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인정번호 (Accreditation No) KT815
기관명
(Organization Name)
터보파워텍(주)
공인유효기간 2022-11-05 ~ 2026-11-04
주소 부산광역시 사하구 다산로 107
소재지 부산광역시 사하구 다산로 107
담당자 이가영
전화 번호 051-290-4289
팩스 번호 051-290-4298
인정범위 화학시험
인정범위 역학시험
규격번호
(Test method)
규격명
(Standard designation)
시험범위
(Test Range)
사업장
(Site)
▶ 금속 및 관련제품
ASME BPVC SEC Ⅱ SA370:2023 TEST METHODS AND DEFINITIONS FOR MECHANICAL TESTING OF STEEL PRODUCTS
13.1 TENSILE TEST - Yield Point,
13.2 TENSILE TEST - Yield Strength,
13.3 TENSILE TEST - Tensile Strength,
13.4 TENSILE TEST - Elongation,
13.5 TENSILE TEST - Reduction Area,
14. BEND TEST,
16. HARDNESS TEST - Brinell Test,
17. HARDNESS TEST - Rockwell Test,
25.4.1 CHARPY IMPACT TESTING - Impact energy,
25.4.2 CHARPY IMPACT TESTING - Percentage of Shear Fracture Area,
25.4.3 CHARPY IMPACT TESTING - Lateral Expansion,
- A2.2 Tension Test,
- A2.5.1.1 Flattening Test,
- A2.5.1.2 Reverse Flattening Test,
- A2.5.1.5 Flaring Test,
- A2.5.1.6 Bend Test,
- A2.5.1.7 Transverse Guided Bend Test of Welds
[Tension Test]
Yield point : Max. 950 kN,
Yield Strength : Max. 950 kN,
Tensile Strenth : Max. 950 kN,
Elongation : (0 ~ 100) %,
Reduction Area : (0 ~ 100) %,
[Hardness Test]
Brinell : (4 903 ~ 29 420) N,
Rockwell :
Scale B : 20 ~ 100,
Scale C : 20 ~ 70,
[Charpy Impact Test]
Absorbed Energy : Max. 400 J,
Temperature : Room Temp. ~ -196 ℃,
Lateral Expansion : (0 ~ 10) mm,
Percentage of Shear Fracture Area : (0 ~ 100) %,
[Bend Test]
Load : Max. 950 kN,
[Flattening/Flaring Test]
Load : Max. 950 kN
소재지
ASME BPVC SEC Ⅱ SA530/SA530M:2023 ASME Boiler & Pressure Vessel Code Ⅱ Materials
Part A Ferrous Material Specifications SA530/SA530M SPECIFICATION FOR GENERAL REQUIREMENTS FOR SPECIALIZED CARBON AND ALLOY STEEL PIPE
19. Flattening Test Requirements
Test Load : Max. 950 kN 소재지
ASME BPVC SEC Ⅱ SA999/SA999M:2023 ASME Boiler & Pressure Vessel Code Ⅱ Materials
Part A Ferrous Material Specifications SA 999/SA-999M SPECIFICATION FOR GENERAL REQUIREMENTS FOR ALLOY AND STAINLESS STEEL PIPE
21. Flattening Test Requirements
Test Load : Max. 950 kN 소재지
ASME BPVC SECⅠ:2023 ASME Boiler & Pressure Vessel Code Ⅰ
RULES FOR CONSTRUCTION OF POWER BOILERS
PW-53.7 TENSION TESTS
PW-53.8 BEND TESTS
PW-53.7 Tension Test
Test Load : Max. 950 kN,
Elongation/Reduction of Area : (1 ~ 100) %,
Elongation at Fracture : (1 ~ 50) %,
PW-53.8 Bend Test
Test Load : (5 ~ 950) kN
소재지
ASME BPVC Section Ⅸ:2023 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 TESTS,
QW-160 GUIDED BEND TESTS
QW-170 NOTCHTOUGHNESS TESTS
QW-182 FRACTURE TESTS
QW-470 ETCHING PROCESS AND REAGENTS
QW-472 FOR FERROUS METALS
