• 제목/요약/키워드: 다단포머

검색결과 8건 처리시간 0.019초

역산란을 이용한 다단 임피던스 트랜스포머의 새로운 설계 방법 (A New Design Method for Multisection Impedance Transformer Based on the Inverse Scattering)

  • 이민수;박영태
    • 한국산업정보학회논문지
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    • 제6권4호
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    • pp.89-94
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    • 2001
  • 마이크로파대 다단 임피던스 트랜스포머에 대한 새로운 설계법을 제안한다. 이 설계법은 설계하려는 임피던스 트랜스포머에 대한 주파수영역의 반사계수를 이용하는 역산란 이론에 근거를 둔다. 첫째로, 원하는 반사계수를 이용하여 가상 일차원 유전체의 유전율 분포를 추정한다. 둘째로, 반사특성의 관점에서 복원된 유전체와 등가 구조인 트랜스포머를 합성한다. 이론적으로 이 설계법은 Bode-Fano의 제한조건(1)을 만족하면서 임의의 통과대역 특성을 갖는 임피던스 매칭 트랜스포머의 설계에 이용할 수 있다. 두 가지의 설계 예를 통하여 제안한 방법의 타당성을 보인다.

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다단-포머를 이용한 오토트랜스 미션용 솔레노이드 밸브 공정설계 및 유한요소해석 (Finite Element Analysis and Process Planning about the Auto Transmission Solenoid Valve using of Multi-Former)

  • 박철우
    • Journal of Advanced Marine Engineering and Technology
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    • 제33권1호
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    • pp.97-103
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    • 2009
  • The process design of forward Extrusion and Upsetting of Axi-symmetric part has been studied in this paper. During the cold forging product; auto transmission Solenoid Valve part, the defects such as folding and under-fill can be appeared by the improperly controlled metal flow. In this study, to reduce the folding and under-fill the design of experiments has been used to find out the significant design variables in the design of forging process. This paper deals with an Process Planning with which designer can determine operation sequences even after only a little experience in Process Planning of Multi-Former products by multi-stage former working. The approach is based on knowledge-based rules, and a process knowledge-base consisting of design rules is built. Based on the systematic procedure of process sequence design, the forming operation of cold forged auto transmission Solenoid Valve part is analyzed by the commercial Finite Element program, DEFORM/2D.

다단포머-볼트류 공정 및 금형설계 자동화 시스템 개발 (A Study of Automated Process Planning and Die Design for Multi Former-Bolt Products)

  • 박철우;강정훈;이준호;김철;김문생;최재찬
    • 한국정밀공학회지
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    • 제20권4호
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    • pp.29-38
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    • 2003
  • This paper deals with an automated computer-aided process planning and die design system with which designer can determine operation sequences even after only a little experience in process planning and die design of multi former-bolt products by multi-stage former working. The approach is based on knowledge-based rules, and a process knowledge base consisting of design rules is built. Knowledge fur the system is formulated from plasticity theories, empirical results and the empirical knowledge of field experts. Programs for the system have been written in AutoLISP for AutoCAD with a personal computer. An attempt is made to link programs incorporating a number of expert design rules with the process variables obtained by commercial FEM softwares, DEFORM and ANSYS, to form a useful package. The system is composed of four main modules. The process planning and die design module considers several factors, such as the complexities of preform geometry, punch and die profiles, specifications of available multi former, and the availability of standard parts. It can provide a flexible process based on either the reduction in the number of forming sequences by combining the possible two processes in sequence, or the reduction of deviation of the distribution and the level of the required forming loads by controlling the forming ratios. The system uses 2D geometry recognition and is integrated with the technology of process planning, die design, and CAE analysis. The standardization of die parts for multi former-bolt products requiring a cold forging process is described. The system developed makes it possible to design and manufacture multi former-bolt products more efficiently.

컴퓨터를 이용한 냉간포머단조 공정설계 (Computer Aided Process Design in Cold-Former Forging)

  • 임창수;서성렬;이민철;김주현;전만수
    • 한국정밀공학회지
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    • 제15권10호
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    • pp.51-57
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    • 1998
  • In this paper, a computer aided process design technique, utilizing a forging simulator and a commercial CAD software, is presented together with its related design system for cold-former forging of ball joints. The forging sequence design is carried out through user-computer interaction by using design templates, design database, experience or knowledge-based rules and some basic laws found in the literature. The forging simulation technique is used to verify the process design. The detail designs including die set drawings and die manufacturing information are automatically generated. It has been shown that the engineer ing and design productivity is much improved by the presented approach in the practical standpoint of process design engineers.

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수평식 냉간 다단포머에서 예비성형체와 편심하중을 고려한 Shaft의 성형공정설계 (Process Design of Shaft Considering Effect of Preform and Eccentric Load on Cold Forging Product in Multistage Former of Horizontal Type)

  • 박상수;이정민;김병민
    • 소성∙가공
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    • 제14권1호
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    • pp.57-64
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    • 2005
  • This study deals with the cold forging process design for shaft in the main part of automobile motors with rectangular deep groove. In forging process, the accuracy and die lift is very important because it have influence on reduction of the production cost and the increase of the production rate. Therefore, it is necessary to develop the manufacturing process of shaft by cold forging., process variables are the cropped face angle of billet and the eccentric load of punch. The former is derived from cropping test, the latter is occurred by clearance between container and preform. Also, grooved preform select the process variable for decrease in punch deflection. We investigate that a deflection of punch and a deformation of preform to every process variables. Through this investigation, we suggest the optimal preform and process design, expect to be improved the tool life in forging process.

준축대칭 제품 냉간단조용 전문가시스템 개발 - 다단포머 금형의 수평분할 밀 최적설계 - (Development of Expert System for Cold Forging of Axisymmetric Product - Horizontal Split and Optimal Design of Multi-former Die Set -)

  • 박철우;조천수;김철;김영호;최재찬
    • 한국정밀공학회지
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    • 제21권9호
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    • pp.32-40
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    • 2004
  • This paper deals with an automated computer-aided process planning and die design system by which designer can determine operation sequences even if they have a little experience in process planning and die design for axisymmetric products. An attempt is made to link programs incorporating a number of expert design rules with the process variables obtained by commercial FEM softwares, DEFORM and ANSYS, to form a useful package. The system is composed of four main modules. The process planning and the die design modules consider several factors, such as the complexities of preform geometry, punch and die profiles, specifications of available multi former, and the availability of standard parts. They can provide a flexible process based on either the reduction in the number of forming sequences by combining the possible two processes in sequence, or the reduction of deviation of the distribution on the level of the required forming loads by controlling the forming ratios. Especially in die design module an optimal design technique and horizontal split die were investigated for determining appropriate dimensions of components of multi-former die set. It is constructed that the proposed method can be beneficial for improving the tool life of die set at practice.