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Mechanical Investigations on Composite Peened Aluminium

机译:复合煤矿铝的机械研究

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Composite peening describes a novel approach based on the micro peening process. By composite peening, particles can be introduced into nearsurface regions of metallic base materials. The proportion of the reinforcement phase decreases gradually with increasing distance to the surface. These so-called Functionally Graded Metal Matrix Composites (FGMMC) are characterised by a multitude of different characteristics, such as material combination, particle density, particle gradient and particle size, and a resulting broad range of properties. The composite material produced by this method promises a high application potential for lightweight, wear resistant and cyclically stressed structural components. EN AW-1050 was selected as matrix material and alumina as abrasive respectively reinforcement material. Additional abrasives such as silicon carbide and tungsten carbide were also investigated. By varying the process parameters, such as temperature and pressure, the influence on the particle density and the particle gradient was evaluated. Penetration depths up to 30 μm could be observed at high homologous temperatures. The peening process might cause open structures near the surface, the sample were subsequently deep rolled. In addition, this process reduces the surface roughness. Ensuing mechanical characterisation focused on bending tests. An increase in the flexural strength of the composite material compared to the base material could be observed.
机译:综合喷丸描述了一种基于微喷丸过程的新方法。通过复合喷丸,可以将颗粒引入金属基材的接近区域。增强阶段的比例逐渐降低,随着表面的距离增加。这些所谓的功能梯度金属基质复合材料(FGMMC)的特征在于多种不同的特性,例如材料组合,颗粒密度,颗粒梯度和粒度,以及产生的广泛性质。通过该方法生产的复合材料承担了轻质,耐磨和循环强调的结构部件的高应用潜力。 EN AW-1050被选为矩阵材料和氧化铝,分别为磨料加强材料。还研究了额外的磨料,例如碳化硅和碳化钨。通过改变过程参数,例如温度和压力,评价对粒子密度和颗粒梯度的影响。在高同源温度下,可以观察到高达30μm的渗透深度。喷丸过程可能导致表面附近的开放结构,随后将样品进行深轧。此外,该过程减少了表面粗糙度。随后的机械表征集中于弯曲试验。可以观察到与基材相比复合材料的弯曲强度的增加。

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