QW-473 FOR NONFERROUS METALS
QW-150 Tensile test - Test load : Max. 950 kN,
QW-160 Guided-bend test - Load : Max. 950 kN,
QW-170 Charpy Impact Test - Absorbed Energy : Max. 400 J,
Temperature : Room Temp. ~ -196 ℃,
Lateral Expansion : (0 ~ 10) mm,
Percentage Shear area : (0 ~ 100) %
QW-182 Fracture test - Load : Max. 950 kN
소재지
ASTM A1016/A1016M-24a Standard Specification for General Requirements for Ferritic Alloy Steel, Austenitic Alloy Steel, and Stainless Steel Tubes
19. Flattening Test
20. Reverse Flattening Test
Test Load : Max. 950 kN 소재지
ASTM A247-24 Standard Test Method for Visual Evaluation of Graphite in Iron Castings - 소재지
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
- 소재지
ASTM A370-24a STANDARD TEST METHODS AND DEFINITIONS FOR MECHANICAL TESTING OF STEEL PRODUCTS
14.1 TENSION TEST - Yield Point,
14.2 TENSION TEST - Yield Strength,
14.3 TENSION TEST - Tensile Strength,
14.4 TENSION TEST - Elongation,
14.5 TENSION TEST - Reduction of Area,
15. BEND TEST,
17. HARDNESS TEST - Brinell Test,
18. HARDNESS TEST - Rockwell Test,
26.4.1 CHARPY IMPACT TESTING - Impact energy,
26.4.2 CHARPY IMPACT TESTING - Percentage of Shear Fracture Area,
26.4.3 CHARPY IMPACT TESTING - Lateral Expansion
A2.2 Tension Test
A2.3.1.1 Flattening Test
A2.5.1.2 Reverse Flattening Test
A2.3.1.5 Flaring Test
A2.5.1.7 Transverse Guided Bend Test of Welds
[Tension Test]
Yield Point : Max. 950 kN,
Yield Strength : Max. 950 kN,
Tensile Strength : Max. 950 kN,
Elongation : (0 ~ 100) %,
Reduction of Area : (0 ~ 100) %,
[Hardness Test]
Brinell : (4 903 ~ 29 420) N,
Rockwell :
Scale B : 20 ~ 100,
Scale C : 20 ~ 70,
[Bend Test]
Test Load : Max. 950 kN,
[Charpy Impact Test]
Absorbed Energy : Max. 400 J,
Temperature : Room Temp. ~ -196℃,
Lateral Expansion : (0 ~ 25) mm,
Percentage of Shear Fracture Area : (0 ~ 100) %
-Flattening/Flange/Flaring Test Load : Max. 930 kN
소재지
ASTM A530/A530M-18 Standard Specification for General Requirements for Specialized Carbon and Alloy Steel Pipe
21. Flattening Test Requirements
Test Load : Max. 950 kN 소재지
ASTM A770/A7770M-03(2018) Standard Specification for Trough -Thickness Tension Testing of steel plate for special Applications Test Load : Max. 950 kN,
Reduction of area : (0 ~ 100) %
소재지
ASTM A923-23 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 Absorb Energy : Max. 400 J
Temperature : Room Temperature ~ -196 ℃
소재지
ASTM A999/A999M-23 Standard Specification for General Requirements for Alloy and Stainless Steel Pipe
21. Flattening Test Requirements
Test Load : Max. 950 kN 소재지
ASTM B557-15(2023) Standard Test Methods for Tension Testing Wrought and Cast Aluminum and Magnesium-Alloy Products Tensile Strength : Max. 950 kN,
