🇵🇱 ZDT GLIMAG Sp. z o.o. PL
Materials & polymersConstruction
ZDT GLIMAG Sp. z o.o. is a laboratory accredited by PCA under number AB 193 (Mikołów, Poland). Its accreditation scope covers 29 test methods in the following areas: Materials & polymers, Construction. Test objects include: Metals and metal alloys, Metal products - steel for the reinforcement of concrete - welded r…, Pipes, Pressure equipment (pipes, valves). Most frequently used techniques: Method: Tensile test at room temperature, Spark excitation atomic emission spectrometry, Method: Bend test.
At a glance
- Accreditation number: PCA AB 193
- Methods in scope: 29
- Types of test objects: 16
- Techniques used: 19
- City: Mikołów, Poland
- Accreditation number
- AB 193
- Accreditation body
- PCA
- Address
- LABORATORIUM METALOZNAWSTWA I OBRÓBKI CIEPLNEJ, ul. Żwirki i Wigury 6, 43-190 Mikołów
- City
- Mikołów, Poland
What this laboratory tests (16)
- Metals and metal alloys — 6 methods
- Metal products - steel for the reinforcement of concrete - welded reinforcing mesh - steel for the prestressing of concrete — 5 methods
- Pipes — 3 methods
- Pressure equipment (pipes, valves) — 2 methods
- Steel mill products and structural products — 2 methods
- Aluminium and aluminium alloys — 1 method
- Cast iron — 1 method
- Copper and copper alloys — 1 method
- Galvanised steel products — 1 method
- Geosynthetics — 1 method
- Non-alloy and low-alloy steels — 1 method
- Plastics, Geosynthetics — 1 method
- Products made of metals and metal alloys — 1 method
- Products made of metals and metal alloys with dimensions up to 10000 mm, Metal products: - steel for the reinforcement of concrete - steel for the prestressing of concrete — 1 method
- Steel, Cast steel — 1 method
- and 1 more
Analytical techniques used (19)
- Method: Tensile test at room temperature — 4 methods
- Spark excitation atomic emission spectrometry — 4 methods
- Method: Bend test — 2 methods
- Comparative method according to the scale of standards — 1 method
- Direct measurement method — 1 method
- Gravimetric method — 1 method
- Metallographic method — 1 method
- Method: Bending-back test — 1 method
- Method: Brinell — 1 method
- Method: Drift expanding test — 1 method
- Method: Flattening test — 1 method
- Method: hardness measurement — 1 method
- Method: Impact strength test by the method — 1 method
- Method: loading with test pressure; Method: water test — 1 method
- Method: Ring expanding test — 1 method
- and 4 more
Accreditation scope — test methods (29)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Test methods | |||||
| 1 | Steel, Cast steel | Content of elements: C, Mn, Si, P, S, Cr, Ni, Cu, Mo, V, Ti, Nb, Al, Pb, B, Co, Sn, W, N C (0,005 – 1,6) % Mn (0,080 – 2,0) % Si (0,010 – 2,7) % P (0,005 – 0,6) % S (0,001 – 0,4) % Cr (0,005 – 30,0) % Ni (0,010 – 36,0) % Cu (0,010 – 3,0) % Mo (0,001 – 6,0) % V (0,0010 – 1,67) % Ti (0,001 – 1,5) % Nb (0,001 – 1,5) % Al (0,005 – 2,0) % Pb (0,01 – 0,05) % B (0,0010 – 0,05) % Co (0,005 – 10,0) % Sn (0,001 – 0,13) % W (0,01 – 17,0) % N (0,007 – 0,12) % |
