| ▶ 금속 및 관련제품 |
| ASME BPVC SEC I:2025 |
2025 ASME Boiler & Pressure Vessel Code I RULE FOR CONSTRUCTION OF POWER BOILERS
PW-53.7 TENSION TESTS PW-53.8 BEND TESTS |
- Tension Test (PW-53.7) - Load: (5 ~ 1 000) kN Elongation / Reduction Area: (1 ~ 100%) - Bend Test (PW-53.8) - Load: (5 ~ 1 000) kN |
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| ASME BPVC SEC IX:2025 |
2025 ASME Boiler & Pressure Vessel Code IX Qualification Standard for Welding, Brazing, and Fusing, Procedures; Welders; Brazers; and Welding, Brazing, and Fusing Operators Part QW WELDING ARTICLE I WELDING GENERAL REQUIREMENTS QW-182 FRACTURE TESTS QW-192 STUD-WELD TESTS QW-193 TUBE-TO TUBESHEET TESTS QW-196 RESISTANCE WELD TESTING |
Fracture Test (QW-182) Load: (5 ~ 1 000) kN
Tenstion Tets (QW-192) Load: (5 ~ 1 000) kN |
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| ASME BPVC SEC VIII Div.1:2025 |
2025 ASME Boiler & Pressure Vessel Code VIII RULES FOR CONSTRUCTION OF PRESSURE VESSELS DIVISION 1
UG-84 CHARPY IMPACT TESTS A-3 SHEAR LOAD TESTS |
Charpy Impact Test (UG-84) Absorbed Energy: Max. 500 J Temp. -196 ℃ ~ R.T. Lateral Expansion: (0.01 ~ 5) mm Shear area: Max. 100 %
A-3 Shear Load Test Test Load: (5 ~ 950 kN) |
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| ASME BPVC SEC.II-A SA370:2025 |
2025 ASME Boiler & Pressure Vessel Code II Materials Part A Ferrous Material Specification SA370 TEST METHODS AND DEFINITIONS FOR MECHANICAL TESTING OF STEEL PRODUCTS |
- Tension Test - Load: (5 ~ 1 000) kN Elongation / Reduction Area: (1 ~ 100) % - Bend Test - Load: (5 ~ 1 000) kN - Hardness Test - Brinell(Load): (4 903 ~ 29 420) N Rockwell(Scale): B, C - Impact Test - Absorbed Energy: Max. 500 J Temperature: -196 ℃ ~ R.T. Lateral Expansion: (0.01 ~ 5) mm - Flattening Test/Flaring Test - Load: (5 ~ 1 000) kN |
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| ASME BPVC SEC.IX:2025 |
2025 ASME Boiler & Pressure Vessel Code IX Qualification Standard for Welding, Brazing, and Fusing, Procedures ; Welders ; Brazers ; and Welding, Brazing, and Fusing Operators - PART QW WELDING ARTICLE 1 WELDING GENERAL REQUIREMENTS QW-150 TENSION TEST QW-160 GUIDED-BEND TEST QW-170 NOTCH-TOUGHNESS TEST QW-470 ETCHING - PROCESS AND REAGENTS QW-472 FOR FERROUS METALS QW-473 FOR NONFERROUS METALS |
- Tension Test - Load: (5 ~ 1 000) kN Elogation/Reduction Area: (1 ~ 100) % - Bend Test - Load: (5 ~ 1 000) kN - Impact Test - Absorbed Energy: Max. 500 J Temperature: -196 ℃ ~ R.T. Lateral Expansion: (0.01 ~ 5) mm Shear area: Max. 100 % |
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| ASTM A1016/A1016M-24a |
Standard Specification for General Requirements for Ferritic Alloy Steel, Austenitic Alloy Steel, and Stainless Steel Tubes |
Load: (5 ~ 950) kN |
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| ASTM A247-24 |
Standard Test Method for Evaluating the Microstructure of Graphite in Iron Castings |
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| ASTM A255-20a |
Standard Test Methods for Determining Hardenability of Steel |
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| ASTM A262-15(2021) |
Standard Practices for Detecting Susceptibility to Intergranular Attack in Austenitic Stainless Steels