Yield Strength : Max. 950 kN,
Elongation : (0 ~ 100) %,
Reduction of Area : (0 ~ 100) %
소재지
ASTM E10-23 Standard Test Method for Brinell Hardness of Metallic Materials Test Load : (4 903 ~ 29 420) N 소재지
ASTM E112-24 Standard Test Methods for Determining Average Grain Size - 소재지
ASTM E1181-02(2023) Standard Test Methods for Characterizing Duplex Grain Sizes - 소재지
ASTM E139-24 Standard Test Methods for Conducting Creep, Creep-Rupture, and Stress-Rupture Tests of Metallic materials Max. Temp. : 1 000 ℃,
Max. Load : 4 000 kg,
Elongation : (0 ~ 100) %,
Reduction of Area : (0 ~ 100) %
소재지
ASTM E18-24 Standard Test Method for Rockwell Hardness of Metallic Materials Scale B : 20 ~ 100,
Scale C : 20 ~ 70
소재지
ASTM E190-21 Standard Test Method for Guided Bend Test for Ductility of Welds Test Load : Max. 950 kN 소재지
ASTM E21-20 Standard Test Methods for Elevated Temperature Tension Tests of Metallic Materials Tensile Strength : Max. 95 kN,
Yield Strength : Max. 95 kN,
Elongation : (0 ~ 100) %,
Reduction of Area : (0 ~ 100) %,
Test Temperature : Room Temperature ~ 1 000 ℃
소재지
ASTM E23-24 Standard Test Methods for Notched Bar Impact Testing of Metallic Materials Absorbed Energy : Max. 400 J,
Temperature : Room Temp, ~ -196 ℃,
Lateral Expansion : (0 ~ 10) mm,
Percentage of Shear Fracture Area : (0 ~ 100) %
소재지
ASTM E290-22 Standard Test Methods for Bend Testing of Material for Ductility Test Load : Max. 950 kN 소재지
ASTM E292-24 Standard Test Methods for Conducting Time-for-Rupture Notch Tension Tests of Materials Max. Temp. : 1 000 ℃,
Max. Load : 4 000 kg,
Elongation : (0 ~ 100) %,
Reduction of Area : (0 ~ 100) %
소재지
ASTM E340-23 Standard Practice for Macroetching Metals and Alloys - 소재지
ASTM E381-22 Standard Method of Macroetch Testing Steel Bars, Billets, Blooms, and Forgings - 소재지
ASTM E384-22 Standard Test Method for Microindentation Hardness of Materials (0.980 7 ~ 9.807) N 소재지
ASTM E407-23 Standard Practice for Microetching Metals and Alloys - 소재지
ASTM E562-19e1 Standard Test Method for Determining Volume Fraction by Systematic Manual Point Count - 소재지
ASTM E8/E8M-24 Standard Test Methods for Tension Testing of Metallic Materials Tensile Strength : Max. 950 kN,
Yield Strength : Max. 950 kN,
Elongation : (0 ~ 100) %,
Reduction of Area : (0 ~ 100) %
소재지
ASTM E92-23 Standard Test Methods for Vickers Hardness and Knoop Hardness of Metallic Materials Vickers Hardness
Test Load : (0.980 7 ~ 294.21) N
소재지
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
- 소재지
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
8. Method A - Ferric Chloride Pitting Test
