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Influence of the Process Parameters on the Penetration Depth of the Reinforcing Phase during Composite Peening for the Production of Functionally Graded Metal Matrix Composites

机译:工艺参数对功能梯质金属基复合材料复合材料加固相期间增强相的渗透深度的影响

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Composite peening describes a modified process based on micro shot peening. This process allows the controlled penetration of ceramic particles into areas of metallic matrix materials close to the surface layer. Composite material produced by composite peening promises a high application potential in the fields of lightweight, wear-resistant and durable materials. The use of ceramic reinforcing particles is expected to significantly improve thermal stability compared to conventional surface hardening processes. In addition, composite peening offers the possibility of cost-effectively reinforcing components and can even be applied subsequently in highly stressed surface layers. The material combination selected for this study was technically pure aluminum as model and matrix material and alumina as abrasive respectively reinforcement material. The influence on the particle density and the particle gradient was achieved by varying the process parameters, such as the process temperature and the peening pressure. A maximum penetration depth of almost 30 um could be observed at high homologous temperatures. In light and scanning electron microscopy it was observed that the ceramic particles might break on impact with the surface of the blasting material. This causes a drastic reduction of the particle size, which initially had a size of 10 um. This reduction of particle size promises advantages, particularly with cyclic loads.
机译:复合喷丸描述了基于微射击喷丸的改进过程。该过程允许将陶瓷颗粒控制渗透到靠近表面层的金属基质材料区域。复合材料生产的复合材料承诺在轻质,耐磨和耐用材料领域的高应用潜力。与常规表面硬化过程相比,预期使用陶瓷增强颗粒的使用显着提高热稳定性。此外,复合喷丸提供了成本有效增强组件的可能性,甚至可以随后在高压表面层中施加。本研究所选择的材料组合是技术纯铝作为模型和基质材料和氧化铝分别作为磨料加强材料。通过改变工艺参数,例如工艺温度和喷丸压力来实现对粒子密度和粒子梯度的影响。在高同源温度下,可以观察到近30μm的最大渗透深度。在光和扫描电子显微镜中,观察到陶瓷颗粒可能会在爆破材料的表面上破裂。这导致粒度的急剧降低,其最初具有10μm的大小。这种粒度的降低承诺优点,特别是循环负载。

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