• 제목/요약/키워드: Eccentric forging

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유한요소법을 이용한 캠버볼트의 편심단조 공정설계 (Design of eccentric forging process for camber bolts using finite element method)

  • 김관우;추연근;조해용
    • Journal of Advanced Marine Engineering and Technology
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    • 제40권4호
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    • pp.320-324
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    • 2016
  • 본 연구에서는 일반 볼트와 달리 두께가 얇고 단면적이 넓은 편심원형 플랜지구조를 가진 캠버볼트의 편심단조공정을 제시하였다. 캠버볼트는 일반 볼트와 같이 축대칭 형상으로 단조 후, 플랜지 부분을 트리밍하여 가공한다. 따라서 단조과정에서는 높은 단조 하중과 대량의 칩이 발생한다. 이와 같은 문제점을 해결하기 위해 새로운 단조공정이 요구된다. 편심단조공정은 일반적인 단조공정과 달리 중심축에서 편심 된 상태로 가공하는 새로운 단조 공정이다. 또한 편심단조공정은 단조하중과 단조 후 트리밍 칩의 양을 줄일 수 있다. 이러한 캠버볼트의 편심단조공정설계를 위해 편심유도금형의 편심량과 금형형상의 최적화가 필요하다.

고속 타격단조시 발생되는 편심부하의 유한요소해석 (Finite element analysis of eccentric loading in high-velocity impact forging)

  • 유요한;양동열
    • 대한기계학회논문집A
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    • 제21권10호
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    • pp.1589-1597
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    • 1997
  • The high-velocity impact forging process with eccentric loading condition is analyzed using the explicit time integration finite element method. In order to consider the strain hardening, strain rate hardening and thermal softening effects, which are frequently observed in high-velocity deformation phenomena, the Johnson-Cook constitutive model is applied to model the workpiece. It is assumed that the material response of the dies is elastic in the study. As a result of the eccentric loading simulation, it is found that the increase of the eccentric ratio and the allowable tilting angle cause the decrease of the maximum forging load and the blow efficiency, and it is also found that the forging load and the blow efficiency generated in the high-velocity impact forging process with three-dimensional geometry can be obtained efficiently.

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.

다운동 방식 회전단조기 개발 (Development of Rotary Forging Press with Multi-Rocking Motion)

  • 이윤우;김소겸;최상수;박준수;김윤배;임성주;윤덕재;김승수;박훈재
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 1995년도 제2회 단조심포지엄 단조기술의 진보
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    • pp.47-54
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    • 1995
  • Rotary forging process has many advantages such as compacting of machine, low price of facilities and good quality of products. The last presented was a technical report about rotary forging press in the 100-ton class, which has the only orbital motion limited to the forming of axisymmetric parts. In this paper, the newly developed rotary forging press is introduced. The maximum capacity of forming load is 280 ton and five locking motion, this is, orbital, straight pivot, spiral and two kinds of clover can be available. This machine consists of transmission, double eccentric bush, rocking shaft, die set and hydraulic unit. Especially, the supports of rocking shaft and double eccentric bush are so crucial that hydrostatic bearings are adopted. Finally, it is expected that the technical know-how obtained in this research can be applied to the manufacturing of the another machine with large capacity.

비축대칭 와셔 캠 볼트의 다단 단조공정 설계를 위한 유한요소 해석 (Finite Element Analysis for Multi-stage Forging Process Design of Bolt with Nonaxisymmetric Washer Cam)

  • 김관우;김이태;김완종;조해용
    • Journal of Advanced Marine Engineering and Technology
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    • 제32권4호
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    • pp.585-595
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    • 2008
  • Process design of multi-stage forging for a bolt with nonaxisymmetric washer cam has been studied by using finite element method. For shape complexity of the bolt, it is impossible to manufacture in a single stage forging. To design multi-stage forging for the bolt the forging load and fiber flow of each step have been analyzed by using commercial finite element code DEFORM-3D. Simulated results have been compared with experimental ones. Multi-stage forging process has been designed with four stages. The workpiece should be eccentric shape until third forging stage. And then bolt head and washer of eccentrical shape is created in last stage. As a results, It was predicted that shape of product would be good and effective strain would be uniformly distributed in the product. Also, it was predicted whether defects would exist or not by reviewing the fiber flow.

알루미늄 고정 스크롤 열간 단조공정의 금형 파괴 원인 및 실용적 대책 (Reason of Die Fracture in Hot Forging of an Aluminum Fixed Scroll and Its Practical Measures)

  • 김영신;전만수
    • 소성∙가공
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    • 제26권3호
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    • pp.156-161
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    • 2017
  • In this study, the reason of die fracture occurring in hot forging of an aluminum fixed scroll was studied, based on experiments and finite element predictions. The material is assumed to be rigid-viscoplastic, and the die is rigid for the finite element predictions. The stress in the tension at the wrap root is known to cause brittle fracture, and the increase in the tensile stress is owing to the unbalanced filling of material into the die cavities between both sides of the warp. Based on the empirical and numerical achievements, the effects of geometrical parameters of the material on the die fracture were examined to find practical measures for elongated die life. It has been shown from the parametric study that the material with the optimized trapezoidal cross-section, which can be easily made during cutting or the optimized cylindrical billet with its eccentric placement in the die cavity, can considerably reduce the magnitude of the tensile stress around the die corner fractured, indicating that economical manufacturing with reduced number of stages and elongated die life can be realized at once using the optimized practical initial material.