• Title/Summary/Keyword: 스프링백 해석

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A study on formability of truck frame (트럭 프레임의 성형성에 관한 연구)

  • 민홍기;김의석;이화원
    • Journal of the korean Society of Automotive Engineers
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    • v.15 no.5
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    • pp.22-30
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    • 1993
  • 본 연구는 MSC/DYNA EXPLICIT CODE를 이용하여 자동차용 샤시 프레임의 성형성을 파악하기 위한 모델링 방식과 단계별 변형양상, 컴퓨터 시뮬레이션의 결과인 스프링백, 잔류응력, 두께변화, 변형률 등을 소개하기로 한다. 1. 프레임 스탬핑 개요. 2. 해석 모델 및 성형조건. 3. 해석결과 및 고찰.

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Construction of information database with tool compensation histories for the tool design of a pillar part (차량 필러부품 프레스 금형설계를 위한 금형보정이력 정보 데이터베이스 구축)

  • Kim, Se-Ho
    • Journal of Korea Society of Industrial Information Systems
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    • v.17 no.7
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    • pp.43-50
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    • 2012
  • Database for the information of the shape accuracy is constructed with the finite element stamping analysis of the center pillar member. Analyses are carried out in order to investigate the effect of tool compensation on the product quality previously performed by an expert in the press shop. The compensation procedure is provided with three sequences for improving shape accuracy of the member by reducing the amount of springback. The analysis result shows that shape inaccuracy in the product is caused by sagging and twisting phenomena from displacement of the section part due to excessive amount of springback. From the database with springback analyses, design modification guidelines are proposed for improving the shape accuracy. The guideline is directly applied to a member with the similar shape and the sound product is obtained successfully reducing the amount of springback.

Springback Minimization using Bottoming in Al Can Deep Drawing Process (알루미늄 캔 딥드로잉에서 Bottoming을 이용한 스프링백 최소화)

  • Park, Sang-Min;Lee, Sa-Rang;Hong, Seokmoo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.17 no.9
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    • pp.302-307
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    • 2016
  • The technology of multistage deep drawing has been widely applied in the metal forming industry, in order to reduce both the manufacturing cost and time. A battery can used for mobile phone production is a well-known example of multistage deep drawing. It is very difficult to manufacture a battery can, however, because of its large thickness to height aspect ratio. Furthermore, the production of the final parts may result in assembly failure due to springback after multistage deep drawing. In industry, empirical methods such as over bending, corner setting and ironing have been used to reduce springback. In this study, a bottoming approach using the finite element method is proposed as a practical and scientific method of reducing springback. Bottoming induces compression stress in the deformed blank at the final stroke of the punch and, thus, has the effect of reducing springback. Different cases of the bottoming process are studied using the finite element program, DYNAFORM, to determine the optimal die design. The results of the springback simulation after bottoming were found to be in good agreement with the experimental results. In conclusion, the proposed bottoming method is expected to be widely used as a practical method of reducing springback in industry.

A Study on the Springback of Sheet Characteristics for Roll forming Analsys (판재 특성에 따른 롤 성형 해석시 스프링백 연구)

  • Jung, J.H.;Lee, Y.S.;Kwon, Y.N.;Lee, J.H.;Son, S.M.;Lee, M.Y.
    • Proceedings of the Korean Society for Technology of Plasticity Conference
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    • 2007.10a
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    • pp.300-301
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    • 2007
  • In this study, it is investigated that sheet characteristics of high strength steel sheets and effect of springback. High strength steel sheets has got attention in automobile industry of high strength and high formability. Springback is a common phenomenon in sheet metal forming, caused by the elastic recovery of the internal stresses after removal of the tooling. However, the information in deformation behavior of high strength steel sheets, including bending and sheet characteristics and springback, is not enough until now. In this research, the V-bending experiment and analysis have been done to obtain the information of springback of high strength steel sheets. Tensile test for high strength steel sheets was done to got tensile properties of elastic modulus and flow stress of the material. It analyzed springback according to the sheet characteristics with using roll-forming model. FE-Simulation used DEFORM-$3D^{TM}$.

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Stamping analysis of automotive wheel disc (자동차용 휠 디스크 스탬핑 해석)

  • 김주성;민홍기
    • Journal of the korean Society of Automotive Engineers
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    • v.14 no.3
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    • pp.26-31
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    • 1992
  • 본 연구에서는 ABBAQUS/EXPLICIT CODE를 이용하여 자동차용 휠 디스크의 성형성을 파악하기 위한 모델링 방식과 컴퓨터 시뮬레이션의 결과인 스프링백, 잔류응력, 두께 변화, 변형률 등을 소개하기로 한다. 컴퓨터 시뮬레이션을 휠 디스크 스탬핑에 이용한 경우 스탬핑시 발생하는 여러현상을 쉽게 예측할 수 있으며, 또한 금형의 Geometry 결정 및 홀더와 펀치의 작용하중 등 금형 설계시 요구되는 데이타 확보가 매우 용이하다.

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Evaluation of the Springback Characteristics for Automotive Steel Sheets by the S-Rail Forming Test (S-레일 시험을 통한 자동차용 판재의 스프링백 특성 평가)

  • Kwon, ln-Jae;Rim, Jae-Kyu;Kim, Hyung-Jong
    • Journal of Industrial Technology
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    • v.21 no.B
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    • pp.287-294
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    • 2001
  • This study is aimed to evaluate the springback characteristics of automotive steel sheets through the S-rail forming test and to find the process condition under which springback can be reduced. Die set for the S-rail test has been made according to the dimension of the NUMISHEET '96 benchmark model. Experiment and finite element analysis have been performed on two kinds of automotive steel sheets: mild steel, SPCEN and high strength steel, SPRC. The test results show that the amount of springback is larger on the high strength steel SPRC than on the mild steel SPCEN, and decreases with increasing blank holding force as the case of material flow. And the reduction of friction has the effect of lowering the blank holding force in view of punch force and material flow. It is shown that the strain distribution over the whole specimen and along the specified sections calculated from the finite element analysis coincides with the measured data except local differences.

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Forming Analysis of a Metal Bellows (금속 벨로우즈의 성형 해석)

  • Lee, Sang-Wook
    • Proceedings of the KSME Conference
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    • 2001.06c
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    • pp.100-105
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    • 2001
  • The manufacturing of metal bellows consists of the four main forming processes, deep-drawing, ironing, tube bulging and folding. Among these, the bulging and folding processes are critically important because the quality of metal bellows is greatly influenced by the forming conditions of these processes. In the present study, the finite element analysis technique is applied to the bulging and folding processes to obtain information about the design parameters of a metal bellows.

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