| ▶ 금속 및 관련제품 |
| ASTM G155-25 |
Standard Practice for Operating Xenon Arc Lamp Apparatus for Exposure of Materials |
340 nm, (45 ~ 80) ℃ |
소재지 |
| NASM1312-13(Revision 2) |
FASTENER TEST METHODS METHOD 13 DOUBLE SHEAR TEST |
Load : (0 ~ 500) kN |
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| ISO 6506-1:2014 |
Metallic materials -- Brinell hardness test Part 1: Test method |
HBW 10 / 3 000, HBW 10 / 500 |
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| ASTM E8/E8M-25 |
Standard Test Methods for Tension Testing of Metallic Materials 7.10 Tensile strength 7.7, 7.8 Yield strength (yield point) 7.11 Elongation 7.12 Reduction of area |
Load : (0 ~ 500) kN Elongation : (0 ~ 100) % Reduction of area : (0 ~ 100) % |
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| ASTM B557M-15(2023) |
Standard Test Methods for Tension Testing Wrought and Cast Aluminum- and Magnesium-Alloy Products (Metric) 7.6 Yield strength 7.7 Tensile Strength 7.8 Elongation |
Load : (0 ~ 250) kN Elongation : (0 ~ 100) % |
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| ASTM B557-15(2023) |
Standard Test Methods for Tension Testing Wrought and Cast Aluminum- and Magnesium-Alloy Products 7.6 Yield strength 7.7 Tensile Strength 7.8 Elongation |
Load : (0 ~ 250) kN Elongation : (0 ~ 100) % |
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| ASTM E10-23 |
Standard Test Method for Brinell Hardness of Metallic Materials |
HBW 10/3 000, HBW 10/500 |
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| ASTM F606/F606M-25 |
Standard Test Methods for Determining the Mechanical Properties of Externally and Internally Threaded Fasteners, Washers, Direct Tension Indicators, and Rivets 3.4 Axial Tension Testing of Full-Size Products: |
(0 ~ 500) kN |
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| NASM 1312-11(Revision 3) |
FASTENER TEST METHODS METHOD 11 TENSION FATIGUE |
(0 ~ 250) kN |
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| ASTM G50-20 |
Standard Practice for Conducting Atmospheric Corrosion Tests on Metals |
Atmosphere Exposure Test |
소재지 |
| ASTM G150-18 |
Standard Test Method for Electrochemical Critical Pitting Temperature Testing of Stainless Steels and Related Alloys |
±5 V, ±500 mA, (0 ~ 100) ℃ |
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| ASTM G3-14(2024) |
Standard Practice for Conventions Applicable to Electrochemical Measurements in Corrosion Testing |
±5 V, ±500 mA, 10 μHz ~ 7 MHz |