PRACTICE A - OXALIC ACID ETCH TEST FOR CLASSIFICATION OF ETCH STRUCTURES OF AUSTENITIC STAINLESS STEELS
PRACTICE B—FERRIC SULFATE–SULFURIC ACID TEST FOR DETECTING SUSCEPTIBILITY TO INTERGRANULAR ATTACK IN AUSTENITIC STAINLESS STEELS
PRACTICE C—NITRIC ACID TEST FOR DETECTING SUSCEPTIBILITY TO INTERGRANULAR ATTACK IN AUSTENITIC STAINLESS STEELS
PRACTICE E - COPPER-COPPER SULFATE-16 % SULFURIC ACID TEST FOR DETECTING SUSCEPTIBILITY TO INTERGRANULAR ATTACK IN AUSTENITIC STAINLESS STEELS |
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| ASTM A370-24a |
Standard tests Methods and Definitions for Mechanical Testing of Steel Products - TENSION TEST - BEND TEST - HARDENSS TEST 17. Brinell Test 18. Rockwell Test(Scale: B, C) - CHARPY IMPACT TESTING A2.5.1.1 Flattening Test A2.5.1.4 Flange Test |
- Tension Test - Load: (5 ~ 1 000) kN Elongation / Reduction Area (1 ~ 100) % - Bend Test - Load: (5 ~ 1 000) kN - Hardness Test - Brinell(Load): (4 903 ~ 29 420) N Rockwell(Scale): B, C - Impact Test - Absorbed Energy: Max. 500 J Temperature: -196 ℃ ~ R.T. Lateral Expansion: (0.01 ~ 5) mm Percent of shear fracture : (0 ~ 100) % - Flattening Test/Flaring Test - Load: (5 ~ 1 000) kN |
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| ASTM A530/A530M-18 |
Standard Specification for General Requirements for Specialized Carbon and Alloy Steel Pipe |
Load: (5 ~ 950) kN |
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| ASTM A923-25 |
Standard Test Methods for Detecting Detrimental Intermetallic Phase in Duplex Austenitic/Ferritic Stainless Steels
TEST METHOD A SODIUM — HYDROXIDE ETCH TEST FOR CLASSIFICATION OF ETCH STRUCTURES OF DUPLEX STAINLESS STEELS
TEST METHOD B CHARPY IMPACT TEST FOR CLASSIFICATION OF STRUCTURES OF DUPLEX STAINLESS STEELS
TEST METHOD C—FERRIC CHLORIDE CORROSION TEST FOR CLASSIFICATION OF STRUCTURES OF DUPLEX STAINLESS STEELS |
Test Method B Charpy Impact Test Absorbed Energy: Max. 500 J Temperature: -196 ℃ ~ R.T. |
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| ASTM A999/A999M-23 |
Standard Specification for General Requirements for Alloy and Stainless Steel Pipe |
Load: (5 ~ 950) kN |
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| ASTM E10-23 |
Standard Test Method for Brinell Hardness of Metallic Materials |
Load: (4 903 ~ 29 420) N |
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| ASTM E112-25 |
Standard Test Methods for Determining Average Grain Size |
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| ASTM E1181-02(2023) |
Standard Test Methods for Characterizing Duplex Grain Sizes |
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| ASTM E18-25 |
Standard Test Method for Rockwell Hardness of Metallic Materials (Scale: B, C) |
Scale: B (30 ~100) HRB Scale: C (20 ~ 70) HRC |
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| ASTM E190-21 |
Standard Test Method for Guided Bend Test for Ductility of Welds |
Load: (5 ~ 1 000) kN |
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| ASTM E21-20 |
Standard Test Methods for Elevated Temperature Tension Tests of Metallic Materials |
Load: (5 ~ 200) kN Elongation/Reduction of Area: (1 ~ 100) % Elongation at Fracture: (1 ~ 50) % Temperature: R.T. ~ 1 000 °C |
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| ASTM E23-25 |
