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Experimental Study of Cushion Materials for Microaccelerometers under shock load

机译:抗冲击率下微城径垫材料的实验研究

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This work studied the cushion efficiencies of aluminum foam and metal rubber as the cushion materials for microaccelerometers under shock load. A series of shock experiments were carried out to test the performance of these two materials. Preliminary results indicated that aluminum foam and metal rubber have different energy absorption mechanisms, and both of them have excellent energy absorption capability, which can effectively cushion the effect of shocking pulse peak and suppress the high-frequency vibration noise. Aluminum foam and metal rubber are believed to be promising cushion materials for microaccelerometer.
机译:这项工作研究了铝泡沫和金属橡胶的缓冲效率,作为休克负荷下微城径计的缓冲材料。进行了一系列休克实验以测试这两种材料的性能。初步结果表明,铝泡沫和金属橡胶具有不同的能量吸收机构,两者都具有出色的能量吸收能力,可以有效地缓冲震动脉冲峰值的影响并抑制高频振动噪声。据信铝泡沫和金属橡胶是微卡仪的有望的缓冲材料。

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