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시험 및 연구분야

KOLAS 공인시험기관인정 _

daegu mechatronics & materials institute

KOLAS 공인시험기관 인정

KOLAS로고
KOLAS란?

'국제공인 시험기관'인정제도는 국제기준(ISO/IEC GUIDE 58)에 적합한 인정기구 (한국-KOLAS)가 시험기관의 품질시스템과 기술능력을 국가표준기본법 및 인정요건(KS A17025, ISO/IEC 17025)에 의거해 평가하고, 이에 대해 시험능력이 있다고 공식적으로 인정해 주는 국제표준화 제도이다.

KOLAS로고가 새겨진 시험성적서는 국제협약 ILAC, APLAC 등에 따라 국제적으로 상호인증하게 되어 산업체에서 제품의 해외수출 시 외국에서 별도의 시험없이 본 시험성적서로 대체할 수 있습니다. 2014년 기준 APLACMRA에는 23개국 37개 시험기관인정기구가, ILAC MRA에는 72개국 86개 시험기관인정기구가 가입하여 상대국의 공인성적서를 상호 수용하고 있습니다.

KOLAS - Korea Laboratory Accreditation Scheme

한국 인정기구

APLAC - Asia-Pacific Laboratory Accreditation Cooperation

아시아태평양시험기관인정협력체

ILAC - International Laboratory Accreditation Cooperation

국제시험기관인정협력체

MRA - Mutual Recognition Arrangement

상호인정협정

인정분야 범위
  • 01. 역학분야
    • 1.001 금속 및 관련제품
      인정분야 범위 - 인정분야 범위를 규격번호와 규격명으로 안내하는 표입니다.
      규격번호규격명
      KS B 0802 : 2003 금속 재료 인장 시험 방법
      ISO 6892-1 : 2016 Metallic materials-Tensile testing- Part 1:Method of test at room temperature
      JIS Z 2241 : 2011 Metallic materials-Tensile testing- Method of test at room temperature
      ASTM E8/E8M-16a Standard Test Methods for Tension Testing of Metallic Materials
      ASTM A370-17a Standard Test Methods and Definitions for Mechanical Testing of Steel Products
      (Tension, Hardness Test)
      KS B 0805 : 2000 금속 재료의 브리넬 경도 시험 방법
      ISO 6506-1 : 2014 Metallic materials-Brinell hardness test- Part 1:Test method
      JIS Z 2243-1 : 2018 Brinell hardness test-Part1:Test method
      ASTM E10-17 Standard Test Method for Brinell Hardness of Metallic Materials
      KS B 0806 : 2000 금속 재료의 로크웰 경도 시험 방법
      ISO 6508-1 : 2016 Metallic materials-Rockwell hardness test- Part 1:Test method
      JIS Z 2245 : 2016 Rockwell hardness test-Test method
      ASTM E18-17e1 Standard Test Methods for Rockwell Hardness of Metallic Materials
      KS B 0811 : 2003 금속 재료의 비커스 경도 시험 방법
      ISO 6507-1 : 2018 Metallic materials-Vickers hardness test- Part 1:Test method
      JIS Z 2244 : 2009 Vickers hardness test-Test method
      ASTM E384-17 Standard Test Method for Knoop and Vickers Hardness of Materials
      (Vickers Hardness)
      KS B 0810 : 2003 금속 재료 충격 시험 방법
      JIS Z 2242 : 2005 Method for Charpy pendulum impact test of metallic materials
      ISO 148-1 : 2016 Metallic materials-Charpy pendulum impact test- Part 1:Test method
    • 1.021 자동차
      인정분야 범위 - 인정분야 범위를 규격번호와 규격명으로 안내하는 표입니다.
      규격번호규격명
      환경부 고시 제2018-45호
      • 제작자동차 시험검사 및 절차에 관한 규정[별표 7의 1]
      • 3-1 1회 충전주행거리 시험방법
      • 3-2 등판능력시험방법
      GB/T 24156-2009 Electric motorcycles and electric mopeds - Power performance - Test methods
