首页> 外文会议>Advanced composites for aerospace, marine, and land applications II >STUDY OF MICROSTRUCTURE AND MECHANICAL PROPERTIES OF PARTICULATE REINFORCED ALUMINUM MATRIX COMPOSITE FOAM
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STUDY OF MICROSTRUCTURE AND MECHANICAL PROPERTIES OF PARTICULATE REINFORCED ALUMINUM MATRIX COMPOSITE FOAM

机译:颗粒增强铝基复合泡沫的微观结构和力学性能研究

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摘要

Metal foams cellular metals have gained an important role in the field of metallurgy, though barely a few decades old. Aluminum composite foam exhibit unique properties such as light weight, blast palliation, sound absorption, high energy absorption, and flame resistance. In the present investigation the effect of variation in the amount of CaCO_3 as blowing agent on the microstructure and wear behavior of LM13 alloy foams has been studied. The blowing agent was blended in highly viscous semi-solid melt by stirring process. The process parameters that influence the formation of bubbles like the melt temperature, size and amount of blowing agent and its distribution has been optimized to get uniform size foams. The distribution behavior of blowing agent is influenced by the melt viscosity and stirring speed. For packaging application, the dry sliding wear behavior of the prepared foam was investigated by using a pin on disc method at applied loads of 9.8, 19.6 and 29.4 N at room temperature. The results indicate that the wear rate is dependent on the cell size and cell wall thickness of the foam.
机译:金属泡沫多孔金属在冶金领域已经发挥了重要作用,尽管只有几十年的历史。铝复合泡沫材料表现出独特的性能,例如重量轻,爆炸冲击,吸声,高能量吸收和阻燃性。在本研究中,研究了作为发泡剂的CaCO_3量的变化对LM13合金泡沫的微观结构和磨损行为的影响。通过搅拌将发泡剂掺入高粘度的半固体熔体中。影响气泡形成的工艺参数(如熔体温度,发泡剂的大小和数量及其分布)已得到优化,以获得大小均匀的泡沫。发泡剂的分布行为受熔体粘度和搅拌速度的影响。对于包装应用,在室温下,通过在磁盘上施加销钉载荷为9.8、19.6和29.4 N的情况下,使用圆盘销钉法研究了制备的泡沫的干滑磨损行为。结果表明磨损率取决于泡沫的泡孔尺寸和泡孔壁厚。

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