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Innovative light metals: metal matrix composites and foamed aluminium

机译:创新光金属:金属基质复合材料和泡沫铝

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Low weight is required especially for those means of transport, in which material properties have to be evaluated with respect to their specific mass. The possibility of increasing the specific properties of recyclable light metals are described:reinforcements by ceramic particulates, by continuous ceramic or carbon fibres, or by the reduction of weight by foaming the metal. Examples of castings, extrusions and forgings of particulate reinforced (<30 vol.%) aluminium alloys are given and theiradvantages including stiffness and wear resistance are presented. The technique of selective reinforcements by co-extrusion of particulate reinforced alloys together with conventional alloys is described. High volume fractions (>40 vol.%) ofreinforcements can be produced by gas pressure infiltration of either particulate or fibre preforms. In the case of aluminium matrix, the specific strength can be increased by a factor of up to 15, and the specific stiffness by a factor of up to 7,whereas for carbon fibre reinforced magnesium the specific strength can be increased even more. The anisotropy of fibre reinforced metal matrix composites is discussed as well as the possibilities to use cross ply preforms. The technique of foamingaluminium alloys yields materials with a specific mass in the range of 0.3-1.0 g/cm{sup}3. Such structures with essentially closed pores exhibit higher specific stiffness for beams and membranes than massive metal. The measurement and definition ofstiffness and strength values appropriate for aluminium foams are presented by referring to compression tests.
机译:需要低重量,特别是对于那些运输工程,其中必须对其特异性质量进行评估材料特性。描述了增加可再循环光金属的特定性质的可能性:通过陶瓷颗粒,通过连续陶瓷或碳纤维的增强,或通过发泡金属来减少重量。给出了颗粒增强(<30体积%)铝合金的铸件,挤出和锻件的实例,并呈现了包括刚度和耐磨性的批次。描述了通过共挤出颗粒增强合金与常规合金共挤出的选择性增强技术。高容量级分(> 40体积%)可以通过颗粒或纤维预制件的气体压力浸润来生产蛋白质。在铝基质的情况下,比力可以增加多达15的因子,并且比刚度倍数为7,而对于碳纤维增强镁,比可以增加比强度更多。讨论了纤维增强金属基质复合材料的各向异性以及使用交叉层预制件的可能性。发泡铝合金的技术产生具有0.3-1.0g / cm {sup} 3的特异性质量的材料。具有基本上闭孔的这种结构表现出比大规模金属的梁和膜的更高的比刚度。通过参考压缩试验提出了适合于铝泡沫的活性和强度值的测量和定义。

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