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Use of Aluminum Foam to Increase Crash Box Efficiency

机译:使用铝泡沫以增加碰撞箱效率

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Aluminum foams have been of interest to automotive designers for some time due to their extreme light weight (0.3 to 0.5 g/cm{sup}3) and their potential to absorb energy during impact. The current paper describes the use of stabilized aluminum foams produced by the melt method from Metal Matrix Composites (MMC) in automotive front-end crash box applications. Performance of an existing design crash box using hollow aluminum extrusions will be compared to the same extrusions filled with MMC foams of varying densities. Methods of manufacture and control of the physical and the related mechanical properties of the foam will be described. The existing and composite crash boxes were tested using standard methods. Test data including energy absorption per unit mass and per unit length will be discussed. The mechanism of energy absorption will also be discussed. Results indicate significant improvements in both these areas allowing a meaningful reduction in crash box length for a given energy absorption.
机译:由于它们的极端重量重量(0.3至0.5g / cm {sup} 3),铝泡沫对汽车设计师感到兴趣,并且它们在撞击期间吸收能量的可能性。目前纸张描述了在汽车前端碰撞箱应用中的金属基质复合材料(MMC)中由熔体方法生产的稳定铝泡沫的使用。将使用中空铝挤出的现有设计碰撞箱的性能与填充有不同密度的MMC泡沫的相同挤出相比。将描述制造和控制的方法和控制泡沫的相关机械性能。使用标准方法测试现有和复合碰撞箱。将讨论包括每单位质量和每单位长度的能量吸收的测试数据。还将讨论能量吸收机制。结果表明,这些区域的显着改进,允许给定能量吸收的碰撞框长度有意义。

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