- 소재지
AWS B4.0:2016 AWS B4.0 : 2016 Standard Methods for Mechanical Testing of Welds
4. Tension Tests
6. Bend Tests
7. Fracture and Notch Toughness Tests
7.7.1. (2) Charpy V notch
8. Hardness Tests
4. Tension Tests
Test Load : Max. 950 kN,
Elongation/Reduction of Area : (1 ~ 100) %,
Elongation at Fracture : (1 ~ 50) %,
6. Bend Tests
Test Load : (5 ~ 950) kN,
7. Fracture Toughness Tests
7.7.1. (2) Charpy V-notch
Absorb Energy : Max. 434 J,
Temperature : Room. Temp. ~ -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 0.2 ~ HV 0.5
소재지
AWS D1.1/D1.1M:2020 Structural Welding Code - Steel
- 6.10.3 Mechanical Testing - Bend Test, Tension Test
- 6.10.4 Macroetch Test
- 6.QUALIFICATION Part D Requirements for CVN Testing
-6.23.4 Fillet Weld Break Test
6.10.3 Mechanical Testing
- Bend Test
Load : Max. 950 kN,
- Tension Test
Load : Max. 950 kN,
Reduction of Area : (1 ~ 100) %,
Elongation : (1 ~ 100) %
6.Part D CVN Testing
Absorbed Energy : Max. 400 J,
Test Temperature : Room Temperature ~ -196℃,
Lateral Expansion : (0 ~ 5) mm,
Percent Shear Fracture : Max. 100 %
6.23.4 Fillet Weld Break Test Load : Max. 930 kN
소재지
ISO 148-1:2016 Metallic materials - Charpy pendulum impact test - Part 1 : Test method Charpy Absorbed Energy : Max. 400 J,
Temperature : Room. Temp ~ -196 ℃,
Lateral Expansion : (0 ~ 10) mm,
Percent Shear area : (0 ~ 100) %
소재지
ISO 17639:2022 Destructive tests on welds in metallic materials - Macroscopic and microscopic examination of welds - 소재지
ISO 204:2023 Metallic materials -- Uniaxial creep testing intension -- Method of test Max. Temp. : 1 000 ℃,
Max. Load : 4 000 kg,
Elongation : (0 ~ 100) %,
Reduction of Area : (0 ~ 100) %
소재지
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
- 소재지
ISO 4136:2022 Destructive tests on welds in metallic materials - Transverse tensile test Test Load : Max. 950 kN 소재지
ISO 5173:2009 Destructive tests on welds in metallic materials -- Bend tests Test Load : Max. 950 kN 소재지
ISO 5178:2019 Destructive tests on welds in metallic materials - Longitudinal tensile test on weld metal in fusion welded joints Test Load : Max. 950 kN 소재지
ISO 6506-1:2014 Metallic materials - Brinell hardness test - Part 1 : Test method (4 903 ~ 29 420) N 소재지
ISO 6507-1:2018 Metallic materials - Vickers hardness test - Part 1 : Test method (0.980 7 ~ 294.21) N 소재지
ISO 6508-1:2023 Metallic materials - Rockwell hardness test - Part 1 : Test method Scale B : 20 ~ 100,
Scale C : 20 ~ 70
소재지
ISO 6892-1:2019 Metallic materials - Tensile testing - Part 1 : Method of test at room temperature Tensile Strength : Max. 950 kN,
Upper yield strength : Max. 950 kN,
