 / E8M – 25
ASTM E92-17
ASTM E92-23
ISO 204:2023
PN-EN 13018:2016-04
PN-EN ISO 15549:2019-07
PN-EN ISO 17637:2017-02
PN-EN ISO 17638:2017-01
PN-EN ISO 3369:2010
PN-EN ISO 3452-1:2013-08
PN-EN ISO 3452-1:2021-12
PN-EN ISO 643:2025-02
PN-EN ISO 6507-1:2024-04
PN-EN ISO 6508-1:2024-06
PN-EN ISO 6892-1:2020-05
PN-EN ISO 6892-2:2018-08
PN-EN ISO 9934-1:2017-02
Procedura Badawcza JPB.LBM.08 wydanie 1 z dnia 04.08.2025 Testing procedurę JPB.LBM.08, issue 1 dated 04.08.2025
Procedura Badawcza JPB.LMW.01 wydanie 6 z dnia 11.09.2023 Procedura Badawcza JPB.LMW.02 wydanie 7 z dnia 11.09.2023 Procedura Badawcza JPB.LMW.03 wydanie 6 z dnia 11.09.2023 Procedura Badawcza JPB.LMW.04 wydanie 7 z dnia 11.09.2023 Procedura Badawcza JPB.LMW.05 wydanie 7 z dnia 11.09.2023 Test Procedure JPB.LMW.01 issue 06 dated 11.09.2023 Test Procedure JPB.LMW.02 issue 07 dated 11.09.2023 Test Procedure JPB.LMW.03 issue 06 dated 11.09.2023 Test Procedure JPB.LMW.04 issue 07 dated 11.09.2023 Test Procedure JPB.LMW.05 issue 07 dated 11.09.2023
Procedura badawcza JPB.LMK.01, wydanie 5 z dnia 11.09.2023 r. Testing procedure JPB.LMK.01, issue 5 dated 11.09.2023