• 제목/요약/키워드: Stamping Die

검색결과 154건 처리시간 0.021초

페라이트계 스테인리스 판재 적용을 위한 세탁기 회전날개의 전산 해석기반 성형공정설계 (Simulation-based Stamping Process Design for a Pulsator Cover of a Washing Machine with Ferritic Stainless Steel Sheet)

  • 김세호;김기풍
    • 한국정밀공학회지
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    • 제28권3호
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    • pp.349-356
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    • 2011
  • This paper replaces a conventional austenitic stainless steel sheet to a ferritic stainless steel for the cost reduction of a pulsator cover of a washing machine. However, ferritic stainless steel has poor formability in comparison with austenitic one. The low formability of ferritic steel results in problems during stamping such as fracture, wrinkling, shape inaccuracy and so on. Design modification of the stamping tool is carried out with the aid of the finite element analysis for multistage stamping process of the pulsator cover. The simulation results show that fracture occurs on top of the product while wrinkles are generated by the excess metal near the wing part. Modification of the initial stamping die is performed to improve metal flow and to eliminate problems during the stamping process. Simulation with the modified design fully demonstrates that safe forming is possible without inferiorities.

곡선형 냉각채널 금형을 사용한 프론트 필라 핫스탬핑 공정에서 금형냉각시간이 기계적 특성에 미치는 영향 (Effect of Die Cooling Time on Component Mechanical Properties in a Front Pillar Hot Stamping Process)

  • 이재진;강다경;서창희;임용희;이경훈;한수식
    • 한국기계가공학회지
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    • 제18권6호
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    • pp.33-38
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    • 2019
  • Researchers have recently begun to study hot stamping processes to shorten the mold cooling time and improve productivity. These publications explain that the mold cooling time can be reduced by using a curved cooling channel, where the mold surface is processed to a uniform depth, instead of a straight cooling channel that uses the conventional gun drilling machine. This study investigates the characteristics of the front pillar of an automobile after using a mold with a curved cooling channel. To analyze the change in properties, we used a 1.6 mm boron steel blank and heated the prototype at $930^{\circ}C$ for 5 minutes. Next, we formed the prototype with a load of about 500 tons while varying the mold cooling time between 1 and 10 seconds. We subjected each prototype specimen to a tensile strength test, a hardness test, and a tissue surface observation.

자동차 프레스 금형의 스티로폼-패턴 가공을 위한 전용 CAM 시스템 개발 (Development of a Dedicated CAM System for Styrofoam-pattern Machining)

  • 박정환
    • 한국CDE학회논문집
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    • 제3권4호
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    • pp.223-235
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    • 1998
  • A dedicated CAM(Computer-Aided Manufacturing) system has been developed, which generated tool-path to machine Styrofoam stamping die-patterns in Chrysler Corporation. A previous process to build die-patterns was to "stick build" the pattern, in which stock is cut & glued together, and then the NC machining of part-surface shape completes building a Styrofoam die-pattern. The current process utilizes the developed CAM system, and almost removes the manual work, consequently reduces the overall lead time. The paper presents the overall system structures, tool-path generation, and some features of Styrofoam pattern machining.

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자동차 시트 쿠션 판넬의 복합 자동화 금형 제조기술에 관한 연구 (A Study on the Complex Automation Die Manufacturing Technology for an Automotive Seat Cushion Panel)

  • 박동환;정창식
    • 소성∙가공
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    • 제23권2호
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    • pp.75-81
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    • 2014
  • Progressive dies are used for metal stamping during which multiple operations are performed in a sequence. Material is fed automatically from a coil into the press and advances from one die station to the next with each press stroke. Transfer dies are used in high-volume manufacturing for round, deep-drawn, and medium-to-large parts. Several different operations may be incorporated within a transfer die such as blanking, bending, piercing, trimming, and deep drawing. The main challenge in the current study is how to deform a seat cushion panel meeting the design specifications without any defects. A complex automation die manufacturing technology for the automotive seat cushion panel, mixing both semi-progressive die and transfer die for continuous production, was developed.