Lower yield strength : Max. 950 kN,
Percentage total extension at fracture : (0 ~ 100) %,
Percentage reduction of area : (0 ~ 100) %
소재지
ISO 6892-2:2018 Metallic materials - Tensile testing - Part 2 : Method of test at elevated temperature Test Load : Max. 95 kN,
Elongation/Reduction of Area : (0 ~ 100) %,
Elongation at fracture : (0 ~ 100) %,
Test Temperature : Room Temperature ~ 1 000℃
소재지
ISO 7438:2020 Metallic materials -- Bend test Test Load : Max. 950 kN 소재지
ISO 8491:1998 Metallic materials -- Tube (in full section) -- Bend test Test Load : Max. 950 kN 소재지
ISO 8492:2013 Metallic materials -- Tube -- Flattening test Test Load : Max. 950 kN 소재지
ISO 8493:1998 Metallic materials -- Tube -- Drift-expanding test Test Load : Max. 950 Kn 소재지
ISO 9015-1:2001 Destructive tests on welds in metallic materials - Hardness testing - Part 1 : Hardness test on arc welded joints HV 10 소재지
ISO 9015-2:2016 Destructive tests on welds in metallic materials - Hardness testing - Part 2 : microhardness testing of welded joints HV 0.1, HV 1 소재지
ISO 9016:2022 Destructive tests on welds in metallic materials - Impact tests - Test specimen location, notch orientation and examination Max. Absorbed Energy : 400 J,
Striker 8 mm
소재지
ISO 9017:2017 Destructive tests on welds in metallic materials - Fracture test Load : Max. 950 kN 소재지
ISO 9018:2015 Destructive tests on welds in metallic materials - Tensile test on cruciform and lapped joints Test Load : Max. 950 kN 소재지
ISO 945-1:2019 Microstructure of cast irons
Part 1: Graphite classification by visual analysis
- 소재지
JIS G 3454:2017/AMENDMENT1:2019 Carbon steel pipes for pressure service
6.2 Flattening Test
Test Load : Max. 950 kN 소재지
JIS G 3459:2021 Stainless steel pipes
13.2.4 Flattening Test
Test Load : Max. 950 kN 소재지
JIS G 3461:2023 Carbon steel tubes for boiler and heat exchanger
6.2 Flattening Test
Test Load : Max. 950 kN 소재지
JIS G 3463:2023 Stainless steel tubes for boiler and heat exchanger
6.2 Flattening resistance
6.4 Reverse flattening resistance
Test Load : Max. 950 kN 소재지
JIS Z 2241:2022/AMENDMENT1:2023 Metallic materials - Tensile testing - Method of test at room temperature Tensile Strength : Max. 950 kN,
Upper yield strength : Max. 950 kN,
Lower yield strength : Max. 950 kN,
Percentage total extension at fracture : (0 ~ 100) %,
Reduction of area : (0 ~ 100) %
소재지
JIS Z 2242:2023 Method for Charpy pendulum impact test of metallic materials Absorbed Energy : Max. 400 J,
Temperature : Room Temp, ~ -196 ℃,
Lateral Expansion : (0 ~ 10) mm,
Percentage of Shear Fracture Area : (0 ~ 100) %
소재지
JIS Z 2243-1:2018 Brinell hardness test - Part 1 : Test method (4 903 ~ 29 420) N 소재지
