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Controlling ceramic-reinforcement distribution in laser cladding of MMCs

机译:控制MMC激光覆层中的陶瓷增强分布

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摘要

Laser cladding (LC) using blown powder is an important technique among laser deposition processes, able to perform coating, repair, manufacturing and prototyping. However, deposition of fine ceramic-reinforced MMC dads is challenging due to the divergence of fine particles. This leads to a non-uniform distribution of reinforcements and reduced clad performance. The high laser reflectivity of some metals such as Al also limits material deposition efficiency. In this work, the effect of a powder satelliting process on improving laser-deposited Al-TiC dads on aluminium 6082-T6 substrates was investigated. A simple-blended feedstock was also deposited for comparison. The effect of process parameters of laser energy and powder deposition density on clad characteristics of clad area, dilution and porosity were evaluated, and optimised parameters were identified. Two deposition mechanisms are proposed to explain the differences in the behaviour of both feedstocks within LC. The satellited dads yielded an increase of 29% and 113% in the deposition efficiency and TiC fraction, respectively, compared to the blended dads. The satellited dads yielded a mean increase of 60% in matrix microhardness and a mean reduction of 64% in specific wear rate compared with the blended dads indicating a clear improvement in the mechanical properties.
机译:使用吹塑粉末的激光熔覆(LC)是激光沉积过程中的重要技术,能够进行涂层,修复,制造和原型设计。然而,由于细颗粒的差异,细陶瓷增强MMC爸爸的沉积是挑战性的。这导致不均匀的增强件分布和降低的包层性能。诸如Al的一些金属的高激光反射率也限制了材料沉积效率。在这项工作中,研究了粉末卫星方法对改善铝6082-T6基底上的激光沉积的Al-TiC蒸馏物的影响。还沉积了一种简单的混合原料以进行比较。评估激光能量和粉末沉积密度对包层,稀释和孔隙率的包层特性的影响,鉴定了优化参数。提出了两种沉积机制来解释LC内两种原料行为的差异。与混合蒸达相比,卫星乳酸率分别在沉积效率和TIC级分中增加了29%和113%。卫星父亲在基质显微硬度下平均增加60%,与表明机械性能明显改善的混合蒸达相比,在特定磨损率下平均减少64%。

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