🇵🇱 TRANSPORTOWY DOZÓR TECHNICZNY PL
Materials & polymers
TRANSPORTOWY DOZÓR TECHNICZNY is a laboratory accredited by PCA under number AB 1141 (Warszawa, Poland). Its accreditation scope covers 32 test methods in the following areas: Materials & polymers. Test objects include: Welded joints in metallic materials and products, Welded joints, Castings made of metallic materials, Forgings made of metallic materials.
At a glance
- Accreditation number: PCA AB 1141
- Methods in scope: 32
- Types of test objects: 18
- City: Warszawa, Poland
- Accreditation number
- AB 1141
- Accreditation body
- PCA
- Address
- ul. Puławska 125, 02-707 Warszawa, LABORATORIUM TDT z siedzibą w Krakowie, ul. Pocieszka 5
- City
- Warszawa, Poland
What this laboratory tests (18)
- Welded joints in metallic materials and products — 6 methods
- Welded joints — 3 methods
- Castings made of metallic materials — 2 methods
- Forgings made of metallic materials — 2 methods
- Metal products — 2 methods
- Metals, metal alloys, metal products — 2 methods
- Metals, Metal alloys, Metal products, Welded joints — 2 methods
- Welded joints in metallic materials and products with a steel-equivalent thickness up to 40 mm — 2 methods
- Wire with diameter from 0,3 to 5,0 mm — 2 methods
- Castings of ferromagnetic metallic materials — 1 method
- Flat steel products — 1 method
- Forgings of ferromagnetic materials — 1 method
- Forgings of steel materials — 1 method
- Steel ropes Diameters from 8 mm to 60 mm — 1 method
- Steel semi-finished and finished products — 1 method
- and 3 more
Accreditation scope — test methods (32)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Test methods | |||||
| 1 | Welded joints in metallic materials and products | Surface discontinuities Penetrant method | PN-EN ISO 3452-1:2021-12 PN-EN 571-1:1999 | ||
| 2 | Welded joints in ferromagnetic metallic materials and products | Surface and subsurface discontinuities Magnetic particle method | PN-EN ISO 9934-1:2017-02 PN-EN ISO 17638:2017-01 | ||
| 3 | Welded joints in metallic materials and products | Welding imperfections Visual method | PN-EN ISO 17637:2017-02 | ||
| 4 | Forgings made of metallic materials | Surface discontinuities Penetrant method | PN-EN ISO 3452-1:2021-12 PN-EN 571-1:1999 | ||
| 5 | Forgings of ferromagnetic materials | Surface and subsurface discontinuities Magnetic particle method | PN-EN ISO 9934-1:2017-02 PN-EN 10228-1:2016-07 | ||
| 6 | Forgings of steel materials | Discontinuities Ultrasonic method | PN-EN 10228-3:2016-07 | ||
| 7 | Castings made of metallic materials | Surface discontinuities Penetrant method | PN-EN ISO 3452-1:2021-12 PN-EN 571-1:1999 | ||
| 8 | Castings of ferromagnetic metallic materials | Surface and subsurface discontinuities Magnetic particle method | PN-EN ISO 9934-1:2017-02 | ||
| 9 | Steel ropes Diameters from 8 mm to 60 mm | Discontinuities and change of rope metallic cross-section Magnetic method MRT Velocities from 0,1 m/s to 3,0 m/s | PN-92/G-46603 PN-EN 12927:2019-07 | ||
| 10 | Metal products | Material thickness Ultrasonic method Range: (1 - 500) mm | PN-EN ISO 16809:2019-08 | ||
| 11 | Flat steel products | Internal discontinuities Ultrasonic method | PN-EN 10160:2001 | ||
| 12 | Welded joints in metallic materials and products | Discontinuities Phased Array ultrasonic method | PN-EN ISO 13588:2019-04 | ||
| 13 | Welded joints in metallic materials and products with a steel-equivalent thickness up to 40 mm | Discontinuities Radiographic method | PN-EN ISO 17636-1:2023-02 PN-EN 1435:2001+A1:2005 | ||
| 14 | Welded joints in metallic materials and products with a steel-equivalent thickness up to 40 mm | Weld discontinuities Radiographic method using digital detectors | PN-EN ISO 17636-2:2023-04 | ||
| 15 | Welded joints in metallic materials and products | Discontinuities Ultrasonic method | PN-EN ISO 17640:2019-01 | ||
| 16 | Welded joints in metallic materials and products | Internal weld discontinuities Thickness range from 6 mm Ultrasonic method using the time-of-flight diffraction technique (TOFD) | PN-EN ISO 10863:2020-12 | ||
