首页> 外文会议>Laser Materials Processing Conference ICALEO 2000, Oct 2-5, 2000, Dearborn, MI USA >Development of Metal Matrix Composite Materials for Wear Resistant Coatings using a Laser Rapid-Alloy-Prototyping Technique
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Development of Metal Matrix Composite Materials for Wear Resistant Coatings using a Laser Rapid-Alloy-Prototyping Technique

机译:利用激光快速合金原型技术开发用于耐磨涂层的金属基复合材料

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A rapid-alloy-prototyping technique based on variable powder feed rate laser cladding was used to develop a new class of metallic matrix composite materials (MMC) for abrasive wear resistant coatings. The development of the materials was performed in two steps. In the first step, the composition of the matrix was optimised by producing coatings with variable compositions, lying in the Fe-rich corner of the Fe-Cr-C system. In the second step, the influence of the volume fraction of reinforcement particles on the wear behaviour of the composite was studied by testing composites formed of a matrix with optimised composition and variable proportions of NbC. The wear behaviour of the composite coatings was evaluated by three-body abrasive an dry sliding micro-scale wear tests. The methodology for alloy design and the optimisation of the constitution of the composites are presented and discussed.
机译:一种基于可变粉末进给速率激光熔覆的快速合金原型技术被用于开发一类新的用于耐磨磨料涂层的金属基复合材料(MMC)。材料的开发分两个步骤进行。第一步,通过生产位于Fe-Cr-C系统富铁角的具有可变组成的涂层来优化基体的组成。在第二步中,通过测试由具有优化组成和可变比例NbC的基体形成的复合材料,研究了增强颗粒的体积分数对复合材料磨损性能的影响。通过三体磨料,干式滑动微型磨损试验评估了复合涂层的磨损行为。介绍并讨论了合金设计方法和复合材料结构的优化。

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