Spark excitation atomic emission spectrometry | Procedura badawcza Nr 07.01.00 wydanie X 04.04.2025 r. | |
| 2 | Cast iron | Content of elements: C, Mn, Si, P, S, Cr, Ni, Cu, Mo, V, Ti, Al, Mg, As, B, Ce, Co, Nb, Pb, Sb, Sn, Zr, W C (1,0 – 4,5) % Mn (0,1 – 2,00) % Si (0,1 – 4,5) % P (0,001 – 1,5) % S (0,001 – 0,25) % Cr (0,01 – 33,0) % Ni (0,01 – 39,0) % Cu (0,01 – 3,50) % Mo (0,01 – 4,0) % V (0,001 – 0,3) % Ti (0,010 – 0,20) % Al (0,005 – 0,20) % Mg (0,01 – 0,150) % As (0,0010 – 0,05) % B (0,0010 – 0,05) % Ce (0,004 – 0,050) % Co (0,0015 – 0,110) % Nb (0,005 – 0,070) % Pb (0,003 – 0,030) % Sb (0,005 – 0,150) % Sn (0,004 – 0,15) % Zr (0,004 – 0,040) % W (0,010 – 0,100) % |
Spark excitation atomic emission spectrometry | Procedura badawcza Nr 07.01.00 wydanie X 04.04.2025 r. | |
| 3 | Aluminium and aluminium alloys | Element content: Cu (0,070 – 0,35) % Mg (0,100 – 2,5) % Si (0,390 – 24,0) % Fe (0,300 – 1,0) % Mn (0,010 – 0,35) % Ni (0,010 – 0,20) % Zn (0,030 – 0,25) % Pb (0,010 – 0,02) % Sn (0,010 – 0,20) % Ti (0,0055 – 0,20) % Cr (0,001 – 0,250) % Zr (0,001 – 0,003) % |
Spark excitation atomic emission spectrometry | Procedura badawcza Nr 07.01.00 wydanie X 04.04.2025 r. | |
| 4 | Copper and copper alloys | Element content: Mn (0,5 – 1,0) % Si (0,2 – 0,4) % Ni (0,1 – 5,0) % Sn (0,005 – 7,0) % S (0,01 – 0,03) % Ag (0,002 – 0,02) % P (0,01 – 0,03) % Zn (0,03 – 0,5) % Al (9,0 – 11) % Fe (2,5 – 4,5) % Pb (0,005 – 12,0) % Co (0,002 – 0,0005) % |
Spark excitation atomic emission spectrometry | Procedura badawcza Nr 07.01.00 wydanie X 04.04.2025 r. | |
| 5 | Products made of metals and metal alloys | Susceptibility to plastic deformation - bending bend angle do 180o |
Method: Bend test | PN-EN ISO 7438:2021-04 | PN-83/H-04411 | |
| 6 | Pipes | Susceptibility to plastic deformation – flattening Range średnica do 600 mm, grubość not greater than 15 % of the outer diameter |
Method: Flattening test | PN-EN ISO 8492:2014-02 | |
| 7 | Pipes | Susceptibility to plastic deformation – drift expanding with a mandrel Range średnica zewnętrzna do 150 mm (100 mm dla metali lekkich), wall thickness not greater than 10 mm |
Method: Drift expanding test | PN-EN ISO 8493:2005 | |
| 8 | Pipes | Susceptibility to plastic deformation – ring expanding Range średnica zewnętrzna od 18mm up to 150 mm inclusive, wall thickness from 2 mm to 16 mm inclusive |
Method: Ring expanding test | PN - EN ISO 8495:2014-02 | |
| 9 | Metal products - steel for the reinforcement of concrete - welded reinforcing mesh - steel for the prestressing of concrete | Mechanical properties: distinct yield strength – Re tensile strength – Rm elongation – A, Agt proof strength, plastic extension – Rp force do 1000 kN |
Method: Tensile test at room temperature | PN-EN ISO 6892-1:2020-05 met. B | PN-EN ISO 15630-1:2019-04 pkt. 5 | PN-EN ISO 15630-2:2019-04 pkt. 5 | PN-EN ISO 15630-3:2019-04 pkt. 5 | |
