• 제목/요약/키워드: Failure mode effect analysis

검색결과 313건 처리시간 0.028초

고체 로켓 추진 기관의 신뢰성 분석을 위한 준-정량적 FMECA (Semiquantitative Failure Mode, Effect and Criticality Analysis for Reliability Analysis of Solid Rocket Propulsion System)

  • 문근환;김진곤;최주호
    • 대한기계학회논문집A
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    • 제39권6호
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    • pp.631-638
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    • 2015
  • 본 연구에서는 고체 로켓 추진 기관의 신뢰성 분석을 위해 준-정량적 FMECA를 수행하였다. 준-정량적 FMECA는 고장모드 및 영향 분석(FMEA)과 치명도 분석(CA)를 포함하는 분석 기법으로서, FMECA 수행을 위해서 FMEA는 고체 로켓 추진 기관을 43개의 부품으로 나누어 각 부품에 대하여 도출된 총 137개의 고장모드에 대해 수행하였다. 또한 일부 고장모드의 고장률 데이터를 이용하여 치명도 분석을 수행하였다. 준-정량적 FMECA 수행을 통하여 고체 로켓 추진 기관의 각 부품에서 발생 할 수 있는 잠재적 고장모드와 고장원인 및 영향을 분석, 정리할 수 있었으며, 우선적인 개선 조치가 필요한 중요 고장모드를 확인할 수 있었다.

전자부품 고장모드를 고려한 Built-In-Test 성능분석 (Built-In-Test Coverage Analysis Considering Failure Mode of Electronics Components)

  • 서준호;고진영;박한준
    • 한국항공우주학회지
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    • 제43권5호
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    • pp.449-455
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    • 2015
  • Built-In-Test(이하: BIT)는 항공기 비행안전을 위해 반드시 필요한 기능으로 항공전자 장비의 경우 95% 이상의 높은 고장 진단능력을 요구하고 있다. BIT가 요구도에 명시된 고장 진단능력을 만족시키는지 확인하기 위해 BIT 성능분석이 필요하다. BIT 성능분석을 위해 FMECA (Failure Mode Effect Critical Analysis)에 기술된 고장모드를 활용하는 방법이 많이 사용되고 있으나, 본 논문에서는 분석 오류를 최소화할 수 있는 전자부품 기반의 BIT 성능분석 방법론을 소개한다. 또한, BIT 성능분석에서 제외될 수 있는 비행안전에 영향을 미치지 않는 전자부품 및 전자부품의 고장모드를 실제 개발사례에 적용하여 불필요한 BIT 기능 구현을 방지하고 정확한 BIT 성능분석을 수행할 수 있도록 하였다. BIT Demo를 수행하여 BIT 성능분석 결과와 실제 BIT 성능이 일치함을 확인하였다.

상호작용기반 FMEA 실행 (FMEA for Interaction Failures)

  • 이득중;장중순
    • 한국신뢰성학회지:신뢰성응용연구
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    • 제17권1호
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    • pp.28-37
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    • 2017
  • Purpose: This paper proposes a procedure that may infer and identify interaction failures in a module. Methods: In design FMEA, we defined an interaction model between components and proposed a method for selecting a single component by using the standard specification classification table and four methods for choosing the related components. We also introduced the function tree for function and requirement characteristic analysis and proposed utilization of standard stress lists and 1st and 2nd stress analysis tables to determine the effect the stress analysis has on interactions. Finally, the interaction mechanism diagram was proposed and used to infer the failure mechanism. Process FMEA also established procedures in a similar way. Results: We established a procedure for predicting the failure mode due to interaction between components based on Company A's multi-step FMEA procedure. Conclusion: By applying the proposed interaction FMEA procedure to the development model, we were able to confirm the effect of the new derivation on the failure mode of interaction, which was not predicted by the existing FMEA.

스마트 폰의 소프트웨어 보안성 분석을 위한 FTA와 FMEA의 통합적 방법 (An Integrative Method of FTA and FMEA for Software Security Analysis of a Smart Phone)

