| ▶ 금속 및 관련제품 |
| API 1104:2021 |
Welding of Pipelines and Related Facilities 5.6.2 Tensile Strength Test 5.6.3 Nick Break Test 5.6.4 Root and Face Bend Test 5.6.5 Side Bend Test 12.6.2 Tensile Strength Test 12.6.3 Root and Face Bend Test 12.6.4 Side Bend Test 10.3.6.3 Charpy Impact Tests 10.3.6.4 Hardness Tests |
Load: Max. 980 kN Distance between rollers: Max. 300 mm Plunger radius: Max. 50 mm Absorbed energy: (0 ~ 600) J Test temperature:(20 ~ -196) ℃ Lateral expansion: (0 ∼ 10) mm Shear Fracture Appearance: (0 ∼ 100) % HV 10 |
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| ASME BPVC Section Ⅸ:2023 |
Qualification Standard for Welding, Brazing, and Fusing Procedures; Welders; Brazers; and Welding, Brazing, and Fusing Operators QW-150 TENSION TESTS QW-160 GUIDED-BEND TESTS QW-171 TOUGHNESS TESTS QW-182 FRACTURE TESTS QW-472 FOR FERROUS METALS QW-473.1 Aluminum and Aluminum-Base Alloys QW-473.2 For Copper and Copper-Base Alloys: Cold Concentrated Nitric Acid QW-473.3 For Nickel and Nickel-Base Alloys QW-473.4 For Titanium |
Load: Max. 980 kN Distance between rollers: Max. 300 mm Plunger radius: Max. 50 mm Absorbed energy: Max. 600 J Test temperature: (-196 ~ 20) ℃ Lateral expansion: (0 ~ 10) mm Shear Fracture Appearance: (0 ~ 100) % |
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| ASTM A370-24 |
Standard Test Methods and Definitions for Mechanical Testing of Steel Products 14.2 Yield Strength 14.3 Tensile strength 14.4 Elongation 14.5 Reduction of Area 15 Bending test 26.4.1 Impact Energy 26.4.2 Fracture Appearance 26.4.3 Lateral Expansion |
Load: Max. 980 kN Elongation: Max. 300 mm Reduction of area: Max. 100 mm Distance between rollers: Max. 300 mm Plunger radius: Max. 50 mm Absorbed energy: Max. 600 J Test temperature: (-196 ~ 20) ℃ Shear Fracture Appearance: (0 ~ 100) % Lateral expansion: (0 ~ 10) mm |
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| ASTM E1820-24 |
Standard Test Method for Measurement of Fracture Toughness 3.2.5 crack-tip opeing Displacement (CTOD) 3.2.11 J-integral 3.2.32 stress-intensity factor |
Load: Max. 500 kN Notch Opening Displacement: (0 ~ 10) mm Test temperature: (-60 ~ 20) ℃ |
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| ASTM E190-21 |
Standard Test Method for Guided Bend Test for Ductility of Welds |
Distance between rollers: Max. 300 mm Plunger radius: Max. 50 mm |
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| ASTM E23-24 |
Standard Test Methods for Notched Bar Impact Testing of Metallic Materials 10.1 The absorbed energy 10.2 Lateral expansion measuremant 10.3 The shear fracture appearance |
Absorbed energy: Max. 600 J Test temperature: (-196 ~ 20) ℃ Lateral expansion: (0 ~ 10) mm shear Fracture Appearance: (0 ~ 100) % |
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| ASTM E340-23 |
Standard Practice for Macroetching Metals and Alloys 8.1 Aluminum 8.4 Copper and Copper Alloys 8.5 Iron and Steel 8.6 Stainless Steels and High-temperature Alloys 8.9 Nickel and Nickel Alloys |
Visual check |
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| ASTM E407-23 |
Standard Practice for Microetching Metals and Alloys - Aluminum Base - Copper Base - Iron & Steel Base - Nickel Base |
x50, x100, x200, x500 |
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| ASTM E8/E8M-24 |
Standard Test Methods for Tension Testing of Metallic Materials 7.7 Determination of Yield Strength 7.10 Tensile Strength 7.11 Elongation 7.12 Reduction of Area |
