🇵🇱 NAVITEST Sp. z o. o. PL

PCA AB 1646 • Gdańsk, 波兰 • 12 项方法

材料与高分子建筑

NAVITEST Sp. z o. o. 是由 PCA 认可的实验室,认可编号 AB 1646(Gdańsk,波兰)。认可范围涵盖 12 项检测方法,涉及以下领域:材料与高分子、建筑。检测对象包括:金属材料焊接接头、Aluminium alloys、Austenitic welds、Copper alloys。

要点速览

  • 认可编号: PCA AB 1646
  • 认可范围内方法数: 12
  • 检测对象种类: 11
  • 城市: Gdańsk, 波兰
认可编号
AB 1646
认可机构
PCA
地址
ul. Astronomów 5, 80-299 Gdańsk
城市
Gdańsk, 波兰

该实验室检测什么 (11)

认可范围 — 项检测方法 (12)

序号 检测对象 方法 / 参数 技术 依据文件
检测方法
1 Welded joints in metallic materials with a thickness up to 60 mm Discontinuities Radiographic method PN-EN ISO 17636-1:2023-02 PN-EN ISO 17636-2:2023-04 ASME s. V art. 2 ed. 2023
2 Welded joints in ferromagnetic materials Surface and subsurface discontinuities Magnetic particle method PN-EN ISO 17638:2017-01 ASME s. V art. 7 ed. 2023
3 金属制品与材料 External surface discontinuities open to the tested surface Penetrant method PN-EN ISO 3452-1:2021-12 PN-EN ISO 3452-6:2009 ASME s. V art. 6 ed. 2023
4 金属材料焊接接头 Shape imperfections and external surface discontinuities Visual method PN-EN ISO 17637:2017-02 ASME s. V art. 9 ed. 2023
5 Flat steel products Internal discontinuities Ultrasonic method PN-EN 10160:2001
6 金属材料焊接接头 Internal discontinuities Ultrasonic method PN-EN ISO 20601:2019-03
7 Technical equipment, steel and building structures, their components and safety devices, materials for their manufacture, permanent joints Thickness measurement Ultrasonic method PN-EN ISO 16809:2019-08
8 Technical equipment, steel and building structures, their components and safety devices, permanent joints Assessment of leak tightness of tested objects by indicating, locating the leak Bubble method PN-EN 1593:2004
9 Austenitic welds Ferrite content Magnetic induction method PN-EN ISO 8249:2018-11
10 Steels Content of elements: Si, Cr, Mn, Ni, Cu, Mo, V, Ti, W, Co Range: Si (0,18 – 0,51) % Cr (0,19 – 18,24) % Mn (0,55 – 1,98) % Ni (7,29 – 9,5) % Mo (0,13 – 8,1) % V (0,072 – 1,22) % Ti (0,098 – 0,36) % Cu (0,13 – 0,51) % W (0,042 – 2,49) % Co (0,11 – 17,9) % Energy dispersive X-ray fluorescence spectrometry (ED-XRF) method NVT/PMI-11, Wydanie: 6 z dnia 18.02.2025 r.
11 Aluminium alloys Content of elements: Si, Cr, Mn, Cu, Mg, Fe, Zn, Zr Range: Si (0,47 – 8,89) % Cr (0,02 – 0,25) % Mn (0,016 – 0,76) % Cu (0,06 – 4,49) % Mg (0,5 – 2,61) % Fe (0,16 – 0,9) % Zn (0,05 – 6,15) % Zr (0,001 – 0,12) % Energy dispersive X-ray fluorescence spectrometry (ED-XRF) method NVT/PMI-11, Wydanie: 6 z dnia 18.02.2025
12 Copper alloys Content of elements: Cu, Ni, Fe Range: Cu (67,3 – 84,5) % Ni (0,4 – 31,3) % Fe (0,035 – 0,63) % Energy dispersive X-ray fluorescence spectrometry (ED-XRF) method NVT/PMI-11, Wydanie: 6 z dnia 18.02.2025

引用标准 (11)

NVT/PMI-11, Wydanie: 6 z dnia 18.02.2025
NVT/PMI-11, Wydanie: 6 z dnia 18.02.2025 r.
PN-EN 10160:2001
PN-EN 1593:2004
PN-EN ISO 16809:2019-08
PN-EN ISO 17636-1:2023-02 PN-EN ISO 17636-2:2023-04 ASME s. V art. 2 ed. 2023
PN-EN ISO 17637:2017-02 ASME s. V art. 9 ed. 2023
PN-EN ISO 17638:2017-01 ASME s. V art. 7 ed. 2023
PN-EN ISO 20601:2019-03
PN-EN ISO 3452-1:2021-12 PN-EN ISO 3452-6:2009 ASME s. V art. 6 ed. 2023
PN-EN ISO 8249:2018-11