JIS Z 2244-1:2024 Vickers hardness test -- Part 1 : Test method (0.980 7 ~ 294.21) N 소재지
JIS Z 2245:2021 Rockwell hardness test - Test method Scale B : 20 ~ 100,
Scale C : 20 ~ 70
소재지
JIS Z 2248:2022/AMENDMENT1:2022R Metallic materials -- Bend test Test Load : Max. 950 kN 소재지
JIS Z 3121:2013 Methods of tensile test for butt welded joints Test Load : Max. 950 kN 소재지
JIS Z 3122:2013 Methods of bend test for butt welded joint Test Load : Max. 950 kN 소재지
KEPIC MDF A370:2020 강 제품의 기계시험을 위한 시험방법 및 정의 규격
13.1 인장시험 - 항복점,
13.2 인장시험 - 항복강도,
13.3 인장시험 - 인장강도,
13.4 인장시험 - 연신율,
13.5 인장시험 - 단면수축률,
14. 굽힘시험,
15. 경도시험,
16. 브리넬 시험,
17. 로크웰 시험,
25.4.1 충격에너지,
25.4.2 파단양상-연성파면율,
25.4.3 횡팽창량,
A2.2 인장시험,
A2.5.1.1 편평시험,
A2.5.1.2 역편평시험,
A2.5.1.5 플레어시험
A2.5.1.7 용접부의 횡방향 형 굽힘시험
[인장 시험]
항복점 : Max. 950 kN,
항복강도 : Max. 950 kN,
인장강도 : Max. 950 kN,
연신율 : (0 ~ 100) %,
단면수축률 : (0 ~ 100) %,
[굽힘 시험]
시험하중 : Max. 950 kN,
[경도 시험]
브리넬 : (4 903 ~ 29 420) N,
로크웰 :
스케일 B : 20 ~ 100,
스케일 C : 20 ~ 70,

[샤르피 충격시험]
충격에너지 : 최대. 400 J,
시험온도 : 실온 ~ -196℃,
횡팽창량 : (0 ~ 25) mm,
연성파면율 : (0 ~ 100) %

-편평/역편평/플레어/굽힘 시험하중 : 최대. 930 kN
소재지
KS B 0802:2003 금속 재료 인장시험 방법 인장하중 : Max. 950 kN,
항복하중 : Max. 950 kN,
연신율 : (0 ~ 100) %,
단면수축률 : (0 ~ 100) %
소재지
KS B 0804:2001 금속 재료 굽힘 시험 시험하중 : 최대 950 kN 소재지
KS B 0805:2000 금속재료의 브리넬 경도시험 방법 (4 903 ~ 29 420) N 소재지
KS B 0806:2000 금속재료의 로크웰 경도시험 방법 Scale B : 20 ~ 100,
Scale C : 20 ~ 70
소재지
KS B 0810:2003 금속재료 충격시험 방법 흡수에너지 : Max. 400 J,
시험온도 : 상온 ~ -196 ℃,
취성파면율 : (0 ~ 100) %,
가로변형량 : (0 ~ 10) mm
소재지
KS B 0811:2003 금속재료의 비커스 경도시험 방법 (0.980 7 ~ 294.21) N 소재지
KS B 0814:2001 금속 재료의 인장 크리프 시험 방법 시험온도 : 최대 1 000 ℃,
시험하중 : 최대 4 000 kg,
연신율 : (0 ~ 100) %,
단면수축률 : (0 ~ 100) %
소재지
KS B ISO 4136:2012 금속재료 용접부의 파괴 시험 - 횡방향 인장시험 시험하중 : 최대 950 kN 소재지
KS B ISO 5173:2009 금속 재료 용접부의 파괴 시험 -- 굽힘 시험 시험하중 : 최대 950 kN 소재지
KS B ISO 8492:1998 금속 재료 - 관 - 편평 시험 시험하중 : 최대 950 kN 소재지
KS B ISO 8493:1998 금속 재료 - 관 - 압입 확관 시험 시험하중 : 최대 950 kN 소재지
KS D 0026:2002 철강 재료 및 내열 합금의 고온 인장 시험 방법 시험하중 : 최대 45 kN,
연신율 : (0 ~ 100) %,
단면수축률 : (0 ~ 100) %,
파단연신율 : (0 ~ 100) %,
시험온도 : 상온 ~ 1 000 ℃
소재지
KS D 0205:2002 강의 페라이트 및 오스테나이트 결정입도 시험법(현미경 관찰법) - 소재지
KS D 0210:1992 강의 매크로 조직 시험 방법 - 소재지
KS D 0225:2005 스테인리스강의 10 % 옥살산 부식 시험방법 - 소재지
KS D 0278:2020 염화철용액에 의한 스테인리스강의 공식 및 틈새부식 시험방법 방법A-염화철공식시험
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KS D ISO 3651-2:1998 스테인리스 강의 입계부식 저항성 측정 ─ 제2부 오스테나이트계 및 페라이트+오스테나이트(2상 혼합)계 스테인리스 강 ─ 황산용액 부식시험 - 소재지
▶ 철강
ASTM A751-21 Standard Test Methods and Practices for Chemical Analysis of Steel Products C(0.004 ~ 4.174) %,
S(0.000 5 ~ 0.1) %,
N2(0.002 0 ~ 0.3) %,
Mn(0.005 ~ 15.0) %,