Standard Test Methods for Notched Bar Impact Testing of Metallic Materials |
- Impact Test - Absorbed Energy: Max. 500 J Temperature: -196 ℃ ~ R.T. Lateral Expansion: (0.01 ~ 5) mm Percent of shear fracture: (0 ~ 100) % |
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| ASTM E290-22 |
Standard Test Methods for Bend Testing of Material for Ductility |
Load: (5 ~ 1 000) kN |
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| ASTM E340-23 |
Standard Practice for Macroetching Metals and Alloys |
Magnification: (~ x40) |
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| ASTM E381-22 |
Standard Method of Macroetch Testing Steel Bars, Billets, Blooms and Forgings |
Magnification: (~ x40) |
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| ASTM E384-22 |
Standard Test Method for Microindentation Hardness of Materials |
(0.098 ~ 9.8) N |
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| ASTM E407-23 |
Standard Practice for Microetching Metals and Alloys |
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| ASTM E45-25 |
Standard Test Method for Determining the Inclusion Content of Steel 12. Method A (Worst Fields) 13. Method B (Length) 14. Method C (Oxides and Silicates) 15. Method D (Low Inclusion Content) |
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| ASTM E562-19e1 |
Standard Test Method for Determining Volume Fraction by Systematic Manual Point Count |
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| ASTM E8/E8M-25 |
Standard Test Methods for Tension Testing of Metallic Materials |
Load: (5 ~ 1 000) kN Elongation / Reduction Area: (1 ~ 100) % |
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| ASTM E92-23 |
Standard Test Methods for Vickers Hardness and Knoop Hardness of Metallic Materials |
HV 5, HV 10 |
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| ASTM F2328M-17(2022) |
Standard Test Method for Determining Decarburization and Carburization in Hardened and Tempered Threaded Steel Bolts, Screws, Studs, and Nuts (Metric) |
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| ASTM G28-24 |
Standard Test Methods for Detecting Susceptibility to Intergranular Corrosion in Wrought, Nickel-Rich, Chromium-Bearing Alloys
Method A-Ferric Sulfate-Sulfuric Acid Test |
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| ASTM G48-11(2020)e1 |
Standard Test Methods for Pitting and Crevice Corrosion Resistance of Stainless Steels and Related Alloys by Use of Ferric Chloride Solution
Method A Ferric Chloride Pitting Test |
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| AWS B4.0:2016 |
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 7.7.1. (2) Charpy V-notch 8. Hardness Tests 9. Break Tests |
4. Tension Tests Test Load: (5 ~ 950) kN Elongration/Reduction of Area: (1 ~ 100) % Elongration at Fracture: (1 ~ 50) % 5. Shear Tests Load: (5 ~ 950) kN 6. Bend Tests Load: (5 ~ 950) kN 7. Fracture Toughness Tests 7.7.1. (2) Charpy V-notch Absorb Energy: Max 434 J, Temperature: R.T. -196 ~ ℃ Lateral Expansion: (0.01 ~ 5) mm, % Shear area: Max. 100 % 8. Hardness Tests Brinell: Test Load (9 800 ~ 29 420) N, Rockwell: Scale B, C Vickers: HV 10 Microhardness: HV 0.01 ~ HV 0.5 |
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| AWS D1.1/D1.1M:2025 |
