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首页> 外文期刊>International Journal of Engineering and Technology >The Effect of Dewaxing and Burnout Temperature in Block Mold Process for Copper Alloy Casting
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The Effect of Dewaxing and Burnout Temperature in Block Mold Process for Copper Alloy Casting

机译:脱模和烧成温度对铜合金铸件结晶器工艺的影响

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The main objective of this research is to investigate the effect of dewaxing and burnout temperature on the quality of copper alloy casting produced by a low cost block mold that has been developed. In the molding process, two types of silica sand which contains 97.9% silica (SiO2) and 97.2% silica have been used as a refractory material with POP served as a binder. Several mold formulations contained 15-40% plaster of paris (POP), 60-85% silica sand and 35% water had been developed and each formulation had been tested in the process of copper alloy casting. In the dewaxing process, the temperature of 170oC was found appropriate to be used as an initial mold heating temperature and complete wax burnout was effectively achieved with the temperature of 750oC for 5 hours. The insufficient burnout process has produced a defect casting with carbon residue, appeared as a black stain on the surface of the casting. Meanwhile, rapid initial heating had prevented the wax from flowing out smoothly thus, eroded the surface of the mold cavities. This has resulted in deteriorated cavity surface, hence a rough surface of the casting.
机译:这项研究的主要目的是研究脱蜡和燃尽温度对已开发的低成本块状模具生产的铜合金铸件质量的影响。在成型过程中,已将包含97.9%的二氧化硅(SiO2)和97.2%的二氧化硅的两种类型的硅砂用作耐火材料,而POP用作粘合剂。已经开发了几种模具配方,其中包含15-40%的巴黎石膏(POP),60-85%的硅砂和35%的水,并且每种配方都在铜合金铸造过程中进行了测试。在脱蜡过程中,发现170oC的温度适合用作初始模具加热温度,并且在750oC的温度下有效蜡完全烧尽5小时。烧毁过程不充分导致铸件中残留有碳残留物,铸件表面呈现黑色斑点。同时,快速的初始加热阻止了蜡的顺畅流出,从而腐蚀了模腔的表面。这导致模腔表面变坏,因此铸件的表面变粗糙。

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