• 제목/요약/키워드: optimal plastic design

검색결과 193건 처리시간 0.026초

재료의 변형거동 추적을 통한 예비형상 설계 (Preform Design Technique by Tracing the Material Deformation Behavior)

  • 홍진태;박철현;이석렬;양동열
    • 소성∙가공
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    • 제13권6호
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    • pp.503-508
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    • 2004
  • Preform design techniques have been investigated to reduce die wear and forming load and to improve material flow, filling ratio, etc. In hot forging processes, a thin deformed part of a workpiece, known as a flash, is formed in the narrow gap between the upper and lower tools. Although designers make tools that generate a flash intentionally in order to improve flow properties, excessive flash increases die wear and forming load. Therefore, it is necessary to make a preform shape that can reduce the excessive flash without changing flow properties. In this paper, a new preform design technique is proposed to reduce the excessive flash in a metal forging process. After a finite element simulation of the process is carried out with an initial billet, the flow of material in the flash region is traced from the final shape to the initial billet. The region belonging to the flash is then easily found in the initial billet. The finite element simulation is then carried out again with the modified billet from which the selected region has been removed. In several iterations of this technique, the optimal preform shape that minimizes the amount of flash without changing the forgeability can be obtained.

알루미늄 7075 복합압출재에 대한 공정해석 및 설계 (Analysis and Design of a Forming Porcess for Combined Extrusion with Aluminum AIIoy 7075)

  • 김진복;변상규
    • 소성∙가공
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    • 제6권5호
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    • pp.446-455
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    • 1997
  • A Combined extrusion operation consists of forward and backward extrusion forming and it is possible to make the process be simple by employing it. But the metal flow pattern induced by the operation is hard to analyze accurately because the flows are non-steady, which have at least two directions dependent upon each other. So engineers in the industrial factories had conducted the two extrusion operations separately. A new process was designed by the industrial expert for forming of an alu-minum preform using the combined extrusion operation. In this study, experiments and finite element analysis was carried out to determine the process parameters. Through the preliminary experiment, it was shown that warm forming condition was more desirable than cold or hot ones. And optimal shape of initial billet could be also determined. From the compatibility test, bonde-lube was chosen as the optimal lubricant and 20$0^{\circ}C$ as the material temperature by the inspection of micro-structure. The operation was simulated by the rigid-plastic finite element method to examine the metal flow. Disap-pearing of dead metal zone was observed as the punch fell down and desirable shape was obtained from the one operation. As a result of this study, 7 operations could be reduced and 225% of material saved.

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휴대폰 키패드의 최적 사출성형 공정 설계 (Optimization of injection molding process for plastic keypad on mobile phone)

  • 박은서;신상은;한성렬
    • Design & Manufacturing
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    • 제11권1호
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    • pp.34-38
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    • 2017
  • Deformation frequently occurring in injection molded products is a phenomenon displayed due to uneven shrinkage distribution and orientation of the whole molded product. Shrinkage deformation is a very serious problem because it causes deformation of the molded article and shortens the performance of the product. In this paper, we are focusing on the warpage of keypad in mobile phone. In other words, we focused on minimizing keypad deformation. In the study, the Taguchi method was applied to find the injection molding conditions that minimize the deformation of the keypad. In the case of this keypad, the main factors influencing the shrinkage deformation were predicted as the melting temperature, coolant temperature and cooling time. In addition, the optimum molding conditions were obtained and the shrinkage strain was minimized. Experiments for the Taguchi method and verification of optimal molding conditions were performed using an injection molding analysis program.

균일 분포 횡하중 및 축하중을 받는 격자형 구조물의 최적 소성설계법 (Optimum Plastic Design Method of Grillages under Uniformly Distributed Lateral Loads and Axial Forces)

  • 정태준;김기성;박영호
    • 대한조선학회논문집
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    • 제33권2호
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    • pp.56-64
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    • 1996
  • 균일 분포 횡하중이 작용하는 격자형 구조물의 극한 해석법의 개발에 대한 이전의 연구(참고문헌 1과 5)를 검증해 보았고, 붕괴 이론에 있어서 면내력의 영향을 고찰 하였다. 논문의 주된 내용은 최소 중량과 최소 비용을 갖는 격자형 구조물의 최적설계법을 개발하였고, Pareto 해석법을 적용하여 다목적 함수를 갖는 구조물에서 최적 절충해를 구하는 최적화 기법을 소개하였다.

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증기터빈 티타늄 블레이드의 단조공정 개발에 관한 연구 (A Study on the Development of Forging Process for Steam Turbine Titanium Blade)

  • 김윤환;조종래;정호승;박희천;이낙규
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2005년도 추계학술대회 논문집
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    • pp.354-357
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    • 2005
  • When Ti-6Al-4V is used in long steam turbine blades, the main issues are how to improve the fatigue strength as a problem of internal quality and how to forge the thinnest possible blades as problem of dimensional precision. To assure an excellent fatigue strength, it is important to make the two phase fine and equiaxial structure by providing enough plastic deformation in the two phase$(\alpha\;phase/\beta\;phase)$ temperature region. Accordingly, it needs to predict that forging temperature, preform design and forging velocity in forging process. To achieve this end, the two steps forging process was suggested to forge the thin and twisted blades with a precision hammer considering die forces and metal flow. Two steps forging process consists of the flattening forging process and finishing forging process. Process in forging of a 1016mm long steam turbine blade is designed by the finite element method. This study attempts to derive systematic design procedures for process design in the forging. Forging parameters was analyzed in two-dimensional plane-strain simulation and two steps forging process carried out in three-dimensional simulation. Consequently, optimal forging process parameters of long steam turbine blades in Ti-6Al-4V with a high dimensional precision are selected in the hammer die forging.