AWS D1.1/D1.1M: 2025 Structural Welding Code - Steel
6.10.3 Mechanical Testing, Bend Tests, Tension Test 6.10.4 Macroetch test 6.27 CVN Tests |
[6.10.3 Mechanical Testing] - Bend test: (5 ~ 950) kN - Tension Test - Load: (5 ~ 950) kN Elongation/Reduction of Area: (1 ~ 100) %
[6.10.4 Macroetch Test] 6.27 [CVN Testing Absorbed Energy: Max. 434 J Temperature: -196 ℃ ~ R.T. Lateral Expansion: (0.01 ~ 5) mm, % Shear area: Max. 100 % |
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| ISO 148-1:2016 |
Metallic materials - Charpy pendulum impact test - Part 1: test method |
Absorbed Energy: Max 500 J Temperature: -196 ℃ ~ R.T. Lateral Expansion: (0.01 ~ 5) mm |
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| ISO 17639:2022 |
Destructive tests on welds in matallic materials - Macroscopic and microscopic examination of welds |
Magnification: (~ x40) |
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| ISO 17781:2017 |
Petroleum, petrochemical and natural gas industriesTest methods for quality control of microstructure of ferritic/austenitic(duplex) stainless steels 5.2 Microstructural examination 5.3 Ferrite content measurement 5.4 Charpy V-notch impact toughness test 5.5 Corrosion test |
Absorbed Energy: Max. 500 J Temperature: -196 ℃ ~ R.T. Lateral Expansion: (0.01 ~ 5) mm Percent of shear fracture : (0 ~ 100) % |
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| ISO 3651-2:1998 |
Determination of resistance to intergranular corrosion of stainless steels — Part 2: Ferritic,austenitic and ferritic-austenitic (duplex) stainless steels — Corrosion test in media containing sulfuric acid |
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| ISO 4136:2022 |
Destructive tests on welds in metallic materials - Transverse tensile test |
Load: (5 ~ 1 000) kN |
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| ISO 4967:2013 |
Steel - Determination of content of non-metallic inclusions - Micrographic method using standard diagrams |
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| ISO 5173:2023 |
Destructive Tests on welds in metallic materials - Bend tests |
Load: (5 ~ 1 000) kN |
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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: (5 ~ 1 000) kN Elongation / Reduction of Area: (1 ~ 100) % |
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| ISO 643:2024 |
Steels — Micrographic determination of the apparent grain size |
Magnification: ( x 50, x100, x200, x500)
|
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| ISO 6506-1:2014 |
Metallic materials - brinell hardness test - Part 1: test method |
Load: (4 903 ~ 29 420) kN |
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| ISO 6507-1:2023 |
Metallic materials - Vickers hardness test - Part 1: test method |
HV 5, HV 10 |
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| ISO 6508-1:2023 |
Metallic materials - Rockwel hardness test - Part 1: test method |
Scale: B, C |
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| ISO 6892-1:2019 |
Metallic materials - Tensile testing - Part 1: Method of test at room temperature |
Load: (5 ~ 1 000) kN |
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| ISO 6892-2:2018 |
Metallic materials — Tensile testing — Part 2: Method of test at elevated temperature |
