• 제목/요약/키워드: Fishbone analysis

검색결과 15건 처리시간 0.022초

터보엔진의 저소음 흡기 RCV 시스템 개발 (A Development of an Intake RCV System for the Low Noise Turbo Engine)

  • 이종규;김재헌;강상규;강구태
    • 한국소음진동공학회논문집
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    • 제20권8호
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    • pp.734-741
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    • 2010
  • In this paper, an intake RCV system for low noise turbo engine was developed through optimization process of a geometric path of compressor housing and an open rate of recirculation valve. At first, the critical customer requirement from voice of customer was defined and quality function deployment of an intake RCV system was executed. And then, the renovative concept design using pugh matrix method was selected as final concept for satisfaction of requirement. Simultaneously, system analysis was carried by function diagram and fishbone diagram. Next, control factors and levels for the optimal design were performed. And, the optimal design of an intake RCV system was studied using design of experiment. Conclusively, we achieved not only cancellation tip-out noise at the driving condition but also improvement of NVH commodity through optimization process of an intake RCV system, which is optimal configuration of compressor housing and recirculation valve.

선박 추진용 유압작동식 다판 마찰클러치 고착현상 고장탐구 (Root cause analysis of sticking in hydraulically actuated multi-disc friction clutch for ship propulsion)

  • 정상후;김정렬;신재원
    • Journal of Advanced Marine Engineering and Technology
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    • 제41권4호
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    • pp.330-336
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    • 2017
  • 본 연구는 고무 탄성커플링을 적용한 특수선의 디젤엔진 추진체계에서 유압작동식 다판, 습식 마찰클러치의 고착에 대한 원인분석 내용이다. 클러치 고착원인 분석을 위해 피쉬본((fish bone) 방법으로 클러치 및 감속기어 분해조사, 선박 탑재상태에서의 체계 시험 및 부품 조사, 비파괴 시험 등을 통해 수행하였다. 마찰판 고착은 클러치 중공축의 크랙부를 통해 제어오일 누설로 인한 슬립, 마찰열 발생에 의해 발생되었다. 마찰판 냉각 오일 또한 크랙부를 통해 동시에 누설에 기인한 유량부족으로 클러치 마찰판은 국부적인 눌러붙임이 발생하는 핫스팟(hot spot)에 의해 고착되었다.

Research on Increasing the Production Yield Rate by Six Sigma Method : A Case of SMT Process of Main Board

  • Lin, Ching-Kun;Chen, Hsien-Ching;Li, Rong-Kwei;Chen, Ching-Piao;Tsai, Chih-Hung
    • International Journal of Quality Innovation
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    • 제10권1호
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    • pp.1-23
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    • 2009
  • Face the process yield rate improvements of motherboard, although general enterprises finish deployment goal of each functions by overall quality managements, through quality improvement methods, industry engineering methods, plan-do-check-act (PDCA) methods and other improvement solutions, but it is only can be improved partially and unable to enhance the yield rate of product to the target. It only can takes one step ahead to enhance the process yield rate of motherboard with six sigma ($6{\sigma}$) overall DMAIC process and tactics. This research aimed to use six sigma quality improvement tactics by DMAIC systematic procedure and tactics, and find the key factors that effect to the process yield rate of surface mount technology. It also identified the keys input and process and output index to satisfy customer requirements and internal process index. The results showed that the major effective factors by fishbone and process failure modes and effects analysis (PFMEA). If the index of input and output that can be quantified, the optimum parameter can be found through design of experiment to ensure that the process is stable. If the factor of input and output that cannot be quantified, we found out the effective countermeasure by Mind_Mapping, make sure whole processes can be controlled stably, to reach the high product quality and enhance the customer satisfaction.

