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首页> 外文期刊>Journal of Materials Science >MECHANICAL PROPERTIES OF MONOLITHIC ALN AND SICW/ALN COMPOSITES
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MECHANICAL PROPERTIES OF MONOLITHIC ALN AND SICW/ALN COMPOSITES

机译:单体AlN和SICW / ALN复合材料的力学性能

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Flexural, tensile, and high cycle fatigue test data are presented for pressureless sintered aluminium nitride (AlN) and hot-pressed aluminium nitride reinforced with silicon carbide whiskers (SiCW/AlN). Tests were conducted at ambient temperature. The SiCW/AlN composites consisting of 30 wt% SiCW produced significant increases in flexural strength, tensile strength, and tensile fatigue strength compared to monolithic AlN. Increases were nearly double in all cases. Corresponding strain-to-failures measured in tensile tests increased from similar to 0.04% in monolithic AlN to similar to 0.10% in the SiCW reinforced composite. Fracture surfaces showed evidence of whisker-toughening mechanisms due to additions of SiCW whiskers. High-cycle fatigue results indicated that both materials have the ability to sustain higher stress levels in the cyclic tests compared to the tensile experiments. The improved performance under cyclic testing is explained in terms of strain-rate effects. The times at or near peak stress are considerably less under high-cycle fatigue testing (20 Hz) compared to tensile tests (strain rate = 0.5% min(-1)). [References: 22]
机译:给出了无压烧结氮化铝(AlN)和用碳化硅晶须(SiCW / AlN)增强的热压氮化铝的弯曲,拉伸和高循环疲劳测试数据。测试在环境温度下进行。与整体AlN相比,由30重量%SiCW组成的SiCW / AlN复合材料的弯曲强度,拉伸强度和拉伸疲劳强度显着提高。在所有情况下,增长率几乎都翻了一番。在拉伸试验中测得的相应应变失效从单块AlN中的约0.04%增加到SiCW增强复合材料中的约0.10%。由于添加了SiCW晶须,断裂表面显示出晶须增韧机理的证据。高循环疲劳结果表明,与拉伸实验相比,两种材料在循环测试中均能够承受更高的应力水平。根据应变率效应解释了循环测试下的改进性能。与拉伸试验(应变率= 0.5%min(-1))相比,在高周疲劳试验(20 Hz)下达到或接近峰值应力的时间要少得多。 [参考:22]

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