激光增材制造材料的耐磨性研究进展

Rasheedat Modupe Mahamood, Y. Okamoto, M. Maina, S. Akinlabi, S. Pityana, M. Tlotleng, E. Akinlabi
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摘要

激光增材制造技术是一项基于粉末冶金和激光技术的令人兴奋的技术,它已经彻底改变了产品的设计和生产方式。与传统的制造工艺相比,这种重要的制造技术具有许多优点,包括:能够减轻产品的重量,提高功能,能够在单个制造过程中以复合材料和高复杂性制造零件。一些增材制造工艺也可用于修复高价值部件。除了这些优点,增材制造技术已经被证明对制造材料的最终性能有很大的影响,包括耐磨性。本文综述了增材制造材料的耐磨性。对各类增材制造技术进行了分析和介绍。研究表明,通过调整增材制造工艺参数,可以提高材料的耐磨性。此外,与此制造过程相关的快速冷却对提高加工材料的耐磨性性能有很大的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wear Resistance Behaviour of Laser Additive Manufacture Materials: An Overview
Laser additive manufacturing technology is an exciting technology which is based on powder metallurgy and laser technologies that has come to revolutionize the way product are designed and produced. This important manufacturing technology has a number of advantages over the traditional manufacturing processes which include: ability to reduce weight of product and with improved functionality, ability to manufacture part as a composite material and with high complexity in a single manufacturing process. Some of additive manufacturing process can also be used to repair high valued part. Apart from these advantages, additive manufacturing technologies have been shown to have a high impact on the resulting properties of the manufactured materials which include the wear resistance behaviour. This paper presents an overview of the wear resistance behaviour of additive manufacture materials. The various classes of additive manufacturing technology are analyzed and presented. This study revealed that the wear resistance property of materials processed using additive manufacturing technologies can be improved by adjusting the processing parameters. Also the rapid cooling that is associated with this manufacturing process has a great influence in improving the wear resistance performance of the processed materials.
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