| 17 | Wire with diameter from 0,3 to 5,0 mm | Resistance to plastic deformation – number of bends Reverse bend test | PN-ISO 7801:1996 | ||
| 18 | Wire with diameter from 0,3 to 5,0 mm | Resistance to plastic deformation - number of twists Torsion test in one direction | PN-ISO 7800:1996 | ||
| 19 | Welds of austenitic stainless steels and duplex steels and austenitic steels | Delta ferrite content Magnetic induction method | EN ISO 8249:2018-11 | ||
| 20 | Metals, metal alloys, metal products | Mechanical properties: - maximum force F m - tensile strength R m - proof strength R p - upper yield strength R eH lower yield strength R - eL - percentage elongation after fracture A - percentage reduction of area Z Range: force F up to 600 kN Tensile test at room temperature | PN-EN ISO 6892-1:2020-05 Metoda B | ||
| 21 | Metals, metal alloys, metal products | Absorbed impact energy at temperature: - ambient - reduced to -70°C - liquid nitrogen Range: KV , KU 2 2 Initial hammer energy: 300 J Charpy impact test | PN-EN ISO 148-1:2017-02 GOST 9454-78 | ||
| 22 | Welded joints | Mechanical properties: - maximum force F m - tensile strength R m - proof strength R p - upper yield strength R eH - percentage elongation after fracture A - percentage reduction of area Z Range: force F up to 600 kN Tensile test at room temperature. | PN-EN ISO 6892-1:2020-05 Metoda B PN-EN ISO 4136:2022-12 | ||
| 23 | Welded joints | Absorbed impact energy at temperature: - ambient - reduced to -70°C - liquid nitrogen Range: KV , KU 2 2 Initial hammer energy: 300 J Charpy impact test | PN-EN ISO 148-1:2017-02 PN-EN ISO 9016:2022-09 | ||
| 24 | Welded joints | Type and size of internal welding imperfections. Fracture test. | PN-EN ISO 9017:2018-03 | ||
| 25 | Metals, Metal alloys, Metal products, Welded joints | Hardness Range: HV10 Vickers method | PN-EN ISO 6507-1:2024-04 PN-EN ISO 9015-1:2011 | ||
| 26 | Metals, Metal alloys, Metal products, Welded joints | Susceptibility to plastic deformation Range: bend angle up to 180° Bend test | PN-EN ISO 7438:2021-04 PN-EN ISO 5173:2023-06 | ||
| 27 | Welded joints and hardfaced layers | Macrostructure of welded joints Macroscopic method | EN ISO 17639:2022-07 | ||
| 28 | Steel semi-finished and finished products | Content of elements: C, Mn, Si, P, S, Cr, Ni, Cu, Mo, V, Al., Nb Range: C (0,01 – 1,3)% Mn (0,09 – 9,9) % Si (0,03 – 2,5) % P (0,005 – 0,08) % S (0,002 – 0,07) % Cr (0,02 – 25,5) % Ni (0,03 – 21,9) % Cu (0,02 – 3,4) % Mo (0,005 – 3,4) % V (0,005 – 0,9) % Al (0,01 – 1,37) % Nb (0,01 – 2,2) % Spark atomic emission spectrometry method | IB11 Wydanie 2 z dnia 24.08.2020 | ||
| 29 | Welded joints in metallic materials and products | Surface discontinuities Penetrant method | PN-EN ISO 3452-1:2021-12 | ||
| 30 | Forgings made of metallic materials | Surface discontinuities Penetrant method | PN-EN ISO 3452-1:2021-12 | ||
| 31 | Castings made of metallic materials | Surface discontinuities Penetrant method | PN-EN ISO 3452-1:2021-12 | ||
| 32 | Metal products | Material thickness Ultrasonic method Range: (1 – 500) mm | PN-EN ISO 16809:2019-08 | ||
Reference standards (27)
EN ISO 17639:2022-07
EN ISO 8249:2018-11
IB11 Wydanie 2 z dnia 24.08.2020
PN-92/G-46603 PN-EN 12927:2019-07
PN-EN 10160:2001
PN-EN 10228-3:2016-07
PN-EN ISO 10863:2020-12
PN-EN ISO 13588:2019-04
PN-EN ISO 148-1:2017-02 GOST 9454-78
PN-EN ISO 148-1:2017-02 PN-EN ISO 9016:2022-09
PN-EN ISO 16809:2019-08
PN-EN ISO 17636-1:2023-02 PN-EN 1435:2001+A1:2005
PN-EN ISO 17636-2:2023-04
PN-EN ISO 17637:2017-02
PN-EN ISO 17640:2019-01
PN-EN ISO 3452-1:2021-12
PN-EN ISO 3452-1:2021-12 PN-EN 571-1:1999
PN-EN ISO 6507-1:2024-04 PN-EN ISO 9015-1:2011
PN-EN ISO 6892-1:2020-05 Metoda B
PN-EN ISO 6892-1:2020-05 Metoda B PN-EN ISO 4136:2022-12
PN-EN ISO 7438:2021-04 PN-EN ISO 5173:2023-06
PN-EN ISO 9017:2018-03
PN-EN ISO 9934-1:2017-02
PN-EN ISO 9934-1:2017-02 PN-EN 10228-1:2016-07
PN-EN ISO 9934-1:2017-02 PN-EN ISO 17638:2017-01
PN-ISO 7800:1996
PN-ISO 7801:1996