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| ASTM G60-01(2018) |
Standard Practice for Conducting Cyclic Humidity Exposures |
(10 ~ 100) % R.H. |
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| ASTM A923-25 |
Standard Test Methods for Detecting Detrimental Intermetallic Phase in Duplex Austenitic/Ferritic Stainless Steels |
Method A, C |
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| ASTM A262-15(2021) |
Standard Practices for Detecting Susceptibility to Intergranular Attack in Austenitic Stainless Steels |
Method A, B, C, E, F |
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| ASTM G48-25 |
Standard Test Methods for Pitting and Crevice Corrosion Resistance of Stainless Steels and Related Alloys by Use of Ferric Chloride Solution |
Method A ~ F |
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| ASTM G31-21 |
Standard Guide for Laboratory Immersion Corrosion Testing of Metals |
(10 ~ 90) ℃ |
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| ASTM B117-19 |
Standard Practice for Operating Salt Spray (Fog) Apparatus |
35 ℃ |
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| ISO 9227:2022 |
Corrosion tests in artificial atmospheres -- Salt spray tests |
Salt spray, Acetic acid : 35 ℃ CASS : 50 ℃ |
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| KS D 9502:2024 |
염수 분무 시험방법 (중성, 아세트산 및 캐스 분무 시험) |
염수, 아세트산 : 35 ℃ 캐스 : 50 ℃ |
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| KS D ISO 14993:2018 |
금속 및 합금의 부식-염수 분무, 건습의 반복 사이클에 의한 가속 시험 |
(25 ~ 60) ℃ |
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| ASTM E139-24 |
Standard Test Methods for Conducting Creep, Creep-Rupture, and Stress-Rupture Tests of Metallic Materials |
- Test load : (20 ~ 5 000) kg - Test temperature : (200 ~ 1 150) ℃ |
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| ASTM E606/E606M-21 |
Standard Test Method for Strain-Controlled Fatigue Testing |
(0 ~ 500) kN |
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| ASTM E466-21 |
Standard Practice for Conducting Force Controlled Constant Amplitude Axial Fatigue Tests of Metallic Materials |
(0 ~ 500) kN |
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| NASM1312-8(Revision 3) |
FASTENER TEST METHODS, METHOD 8, TENSILE STRENGTH |
Load: (0 ~ 500) kN |
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| ▶ 철강 |
| KS D 1652:2022 |
철 및 강 — 스파크 방전 원자 방출 분광 분석 방법 |