      ISO 13064-2:2012 Battery-electric mopeds and motorcycles - Performance Part 2 : Road operating characteristics
      ISO 13064-1:2012 Battery-electric mopeds and motorcycles - Performance Part 1:Reference energy consumption and range
  • 02. 화학분야
    • 2.001 철강
      규격번호규격명
      KS D 1803 : 2003 철 및 강의 황 분석 방법
      11. 연소 ㆍ 적외선 흡수법(순환법)
      KS D 1804 : 2003 철 및 강의 탄소 분석 방법
      8.2 순 환 법
      KS D 1652 : 2007 철 및 강의 스파크 방전 원자 방출분광 분석방법
      C, Mg, Al, Si, P, S, Ti, V, Cr, Mn, Co, Ni, Cu, Mo, Sn, W, Pb
      ASTM E 1019-18 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
      11.1.2 Infrared (IR) Absorption, Test Method A
      56.1.1 Infrared Absorption Detection: Test Method A
      JIS G 1211-3 : 2011 Iron and steel - Determination of carbon content-Part 3: Infrared absorption method after combustion
      JIS G 1215-4 : 2010 Iron and steel - Determination of sulfur content-Part 4: Infrared absorption method after combustion in an induction furnace
      JIS G 1253 : 2002 Iron and steel - Method for spark discharge atomic emission spectrometric analysis
      C, Si, Mn, P, S, Ni, Cr, Mo, Cu, W, V, Co, Ti, Al, Pb, Mg
      ASTM E 415-17 Standard Test Method for Atomic Emission Vacuum Spectrometric Analysis of Carbon and Low-Alloy Steel
      Al, C, Cr, Co, Cu, Mn, Mo, Ni, S, P, Si, Ti, V, Sn
      ASTM E 1086-14 Standard Test Method for Atomic Emission Vacuum Spectrometric Analysis of Stainless Steel by Point-to-Plane Excitation Technique
      Cr, Ni, Mo, Mn, Si, Cu, C, S, P
  • 03. 전기시험
    • 3.011 전자기적합성
      인정분야 범위 - 인정분야 범위를 규격번호와 규격명으로 안내하는 표입니다.
      규격번호규격명
      MIL-Sth-461E : 1999 Requirements for the control of electromagnetic interference characteristics of subsystems and equipment
      5.4 CE101 Conducted Emissions, Power Leads, 10 ㎑ to 10 ㎒
      5.5 CE102 Conducted Emissions, Power Leads, 10 ㎑ to 10 ㎒
      5.6 CE106 Conducted Emissions, Antenna Terminal, 10 ㎑ to 40 ㎓
      5.7 CS101 Conducted Susceptibility, Power Leads, 30 ㎐ to 150 ㎑
      5.8 CS103 Conducted Susceptibility, Antenna Port, Intermodulation, 15 ㎑ to 10 ㎓
      5.9 CS104 Conducted Susceptibility, Antenna Port, rejection of Undesired Signals, 30 ㎐ to 20 ㎓
      5.10 CS105 Conducted Susceptibility, Cross-Modulation, 30 ㎐ to 20 ㎓
      5.12 CS114 Conducted Susceptibility, Bulk Cable Injection, 10 ㎑ to 200 ㎒
      5.13 CS115 Conducted Susceptibility, Bulk Cable Injection, Impulse Excitation
      5.14 CS116 Conducted Susceptibility, Damped Sinusoidal Transients, Cables and Power Leads, 10 ㎑ to 100 ㎒
      5.15 RE101 Radiated Emissions, Magnetic Field, 30 ㎐ to 100 ㎑
      5.16 RE102 Radiated Emissions, Electric Field, 10 ㎑ to 18 ㎓
      5.18 RS101 Radiated Susceptibility, Magnetic Field, 30 ㎐ to 100 ㎑
