• 제목/요약/키워드: Billet

검색결과 339건 처리시간 0.031초

황동제 온간단조용 금형제작과 환경친화형 작업장 개선에 관한 연구 (A Research on the improvement scheme for manufacturing bronze warm forging die through environment-friendly workshop)

  • 김세환
    • 한국산학기술학회논문지
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    • 제11권2호
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    • pp.420-425
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    • 2010
  • 온간단조(warm forging) 가공은 가공소재(Billet)를 $800^{\circ}C$ 정도로 가열하여 금형의 다이블록 임프레션(impression) 상면(上面)에 위치결정 시켜 단조하고 있는데, 이 단조가공 과정에서 산화스케일의 비산에 따른 작업자의 화상에 대한 위험도와 산화스케일이 다이블록의 임프레이션에 부착 되거나 열처리기술 미흡으로 금형수명(die life)을 단축시키며 다이블록 안에 분무하는 이형제는 유해먼지, 유해증기, 미스트, 퓸, 악취 등을 발생시켜 작업장 환경을 오염시킴으로써 직무기피 직종으로 분리되기 때문에 생산량 목표 달성에 큰 문제점으로 대두 되고 있다. 더욱이 다이블록의 임프레이션 마멸부위를 수리보수하기 위한 재생공법의 미흡으로 납기지연, 금형비 상승의 요인으로 나타나므로 이에 대한 재생공법 개선과 작업장의 공해물 제거장치의 개발이 요망되고 있다. 본 연구에서는 황동제 관 이음쇠의 온간단조가공에서 도출된 빌릿가열시 문제점, 금형재생 보수시 문제점, 제조원가의 상승요인 등을 외국의 기술과 비교하여 온간단조 금형제작방법개선, 금형재생보수공법 개선, 유해가스 제거장치를 도입하여 환경친화형 작업장 개선 등으로 문제점을 해결 하고자 하였다.

제철공정에서의 제어기술동향

  • 박한구
    • 제어로봇시스템학회지
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    • 제15권1호
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    • pp.37-43
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    • 2009
  • 철강제조공정에서 강판을 만드는 공정이 압연이다. 압연공정은 연속주조 공장에서 생산되는 Steel Slab, Bloom, Billet등의 반제품을 높은 온도로 재 가열하고 물리적인 힘을 가해 압연하는 열간압연(이하 열연)과 열연으로 얇아진 강판을 열을 가하지 않고 냉각상태에서 압연하는 냉간압연으로 나뉜다. 본 원고에서는 열연 공정의 가열로 온도제어에 적용한 MFA(Model Free Adaptive Controller)를 소개하고자 한다.

중공 튜브 성형을 위한 만네스만 천공기의 개발 및 유한요소법을 이용한 공정변수 설계 (Development of Rotary Tube Piercing Machine and Parametric Study on Design Variables using Finite Element Analysis)

  • 이형욱;이근안;김응주;최석우;장병록
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2007년도 춘계학술대회 논문집
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    • pp.364-367
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    • 2007
  • Typical seamless tube production methods are an extrusion and a rotary tube piercing. The rotary piercing process is more competitive than the extrusion process form view point of productivity, quality, and flexibility. It consists of twin rolling mills, a pair of disc or flat guides, and a plug. Twin rolling mills are skewed with proper angles in two directions. A round billet is progressively fed forward and rotated due to the rotation of twin rolling mills. Internal crack initiation and growth at central area of the billet are gradually progress because of the repeating actions of tension and rotation. Design variables in the rotary piercing rolling process are the feed angle, the cross angle, the reduction ratio, and the position of plug. In this work, a rotary tube piercing machine was developed and parametric studies on design variables were carried out using finite element analysis. The Brozzo ductile fracture criterion was utilized to determine an internal crack initiation.

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A356 합금의 연속주조시 전자기 교반에 따른 미세조직 변화 (The Effect of Electromagnetic Stirring on the Microstructure of A356 Al Alloy by the Continuous Casting Process)

  • 김원배;권태우;김종철;박태호;예병준
    • 한국주조공학회지
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    • 제25권4호
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    • pp.156-160
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    • 2005
  • There are many factors that influence solidification behavior during continuous casting, e.g. include superheat, casting speed, cooling rate and holding time. However, when melt is stirred by electromagnetic force, there would be some changes in its solidification behavior compared to that of the ordinary casting process. In this study, the billets of A356 alloy with a diameter of 3 inch were fabricated with electromagnetic stirring under various conditions of superheat, casting speed and input voltage of electro magnetic stirring (EMS) device. The microstructure was also investigated under the various casting conditions and electromagnetic input voltages. When increase in input voltage, the microstructure was changed from dendritic to rosette type and finally to spheroidal. With pouring temperature, casting speed and electromagnetic input voltage were $650^{\circ}C$, 100 mm/min and 140 V, respectively, the billet with a diameter of 3 inch, which has a uniform dispersed spheroidal particles in the whole area of billet except for the surface area, was manufactured.