Load: (5 ~ 200) kN Elongation/Reduction of Area: (1 ~ 100) % Elongation at Fracture: (1 ~ 50) % Temperature: R.T. ~ 1 000 °C |
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| ISO 7438:2020 |
Metallic materials - Bend test |
Load: (5 ~ 1 000) kN |
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| ISO 8492:2013 |
Metallic materials - Tube - Flattening test |
Max. (5 ~ 950) kN |
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| ISO 8493:1998 |
Metallic materials - Tube - Drift - expanding test |
Max. (5 ~ 950) kN |
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| ISO 8494:2013 |
Metallic materials — Tube — Flanging test |
Load: (5 ~ 950) kN |
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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 |
-Impact Test- Absorbed Energy: Max. 500 J Temperature: -196 ℃ ~ R.T. Lateral Expansion: (0.01 ~ 5 ) mm Shear area: Max. 100 % |
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| ISO 9017:2017 |
Destructive tests on welds in metallic materials — Fracture test |
Load: (5 ~ 950) kN |
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| ISO 945-1:2019 |
Microstructure of cast irons - Part 1: Graphite classification by visual analysis |
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| JIS G 0551:2020 |
Steels-Micrographic determination of the apparent grain size |
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| JIS G 0553:2019 |
Steel - Macroscopic examination by etching |
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| JIS G 0555:2023 |
Microscopic testing method for the non-metallic inclusions in steel |
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| JIS G 0557:2025 |
Methods of measuring case depth hardened by carburizing treatment for steel |
(0 ~ 25) mm Scale: 0.001 mm |
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| JIS G 0567:2020 |
Method of elevated temperature tensile test for steels and heat-resisting alloys |
Load: (5 ~ 200) kN Elongation/Reduction of Area: (1 ~ 100) % Elongation at Fracture: (1 ~ 50) % Temperature: R.T. ~ 1 000 °C |
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| JIS G 3454:2017 |
Carbon steel pipes for pressure service 6.2 Flattening Test |
Load: (5 ~ 1 000) kN |
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| JIS G 3459:2021 |
Stainless steel pipes 13.2.4 Flattening Test |
Load: (5 ~ 1 000) kN |
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| JIS G 5502:2022 |
Spheroidal graphite iron castings 12.6 Test for Determination of Spheroidal Graphite rate |
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| JIS Z 2241:2022 |
Metallic materials - Tensile testing - Method of test at room temperature |
Load: (5 ~ 1 000) kN Elogation/Reduction Area: (1 ~ 100)% |
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| JIS Z 2242:2023 |
Method for charpy pendulum impact test of metallic materials |
Absorbed Energy: Max. 500 J Temperature: -196 ℃ ~ R.T. Lateral Expansion: (0.01 ~ 5) mm Percent of shear area: (0 ~ 100) % |
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| JIS Z 2243-1:2018 |
Brinell hardness test - Part 1: Test Method |
Load: (4 903 ~ 29 420) N |
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| JIS Z 2244-1:2024 |