Fe-3%C-x%Cr-y%V-w%Mo-z%W 다합금계백주철의 주방상태 및 급냉조직 (As-Cast and Solidification Structures of Fe-3%C-x%Cr-y%V-w%Mo-z%W Multi- Component White Cast Irons)

  • Yu, sung-Kon;Shin, Sang-Woo
    • 한국재료학회지
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    • 제12권5호
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    • pp.414-422
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    • 2002
  • Three different multi-component white cast irons alloyed with Cr, V, Mo and W were prepared in order to study their as-cast and solidification structures. Three combinations of the alloying elements were selected so as to obtain the different types of carbides and matrix structures : 3%C-10%Cr-5%Mo-5%W(alloy No.1), 3%C-10%V-5% Mo-5%W(alloy No. 2) and 3%C-17%Cr-3% V(alloy No.3). The as-cast microstructures were investigated with optical and scanning electron microscopes. There existed two different types of carbides, $M_7C_3$ carbide with rod-like morphology and $M_6C$ carbide with fishbone-like one, and matrix in the alloy No. 1. The alloy No. 2 consisted of MC carbide with chunky and flaky type and needle-like $M_2C$ carbide, and matrix. The chunky type referred to primary MC carbide and the flaky one to eutectic MC carbide. The morphology of the alloy No. 3 represented a typical hypo-eutectic high chromium white cast iron composed of rod-like $M_7C_3$ carbide which is very sensitive to heat flow direction and matrix. To clarify the solidification sequence, each iron(50g) was remelted at 1723K in an alumina crucible using a silicon carbide resistance furnace under argon atmosphere. The molten iron was cooled at the rate of 10K/min and quenched into water at several temperatures during thermal analysis. The solidification structures of the specimen were found to consist of austenite dendrite(${\gamma}$), $ ({\gamma}+ M_7C_3)$ eutectic and $({\gamma}+ M_6C)$ eutectic in the alloy No. 1, proeutectic MC, austenite dendrite(${\gamma}$), (${\gamma}$+MC) eutectic and $({\gamma}+ M_2C)$ eutectic in the alloy No. 2, and proeutectic $M_7C_3$ and $ ({\gamma}+ M_7C_3)$ eutectic in the alloy No 3. respectively.

군용차량 허브리덕션 고장 메커니즘 분석을 통한 품질개선 연구 (A Study on Quality Improvement through Analysis of Hub-reduction Failure Occurrence Mechanism for Military Vehicles)

  • 김성곤;김선진;윤성호
    • 한국산학기술학회논문지
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    • 제22권6호
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    • pp.188-196
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    • 2021
  • 우리 군에서 운용되는 전술차량은 한국의 지형적 특성을 고려하여 허브리덕션 포탈차축이 적용되었다. 허브리덕션은 전술차량의 차체를 높여 차량의 지상고를 확보하고 토크 증대를 통해 비포장, 야지 등 험로에서의 운용능력 향상을 목적으로 개발되었다. 전술차량은 내구도 주행을 포함한 다양한 성능시험을 거쳐 전력화 되었으나 일부 전방부대 운용차량에서 바퀴 파손 문제가 발생되었다. 바퀴 이탈은 운전자의 안전과 생명에 관련된 품질문제로 명확한 원인분석이 수행되어야 한다. 현장방문을 통한 고품분석 결과 허브를 포함한 손상 부품이 많아 조속한 원인규명이 곤란하였다. 이에 손상 부품별 고장발생 메커니즘 분석을 수행하여 문제발생이 허브에서 시작되었음을 규명하였다. 또한 파손의 근본원인이 허브 내부 이물 및 기공에 의한 균열임을 최종 확인하였다. 이를 바탕으로 특성요인도 분석기법을 활용하여 설계 및 제조, 출하단계에 걸친 품질개선안을 도출하였다. 제안된 개선안은 내구해석을 포함한 단품 성능시험 및 실차 내구도 주행시험을 통해 효과성을 검증하고 이를 반영함으로써 한국형 전술차량의 주행 안전성을 확보하였다. 끝으로 본 논문에서 제시한 고장발생 메커니즘 분석기법이 향후 군용차량을 포함한 유사 장비 품질문제 분석에 활용되기를 기대한다.