| 10 | Metal products - steel for the reinforcement of concrete - welded reinforcing mesh - steel for the prestressing of concrete | Mechanical properties: proof strength, plastic extension – Rp distinct yield strength – Re tensile strength – Rm elongation – A, Agt modulus of elasticity – E force do 250 kN |
Method: Tensile test at room temperature | PN-EN ISO 6892-1:2020-05 | PN-EN ISO 15630-1:2019-04 pkt. 5 | PN-EN ISO 15630-2:2019-04 pkt. 5 | PN-EN ISO 15630-3:2019-04 pkt. 5 | |
| 11 | Metal products - steel for the reinforcement of concrete - welded reinforcing mesh - steel for the prestressing of concrete | Ability to undergo plastic deformation – bending | Method: Bend test | PN-ISO 6935-2:1998 pkt. 8 | PN-ISO 6935-2/Ak:1998 pkt. 5 | PN-EN ISO 15630-1:2019-04 pkt. 6 | PN-EN ISO 15630-2:2019-04 pkt. 6 | PN-EN ISO 15630-3:2019-04 pkt. 6 | |
| 12 | Metal products - steel for the reinforcement of concrete - welded reinforcing mesh - steel for the prestressing of concrete | Susceptibility to plastic deformation – back-bending | Method: Bending-back test | PN-ISO 6935-2:1998 pkt. 8 | PN-ISO 6935-2/Ak:1998 pkt. 5 | PN-EN ISO 15630-1:2019-04 pkt. 7 | PN-EN ISO 15630-3:2019-04 pkt. 7 | |
| 13 | Metal products - steel for the reinforcement of concrete - welded reinforcing mesh - steel for the prestressing of concrete | Shear of the resistance-welded joint Shear force of the welded joint Fs force do 400 kN |
PN-EN ISO 15630-2:2019-04 pkt. 7 | ||
| 14 | Galvanised steel products | Mass of the zinc coating | Gravimetric method | PN-EN ISO 1460:2021-03 | PN-EN 10244-2:2023-11 | PN-EN 10244-1:2010 | PN-EN 10346:2015-09 | PN-EN 10152:2017-03 | |
| 15 | Non-alloy and low-alloy steels | Decarburisation depth | Metallographic method | PN-EN ISO 3887:2024-04 | |
| 16 | Steel mill products and structural products | Microstructure phase constituents of the structure |
Optical microscopy method | PN-66/H-04505 | |
| 17 | Steel mill products and structural products | Grain size Optical microscopy |
Comparative method according to the scale of standards | PN-EN ISO 643:2025-02 | PN-84/H-04507/01 | |
| 18 | Products made of metals and metal alloys with dimensions up to 10000 mm, Metal products: - steel for the reinforcement of concrete - steel for the prestressing of concrete | Dimensions, diameter, wall thickness, angle, Rib geometry, Reference area of the transverse rib, Rib inclination angle, Mass per unit length | Procedura badawcza 07.06.00 wyd. 3 z dn. 01.05.2020 r. | PN-ISO 6935-2/Ak:1998 pkt. 3 | PN-EN ISO 15630-1:2019-04 pkt. 10, 11, 12 | PN-EN ISO 15630-3:2019-04 pkt. 14, 15, 16 | ||
| 19 | Metals and metal alloys | HBW hardness Range średnica kulki: 10 mm - 450 HBW |
Method: Brinell | PN-EN ISO 6506-1:2014-12 | |
| 20 | Metals and metal alloys | HRC hardness Range skala C |
Method: Rockwell | PN-EN ISO 6508-1:2024-06 | |
| 21 | Metals and metal alloys | HV hardness Range HV0,2, HV1, HV5, HV10 |
Method: Vickers | PN-EN ISO 6507-1:2024-04 | |
| 22 | Metals and metal alloys | Measurement of the thickness of the surface-hardened layer | Method: hardness measurement | PN-EN ISO 18203:2022-09 | |