Vickers hardness test - Part 1: Test Method (HV 5, HV 10) |
HV 5, HV 10 |
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| JIS Z 2245:2021 |
Rockwell hardness test - Test Method (Scale: B, C) |
Scale: B, C |
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| JIS Z 2248:2022 |
Metallic materials-Bend test |
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| JIS Z 3121:2013 |
Methods of tensile test for butt welded joints |
Load: (5 ~ 1 000) kN |
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| JIS Z 3122:2013 |
Methods of bend test for butt welded joint |
Load: (5 ~ 1 000) kN |
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| JIS Z 3128:2017 |
Sampling method of impact test specimen from welded Joint |
Max. 500 J |
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| KS B 0802:2003 |
금속 재료 인장 시험 방법 |
하중: (5 ~ 1 000) kN 연신율 / 단면수축율: (1 ~ 100) % |
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| KS B 0804:2001 |
금속 재료 굽힘 시험 |
하중: (5 ~ 1 000) kN |
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| KS B 0805:2000 |
금속 재료의 브리넬 경도 시험 방법 |
하중: (4 903 ~ 29 420) N |
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| KS B 0806:2000 |
금속 재료의 로크웰 경도 시험 방법 |
스케일: B (30 ~ 100) HRB 스케일: C (20 ~ 70) HRC |
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| KS B 0810:2003 |
금속 재료 충격 시험 방법 |
흡수에너지: 최대 500 J 온도: -196 ℃ ~ 상온 가로변형량: (0.01 ~ 5) mm |
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| KS B 0811:2003 |
금속 재료의 비커스 경도 시험 방법 |
HV 5, HV 10 |
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| KS B 0821:2022 |
융착 금속의 인장 및 충격 시험방법 |
- 인장 시험 - 하중: (5 ~ 1 000) kN 연신율 / 단면수축율 (1 ~ 100) %
- 충격 시험 - 흡수에너지: 최대 500 J 온도: -196 ℃ ~ 상온 가로 변형량: (0.01 ~ 5) mm 전단 파면율: 최대 100 % |
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| KS B ISO 4136:2012 |
금속용접부 파괴시험 — 횡방향 인장시험 |
하중: (5 ~ 1 000) kN |
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| KS B ISO 5173:2009 |
금속 재료 용접부의 파괴 시험 — 굽힘 시험 |
하중: (5 ~ 1 000) kN |
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| KS B ISO 5178:2019 |
금속 재료 용접부 파괴 시험 - 용융 용접부의 종방향 인장 시험 |
하중: (5 ~ 1 000) kN 연신율 / 단면수축율: (1 ~ 100) % |
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| KS B ISO 8492:1998 |
금속 재료 - 관 - 편평 시험 |
하중: (5 ~ 950) kN |
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| KS B ISO 8493:1998 |
금속 재료 - 관 - 압입 확관 시험 |
하중: (5 ~ 950) kN |
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| KS B ISO 8494:1998 |
금속 재료 - 관 - 플랜지 성형 시험 |
하중: (5 ~ 950) kN |
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| KS B ISO 9016:2012 |
금속 재료 용접부의 파괴 시험 — 충격 시험 — 시험편의 위치, 노치 방향 및 검사 |
- 충격 시험 - 흡수에너지: 최대 500 J 온도: -196 ℃ ~ 상온 가로 변형량: (0.01 ~ 5) mm 전단 파면율: 최대 100 % |
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| KS D 0026:2002 |
철강 재료 및 내열 합금의 고온인장 시험방법 |
하중: (5 ~ 200) kN 연신율/단면수축률: (1 ~ 100) % 파단연신율: (1 ~ 50) % 온도: 상온 ~ 1 000 °C |
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| KS D 0027:2002 |
강의 화염 경화 및 고주파 경화 경화층 깊이 측정 방법 |
(0 ~ 25) mm 분해능: 0.001 mm |
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| KS D 0204:2007 |
강의 비금속 개재물 측정 방법 - 표준 도표를 이용한 현미경 시험방법 |
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| KS D 0205:2002 |
강의 페라이트 및 오스테나이트 결정 입도 시험법(현미경 관찰법) 6.2 횡단 선분에 의한 결정입도의 표시 |