자동차 프레스 금형 자동 설계 지원 시스템 (Automatic Design Supporting System for Automobile Stamping Tool)

  • 정효상;이성수
    • 한국정밀공학회지
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    • 제19권8호
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    • pp.194-202
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    • 2002
  • Die design of bonnet drawing is composed of upper die, lower die and blank holder. It has been performed by checked and re-design method, which cause economic and financial loss. Nowadays, CAD/CAM system is excellent, but application is low. Therefore, in specific item, drawing die of bonnet outer draw by 3-D lay-out. In this study purpose, Bonnet drawing die is designed rapidly, correctly. It's method that shape modify to resemble. This purpose lead to 3-D Lay-Out. It is to react the standard die. In rule relation, input data change all of the shape.

프런트 엔드 모듈 캐리어 어퍼 부재의 면품질 개선을 위한 금형설계 변경 (Design Modification of the Stamping Die for the Improvement of Surface Quality of the Front End Module Carrier Upper Member)

  • 김세호
    • 소성∙가공
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    • 제14권2호
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    • pp.153-159
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    • 2005
  • Design modification of the stamping die for the upper member of a front end module carrier is carried out in order to improve the surface quality of the final product. The small inferiority induced by wrinkling near the wall of the upper member has been inspected after the draw-forming process. The finite element analysis is pursued with the whole geometry in order to consider the complicated shape. The simulation shows that the excess metal is developed by the irregular contact of the blank the tool and it remains after the final stroke. This paper proposes two guidelines for the modification. One is to add the draw-bead near the critical region in order to increase the draw-in force. The other is to modify the tool shape such as the forming shape at the wall in order to absorb the excess metal before the final stroke. Simulation results show that the proposed guidelines both guarantee the improved surface quality.

핫스템핑 부품의 전단가공에서 전단 하중의 감소 및 트리밍 금형 수명 향상을 위한 국부 연화 방법 (A Local Softening Method for Reducing Die Load and Increasing Service Life in Trimming of Hot Stamped Part)

  • 최홍석;임우승;강충길;김병민
    • 소성∙가공
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    • 제20권6호
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    • pp.427-431
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    • 2011
  • In general, hot stamped component is trimmed by costly and time consuming laser cutting when the material strength is over 1,500MPa. The aim of this work was to demonstrate that the trimming die life is improved and the trimming load is decreased by lowering the strength of the region to be trimmed. The model employed in this study was a hat shape, similar to the cross section of many hot stamped products. FE-analysis of hot stamping process was performed to evaluate the effect of tool shape on cooling rate at the area to be trimmed. The best tool shape was thus identified, which created slower cooling and lower hardness at the region to be trimmed. The wear at the cutting tool edge was also reduced.

고강도강 Reinforce Center Pillar의 스프링백 해석 (Application of Springback Analysis in the Development of a Reinforce Center Pillar Stamping Die)

  • 김기태;김승현;유국호;이춘우;심현보
    • 소성∙가공
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    • 제23권5호
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    • pp.297-302
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    • 2014
  • The current paper introduces work that was conducted during the development of a stamping die for a reinforce center pillar made from high strength steel. In the current study, the Bauschinger effect on the springback analysis was studied by comparing simulation results with real panels, which are currently in production. For a complicated part shape, quantitative measurements of the deformed shape are not easy in general to obtain. An adjustment procedure of the shape data for some chosen sections has been suggested to improve the accuracy of the quantitative measurements. The results show that the kinematic hardening model provides more accurate results.

테일러드 블랭크의 스탬핑 성형해석에 관한 연구 (Applications to the Numerical Stamping Analysis of Tailor-welded Blanks)

  • 이종민;최이천;최치수;유동진
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 1998년도 제2회 박판성형심포지엄 논문집 박판성형기술의 현재와 미래
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    • pp.110-120
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    • 1998
  • Tailor-welded blanks are made of two or more different blanks in thickness or material. So car body with tailor-welded blanks need not reinforcement panels. However in order to make stamping tools for tailor-welded blanks, die engineers should know about the exact position of the welding line after the part is drawn. The necessity of knowledge about the position of welding line needs forming simulation methodology as a prior step in tooling. Therefor some parts of the simulation methodology are proposed and compared with the experimental results.