• 제목/요약/키워드: forming elements

검색결과 447건 처리시간 0.022초

다점 무금형 2차원 곡면성형 최적화 연구 (Study on Optimization for 2-D Curved Surface Forming by Multi-point Dieless Elasto-forming)

  • 강동하;박종우;김태원
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2004년도 춘계학술대회 논문집
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    • pp.66-69
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    • 2004
  • A new concept of multi-point dieless elasto-forming method has been developed to make various shape of curved surface without conventional dies. The developed dieless elasto-forming system consists of discrete punches controlled by servo motors and various kinds of elastomers(rubber and foam). To predict optimal position of punch elements, DTF(deformation transfer function) was introduced, and FEM analysis was carried out. The optimal arrangement of elastomer was selected considering characteristics of each elastomer, and a desired concave shape was formed. The experimental results were consistent with the numerical ones.

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점진성형의 공정평가를 위한 유한요소해석에서 묘사기법 적용에 관한 비교 연구 (Comparative Study on Description Schemes to Perform Finite Element Analysis in Incremental Forming Process)

  • 박준수;변상민
    • 대한기계학회논문집A
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    • 제36권9호
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    • pp.1073-1080
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    • 2012
  • 점진성형은 공구 운동으로 소재의 국부 소성변형 영역을 전체 소재에 확장시켜 목표 형상으로 변형시키는 냉간 성형공정이다. 본 논문에서는 점진성형의 유한요소해석 시 묘사기법에 관한 연구를 수행하였다. 고찰할 묘사기법으로 라그랑지언 묘사법과 ALE 묘사법을 선택하였다. 미끄럼 경계기법도 공구와 접촉표면에서 요소의 찌그러짐을 극복하기 위한 방법중의 한가지 경우로 고찰하였다. 묘사기법과 경계기법의 다양한 조합 중에 ALE 묘사법과 연계한 미끄럼 경계기법의 경우가 요소의 찌그러짐을 가장 완화 시켰다. 이 방법이 최종 단계 변형까지 점진성형 해석을 지속할 수 있도록 해주는 유일한 조합인 것으로 나타났다. 이에 반해, 라그랑지언 묘사법 및 순수 ALE 묘사법은 점진성형 해석 중에 요소의 찌그러짐이 극심하여 최종 변형 형상에 도달하기 오래 전에 해석이 중단되는 상태를 보였다.

판금형 해석을 위한 정적/외연적 유한요소 프로그램의 병령화에 관한 연구 (On The Parallel Inplementation of a Static/Explicit FEM Program for Sheet Metal Forming)

  • 진석기;정동원
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1995년도 추계학술대회 논문집
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    • pp.625-628
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    • 1995
  • A static/implicit finite element code for sheet forming (ITAS3D) is parallelized on IBM SP 6000 multi-processor computer. Computing-load-balanced domain decomposition method and the direct solution method at each subdomain (and interface) equation are developed. The system of equations for each subdomain are constructed by condensation and calculated on each processor. Approximated operation counts are calculated to set up the nonlinear equation system for balancing the compute load on each subdomain. Th esquare cup tests with several numbers of elements are used in demonstrating the performance of this parallel implementation. This procedure are proved to be efficient for moderate number of processors, especially for large number of elements.

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피라미드 코어를 가진 샌드위치 판재의 성형해석기술 개발 (Development of Analysis Method for Forming of Sandwich Sheet with Pyramid Core)

  • 임성진;김종호;성대용;양동열;정완진
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2007년도 춘계학술대회 논문집
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    • pp.266-267
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    • 2007
  • Sandwich sheet with inner structure is expected to find many applications because of high stiffness to mass ratio. In order to simulate forming of sandwich sheet with pyramid core, an effective simulation method is required. Compared to the expensive model using solid elements, cost effective model using simplified elements such as shells and beams is developed. By comparing two models in terms of the cost and accuracy for unit cell deformation, a developed model shows some advantages over the model using solid elements. Evolution of two kind of forming limits, face buckling and core buckling are successfully expressed by developed model. Developed model is also applied in the simulation of square cup drawing and L-type bending. The corresponding experiments are carried out. Deformation shape and wrinkling behavior are compared and discussed. It is found that simulation results using a developed model are in good agreement with experiments.