P(0.001 ~ 1.5) %,
Si(0.005 ~ 3.67) %,
Cr(0.01 ~ 26.0) %,
Ni(0.01 ~ 20.05) %,
Al(0.001 8 ~ 5.5) %,
Mo(0.005 ~ 8.0) %,
Cu(0.005 ~ 4.0) %,
Cb(0.005 ~ 1.438) %,
V(0.005 ~ 1.82) %,
Ti(0.005 ~ 0.313) %,
Co(0.005 ~ 4.0) %,
Sn(0.001 ~ 0.20) %,
W(0.005 ~ 3.0) %,
Pb(0.002 ~ 0.05) %,
B(0.000 5 ~ 0.05) %,
Ca(0.000 2 ~ 0.000 7) %,
Mg(0.001 ~ 0.01) %,
Ce(0.001 ~ 0.024 5) %,
Zr(0.012 ~ 0.074) %,
Ta(0.007 ~ 0.116) %
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ASTM E1086-22 Standard Test Method for Analysis of Austenitic Stainless Steel by Spark Atomic Emission Spectrometry Cr(17.0 ~ 23.0) %,
Ni(7.5 ~ 13.0) %,
Mo(0.01 ~ 3.0) %,
Mn(0.01 ~ 2.0) %,
Si(0.01 ~ 0.90) %,
Cu(0.01 ~ 0.30) %,
C(0.005 ~ 0.25) %,
P(0.003 ~ 0.15) %,
S(0.003 ~ 0.065) %
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ASTM E415-21 Standard Test Method for Analysis of Carbon and Low-Alloy Steel by Spark Atomic Emission Spectrometry Al(0.006 ~ 0.093) %,
Sb(0.006 ~ 0.027) %,
As(0.003 ~ 0.064) %,
B(0.000 4 ~ 0.007) %,
C(0.02 ~ 1.1) %,
Cr(0.007 ~ 8.14) %,
Co(0.006 ~ 0.20) %,
Cu(0.006 ~ 0.5) %,
Mn(0.03 ~ 2.0) %,
Mo(0.007 ~ 1.3) %,
Ni(0.006 ~ 5.0) %,
Nb(0.003 ~ 0.12) %,
N(0.01 ~ 0.055) %,
P(0.006 ~ 0.085) %,
Si(0.02 ~ 1.54) %,
S(0.001 ~ 0.055) %,
Sn(0.005 ~ 0.061) %,
Ti(0.001 ~ 0.2) %,
V(0.003 ~ 0.3) %,
Zr(0.012 ~ 0.05) %
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JIS G 1253:2002/AMENDMENT1:2013 Iron and steel - Method for spark discharge atomic emission spectrometric analysis C(0.001 ~ 4.174) %,
Si(0.003 9 ~ 3.67) %,
Mn(0.003 ~ 28.8) %,
P(0.000 8 ~ 1.0) %,
S(0.000 2 ~ 0.414) %,
Ni(0.002 ~ 20.05) %,
Cr(0.002 ~ 30.5) %,
Mo(0.001 ~ 9.41) %,
Cu(0.001 ~ 4.03) %,
V(0.001 ~ 1.82) %,
W(0.01 ~ 17.83) %,
Co(0.001 2 ~ 7.95) %,
Ti(0.000 5 ~0.313) %,
Al(0.001 8 ~ 5.0) %,
As(0.001 ~ 0.064) %,
Sn(0.000 6 ~ 0.3) %,
B(0.000 12 ~ 0.5) %,
Pb(0.001 ~ 0.328) %,
Zr(0.012 ~ 0.074) %,
Nb(0.001 ~ 1.438) %,
Mg(0.001 ~ 0.083 8) %,
Sb(0.008 ~ 0.089) %,
N(0.001 ~ 0.15) %,
Ce(0.005 ~ 0.024 5) %,
Ta(0.02 ~ 0.116) %,
Ca(0.000 1 ~ 0.000 7) %
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KS D 1652:2022 철 및 강의 스파크 방전 원자 방출 분광 분석 방법 C(0.001 ~ 4.174) %,
Si(0.003 9 ~ 3.67) %,
Mn(0.003 ~ 28.8) %,
P(0.000 8 ~ 1.0) %,
S(0.000 2 ~ 0.414) %,
Ni(0.002 ~ 20.05) %,
Cr(0.002 ~ 30.5) %,
Mo(0.001 ~ 9.41) %,
Cu(0.001 ~ 4.03) %,
V(0.001 ~ 1.82) %,
W(0.01 ~ 17.83) %,
Co(0.001 2 ~ 7.95) %,
Ti(0.000 5 ~0.313) %,
Al(0.001 8 ~ 5.0) %,
As(0.001 ~ 0.064) %,
Sn(0.000 6 ~ 0.3) %,
B(0.000 12 ~ 0.5) %,
Pb(0.001 ~ 0.328) %,
Zr(0.012 ~ 0.074) %,
Nb(0.001 ~ 1.438) %,
Mg(0.001 ~ 0.083 8) %,
Sb(0.008 ~ 0.089) %,
N(0.001 ~ 0.15) %,
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