• 제목/요약/키워드: 최적 라틴 방격법

검색결과 5건 처리시간 0.02초

Liquid metal을 이용한 고속 양면 가공 및 라틴 방격법에 의한 최적 가공 조건 선정 (High Speed Machining of the thin surface parts using liquid metal and selection of machining condition by Latin Square Method)

  • 임표;이희관;양균의
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2004년도 추계학술대회 논문집
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    • pp.433-438
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    • 2004
  • The rapid machining of prototypes plays an important role in product process. Rapid Prototyping(RP) is the widespread technology to produce prototype. But, it have many problems such as shrinkage, deformation and formation occurred by hardening of resin and stair shaping, On the contrary, high speed machining(HSM) technology has many advantages such as good quality, low cost and rapid machining time. Moreover, it is possible to use the material of original product. This paper presents manufacture of trial product by HSM and optimization of machining condition for high productivity in the view of manufacturing time and average error. For example, propeller is machined by the surface machining of thin surface parts. Experiments are designed of machining conditions by Latin Square method and machining condition is optimized and selected by ANOVA

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Liquid metal을 이용한 고속 양면 가공 및 라틴 방격법에 의한 최적가공 조건 선정 (High Speed Machining of the thin surface parts using liquid metal and selection of machining condition by Latin Square Method)

  • 임표;이회관;양균의
    • 한국정밀공학회지
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    • 제22권10호
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    • pp.99-106
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    • 2005
  • This paper presents manufacture of mock-up by HSM and optimization of machining condition for high productivity in the view of manufacturing time and accuracy. The rapid machining of prototypes plays an important role in building mock-up. Rapid Prototyping(RP) is a technology to make prototype. But, it have many problems such as shrinkage. deformation and formation occurred by hardening of resin and stair shaping. On the contrary, high speed machining(HSM) technology has many advantages such as good quality, low cost and rapid machining time. HSM and RP is compared for machining efficiency. Experiments are designed by Latin Square Method and machining condition is optimized and selected by ANOVA. For example, propeller is machined by the surface machining of thin surface parts.

미생물유래 Transglutaminase의 생산을 위한 생물반응기 운전 조건 확립

  • 이화정;유재수;전계택;정용섭
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2000년도 춘계학술발표대회
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    • pp.239-242
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    • 2000
  • 호기성 균주인 Streptoverticillium mobaraense에 의해 생산되는 Transglutaminase의 고수율을 위한 실험을 하였다. 라틴방격법에 의해 실험을 설계하여 최적 배지를 확정하였고, 호기성 균주인만큼 공기공급을 위한 통기 및 교반이 중요하게 작용됨을 관찰하였다. 이를 위해 임펠러의 형태 및 크기에 관한 실험을 수행하였고, 향후 부피산소공기전달 속도를 vvm과 교반속도에 따라 측정하도록 할 것이다. 또한 미생물의 증식 및 효소생산성에 미치는 온도 및 pH의 조건에 대해 실험한 결과 온도보다는 산성 및 중성에서의 pH가 효소생산성에 높은 영향을 미치고 있다. 플라스크 배양에서 평균적으로 1.3 U/mL 활성의 효소생산이 가능했으며 동일조건의 발효조 배양시 0.7 U/mL로 생산성이 감소하였다.

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해석 및 설계 프로세스 통합을 통한 차량 후륜 현가장치 최적화 (Optimal Vehicle Rear Suspension through Integration of Analysis and Design Process)

  • 김도원;박도현;이진화;신상하;최진호;최병렬;최동훈
    • 한국자동차공학회논문집
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    • 제22권4호
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    • pp.72-81
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    • 2014
  • In this study, we perform the optimization of trailing arm bush in a vehicle rear suspension to improve the ride and handling performance. A design problem was formulated considering 2 objective functions and 7 constraints related to vehicle ride and handling performance. PIAnO, one of the PIDO (Process Integration and Design Optimization) tool, was used to automate analysis procedures and perform a design optimization. In order to assess relation between performances and design variables, we perform the DOE (Design of Experiments). To find the optimal solution, we used Progressive quadratic response surface method (PQRSM), one of the design optimization techniques equipped in PIAnO. As an optimization result, we got an optimal solution and could improve lateral force steer off-center by 43.0% while decreasing brake compliance at wheel center by 8.1%.