🇵🇱 ZDT GLIMAG Sp. z o.o. PL

PCA AB 193 • Mikołów, Poland • 29 methods

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)

Analytical techniques used (19)

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.