C : (0.001 ~ 4.32) % Si : (0.002 ~ 4.16) % C : (0.001 ~ 4.32) % Si : (0.002 ~ 4.16) % Mn : (0.003 ~ 19.5) % P : (0.000 5 ~ 0.55) % S : (0.000 2 ~ 0.308) % Ni : (0.002 ~ 40) % Cr : (0.002 ~ 32.1) % Mo : (0.002 ~ 6.19) % Cu : (0.001 ~ 3.72) % W : (0.01 ~ 17.6) % V : (0.001 ~ 6) % Co : (0.002 ~ 4.97) % Ti : (0.000 5 ~ 3) % Al : (0.001 ~ 1.47) % As : (0.001 ~ 0.117) % Sn : (0.001 ~ 0.18) % B : (0.000 2 ~ 0.030) % Pb : (0.001 ~ 0.234) % Zr : (0.001 ~ 0.2) % Nb : (0.001 ~ 1.53) % Mg : (0.001 ~ 0.107) % Ca : (0.000 1 ~ 0.007 7) % Sb : (0.008 ~ 0.19) % Se : (0.003 ~ 0.025) % |
부속시설-2 |
| KS D 1673-2:2023 |
철 및 강 — 유도결합 플라스마 방출 분광 분석법 — 제2부: 다원소의 정량 — 산 분해·파이로황산포타슘 용융법 |
Si : 0.01 % ~ 0.60 % Mn : 0.01 % ~ 2.00 % P : 0.003 % ~ 0.10 % Ni : 0.01 % ~ 4.00 % Cr : 0.01 % ~ 3.00 % Mo : 0.01 % ~ 1.20 % Cu : 0.01 % ~ 0.50 % V : 0.002 % ~ 0.50 % Co : 0.003 % ~ 0.20 % Ti : 0.001 % ~ 0.30 % Al : 0.004 % ~ 0.10 % |
소재지 |
| KS D 1778:2023 |
금속 재료의 산소 정량 방법 통칙 9.1) 비활성 가스 융해-적외선 흡수법 |
(0.001 6 ~ 0.033) % |
부속시설-2 |
| KS D 1805:2019 |
철 및 강 - 규소 정량 방법: 부속서A 이산화규소 무게 분석법(1) |
(0.10 ~ 8.0) % |
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| KS D 1811:2003 |
철 및 강의 질소 분석 방법 3.d)비활성 기체 운반 융해 - 열 전도도법 |
(0.000 6 ~ 0.055) % |
부속시설-2 |
| ▶ 비철 |
| KS D 1895:2024 |
구리 및 구리합금의 납 정량 방법 5.f) 유도 결합 플라스마 방출 분광 분석법 |
(0.01 ~ 22) % |
소재지 |
ASTM E1409-13 |
Standard Test Method for Determination of Oxygen and Nitrogen in Titanium and Titanium Alloys by Inert Gas Fusion |
O: (0.05 ~ 0.3) % N: (0.003 ~ 0.03) % |
부속시설-2 |
| ASTM E2594-20 |
Standard Test Method for Analysis of Nickel Alloys by Inductively Coupled Plasma Atomic Emission Spectrometry (Performance-Based) |
Al:(0.06 ~ 1.40) % Cu:(0.010 ~ 0.52) % Mg:(0.001 ~ 0.10) % Mn:(0.002 ~ 0.65) % Nb:(0.020 ~ 5.5) % P:(0.004 ~ 0.030) % Sn:(0.002 ~ 0.018) % Ti:(0.020 ~ 3.1) % W:(0.007 ~ 0.11) % V:(0.010 ~ 0.50) % Zr:(0.002 ~ 0.10) % |
소재지 |
| ASTM E2371-21a |
Standard Test Method for Analysis of Titanium and Titanium Alloys by Direct Current Plasma and Inductively Coupled Plasma Atomic Emission Spectrometry (Performance-Based Test Methodology) |
Al : (0.009 ~ 8.0) % Co : (0.006 ~ 0.1) % Cr : (0.005 ~ 4.0) % Cu : (0.004 ~ 0.5) % Fe : (0.004 ~ 3.0) % Mn : (0.003 ~ 0.01) % Mo : (0.004 ~ 6.0) % Ni : (0.001 ~ 1.0) % Nb : (0.008 ~ 0.1) % Si : (0.02 ~ 0.4) % Sn : (0.02 ~ 3.0) % W : 0.01 ~ 0.10) % V : (0.01 ~ 15.0) % Y : (0.001 ~ 0.004) % Zr : (0.003 ~ 4.0) % |
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| ISO/TS 15338:2025 |
Surface chemical analysis -- Glow discharge mass spectrometry -- Operating procedures (SiC, Alumina) |