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모터스포츠와 기술 융합 연구 : CFRP 버킷 시트 설계를 위한 구조강도 해석 (Convergence Study of Motorsports and Technology : Strength Analysis for the Design of CFRP Bucket Seat)

  • 장운근
    • 한국융합학회논문지
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    • 제10권5호
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    • pp.165-171
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    • 2019
  • 오늘날 공학과 기술은 스포츠 분야에 많은 영향을 미치고 있다. 스포츠의 속성인 경쟁은 스포츠선수 뿐만이 아니라 스포츠용품에 있어서도 보다 높은 성능을 요구하게 된다. 특히 모터스포츠분야는 성능과 안전이라는 측면에서 오래전부터 스포츠와 기술의 융합이 자연스럽게 이루어지고 있다. 본 연구에서는 모터스포츠와 일반 자동차튜닝 시장을 겨냥한 카본 버킷 시트(Bucket seat)의 개발을 위하여 유한요소해석을 통해 구조강도 평가를 시행하였다. FIA($F\acute{e}d\acute{e}ration$ Internationale de l'Automobile)의 규정을 기본 설계와 강도평가에 적용하였으며, 복합소재의 특성을 고려한 유한요소 모델링과 CFRP 라미네이트(Carbon Fiber Reinforced Plastic Laminate)의 적층각도와 적층수에 따른 시트의 강도를 Tsai-Wu Failure index를 구하여 평가하였다. 해석 결과 3mm의 폼코어를 적용한 $[0^{\circ}/30^{\circ}/60^{\circ}/90^{\circ}/-30^{\circ}/-60^{\circ}]_4$인 적층이 다른 실험조합에 비하여 무게와 강도 면에서 만족할 만한 성능을 나타내고 있어 최적 적층으로 선정하였다.

소형 가스터빈용 터빈 디스크의 형단조 공정 연구 (Study on the Closed-die Forging Process for Turbine Disk of Small Gas Turbine Engine)

  • 김동권;김영득;김동영
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2007년도 춘계학술대회 논문집
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    • pp.427-430
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    • 2007
  • Gas turbine disk components have been used by Ni-base superalloys which have high temperature strength for enduring stress induced by high speed rotation. This study introduced the overview of development strategy of precision forging of turbine disk and closed-die forging process for manufacturing good quality gas turbine disk. To make superior quality turbine disk, it is important to select optimal forging process conditions like preform shape, die shape and forging temperature etc. In this paper, closed-die forging process has been studied through the rigid-plastic finite element simulation. Proposed forging process can be used for the successful manufacturing of small-size gas turbine disk.

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평평한 금형(金型)의 열응력(熱應力)에 관한 연구(硏究) (A Study on the Thermal Stresses Analysis of the Flat Mould)

  • 민수홍;구본권;김옥삼
    • 한국주조공학회지
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    • 제11권3호
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    • pp.245-253
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    • 1991
  • It is known that the analysis of thermal stresses is substantially important in optimal design of casting mould. In this paper unsteady state thermal stresses generated in ingot and mould during the solidification process are analyzed by the two dimensional thermal elasto-plastic analysis. Distribution of temperature and stress of the mould is calculated using the finite element method and compared with experimental result. The significant results obtained in this study are as follows. At the early stage of the casting process, abrupt temperature change was shown in the vicinity of the inner surface of the mould. The largest temperature gradient is occurred at the corner of the mould. In the thermal stress analysis, compressible stress occurred in the inside wall of the mould where as tensile stress on outside wall. Smaller thermal stress is observed at the rounded corner. It is also observed that the shown is influenced by the thickness of the wall. A fairly good coincidence is found between analytical and experimental results, showing that the proposed analytical methodology is reliable.

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금속절삭시 CHIP 생성기구 및 절삭온도 예측을 위한 유한요소해석에 관한 연구

  • 황준;남궁석
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1993년도 추계학술대회 논문집
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    • pp.22-27
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    • 1993
  • The finite element method is applied to analyze the mechanism of metal cutting. This paper introduces some effects, such constitutive deformation laws of workpiece material, friction of tool-chip contact interfaces, tool rake angles and also simulate the cutting process, chip formation and geometry, tool-chip contact, reaction force of tool, cutting temperature. Under the usual [lane strain assumption, quasi-static analysis were performed with variation of tool-chip interface friction coefficients and rake angles. In this analysis, various cutting speeds and depth of cut are adopted. Some cutting parameters are affected to cutting force, plastic deformation of chip, shear plane angle, chip thickness and tool-chip contact length and reaction forces on tool. Cutting temperature and Thermal behavior. Several aspects of the metal cutting process predicted by the finite element analysis provide information about tool shape design and optimal cutting conditions.

수치해법에 의한 로켓 노즐벽의 최적설계 (An Optimal Design of the Rocket Nozzle Wall by the Numerical Method)

  • Jin Won Kim
    • Journal of Astronomy and Space Sciences
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    • 제3권1호
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    • pp.29-40
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    • 1986
  • 적층재료로 된 로켓 노즐벽에서의 열전도 방정식을 Crank Nicolson의 방법을 이용하여 수치해석 하였으며 정해진 제한조건에 대하여 최적화 방법에 의하여 각층의 재료와 두께를 선택하였다. 로켓 노즐의 운전조건에 대하여 여러가지 입력한 재료중 각층의 최적의 두께 및 재료는 표 3과 같다.

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