| 23 | Metals and metal alloys | Absorbed energy KV2; KU 2 Test temperature: room 23±5 oC reduced to - 20 oC Initial hammer energy 300 J Charpy |
Method: Impact strength test by the method | PN-EN ISO 148-1:2017-02 | PN-81/H-04373 | |
| 24 | Metals and metal alloys | Mechanical properties: proof strength, plastic extension – Rp distinct yield strength – Re tensile strength – Rm elongation – A, Agt reduction of area – Z modulus of elasticity - E force do 1000 kN |
Method: Tensile test at room temperature | PN-EN ISO 6892-1:2020-05 | |
| 25 | Plastics, Geosynthetics | Mechanical properties tensile strength yield strength elongation at fracture modulus of elasticity force do 250 kN |
Method: Tensile test at room temperature | PN EN ISO 527-1:2020-01 | |
| 26 | Geosynthetics | Mass per unit area | Direct measurement method | PN-ISO 9864:1994 | PN-EN 14196:2016-03 | |
| 27 | Structural products and materials | Resistance to static loads Force do 1000 kN Deformation do 400 mm Moment do 400 kNm Tensile test and bend test at room temperature |
Procedura Badawcza 07.03.00 wyd. 1 z 15.03.2021 r. | ||
| 28 | Pressure equipment (pipes, valves) | Leak tightness test pressure do 16 MPa |
Method: loading with test pressure; Method: water test | Procedura Badawcza nr P.07.08.00 wyd. I z 10.01.2022 r. | PN-G-44070:1997 pkt 2.7 i 3.5.5 | PN-EN 10216-2+A1:2020-05 pkt 11.8.1 | |
| 29 | Pressure equipment (pipes, valves) | Resistance to test (burst) pressure pressure do 16 MPa |
Pressure loading method | Procedura Badawcza nr P.07.08.00 wyd. I z 10.01.2022 r. | PN-G-44070:1997 pkt 2.6 i 3.5.4 | |
Reference standards (46)
PN - EN ISO 8495:2014-02
PN EN ISO 527-1:2020-01
PN-66/H-04505
PN-81/H-04373
PN-83/H-04411
PN-84/H-04507/01
PN-EN 10152:2017-03
PN-EN 10216-2+A1:2020-05 pkt 11.8.1
PN-EN 10244-1:2010
PN-EN 10244-2:2023-11
PN-EN 10346:2015-09
PN-EN 14196:2016-03
PN-EN ISO 1460:2021-03
PN-EN ISO 148-1:2017-02
PN-EN ISO 15630-1:2019-04 pkt. 10, 11, 12
PN-EN ISO 15630-1:2019-04 pkt. 5
PN-EN ISO 15630-1:2019-04 pkt. 6
PN-EN ISO 15630-1:2019-04 pkt. 7
PN-EN ISO 15630-2:2019-04 pkt. 5
PN-EN ISO 15630-2:2019-04 pkt. 6
PN-EN ISO 15630-2:2019-04 pkt. 7
PN-EN ISO 15630-3:2019-04 pkt. 14, 15, 16
PN-EN ISO 15630-3:2019-04 pkt. 5
PN-EN ISO 15630-3:2019-04 pkt. 6
PN-EN ISO 15630-3:2019-04 pkt. 7
PN-EN ISO 18203:2022-09
PN-EN ISO 3887:2024-04
PN-EN ISO 643:2025-02
PN-EN ISO 6506-1:2014-12
PN-EN ISO 6507-1:2024-04
PN-EN ISO 6508-1:2024-06
PN-EN ISO 6892-1:2020-05
PN-EN ISO 6892-1:2020-05 met. B
PN-EN ISO 7438:2021-04
PN-EN ISO 8492:2014-02
PN-EN ISO 8493:2005
PN-G-44070:1997 pkt 2.6 i 3.5.4
PN-G-44070:1997 pkt 2.7 i 3.5.5
PN-ISO 6935-2/Ak:1998 pkt. 3
PN-ISO 6935-2/Ak:1998 pkt. 5
PN-ISO 6935-2:1998 pkt. 8
PN-ISO 9864:1994
Procedura Badawcza 07.03.00 wyd. 1 z 15.03.2021 r.
Procedura Badawcza nr P.07.08.00 wyd. I z 10.01.2022 r.
Procedura badawcza 07.06.00 wyd. 3 z dn. 01.05.2020 r.
Procedura badawcza Nr 07.01.00 wydanie X 04.04.2025 r.