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Microstructure and mechanical performance of ultrasonically brazed joints of high fraction volume of SiC particulate reinforced aluminum matrix composites

机译:SiC颗粒增强铝基复合材料高馏分体积超声钎焊接头的微观结构和力学性能

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The ultrasonically brazing of 55 vol.% SiC_p/A356 composites in air has been investigated. When the ultrasonic vibration is applied for 0.5s, the oxide layer is still continuous at most places between the filler metal and the composites. The shear strength is only ~30% of that of the base composites. As the ultrasonic action time increases, the oxide film sufficiently disappears in the bond region, and the wetted area between the filler metal and SiC particles increases gradually. As a consequence of this, the shear strength of bonds also increases with the ultrasonically acting time. The maximum value of the shear strength of the bonds reaches 165.5MPa when the ultrasonic acting time increases to 5s, which is similar to the shear strength of the base composites.
机译:已经研究了55体型的超声钎焊。在空中中的%SiC_P / A356复合材料已经研究过。当施加超声波振动0.5s时,氧化物层在填充金属和复合材料之间的大多数位置处仍然连续。剪切强度仅为底层复合材料的约30%。随着超声动作时间增加,氧化膜充分消失在粘合区域中,填充金属和SiC颗粒之间的湿润区域逐渐增加。因此,粘合的剪切强度也随着超声起的时间而增加。当超声起时间增加到5s时,键的剪切强度的最大值达到165.5MPa,这类似于基层复合材料的剪切强度。

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