      5.19 RS103 Radiated Susceptibility, Electric Field, 2 ㎒ to 40 ㎓ (Exception: 2 ㎒ to 100 ㎒, 200 V/m)
      MIL-Sth-461F : 2007 Requirements for the control of electromagnetic interference characteristics of subsystems and equipment
      5.4 CE101 Conducted Emissions, Power Leads, 10 ㎑ to 10 ㎒
      5.5 CE102 Conducted Emissions, Power Leads, 10 ㎑ to 10 ㎒
      5.6 CE106 Conducted Emissions, Antenna Terminal, 10 ㎑ to 40 ㎓
      5.7 CS101 Conducted Susceptibility, Power Leads, 30 ㎐ to 150 ㎑
      5.8 CS103 Conducted Susceptibility, Antenna Port, Intermodulation, 15 ㎑ to 10 ㎓
      5.9 CS104 Conducted Susceptibility, Antenna Port, rejection of Undesired Signals, 30 ㎐ to 20 ㎓
      5.10 CS105 Conducted Susceptibility, Cross-Modulation, 30 ㎐ to 20 ㎓
      5.11 CS106 Conducted Susceptibility, Transients, Power Leads
      5.13 CS114 Conducted Susceptibility, Bulk Cable Injection, 4 ㎑ to 200 ㎒
      5.14 CS115 Conducted Susceptibility, Bulk Cable Injection, Impulse Excitation
      5.15 CS116 Conducted Susceptibility, Damped Sinusoidal Transients, Cables and Power Leads, 10 ㎑ to 100 ㎒
      5.16 RE101 Radiated Emissions, Magnetic Field, 30 ㎐ to 100 ㎑
      5.17 RE102 Radiated Emissions, Electric Field, 10 ㎑ to 18 ㎓
      5.19 RS101 Radiated Susceptibility, Magnetic Field, 30 ㎐ to 100 ㎑
      5.20 RS103 Radiated Susceptibility, Electric Field, 2 ㎒ to 40 ㎓(Exception: 2 ㎒ to 100 ㎒, 200 V/m)
      MIL-Sth-461G:2015 Requirements for the control of electromagnetic interference characteristics of subsystems and equipment
      5.4 CE101 Conducted Emissions, Audio Frequency Currents, Power Leads, 30 ㎐ to 10 ㎑
      5.5 CE102 Conducted Emissions, Power Leads, 10 ㎑ to 10 ㎒
      5.6 CE106 Conducted Emissions, Antenna Port, 10 ㎑ to 40 ㎓
      5.7 CS101 Conducted Susceptibility, Power Leads, 30 ㎐ to 150 ㎑
      5.8 CS103 Conducted Susceptibility, Antenna Port, Intermodulation, 15 ㎑ to 10 ㎓
      5.9 CS104 Conducted Susceptibility, Antenna Port, rejection of Undesired Signals, 30 ㎐ to 20 ㎓
      5.10 CS105 Conducted Susceptibility, Cross-Modulation, 30 ㎐ to 20 ㎓
      5.12 CS114 Conducted Susceptibility, Bulk Cable Injection, 4 ㎑ to 200 ㎒
      5.13 CS115 Conducted Susceptibility, Bulk Cable Injection, Impulse Excitation
      5.14 CS116 Conducted Susceptibility, Damped Sinusoidal Transients, Cables and Power Leads, 10 ㎑ to 100 ㎒
      5.17 RE101 Radiated Emissions, Magnetic Field, 30 ㎐ to 100 ㎑
      5.18 RE102 Radiated Emissions, Electric Field, 10 ㎑ to 18 ㎓
      5.20 RS101 Radiated Susceptibility, Magnetic Field, 30 ㎐ to 100 ㎑
      5.21 RS103 Radiated Susceptibility, Electric Field, 2 ㎒ to 40 ㎓

또한, 대구기계부품연구원은 현대자동차 상용차부문 공인지정시험기관으로 지정받아 대외적으로 시험평가 업무의 신뢰성을 인정받고 있습니다.

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