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Conventional and Additive Manufacturing with Metal Matrix Composites: A Perspective

机译:金属基复合材料的常规和增材制造:一个视角

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摘要

Metal matrix composites are a class of materials in which one or more materials are added to a metal targeting specific property enhancements. Considering the possibilities to tailor the materials and the outcome attributes to specific product needs, they have attained significant research attention in the past. Different traditional manufacturing methods are employed, but powder metallurgy is the most prominent approach to achieve metal matrix composite parts, though with restrictions in the product forms achieved, apart from process limitations. On the other hand, the additive manufacturing techniques rapidly evolved from the mere prototyping options to the promising additive manufacturing methods. Considering the point-point-point material consolidation and full melting and solidification of powder particles, the additive technologies offer promising new challenges and benefits with the metal-matrix powders. The current state of the application of additive manufacturing to metal matrix composites is ascertained in this paper and selective laser melting is identified as the most promising route to process metal matrix composites, targeting specific benefits.
机译:金属基复合材料是一类材料,其中将一种或多种材料添加到金属中以增强特定性能。考虑到可以根据特定产品需求定制材料和结果属性的可能性,它们在过去已经获得了重要的研究关注。采用了不同的传统制造方法,但是粉末冶金是获得金属基复合材料零件的最主要方法,尽管除了工艺限制外,产品形式也受到限制。另一方面,增材制造技术已从单纯的原型选择迅速发展为有前途的增材制造方法。考虑到点对点材料的固结以及粉末颗粒的完全熔化和固化,添加剂技术为金属基粉末带来了新的挑战和好处。本文确定了增材制造应用于金属基复合材料的当前状态,选择性激光熔化被认为是加工金属基复合材料的最有希望的途径,具有特定的优势。

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