• 제목/요약/키워드: Auto-body panel

검색결과 58건 처리시간 0.029초

자동차 외판용 BH강판에서 성형성과 소부경화성에 미치는 조질압연의 영향 (Effect of Temper Rolling on Formability and Baking Hardenability in Baking Hardenable Steels for Auto Body Outer Panel)

  • 고흥석;문만빈;신철수;오현운
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2004년도 제5회 압연심포지엄 신 시장 개척을 위한 압연기술
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    • pp.37-44
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    • 2004
  • Automotive company has been endeavoring to develop high strength steels to get higher fuel efficiency of car since the oil shortage in 1970s and to cope with the recent strict environmental regulation. Outer panels(Hood, Roof, Door and Fender) for automobile require higher dent resistance. Bake-hardenable(BH) steels are known as useful for their high deep drawability and high dent resistance. Recently BH steels are increasingly adapted for outer panel use due to their high drawability and high dent resistance. In this study effect of temper rolling on formability (textures, r value) and bake hardenability is investigated fur improving characteristic of bake-hardenable steels.

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스탬핑 프레스 금형 다이페이스 설계 해석 시스템 (Design Analysis System for Dieface of Stamping Press Dies)

  • 금영탁;정승훈;이완우;박성일;김준환
    • 소성∙가공
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    • 제9권6호
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    • pp.567-573
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    • 2000
  • An analysis system for evaluating the design of dieface of stamping press dies is developed. The die design analysis system interfaced with CATIA via universal or NASTRAN data format provides the design information such as binder-wrap, punch contact status, section length change ratio, wrinkle symptom etc., which are crucial in predicting the defects of initial shape of the sheet in the dieface design stage. The graphic post-processor of developed system which displays 3-dimensional shapes of tool and die and analysis results, helps the interpretation of design evaluation. The dieface design analysis system was tested in draw dies of front floor panel and quarter panel of auto-body in order to verify the usefulness and validity of the system The examples show that the developed system would be a good tool in evaluating dieface designs.

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쉘 요소를 이용한 박판성형공정의 유한요소해석 (Finite Element Analysis of Sheet Metal Forming Process Using Shell Element)

  • 고형훈;이찬호;강동규;설남기;이광식;정동원
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2005년도 춘계학술대회 논문집
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    • pp.122-125
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    • 2005
  • The AutoForm previously used the membrane element and it accomplished sheet metal forming analysis. The membrane analysis has been widely applied to various sheet metal forming processes because of its saving time effectiveness. However, it's well known that the membrane analysis can not provides correct information for the processes which considerable bending effects. From this time research it tried to compare the formation analysis result which uses the shell element which is applied newly in the AutoForm and actual products. The shell element is compromise method between continuum analysis and membrane analysis. The Finite element method by using shell element is the most economical numerical method. From analysis results, FEA by using shell element can estimate accurately the problems happened in actual auto-body panel.

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드로우비드 전문모델에 관한 연구 (Study on the Drawbead Expert Models)

  • 김준환
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2000년도 춘계학술대회논문집
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    • pp.26-29
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    • 2000
  • drawbead expert models are developed for calculating drawbead restraining force and drawbead-exit thinnings which are boundary conditions in FEM stamping simulation employing the linear multiple regression method by which the deviation of drawing characteristics between drawing test and mathematical model is minimized. In order to show the efficiency and accuracy of an expert drawbead model a finite element simulation of auto-body panel stamping is carried out. The finite element simulation shows that the expert drawbead model provides the accurate solution guarantees the stable convergence and the merit in the computation time.

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유한요소 역해석을 이용한 복잡한 자동차 판넬의 트리밍 라인 설계 (Trimming Line Design of Auto-body Panel with Complex Shape Using Finite Element Inverse Method)

  • 송윤준;한영호;박춘달;정완진
    • 소성∙가공
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    • 제15권6호
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    • pp.459-466
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    • 2006
  • Trimming line design plays an important role in obtaining accurate edge profile after flanging. Compared to the traditional section-based method, simulation-based method can produce more accurate trimming line by considering deformation mechanics. Recently, the use of a finite element inverse method is proposed to obtain optimal trimming line. By analyzing flanging inversely from the final mesh after flanging, trimming line can be obtained from initial mesh on the drawing die surface. Initial guess generation fer finite element inverse method is obtained by developing the final mesh onto drawing tool mesh. Incremental development method is adopted to handle irregular mesh with various size and undercut. In this study, improved incremental development algorithm to handle complex shape is suggested. When developing the final mesh layer by layer, the algorithm which can define the development sequence and the position of developing nodes is thoroughly described. Flanging of front fender is analyzed to demonstrate the effectiveness of the present method. By using section-based trimming line and simulation-based trimming line, incremental finite element simulations are carried out. In comparison with experiment, it is clearly shown that the present method yields more accurate edge profile than section-based method.

