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금형온도가 사출성형품의 웰드라인과 치수안전성에 미치는 영향에 관한 연구
김동학,이재원,김태완 한국산학기술학회 2003 한국산학기술학회논문지 Vol.4 No.3
본 논문은 금형의 온도 변화가 사출성형품의 마시구조에 미치는 영향에 관해 연구했다. 웰드라인의 폭과 길이는 금형온도가 증가함에 따라 모두 감소되었다. 그리고 금형의 온도에 따른 결정성수지인 PP(Polypropylene)와 비결정성수지인 PS(Polystyrene)의 치수안정성에 관해 연구했다. PS성형품은 금형온도가 높을수록 수축률이 줄어들고, 두께 편차가 적어졌고, PP성형품의 경우에는 결정의 생성으로 인해 상반된 경향이 나타났다. 캐비티의 충전성과 전사성은 금형온도가 높을수록 향상되었다. In this paper, we studied the effects of mold temperature on the microstructure of injection molded parts. The weld line decreases in length and width as mold temperature increases. We investigated the dimensional stability of the parts made of two kinds of resin(polypropylene and polystyrene) by varying the mold temperature. As the mold temperature is high, both the shrinkage ratio and the thickness difference for the PS parts decreases. But the observation of PP parts shows a tendency to increase. The easiness of cavity filling and transcription of the mold texture is improved as the mold temperature is high.
김명균,성시영,김영직 한국주조공학회 2003 한국주조공학회지 Vol.23 No.2
The main objectives were to investigate the suitability of CaO crucible for melting TiAl alloys and to develop investment mold for investment casting of TiAl alloys. TiAl alloy specimen were prepared by plasma arc furnace under argon atmosphere. After melting of TiAl alloy using CaO crucible, the results showed that there is little contamination of oxygen in the TiAl bulk. Conven-tional vacuum induction furnaces can be readily adaptable to produce cast parts of TiAl without high skilled techniques. The determination of optical metallography and microhardness profiles in investment cast TiAl alloy rods has allowed the gradation of the relative thermal stability of the oxides examined. The molds used for the present study were ZrO₂,Al ₂O₃, CaO stabilized ZrO₂and ZrSiO₄Even although high temperature of mold preheating. Al₂O₃mold is a promising mold material for investment casting of TiAl alloys in terms of thermal stability, cost and handling strength. It is important to take thermal stability and preheating temperature of mold into consideration for investment casting of TiAl alloys. (Received February 1, 2002)