  • 김명희;;박만곤
    • 정보처리학회논문지:컴퓨터 및 통신 시스템
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    • 제2권12호
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    • pp.541-552
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    • 2013
  • 최근 우리 생활에 스마트 기술의 빠른 전파 때문에 정보 과학 및 기술 분야에 있어서는 스마트 폰의 소프트웨어 보안성이 중요한 이슈가 되고 있다. 보안성 중요 시스템인 스마트 폰은 은행 서비스, 유비쿼터스 홈 관리, 항공 고객의 검색 등의 서비스 시스템에 이용되기 때문에 비용의 리스크, 손실의 리스크, 이용가능 리스크, 그리고 사용상의 리스크에 관련 되어 있다. 스마트 폰의 보안성 이슈는 이들의 관찰된 고장들을 사용하여 소프트웨어 장애 분석을 하는 것이 핵심 접근 방법이다. 본 연구에서는 손으로 조작하는 디바이스들의 수렴하는 보안성과 신뢰성 분석 기법을 얻기 위해서 결함 트리 분석 (FTA)와 고장 모드 효과 분석(FMEA)을 사용하여 스마트 폰의 소프트웨어 보안성 분석을 위한 하나의 유효한 통합적 프레임 워크를 제안한다. 그리고 만약 하나의 고장 모드 효과 분석이 더욱 더 간단해지면 스마트 디바이스들의 보안성 개선뿐만 아니라 고장효과 의 감소를 위해서 제안된 통합적인 프레임 워크는 핵심 해법이 됨을 논의한다.

Research on eccentric compression of ultra-high performance fiber reinforced concrete columns

  • Ma, Kaize;Ma, Yudong;Liu, Boquan
    • Structural Engineering and Mechanics
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    • 제71권3호
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    • pp.211-221
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    • 2019
  • To study the eccentric compression behavior of ultra-high performance fiber reinforced concrete (UHPFRC) columns, six UHPFRC columns and one high-strength concrete (HSC) column were tested. Variation parameters include load eccentricity, volume of steel fibers and stirrup ratio. The crack pattern, failure mode, bearing capacity, and deformation of the specimens were studied. The results showed that the UHPFRC columns had different failure modes. The large eccentric compression failure mode was the longitudinal tensile reinforcements yielded and many horizontal cracks appeared in the tension zone. The small eccentric compression failure mode was the longitudinal compressive reinforcements yielded and vertical cracks appeared in the compressive zone. Because of the bridging effect of steel fibers, the number of cracks significantly increased, and the width of cracks decreased. The load-deflection curves of the UHPFRC columns showed gradually descending without sudden dropping, indicating that the specimens had better deformation. The finite element (FE) analysis was performed to stimulate the damage process of the specimens with monotonic loading. The concrete damaged plasticity (CDP) model was adopted to characterize the behaviour of UHPFRC. The contribution of the UHPFRC tensile strength was considered in the bearing capacity, and the theoretical calculation formulas were derived. The theoretical calculation results were consistent with the test results. This research can provide the experimental and theoretical basis for UHPFRC columns in engineering applications.

ETCS 적용 구간에서의 발리스 고장 분석 및 영향에 관한 연구 (A Study on the Balise Failure Analysis & Effects for ETCS Application)

  • 이명철;김창훈;지정근;이종우
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 정기총회 및 추계학술대회 논문집
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    • pp.717-723
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    • 2011
  • When the Balise(the device to transmit information between the on-board equipment and the wayside equipment) failure occurs, it may not be able to transmit data(Telegram) required for the train running. And in some cases, it may be able to cause an accident. Therefore, both the Balise failure affecting train safety running and the hazard in accordance with Balise failure require some activities to establish them. General failure mode & hazard analysis associated with the Balise are described in UNISIG SUBSET-036 spec & UNISIG SUBSET-088 spec. And, with reference to these specifications, safety activities are being performed. In recent domestic railway, the train control system applying ETCS(European Train Control System) Level 1, 2 is being serviced and is being planned, and as part of this system, the Balise is being applied. The design-method of the Balise device for each manufacturer are different, therefore the Balise failure mode & failure rate are different, either. But the functionalities & transmission-data format(Telegram) of the Balise in ETCS Level 1, 2 application for each manufacturer are identical. Accordingly, the hazard caused by function-fail can be identical, either. In order to establish these hazard, in this paper, we analyzed the detailed functions of the Balise. And we analyzed the Balise failure types & failure effects in accordance with the detailed functions.

