ANALISIS PENGARUH PENURUNAN TEMPERATUR PADA PROSES TUANG CAIRAN LOGAM DENGAN COVER LADLE DI PT. X

Bina Teknika Pub Date : 2019-08-28 DOI:10.54378/bt.v15i1.502
M. Faizal, Hendra Gunawan
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Abstract

Block Cylinder is an important component of a vehicle engine where the quality of the component should not be defect because it can affect the function of the vehicle engine. Block cylinder is made from cast iron material (FC 230) which must be melted with temperature >1400 ° C. The temperature of cast iron molten metal into the mold is a very important factor to guarantee final quality of block cylinder. Process pouring of molten metal into a mold using a ladle to pouring 15 molds. Pin hole defects often occur in the final castings, this is due to molten metal temperature drop at the end, the one factor is air convection suction smoke collector. Smoke collector is required to move the gas that arises during the pouring process to outside the factory in order to make a comfortable and healthy work process, but it has side effect speed up decreasing temperature of molten metal. To solve the decrease temperature is minimize the rate of heat transfer that occurs from molten metal to environmental air. One way is to close the ladle with the cover to reduce the heat transfer that occurs in the metal liquid. The material used as a ladle cover is Kaowooltm SZr, where it has low thermal conductivity and light density. The rate of heat transfer occurring in the metal liquid to the surrounding air without cover is 4,5563 kW. After using the ladle cover the rate of heat transfer from metal liquid to air decreases to 1.8287 kW. Then the liquid temperature of the final cast metal rises from 1369 ° C to 1383 ° C, and the pin hole defect occurring in the final cast decreases from 0.22% to 0.12%.
分析了PT. X的拉德尔铸造过程中温度下降的影响
缸体气缸是汽车发动机的重要部件,其质量不应存在缺陷,因为它会影响汽车发动机的工作性能。缸体由铸铁材料(fc230)制成,其熔化温度必须大于1400℃,铸铁金属液进入模具的温度是保证缸体最终质量的一个非常重要的因素。将熔化的金属倒入模具的过程,用钢包浇注15个模具。销孔缺陷常发生在终铸件中,这是由于终熔金属温度下降所致,其中一个因素是空气对流吸烟收集器。为了使浇注过程中产生的气体在工厂外得到一个舒适和健康的工作过程,需要集烟器将其移动,但它有副作用,加速了熔融金属的温度下降。为了解决温度下降的问题,最大限度地减少从熔融金属到环境空气的热传递率。一种方法是用盖子关闭钢包,以减少金属液体中的热传递。用作钢包盖的材料是Kaowooltm SZr,它具有低导热性和光密度。发生在金属液体到周围空气的传热速率为45563千瓦。使用钢包盖后,金属液体到空气的换热速率降至1.8287 kW。最终铸件的液态温度从1369℃上升到1383℃,最终铸件中出现的销孔缺陷从0.22%下降到0.12%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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