Load: Max. 980 kN Elongation: Max. 300 mm Reduction of area: Max. 100 mm |
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| ASTM E92-23 |
Standard Test Methods for Vickers Hardness and Knoop Hardness of Metallic Materials |
HV 1 ~ HV 20 |
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| AWS B4.0:2016 |
Standard Methods for Mechanical Testing of Welds 4. Tension Tests 5. Shear Tests 6. Bend tests 7. Fracture and Notch Toughness Tests 8. Hardness Tests 9.1 Nick-Break Test 9.2 Fillet Weld Break Test 10.6 Oblique Y-Groove Test |
Load: Max. 980 kN Elongation: Max. 300 mm Reduction of area: Max. 100 mm Distance between rollers: Max. 300 mm Plunger radius: Max. 50 mm Absorbed energy: Max. 600 J Test temperature: (-196 ~ 20) ℃ Lateral expansion: (0 ~ 10) mm shear Fracture Appearance: (0 ~100) % HV 1 ~ HV 20 |
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| AWS D1.1/D1.1M:2020 |
Structural Welding Code-Steel 6.10.3 Mechanical Testing 6.10.4 Macroetch Test 6.23.4 Fillet Weld Break Test 6.27 CVN Tests |
Load: Max. 980 kN Elongation: Max 300 mm Reduction of area: Max. 100 mm Distance between rollers: Max. 300 mm Plunger radius: Max. 50 mm Absorbed energy: Max. 600 J Test temperature:(-196 ~20) ℃ |
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| AWS D1.6:2017 AMD1 |
Structural Welding Code-Stainless Steel 4.6.3 Transverse Guided-Bend Tests (Root and Face Bend or Side Bend) 4.6.4 Longitudinal Bend Tests (Face and Root Guided Bend) 4.6.6 Section Tension Test 4.6.8 Macroetch Test 4.10.5 Fillet Weld Break Test |
Distance between rollers: Max. 300 mm Plunger radius: Max. 50 mm Load: Max. 980 kN Elongation: Max. 300 mm Reduction of area: Max. 100 mm
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| ISO 12135:2021 |
Metallic materials - Unified method of test for the determination of quasistatic fracture toughness 6.2 Determination of plane strain fracture toughness, KIc 6.3 Determination of fracture toughness in terms of δ 6.4 Determination of fracture toughness in terms of J |
Load: Max. 500 kN Notch Opening Displacement: (0 ~ 10) mm Test temperature: (-60 ~ 20) ℃ |
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| ISO 148-1:2016 |
Metallic materials-Charpy pendulum impact test-Part 1 : Test method |
Absorbed energy: Max. 600 J Test temperature: (-196 ~ 20) ℃ Lateral expansion: (0 ~ 10) mm Fracture appearance: (0 ~ 100) % |
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| ISO 15614-1:2017 |
Specification and qualification of welding procedures for metallic materials - Welding procedure test - Part 1: Arc and gas welding of steels and arc welding of nickel and nickel alloys 7.4.1 Transverse tensile test 7.4.2 Bend test 7.4.3 Macroscopic examination 7.4.4 Impact testing 7.4.5 Hardness testing |
Load: Max. 980 kN Distance between rollers: Max. 300 mm Former diameter: Max. 100 mm Absorbed energy: (0 ~ 600) J Test temperature:(20 ~ -196) ℃ Lateral expansion: (0 ∼ 10) mm Fracture appearance: (0 ∼ 100) % HV 10 |
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| ISO 15653:2018 |
Metallic materials - Method of test for the determination of quasistatic fracture toughness of welds 12.2.1 KIc 12.2.2 δ 12.2.3 J |
Load: Max. 500 kN Notch Opening Displacement: (0 ~ 10) mm Test temperature: (-60 ~ 20) ℃ |
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| ISO 17639:2022 |
Destructive tests on welds in metallic materials - Macroscopic and microscopic examination of welds |