-Li,Be,B,Mn,Ni,As,Rb,Sr,Y,Nb,Mo,Ru,Rh,Ba,Pr,Nd,Sm,Eu,Gd,Tb,Dy,Ho,Er,Tm,Yb,Lu,Hf,Re,Os,Ir,Tl : 0.05 mg/kg or more
-Mg,P,S,Cl,K,Ca,Fe,Zn,Ge,Zr,Pd,Ag,Sb,Te,La,Ce,W,Pt,Pb,Bi : 0.1 mg/kg or more -Cr,Cu,Se,Br,Cd,In,Sn,I, Ta,Hg : 0.5 mg/kg or more
-F,Ga,Cs,Au : 1 mg/kg or more
-Na,Sc,Ti,V,Co,Th,U : 0.01 mg/kg or more |
소재지 |
| ▶ 광산 및 요업 관련제품 |
| JIS R 1616:2007 |
Methods for chemical analysis of fine silicon carbide powders for fine ceramics |
Al : (0.001 ~ 1) % Fe : (0.001 ~ 1) % Ca : (0.000 1 ~ 0.5) % Mg : (0.000 1 ~ 0.05) % |
소재지 |
| KS E 3075 : 2022 |
석회석과 백운석의 형광 X선 분석방법 |
SiO₂ : (0.10 ~ 15.0) % Al₂O₃ : (0.05 ~ 5.00) % Fe₂O₃ : (0.05 ~ 2.00) % CaO : (29.0 ~ 55.8) % MgO : (0.10 ~ 22.0) % |
소재지 |
| KS E ISO 2598-1 : 1992 |
철광석의 규소 정량-제1부:무게 분석법 |
(1.0 ~ 15.0) % |
소재지 |
| KS E ISO 11535 : 2006 |
철광석 - 다원소의 정량 - 유도결합 플라스마 방출 분광 분석법 |
Al : (0.07 ~ 3.30) % Ca : (0.012 ~ 6.80) % Mg : (0.008 ~ 1.90) % Mn : (0.012 ~ 1.70) % P : (0.011 ~ 1.60) % Si : (0.44 ~ 9.40) % Ti : (0.018 ~ 0.17) % |
소재지 |
| JIS M 8213:2024 |
Iron ores — Determination of acid-soluble iron (II) — Potassium dichromate titrimetric Method |
(1 ~ 30) % |
소재지 |
| KS E ISO 2597-1:2006 |
철광석의 총 철 분석방법-제 1 부 : 염화주석(II)환원 후 적정법 |
Total-Fe : (30 ~ 72) % |
소재지 |
| KS L 1629-1: 2023 |
리튬 복합 산화물의 화학 분석 방법 — 제1부: 리튬 니켈 망간 코발트 산화물(NMC) |
Ni : (10 ~ 70) % Mn : (1 ~ 30) % Co : (1 ~ 30) % Li : (1 ~ 13) % Al : (0.001 ~ 0.2) % Ba : (0.001 ~ 0.2) % Ca : (0.001 ~ 0.2) % Cu : (0.001 ~ 0.2) % Fe : (0.001 ~ 0.2) % Pb : (0.001 ~ 0.2) % Mg : (0.001 ~ 0.2) % Mo : (0.001 ~ 0.2) % P : (0.001 ~ 0.2) % Na : (0.001 ~ 0.2) % Sr : (0.001 ~ 0.2) % Ti : (0.001 ~ 0.2) % Zn : (0.001 ~ 0.2) % Zr : (0.001 ~ 0.2) % Li2CO3 : (0.01 ~ 3.50) % LiOH : (0.01 ~ 2.30) % |
소재지 |
| ISO 16878:2016 |
Iron ores -- Determination of metallic iron content -- Iron(III) chloride titrimetric method |
(57.5 ~ 90.5) % |
소재지 |
| JIS R 1649:2002 |
Methods for chemical analysis of aluminium oxide powders for fine ceramics |
LOI : (0 ~ 2) % SiO2 : (0.000 1 ~ 1) % Fe2O3 : (0.000 1 ~ 1) % TiO2 : (0.000 1 ~ 1) % CaO : (0.000 1 ~ 1) % MgO : (0.000 1 ~ 1) % Na2O : (0.000 1 ~ 1) % K2O : (0.000 1 ~ 1) % Cr2O3 : (0.000 1 ~ 1) % MnO : (0.000 1 ~ 1) % V2O5 : (0.000 1 ~ 1) % ZrO2 : (0.000 1 ~ 1) % |
소재지 |
| KS E 3066:2013 |
세라믹스용 고실리카 원료의 화학 분석 방법 |
강열감량 : (0.1 ~ 1) % SiO₂ : (95 ~ 100) % Al₂O₃ : (0.01 ~ 2 000) mg/kg Fe₂O₃ : (0.005 ~ 500) mg/kg TiO₂ : (0.005 ~ 500 ) mg/kg MnO : (0.001 ~ 100) mg/kg CaO : (0.005 ~ 100 ) mg/kg MgO : (0.005 ~ 100) mg/kg Na₂O : (0.01 ~ 100 ) mg/kg K₂O : (0.01 ~ 1 000) mg/kg Cr2O3 : (0.001 ~ 100) mg/kg |