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동적 외연적/강소성 유한요소 해석과 차체판넬성형에의 적용 (A Dynamic Explicit/Rigid-plastic Finite Element Analysis and its Application to Auto-body Panel Stamping Process)

  • 정동원;양동열
    • 한국자동차공학회논문집
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    • 제4권5호
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    • pp.16-25
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    • 1996
  • In the present work a rigid-plastic finite element formulation using dynamic explicit time integration scheme is proposed for numerical analysis of auto-body panel stamping processes. The rigid-plastic finite element method based on membrane elements has long been employed as a useful numerical technique for the analysis of sheet metal forming because of its time effectiveness. A damping scheme is proposed in order to achieve a stable solution procedure in dynamic sheet forming problems. In order to improve the drawbacks of the conventional membrane elements, BEAM(abbreviated from Bending Energy Augmented Membrane) elements are employed. Rotational damping and spring about the drilling direction are introduced to prevent a zero energy mode. The lumping scheme is employed for the diagonal mass matrix and linearizing dynamic formulation. A contact scheme is developed by combining the skew boundary condition and the direct trial-and-error method. Computations are carried out for analysis of complicated auto-body panel stamping processes such as forming of an oilpan, a fuel tank and a front fender. The numerical results of explicit analysis are compared with the implicit results with good agreements and it is shown that the explicit scheme requires much shorter computational time, especially when the problem becomes more complicated. It is thus shown that the proposed dynamic explicit rigid-plastic finite element method enables an effective computation for complicated autobody panel stamping processes.

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Effects of Metalloid Elements on the Mechanical Properties of Fe-Based Bulk Amorphous Alloys

  • Kim, Yongchan;Hwang, Byoungchul
    • 한국재료학회지
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    • 제26권12호
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    • pp.671-675
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    • 2016
  • In this study, the glass-forming ability and mechanical properties of newly developed Fe-Mn-Cr-Mo-B-C-P-Si-Al bulk amorphous alloys were investigated, and metalloid elements such as B, C, and P were found to have a strong influence on the properties of the Fe-based amorphous alloys. When the total metalloid content (B, C, and P) is less than 5 %, only the crystal phase is formed, but the addition of more than 10 % metalloid elements enhances the glass forming ability. In particular, the alloys with 10 % metalloid content exhibit the best combination of very high compressive strength (~2.8 GPa) and superior fracture elongation (~30 %) because they consist of crystal/amorphous composite phases.

인체에 유해하지 않은 원소를 사용한 Ti 계 벌크 비정질 합금 개발 (Development of Ti-based Bulk Metallic Glasses with Non-toxic Elements)

  • 이철규;이승훈
    • 한국주조공학회지
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    • 제32권4호
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    • pp.177-180
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    • 2012
  • Ti-based bulk metallic glasses with high glass forming ability were developed through a systematic alloy design technique. The main alloy design strategy was the selection of alloying elements that may not be toxic in the human body. The $Ti_{45.0}Cu_{40.1}Zr_{12.7}Si_{2.2}$ alloy could be cast into an amorphous rod with the diameter of 3 mm by a suction casting technique using Cu mold. The compressive strength of the amorphous rod was measured as 1826 MPa. Since the Ti-based amorphous alloys consist of non-toxic elements, they can be widely used as bio-materials and eco-materials with unique and beneficial properties.

구름 베어링 부품의 소성가공 (Plastic Forming of Rolling Bearing Steel Components)

  • 송복한;박창남
    • 소성∙가공
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    • 제12권2호
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    • pp.83-87
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    • 2003
  • Current state of plastic processes of steel bearing parts is surveyed. According to the advances in plastic forming technologies and their great advantage to mass production, plastic processes are adopted in manufacturing majority of bering parts. The rings are forged or ring rolled and the rolling elements, i.e, balls or rollers are cold formed before fine machining. Bearing's steel retainers are mainly press formed using cold rolled seel strips. Including the general explanation about above processes, some details of forging technology, control of forging temperature and after cooling process, and examples of computer simulation are described.

소성가공에 있어서의 금형수명 (Tool life in Metal Forming Processes)

  • 최재찬;김병민
    • 소성∙가공
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    • 제3권2호
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    • pp.147-155
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    • 1994
  • The service life of tools in metal forming technology is to a large extent limited by wear and fatigue fracture of the active elements. This presents a basic request for tool cost minimization and reduction of extensive machine down time, caused by premature tool failure. Currents developments are dominated by steps to reduce the causes of tool failure. A main problem of forming technology remains the insufficient reliability of tools due to a large and incalculable life time fluctuation. Only a systematic investigation of the failure mechanisms and operational loading of tools can lead to future improvements in tool layout, that is optimization of tool usage.

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AUTOMATIC HEXAHEDRAL MESH GENERATION FOR FINITE ELEMENT SIMULATION OF METAL FORMING

  • Ryoo S. R.;Hwang S. M.
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2002년도 제7회 단조 심포지엄
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    • pp.105-112
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    • 2002
  • A new grid-based approach is presented for automatic generation of hexahedral meshes for simulation of plastic deformation in metal forming. In this approach, special enveloping schemes are applied, to eradicate the sources of the degenerate elements that may appear in a generated mesh. The schemes are described in detail, along with a complete procedure for mesh generation. The capability of the approach to deal with an arbitrary, 3-D process geometry is demonstrated through application to a selected forming problem.

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