구조 최적 설계기법을 이용한 ULSAB 개념의 자동차 도어 설계 (The Automotive Door Design with the ULSAB Concept Using Structural Optimization)

  • 신정규;송세일;이권희;박경진
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2000년도 봄 학술발표회논문집
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    • pp.187-194
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    • 2000
  • Weight reduction for an automobile body is being sought for the fuel efficiency and the energy conservation. One way of the efforts is adopting Ultra Light Steel Auto Body (ULSAB) concept. The ULSAB concept can be used for the light weight of an automobile door with the tailor welded blank (TWB). A design process is defined for the TWB. The inner panel of door is designed by the TWB and optimization. The design starts from an existing component. At first, the hinge and inner reinforcements are removed. In the conceptual design stage, topology optimization is conducted to find the distribution of variable thicknesses. The number of parts and the welding lines are determined from the topology design. In the detailed design process, size optimization is carried out to find thickness while stiffness constraints are satisfied. The final parting lines are determined by shape optimization.

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강소성 유한요소법을 이용한 자동차 판넬 성형공정의 평면 변형해석 (Plane-Strain Analysis of Auto-Body Panel Using the Rigid-Plastic Finite Element Method)

  • 양동열;정완진;송인섭;전기찬;유동진;이정우
    • 대한기계학회논문집
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    • 제15권1호
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    • pp.169-178
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    • 1991
  • 본 연구에서는 평면 변형률 강소성 유한요소법을 이용하여 유한요소 수식화를 유도하고 금형이 해석저인 함수로 묘사되는 드로잉 공정을 해석하고, 금형이 해석적인 함수로 묘사되지 않는 실제적인 자동차 성형품의 드로잉 공정을 해석하여 기존의 결과 와 비교하여 본 방법의 타당성을 검토하였다.

차체조립과 자동용접 (Motor vehicle body assembly and auto-welding)

  • 이승복
    • 오토저널
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    • 제3권1호
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    • pp.19-26
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    • 1981
  • 자동차제조에 있어서의 용접은 신뢰성 양산과 생력화에 대응하여 접합 조립하는 방법으로 특이한 분야를 형성하여 발전되었다. 예를 들면, 자동차의 생산은 기본적으로 양산체제를 갖추고 있 어서, 일반적으로 노동집약형 산업이라고 불리어지며 그 제조공정을 보면 stamping press 공정과 같이 용접공정도 비교적 장치산업적인 분야로 빠르게 자동화나 성인화 내지 무인화로 진행되고 있다. 자동차용접은 사람이 portable spot welder로 한점씩 용접하지만 양산에 대비한 합리화와 안정화를 위하여 다점용접 (multi spot weld)라는 자동화공법의 도입이 불가피하며 금일의 자 동차생산에 있어서 상식화가 되고 있다. 이것은 한개의 차체라면 차형의 대조 또는 press panel의 수에 따라 차이가 조금 있으나 약 4-5 천점의 점용접이 필요하기 때문에 여러 가지 반송장치와 조합하여 대규모의 line설비로 발전되어 가고 있다. 이와 같이 용접공정의 자동화는 생산성을 높이는 반면에 전용성이 높기 때문에 설계변경에 대한 초기투자의 용접설비 대부분을 갱신하여야 하는 새로운 투자의 필요문제가 증대되었다. 이러한 전용설비에 대한 유연성을 가미한 자동차로 지향되어, 그 한 방법으로 산업용 robot가 도입되었다. 근래에 와서는 자동차제조에 있어서 새 로운 용접기술을 합리적으로 효과있게 적용하는 기술이 금후의 연구과제라 하겠다.

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용접부를 고려한 레이저 합체박판 성형공정의 3차원 유한요소 해석 (3-D FEM Analysis of Forming Process for Laser Welded Blank Considering Welded Zone)

  • 금영탁
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 1999년도 추계학술대회논문집
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    • pp.14-17
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    • 1999
  • The finite element formulation is developed for predicting strain distributions and weld line movements in the forming processes of laser welded blank. The welded zone(WZ) is modelled with several narrow finite elements whose material characteristics are analytically obtained from those of base metals based on the tensile tests. In order to show the reliability and effectiveness of weld element the forming process of hemispherical dome stretching and auto-body door inner panel stamping are simulated FEM predictions show good agreements with experimental observations.

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레이저 용접 테일러드 블랭크의 용접부 물성평가 및 박판성형 해석에 적용 (Evaluation of Material Properties of Welding Zone in Laser Welded Blank and Its Application to Sheet Metal Forming Analysis)

  • 구본영;금영탁
    • 한국레이저가공학회:학술대회논문집
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    • 한국레이저가공학회 1999년도 춘계학술발표대회 논문개요집
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    • pp.29-32
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    • 1999
  • The material properties of laser welding zone such as strength coefficient, work-hardening exponent, and plastic anisotropic ratio are analytically obtained from those of base metals based on the tensile tests. . The finite element formulation is developed for predicting strain distributions and weld line movements in the forming processes of laser welded blank. The welding zone(WZ) is modelled with the several, narrow finite elements whose material characteristics are based on the experimental results and the analytical equations. In order to show an application of the developed weld element the stamping process of auto-body door inner panel is simulated. FEM predictions are compared and showed good agreements with experimental observations.

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