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首页> 外文期刊>CERAMICS INTERNATIONAL >Effect of fine alumina in improving refractoriness of ceramic shell moulds used for aeronautical grade Ni-base superalloy castings
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Effect of fine alumina in improving refractoriness of ceramic shell moulds used for aeronautical grade Ni-base superalloy castings

机译:细氧化铝在采用航空级镍基超合金铸件的陶瓷壳模具耐磨性中的影响

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摘要

This paper discusses an improvement in shell refractoriness and dimensional stability of columnar grained (CG) low pressure turbine blade castings made using Ni base superalloy by directional solidification process (DS). Two ceramic shell systems were adopted, namely shell system I and II. Shell moulds were prepared by using ceramic slurries containing zircon flour as a filler material and colloidal silica as a binder. As compared to shell system II (zircon filler with colloidal silica binder and fine alumina), shell system I (zircon filler with colloidal silica binder) showed lower refractoriness. Shell system II showed an increase in the flexural strength both in the green as well as in fired conditions. Shells made from shell system II showed about 13% higher green strength and 55% higher fired strength as compared to shell system I. Shell system II also exhibited superior self sag resistance up to 1625 degrees C. Moulds prepared from this shell system yielded aeronautical grade casting with high dimensional accuracy even at a metal pouring temperature of 1550 degrees C. Moulds from shell system I, on the other hand, underwent sagging even at metal pouring temperature of 1500 degrees C, leading to dimensionally unacceptable castings. The superior performance of shells prepared from shell system II can be ascribed to the presence of fine alumina in the shell.
机译:本文讨论了通过定向凝固过程(DS)使用Ni碱基超合金制成的柱状颗粒(CG)低压涡轮叶片铸件的壳耐火性和尺寸稳定性的提高。采用了两个陶瓷壳系统,即壳体系统I和II。通过使用含有锆粉的陶瓷浆料作为填料和胶体二氧化硅作为粘合剂制备壳模制备。与壳体系统II(锆石填料与胶体二氧化硅粘合剂和细氧化铝)相比,壳体系统I(具有胶体二氧化硅粘合剂的锆石填料)显示出较低的耐擦性。壳体系统II显示弯曲强度在绿色和烧制条件下增加。与壳系统I的壳体系统II制造的壳均显示出约13%,与壳体系统相比,燃烧强度高出55%。壳体系统II也表现出高达1625摄氏度的卓越自凹陷抗性,由该壳系统制备的模具产生航空级即使在1550摄氏度的金属浇注温度下,铸造的高尺寸精度也是来自壳体系统的模具,另一方面,即使在1500摄氏度的金属浇注温度下也垂直下垂,导致尺寸不可接受的铸件。由壳体系统II制备的壳的优异性能可以归因于壳体中细氧化铝的存在。

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