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On the effects of particle size and preform porosity on the mechanical properties of reaction-bonded boron carbide infiltrated with Al-Si alloy at 950 degrees C

机译:在950摄氏度下用Al-Si合金渗透渗透粒度和预成型孔隙率对碳化硼渗透的力学性能的影响

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The infiltration of boron carbide preforms with Al alloys at relatively low temperature prevents the formation of the undesired Al4C3 phase. In the present study the effect of boron carbide powder particle size on the mechanical properties and phase composition of composites infiltrated with Al-20%Si alloys at 950 degrees C was investigated. According to XRD analysis, the infiltrated composites contain Al8C7B4, AlB2 and AlB12, as well as non-reacted Al and Si that originated from solidification of Al-Si alloy. The presence of small amounts of SiC was noted in specimens fabricated from fine boron carbide powder. No evidence for the formation of non-desired aluminum carbide phase was obtained. Infiltration of ceramic preforms with virtually the same green density generated composites with an elastic modulus and bending strength that continuously decreased from 270 GPa and 405 MPa to 195 GPa and 345 MPa for powder with 90% particles close to 3 mu m and powder with 90% particles close to 180 mu m, respectively. These results ambiguously confirm that boron carbide particle size strongly affects mechanical properties of reaction-bonded composites infiltrated with Al-Si alloy at 950 degrees C and reflect the amount of newly formed ceramic phases appearing during infiltration and the presence of defects at the metal-ceramic interface.
机译:在相对低的温度下用Al合金渗透碳化硼预成型件可防止形成不需要的Al4C3相。在本研究中,研究了碳化硼粉末粒度对950℃下用Al-20%Si合金渗透的复合材料的机械性能和相组合物的影响。根据XRD分析,渗透复合材料含有Al8C7B4,ALB2和ALB12,以及源于Al-Si合金的凝固的非反应Al和Si。在由细硼碳化物粉末制成的标本中注意到少量SiC的存在。没有得到形成非所需碳化铝相的证据。陶瓷预成型件具有几乎相同的绿色密度产生的复合材料,其弹性模量和弯曲强度从270GPa和405MPa持续降低,345MPa用于粉末,90%颗粒接近3μm和90%的粉末分别接近180 mu m的颗粒。这些结果模糊地证实碳化硼粒度强烈影响用Al-Si合金的反应键合复合材料的机械性能在950℃下反映在渗透期间出现的新形成的陶瓷相的量和金属陶瓷的存在缺陷界面。

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