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Compressive Response of Al Matrix Syntactic Foam Manufactured by Liquid Sintering

机译:液相烧结制备Al基复合泡沫塑料的压缩响应

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摘要

Al matrix syntactic foams, with ceramic microspheres embedded in an Al 6082 alloy matrix, were fabricated by a liquid sintering process. The densities of the as-fabricated foams increased from 1.54 to 1.87 g/cm~3 with increasing volume fraction of Al from 0.4 to 0.7. The mechanical properties of the as-fabricated foams can be adjusted by changing volume fraction of the Al matrix. Uniaxial compression tests conducted on these foams showed that the collapse strengths increased from 34.6 to 70 MPa when the volume fraction of Al increased from 0.4 to 0.7. The higher the density the foam has, the less brittle fracture was displayed. A considerable amount of void was found to remain in the Al matrix after the sintering was completed. The void and the oxide in the Al matrix are believed to cause the brittle fracture of the foam in compression.
机译:通过液体烧结工艺制造了具有嵌入到Al 6082合金基体中的陶瓷微球的Al基复合泡沫。随着Al的体积分数从0.4增加到0.7,制成泡沫的密度从1.54增加到1.87 g / cm〜3。可以通过改变Al基体的体积分数来调节泡沫的机械性能。对这些泡沫进行的单轴压缩试验表明,当Al的体积分数从0.4增加到0.7时,塌陷强度从34.6增加到70 MPa。泡沫的密度越高,显示的脆性断裂越少。在烧结完成之后,发现大量的空隙保留在Al基体中。据信,Al基体中的空隙和氧化物会导致压缩时泡沫的脆性破裂。

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