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首页> 外文期刊>Journal of Materials Science >Processing, properties and arc jet oxidation of hafnium diboride/silicon carbide ultra high temperature ceramics
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Processing, properties and arc jet oxidation of hafnium diboride/silicon carbide ultra high temperature ceramics

机译:二硼化//碳化硅超高温陶瓷的加工,性能和电弧喷射氧化

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The processing and properties of HfB2-20 vol%SiC ultra high temperature ceramics were examined. Dense billets were fabricated by hot-pressing raw powders in a graphite element furnace for 1 h at 2200°C. Specimens were then tested for hardness, mechanical strength, thermal properties and oxidation resistance in a simulated re-entry environment. Thermal conductivity of the current materials was found to be less than previous work had determined while the strength was greater. Oxidation testing of two flat-face models was conducted, at two conditions, for two 10-min durations each. It was concluded that passive oxidation of SiC plays a role in determining the steady-state surface temperatures below 1700°C. Above 1700°C, temperatures are controlled by the properties of a thick HfO2 layer and active oxidation of the SiC phase.
机译:研究了HfB2 -20 vol%SiC超高温陶瓷的制备工艺和性能。通过在2200°C下在石墨元素炉中将生粉热压1小时来制造致密的坯料。然后在模拟的重入环境中测试样品的硬度,机械强度,热性能和抗氧化性。发现当前材料的热导率小于先前工作确定的强度,而强度更大。在两个条件下对两个平面模型的氧化测试分别进行了两个10分钟的持续时间。结论是,SiC的被动氧化在确定低于1700°C的稳态表面温度方面起着作用。高于1700°C时,温度由厚的HfO2 层的性质和SiC相的活性氧化来控制。

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