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Numerical modeling and prediction of adhesion failure of adhesively bonded composite T-Joint structure

  • Panda, Subhransu K;Mishra, Pradeep K;Panda, Subrata K
    • Structural Engineering and Mechanics
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    • 제74권6호
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    • pp.723-735
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    • 2020
  • This study is reported the adhesion failure in adhesive bonded composite and specifically for the T-joint structure. Three-dimensional finite element analysis has been performed using a commercial tool and the necessary outcomes are obtained via an eight noded solid element (Solid 185-element) from the library of ANSYS. The structural analysis input has been incurred through ANSYS parametric design language (APDL) code. The normal and shear stress distributions along different layers of the joint structure have been evaluated as the final outcomes. Based on the stress distributions, failure location in the composite joint structure has been identified by using the Tsai-Wu stress failure criterion. It has been found that the failure index is maximum at the interface between flange and web part of the joint (top layer) which indicates the probable location of failure initiation. This kind of failures are considered as adhesion failure and the failure propagation is governed by strain energy release rate (SERR) of fracture mechanics. The different adhesion failure lengths are also considered at the failure location to calculate the SERR values i.e. mode I fracture (opening), mode II fracture (sliding) and mode III fracture (tearing) along the failure front. Also, virtual crack closure technique (VCCT) principle of fracture mechanics steps is used to calculate the above said SERRs. It is found that the mode I SERR is more dominating compared to other two modes of failure for the joint considered. Finally, the influences of various parametric (geometrical and material) effect on SERR of the joint structure are evaluated and discussed in details.

Experimental and analytical study on prestressed concrete hollow slabs with asymmetric boundary conditions

  • Ma, Haiying;Lai, Minghui;Xia, Ye
    • Structural Engineering and Mechanics
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    • 제81권1호
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    • pp.59-68
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    • 2022
  • Prestressed prefabricated hollow core concrete slabs with spans of 5 m and 10 m are commonly used since last century and still in service due to the advantage of construction convenience and durability. However, the end slabs are regularly subjected to cracks at the top and fail with brittleness due to the asymmetric boundary conditions. To better maintain such widely used type of hollow core slabs, the effect of asymmetric constraint in the end slabs are systematically studied through detailed nonlinear finite element analyses and experimental data. Experimental tests of slabs with four prestressed tendons and seven prestressed tendons with different boundary conditions were conducted. Results observe three failure modes of the slabs: the bending failure mode, shear and torsion failure mode, and transverse failure mode. Detailed nonlinear finite element models are developed to well match the failure modes and to reveal potential damage scenarios with asymmetric boundary conditions. Recommendations regarding ultimate capacity of the slabs with asymmetric boundary conditions are made to ensure a safe and rational design of prestressed concrete hollow slabs for short span bridges.

비점착성 지반의 지하공간 굴착면 파괴모드에 대한 연구 (A study on heading failure mode for underground excavation in cohesionless soils)

  • 신종호;권오엽;조재완;최민구
    • 한국터널지하공간학회 논문집
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    • 제7권3호
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    • pp.197-207
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    • 2005
  • 지하공간의 설계는 막장파괴와 관련한 안정성에 대한 평가를 필요로 한다. 막장파괴모드는 전통적인 안정성 평가법에서 중요하게 다루어져 왔다. 본 연구에서는 점착력이 없는 토사지반에 대한 모형실험을 실시하여 토피고와 지반경사의 변화에 따른 터널막장의 종방향 파괴모드를 파악하고자 하였다. 모형실험은, 대형지하공간의 폭원이 충분히 크다는 가정 하에 평면변형조건의 터널 축방향 굴착면 모델에 대하여 실시되었다. 실험결과 토피고와 지반경사는 파괴모드에 중요한 영형을 미치는 것으로 나타났다. 토피고가 증가할수록 지반의 파괴영역이 감소하여 국부 전단 파괴의 형태를 보였다. 또, 지반경사가 증가할수록 굴착면과 사면방향으로 확대되는 유형의 파괴모드를 확인할 수 있었다. 실험모델을 수치해석 모델로 재현하는 해석을 실시하였고, 이로부터 수치해석법을 통해서도 굴착면의 파괴모드의 추정이 가능함을 보였다.

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패키지형 수소충전소의 고장형태별 영향 분석 (A Study on the Hazard Factor of Packaged Hydrogen Station by Failure Mode & Effects Analysis)

  • 서두현;이광원;김태훈
    • 한국수소및신에너지학회논문집
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    • 제31권1호
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    • pp.65-72
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    • 2020
  • In this study, the purpose is to identify the risks of the facilities of packaged hydrogen stations. As a risk identification method, failure mode & effect analysis (FMEA), a qualitative risk assessment, was used to analyze failure mode and effects of component of each facility. The analysis criteria were used to derive the risk priority number (RPN) using the 5-point method according to severity, incidence, and detectability. The study analyzed a total of 141 components of 23 types that can be identified on the design of the packaged hydrogen filling station. As a result, 683 types of failures and their causes and effects were identified. and the RPN was number of a total of 1,485. Of these, 10 failure types with a RPN value of 40 or more were deemed necessary. In addition, a list of failure types with a severity score of 5 was identified and analyzed.