강의 페라이트, 결정입도, 배율: (x 50, x 100, x 200, x 500)
|
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| KS D 0206:2002 |
강의 한쪽 끝 퀜칭에 의한 경화능 시험 방법 (조미니 시험) |
- |
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| KS D 0210:1992 |
강의 매크로 조직 시험 방법 |
배율: (~ x40) |
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| KS D 0215:2000 |
침탄 경화된 강의 유효 경화층 깊이 측정 및 검증 방법 |
(0 ~ 25) mm 분해능: 0.001 mm |
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| KS D 0216:2001 |
강의 탈탄층 깊이 측정 방법 6.1 현미경에 의한 측정 방법 6.2 경도 시험에 따른 측정 방법 |
(0 ~ 25) mm 분해능: 0.001 mm |
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| KS D 0219:2020 |
스테인리스강의 염화제2철 부식 시험방법 6.1 염화제2철 부식 시험 방법 - 시험 방법(A) |
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| KS D 0225:2005 |
스테인리스강의 10 % 옥살산 부식 시험 방법 |
- |
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| KS D 0274:1993 |
철강의 질화층 깊이 측정 방법 |
(0 ~ 25) mm 분해능: 0.001 mm |
소재지 |
| ▶ 철강 |
| ASTM A751-21 |
Standard Test Methods and Practices for Chemical Analysis of Steel Products |
탄소(C) : (0.003 ~ 1.08) % 규소(Si) : (0.002 ~ 1.513) % 황(S) : (0.001 1 ~ 0.315) % 인(P) : (0.000 7 ~ 0.140) % 망가니즈(Mn) : (0.003 ~ 2.40) % 니켈(Ni) : (0.015 ~ 29.6) % 크로뮴(Cr) : (0.023 6 ~ 27.44) % 몰리브데넘(Mo) : (0.001 2 ~ 4.99) % 구리(Cu) : (0.007 ~ 0.42) % 알루미늄(Al) : (0.001 ~ 1.648) % 바나듐(V) : (0.001 ~ 0.236) % |
소재지 |
| ASTM E1019-24 |
Standard Test Methods for Determination of Carbon, Sulfur, Nitrogen, and Oxygen in Steel, Iron, Nickel, and Cobalt Alloys by Various Combustion and Inert Gas Fusion Techniques |
질소(N) : (0.001 ~ 0.07)% |
소재지 |
| ASTM E1086-22 |
Standard Test Method for Analysis of Austenitic Steel by Spark Atomic Emission Spectrometry |
탄소(C) : (0.009 0 ~ 0.161) % 규소(Si) : (0.307 ~ 0.90) % 황(S) : (0.003 ~ 0.028 8 ) % 인(P) : (0.004 ~ 0.140) % 망가니즈(Mn) : (0.61 ~ 1.92) % 니켈(Ni) : (7.5 ~ 11.99) % 크로뮴(Cr) : (17.0 ~ 22.47) % 몰리브데넘(Mo) : (0.01 ~ 3.0) % 구리(Cu) : (0.012 1 ~ 0.30) % |
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| ASTM E415-21 |
Standard Test Method for Analysis of Carbon and Low-Alloy Steel by Spark Atomic Emission Spectrometry |
탄소(C) : (0.02 ~ 1.08) % 규소(Si) : (0.02 ~ 1.5) % 황(S) : (0.002 ~ 0.050) % 인(P) : (0.006 ~ 0.085) % 망가니즈(Mn) : (0.03 ~ 2.0) % 니켈(Ni) : (0.016 ~ 5.0) % 크로뮴(Cr) : (0.026 ~ 8.14) % 몰리브데넘(Mo) : (0.037 ~ 0.6) % 구리(Cu) : (0.008 ~ 0.308) % 알루미늄(Al) : (0.006 ~ 0.093) % 바나듐(V) : (0.003 ~ 0.3) % |
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| JIS G 1253:2002 |
Iron and steel-Method for spark discharge atomic emission spectrometric analysis |
탄소(C) : (0.003 ~ 1.08) % 규소(Si) : (0.002 ~ 1.513) % 황(S) : (0.001 1 ~ 0.315) % 인(P) : (0.000 7 ~ 0.140) % 망가니즈(Mn) : (0.003 ~ 2.40) % 니켈(Ni) : (0.015 ~ 29.6) % 크로뮴(Cr) : (0.023 6 ~ 27.44) % 몰리브데넘(Mo) : (0.001 2 ~ 4.99) % 구리(Cu) : (0.007 ~ 0.34) % 알루미늄(Al) : (0.001 ~ 1.648) % 바나듐(V) : (0.001 ~ 0.236) % |
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| KS D 1652:2022 |
철 및 강의 스파크 방전원자 방출분광 분석방법 |
탄소(C) : (0.003 ~ 1.08) % 규소(Si) : (0.002 ~ 1.513) % 황(S) : (0.001 1 ~ 0.315) % 인(P) : (0.000 7 ~ 0.140) % 망가니즈(Mn) : (0.003 ~ 2.40) % 니켈(Ni) : (0.015 ~ 29.6) % 크로뮴(Cr) : (0.023 6 ~ 27.44) % 몰리브데넘(Mo) : (0.001 2 ~ 4.99) % 구리(Cu) : (0.007 ~ 0.42) % 알루미늄(Al) : (0.001 ~ 1.648) % 바나듐(V) : (0.001 ~ 0.236) % |
소재지 |