x50, x100, x200, x500 |
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| ISO 4136:2022 |
Destructive tests on welds in metallic materials - Transverse tensile test |
Load: Max. 980 kN |
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| ISO 4969:2015 |
Steel - Etching method for macroscopic examination |
Visual check |
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| ISO 5173:2023 |
Destructive tests on welds in metallic materials - bend tests |
Distance between rollers: Max. 300 mm Former diameter: Max. 100 mm |
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| ISO 5178:2019 |
Destructive tests on welds in metallic materials - Longitudinal tensile test on weld metal in fusion welded joints |
Load: Max. 980 kN Elongation: Max. 300 mm Reduction of area: Max. 100 mm |
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| ISO 5817:2023 |
Welding - Fusion-welded joints in steel, nickel, titanium and their alloys (beam welding excluded) - Quality levels for imperfections |
Length: (0 ~ 100) mm |
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| ISO 6507-1:2023 |
Metallic materials-Vickers hardness test-Part 1 : Test method |
HV 1 ~ HV 20 |
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| ISO 6892-1:2019 |
Metallic materials-Tensile testing-Part 1 : Method of test at room temperature 3.4 Percentage elongation 3.8 Percentage reduction of area 3.10.1 Tensile strength 3.10.2 Yield strength 3.10.3 Proof strength, plastic extension |
Elongation: Max. 300 mm Reduction of area: Max. 100 mm Load: Max. 980 kN |
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| ISO 7438:2020 |
Metallic materials-Bend test 6.2 Bending device with supports and a former |
Distance between rollers: Max. 300 mm Former diameter: Max. 100 mm |
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| ISO 9015-1:2001 |
Destructive tests on welds in metallic materials - Hardness testing - Part 1: Hardness test on arc welded joints |
HV 5 ~ HV 10 |
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| ISO 9016:2022 |
Destructive tests on welds in metallic materials - Impact tests - Test specimen location, notch orientation and examination |
Absorbed energy: (0 ~ 600) J Test temperature:(20 ~ -196) ℃ Lateral expansion: (0 ∼ 10) mm Fracture appearance: (0 ∼ 100) % |
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| KS B 0802:2003 |
금속 재료 인장 시험 방법 7. c) 항복 강도 7. d) 내력 1)오프셋법 7. e) 인장 강도 7. h) 파단 연신율 7. k) 단면 수축률 |
하중: 최대 980 kN 연신율: 최대 300 mm 단면 수축률: 최대 100 mm |
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| KS B 0810:2003 |
금속 재료 충격 시험 방법 8. a) 흡수 에너지 8. c) 취성 파면율 8. e) 가로 변형량 |
흡수 에너지: 최대 600 J 시험 온도: (-196 ~ 20) ℃ 취성 파면율: (0 ~ 100) % 가로 변형량: (0 ~ 10) mm |
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| KS B 0811:2003 |
금속 재료의 비커스 경도 시험 방법 |
HV 1 ~ HV 20 |
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| KS B ISO 4136:2012 |
금속용접부 파괴시험 - 횡방향 인장시험 |
하중 : 최대 980 kN |
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| KS B ISO 5173:2009 |
금속 재료 용접부의 파괴 시험-굽힘 시험 |
롤러사이 거리: 최대 300 mm 포머 지름: 최대 100 mm |
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| KS B ISO 5178:2019 |
금속 재료 용접부의 파괴시험-용융 용접부의 종방향 인장시험 |
하중 : 최대 980 kN 연신 길이: 최대 300 mm 단면적 길이: 최대 100 mm |
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| KS B ISO 5817:2014 |
용접 - 강, 니켈, 타이타늄과 그 합금강에서 용융 용접 이음(빔 용접 제외) - 결함에 대한 품질 등급 |
길이: (0 ~ 100) mm |
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| KS B ISO 9016:2012 |
