관심표준 등록 : 표준업데이트 시 알림을 받을 수 있습니다.
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분야 | STP : ASME Standards Technology |
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적용범위 | Composite cylinders have been used for over 50 years in commercial, vehicle, defense and aerospace applications. New materials, processes, design approaches and applications have been incorporated during that time. The industry has maintained a high level of safety. The industry has adapted to these changes and has developed new and revised standards to address these changes and to reflect a better understanding of service conditions. Recommendations are made that the industry: ? Continue to monitor field use and incorporate changes to requirements, standards and codes that reflect knowledge gained for composite pressure vessels, ? Use a failure modes and effects analysis (FMEA) approach to standards, using the knowledge gained from field experience, ? Develop standards for composite pressure vessels that are more performance based to improve both safety and performance, ? Address requirements using performance testing, not by using excessive safety factors, ? Use stress ratios for the various reinforcing fibers that accurately reflect their stress rupture and fatigue characteristics to achieve high reliability, ? Harmonize testing requirements where practical, ? Use qualification tests that are appropriate for the application and for the materials and design features of the pressure vessels being used, and ? Consider using fleet leader programs for new materials, designs or applications if there is likely to be a significant safety issue To support these recommendations, history of use of composite cylinder in aerospace/defense, commercial and vehicle applications is reviewed. This includes review of applications, materials of construction; standards used and field service issues. The use of performance-based requirements is discussed, as is the background of safety factors used for various reinforcing fibers. Recommendations are made for validation testing of materials and pressure vessels, with consideration for failure modes and effects analysis (FMEA) involving the field use of the vessels. Cyclic fatigue and stress rupture are discussed, with examples of laboratory testing and correlation from field experience. |
국제분류(ICS)코드 | |
페이지수 | 68 |
Edition |
No. | 표준번호 | 표준명 | 발행일 | 상태 |
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1 | ASME STP-PT-014-2008 | Data Supporting Composite Tank Standards Development for Hydrogen Infrastructure Applications (STP-PT-014 - 2008) | 2008-01-01 | 표준 |
ASME STP-PT-005-2006 - Design Factor Guidelines for High-Pressure Composite Hydrogen Tanks (STP-PT-005 - 2006) 상세보기
ASME STP-PT-007-2006 - Comparison of Pressure Vessel Codes: ASME Section VIII & EN13445 (Technical, Commercial, & Usage Comparison Design Fatigue Life Comparison) (STP-PT-007 - 2006) 상세보기
ASME STP-PT-006-2007 - Design Guidelines for Hydrogen Piping and Pipelines (STP-PT-006 - 2007) 상세보기
ASME STP-NU-009-2008 - Graphite for High Temperature Gas-Cooled Nuclear Reactors (STP-NU-009 - 2008) 상세보기
ASME STP-NU-013-2008 - Improvement of ASME Section III-NH for Grade 91 Negligible Creep and Creep-Fatigue (STP-NU-013 - 2008) 상세보기
ASME STP-PT-023-2009 - Guidelines for In-Service Inspection of Composite Pressure Vessels (STP-PT-023 - 2009) 상세보기
ASME STP-PT-021-2008 - Nondestructive Testing and Evaluation Methods for Composite Hydrogen Tanks (STP-PT-021 - 2008) 상세보기
ASME STP-PT-017-2008 - Properties for Composite Materials in Hydrogen Service (STP-PT-017 - 2008) 상세보기
ASME STP-PT-006-2007 - Design Guidelines for Hydrogen Piping and Pipelines (STP-PT-006 - 2007) 상세보기
ASME STP-PT-005-2006 - Design Factor Guidelines for High-Pressure Composite Hydrogen Tanks (STP-PT-005 - 2006) 상세보기
IEC TS 63134:2020 - Active assisted living (AAL) use cases 상세보기
IEC 60034-5:2020 RLV - Rotating electrical machines - Part 5: Degrees of protection provided by the integral design of rotating electrical machines (IP code) - Classification 상세보기
KS B ISO TS 25740-1 - 에스컬레이터 및 무빙워크에 대한 안전요건 — 제1부: 세계공통 필수 안전요건(GESRs) 상세보기
KS B ISO TS 8100-21 - 승객 및 화물 운송용 엘리베이터 —제21부: 세계공통 필수안전요건(GESRs)을 충족하는 세계공통 안전 파라미터(GSPs) 상세보기
KS C IEC TS 62872 - 산업 시설과 스마트 그리드 사이의 산업 공정 측정, 제어 및 자동화 시스템 인터페이스 상세보기