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| ▶ 수질 |
| KS I ISO 11885:1996 |
수질-유도 결합 플라즈마 원자 발광 분광법(ICP-OES)에 의한 선택 원소 측정방법 |
Ag, Al, As, B, Ba, Be, Bi, Ca, Cd, Co, Cr, Cu, Fe, K, Li, Mg, Mn, Mo, Na, Ni, P, Pb, S, Sb, Se, Si, Sn, Sr, Ti, V, W, Zn, Zr 각 원소 (0.01 ~ 1 000) mg/L |
소재지 |
| US EPA 300.1:1999 |
DETERMINATION OF INORGANIC ANIONS IN DRINKING WATER BY ION CHROMATOGRAPHY |
F⁻ : 0.009 mg/L or more Cl⁻ : 0.004 mg/L or more NO⁻₂-N : 0.001 mg/L or more NO⁻₃-N : 0.008 mg/L or more PO₄³⁻-P : 0.019 mg/L or more SO₄²⁻ : 0.019 mg/L or more |
소재지 |
| ISO 17294-2:2023 |
Water quality - Application of inductively coupled plasma mass spectrometry (ICP-MS) - Part 2: Determination of selected elements including uranium isotopes |
Ag: 0.5 μg/L, Al: 1 μg/L, As: 0.1 μg/L, Au: 0.5 μg/L, B: 1 μg/L, Ba: 0.5 μg/L, Be: 0.1 μg/L, Bi: 0.5 μg/L, Ca: 10 μg/L, Cd: 0.1 μg/L, Ce: 0.1 μg/L, Co: 0.2 μg/L, Cr: 0.1 μg/L, Cs: 0.1 μg/L, Cu: 0.1 μg/L, Dy: 0.1 μg/L, Er: 0.1 μg/L, Fe: 5 μg/L, Ga: 0.3 μg/L, Gd: 0.1 μg/L, Ge: 0.3μg/L, Hf: 0.1 μg/L, Hg: 0.05 μg/L, Ho: 0.1 μg/L, In: 0.1 μg/L, Ir: 0.1 μg/L, K: 5 μg/L, La: 0.1 μg/L, Li: 1 μg/L, Lu: 0.1 μg/L, Mg: 1 μg/L, Mn: 0.1 μg/L, Mo: 0.3 μg/L, Na: 10 μg/L, Nd: 0.1 μg/L, Ni: 0.1 μg/L, P: 5 μg/L, Pb: 0.1 μg/L, Pd: 0.5 μg/L, Pr: 0.1 μg/L, Pt: 0.5 μg/L, Rb: 0.1 μg/L, Re: 0.1 μg/L, Rh: 0.1 μg/L, Ru: 0.2 μg/L, Sb: 0.2 μg/L, Sc: 5 μg/L, Se: 0.1 μg/L, Sm: 0.1 μg/L, Sn: 1 μg/L, Sr: 0.3 μg/L, Tb: 0.1 μg/L, Te: 2 μg/L, Th: 0.1 μg/L, Tl: 0.1 μg/L, Tm: 0.1 μg/L, U: 0.1 μg/L, V: 0.1 μg/L, W: 0.3 μg/L, Yb: 0.2 μg/L, Zn: 1 μg/L, Zr: 0.2 μg/L or more |
소재지 |
| ▶ 금속 및 관련제품 |
| ASTM E112-25 |
Standard Test Methods for Determining Average Grain Size |
(1 ~ 14) G |
소재지 |
| ISO 6507-1: 2023 |
Metallic materials — Vickers hardness test — Part 1: Test method |
HV 10 |
소재지 |
| BS EN ISO 6507-1: 2023 |
Metallic materials — Vickers hardness test Part 1: Test method |
HV 10 |
소재지 |
| ASTM E92-23 |
Standard Test Methods for Vickers Hardness and Knoop Hardness of Metallic Materials |
HV 10 |
소재지 |
| ISO 6508-1: 2023 |
Metallic materials — Rockwell hardness test — Part 1: Test method |
HRC |
소재지 |
| BS EN ISO 6508-1: 2023 |
Metallic materials — Rockwell hardness test Part 1: Test method |
HRC |
소재지 |
| ASTM E18-25 |
Standard Test Methods for Rockwell Hardness of Metallic Materials |
HRC |
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