헬리컬기어의 안내형 단조에 관한 상계해석 (An upper-bound analysis for the guiding type forging of helical gears)

  • 최재찬;최영;탁성준
    • 대한기계학회논문집A
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    • 제21권9호
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    • pp.1364-1372
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    • 1997
  • In this paper, the forging of helical gears has been investigated. Punch is tooth-shaped as is the die insert. The punch compresses a cylindrical billet placed in a die insert. As a consequence the material of billet flows into the tooth region. The forging has been analysed by using the upper-bound method. A kinematically admissible velocity field has been developed, wherein, an involute curve has been introduced to represent tooth profile of the gear. Numerical calculations have been carried out to investigate the effects of various parameters, such as module, number of teeth, helix angle and friction factor on the forging of helical gears. Some forging experimentswere carried out with aluminum alloy to show the validity of the analysis. Good agreement was found between the predicted values of the forging load and obtained from the experimental results.

수치해석을 이용한 접합실 내 접합압력 향상을 위한 포트홀 압출금형 개발 (Development of Porthole Extrusion Die for Improving Welding Pressure in Welding Chamber by Using Numerical Analysis)

  • 이성윤;이인규;정명식;고대철;김병민;이상곤
    • 소성∙가공
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    • 제26권2호
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    • pp.115-120
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    • 2017
  • Porthole extrusion process is a very effective metal forming process to produce aluminum profiles with hollow sections. The structure of porthole extrusion die is very complex. In this process, the billet is divided by porthole bridge, and then the divided billet is welded in the welding chamber. The welding pressure in the welding chamber is very important. The higher welding pressure improves the quality of the aluminum profiles. Therefore, the objective of this study is to develop a new porthole extrusion die for improving the welding pressure in the welding chamber by using numerical analysis. The effectiveness of the new porthole extrusion die was verified by using numerical analysis. Through numerical analysis, the welding pressures in the welding chamber between the new porthole die and the conventional porthole die were compared with each other.

유한요소해석 및 다구찌법을 이용한 접합실 내 접합압력 향상을 위한 포트홀 압출 금형 설계 (Design of Porthole Extrusion Die for Improving the Welding Pressure in Welding Chamber by using the FE Analysis and Taguchi Method)

  • 이성윤;이인규;정명식;고대철;이상곤
    • 소성∙가공
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    • 제28권6호
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    • pp.347-353
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    • 2019
  • The porthole extrusion process is a classic metal forming process to produce complex cross-section shaped aluminum profile. It is very difficult to design porthole die and extrusion process because of the complex shape of extrusion die and internal metal flow. The main variables in this process are ram speed, initial billet and tool temperature, and die shape. In general, the metal flow of porthole extrusion process can be divided into two steps. During the first step, the billet is divided into several parts in the porthole die bridge. During the second step, the divided billets are welded in the welding chamber. In the welding chamber, the level of welding pressure is very important for the quality of the final product. The purpose of this study is to increase the welding pressure in the welding chamber by using a two stage welding chamber. The porthole extrusion die was designed by using the Taguchi method with orthogonal array. The effectiveness of the optimized porthole die was verified by using the finite element analysis.

복합교반법으로 제조한 금속복합재료의 Thixoforming용 재가열공정 (Reheating Process of Metal Matrix Composites Fabricated by Combined Stirring Process for Thixoforming)

  • 이동건;강충길
    • 소성∙가공
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    • 제11권1호
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    • pp.45-53
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    • 2002
  • The forming process of metal matrix composites by die casting and squeeze casting process are limited in size and dimension In term of final parts. The melt strirring method have the problems that the homogeneous distribution of the reinforcements is difficult due to the low weldability and the density difference between the molten metal and the reinforcement. The thixoforming process for metal matrix composites has numerous advantages compacted to die casting, squeeze casting and compocasting. However, for the thixofoming process, the billet with the desired volume fraction must be heated to obtain a uniform temperature distribution over the entire cross-sectional areas. To obtain the reheating conditions of composites, the particulate reinforced metal matrix composites for thixoforming were fabricated by combined stirring process which is simultaneously performed with electro-magnetic stirring and mechanical stirring process. The matrix alloy and reinforcement are used to aluminum alloy(A357) and SiCp with diameter 14, $25{\mu}m$, respectively. The microstructure characteristics were investigated by changing the volume fraction and reinforcement size. The heating conditions to obtain the uniform temperature distribution in cross section area of fabricated metal matrix composites billet are proposed with heating time, the heating temperature and the holding time.

각단면을 가지는 알루미늄 튜브제품의 압출굽힘가공 (Extru-Bending Process for Aluminum Tube Products with Rectangular Sections)

  • 박대윤;진인태
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2003년도 추계학술대회논문집
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    • pp.285-288
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    • 2003
  • The bending phenomenon during extruding one product using four billets can be obtain by the difference of hole diameters in the multi-hole container. The difference of hole diameter caused the difference of billet amount inserted in the die cavity. As results, it can bend during extruding products by the different amount of two billets and by the cohesion of billets in the porthole dies cavity. And the bending curvature can be controlled by the size of holes and billets. The experiments using aluminium material had been done for the rectangular and square curved tube product. The results of the experiment show that the curved aluminum tube product can be bended by the extru-bending process without the defects such as the distortion of section and the thickness change of the wall of tube and the folding and wrinkling. The curvature of product is affected by shape of cross section and the difference of billet diameters. It is known that the welding and extruding and bending can be done simultaneously in the die cavity when a rectangular hollow curved tube would be extruded by porthole dies using four different size billets made of aluminum material.

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