금속 재료 용접부의 파괴 시험 - 충격 시험 - 시험편의 위치, 노치 방향 및 검사 |
흡수에너지: (0 ~ 600) J 시험 온도: (20 ~ -196) ℃ 가로 변형량: (0 ∼ 10) mm 취성 파면율: (0 ∼ 100) % |
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| KS D 0210:1992 |
강의 매크로 조직 시험 방법 |
육안 확인 |
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| ▶ 철강 |
| ASTM A262-15 |
Standard Practices for Detecting Susceptibility to Intergranular Attack in Austenitic Stainless Steels 1.1.1 Practice A |
×50 ~ ×500 |
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| ASTM A923-23 |
Standard Test Methods for Detecting Detrimental Intermetallic Phase in Duplex Austenitic/Ferritic Stainless Steels Method C |
(0 ~ 300) g Test Temperature (5 ~ 80) ℃ |
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| ASTM E1086-22 |
Standard Test Method for Analysis of Austenitic Stainless Steel by Spark Atomic Emission Spectrometry |
Carbon: (0.005 ~ 0.25) Silicon: (0.141 ~ 0.90) Phosphorus: (0.008 ~ 0.06) Sulfur: (0.003 ~ 0.065) Chromium: (17.0 ~ 23.0) Manganese: (0.25 ~ 2.0) Nickel: (7.5 ~ 13.0) Copper: (0.01 ~ 0.30) Molybdenum: (0.05 ~ 3.0) |
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| ASTM E1245-03 |
Standard Practice for Determining the Inclusion or Second-Phase Constituent Content of Metals by Automatic Image Analysis |
(0 ~ 100) % |
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| ASTM E415-21 |
Standard Test Method for Analysis of Carbon and Low-Alloy Steel by Spark Atomic Emission Spectrometry |
Carbon: (0.02 ~ 1.1) Silicon: (0.02 ~ 1.44) Manganese: (0.03 ~ 2.0) Phosphorus: (0.006 ~ 0.074) Sulfur: (0.002 4 ~ 0.055) Nickel: (0.006 ~ 4.13) Chromium: (0.007 ~ 3.93) Molybdenum: (0.007 ~ 1.3) Copper: (0.006 ~ 0.5) Vanadium: (0.003 ~ 0.3) Cobalt: (0.006 ~ 0.20) Titanium: (0.001 ~ 0.2) Aluminum: (0.006 ~ 0.093) Niobium: (0.003 ~ 0.12) Boron: (0.000 4 ~ 0.006 9) |
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| ASTM E562-19ε1 |
Standard Test Method for Determining Volume Fraction by Systematic Manual Point Count |
(0 ~ 100) % |
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| ASTM G48-11ε1 |
Standard Test Methods for Pitting and Crevice Corrosion Resistance of Stainless Steels and Related Alloys by Use of Ferric Chloride Solution 8. Method A—Ferric Chloride Pitting Test 9. Method B—Ferric Chloride Crevice Corrosion Test 10. Method C—Critical Pitting Temperature Test for Nickel-Base and Chromium-Bearing Alloys 11. Method D—Critical Crevice Temperature Test for Nickel-Based and Chromium-Bearing Alloys 12. Method E-Critical Pitting Temperature Test for Stainless Steels 13. Method F-Critical Crevice Temperature Test for stainless steels |
(0 ~ 300) g (0 ~ 6.000) mm Test Temperature (5 ~ 80) ℃ |
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| KS D 0278:2020 |
염화철 용액에 의한 스테인리스강의 공식 및 틈새 부식 시험방법 8 방법 A - 염화철 공식 시험 9 방법 B - 염화철 틈새 부식 시험 10 방법 C - 니켈 합금 및 크롬 함유 합금의 임계 공식 온도 시험 11 방법 D - 니켈 합금 및 크롬 함유 합금의 틈새 부식 온도 시험 12 방법 E - 스테인리스강의 임계 공식 온도 시험 13 방법 F - 스테인리스강의 임계 틈새 부식 온도 시험 |
(0 ~ 300) g (0 ~ 6.000) mm 온도: (5 ~ 80) ℃ |
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| KS D 1652:2022 |
철 및 강 - 스파크 방전 원자 방출 분광 분석 방법 |
탄소: (0.005 ~ 1.1) 규소: (0.010 ~ 1.44) 망가니즈: (0.022 ~ 2.0) 인: (0.002 ~ 0.074) 황: (0.002 ~ 0.065) 니켈: (0.002 ~ 13.0) 크로뮴: (0.002 ~ 23.0) 몰리브데넘: (0.003 5 ~ 3.0) 구리: (0.001 3 ~ 0.5) 바나듐: (0.001 ~ 0.3) 코발트: (0.001 2 ~ 0.20) 타이타늄: (0.001 ~ 0.20) 알루미늄: (0.001 ~ 0.093) 나이오븀: (0.002 ~ 0.12) 붕소: (0.001 ~ 0.5) |
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