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New development of powder metallurgy in automotive industry 被引量:9
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作者 tan zhao-qiang ZHANG Qing +3 位作者 GUO Xue-yi ZHAO Wei-jiang ZHOU Cheng-shang LIU Yong 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第6期1611-1623,共13页
The driving force for using powder metallurgy(PM)mostly relies on its near net-shape ability and cost-performance ratio.The automotive application is a main market of PM industry,requiring parts with competitive mecha... The driving force for using powder metallurgy(PM)mostly relies on its near net-shape ability and cost-performance ratio.The automotive application is a main market of PM industry,requiring parts with competitive mechanical or functional performance in a mass production scale.As the automobile technology transforms from traditional internal combustion engine vehicles to new energy vehicles,PM technology is undergoing significant changes in manufacturing and materials development.This review outlines the challenges and opportunities generated by the changes in the automotive technology for PM.Low-cost,high-performance and light-weight are critical aspects for future PM materials development.Therefore,the studies on PM lean-alloyed steel,aluminum alloys,and titanium alloy materials were reviewed.In addition,PM soft magnetic composite applied to new energy vehicles was discussed.Then new opportunities for advanced processing,such as metal injection molding(MIM)and additive manufacturing(AM),in automotive industry were stated.In general,the change in automotive industry raises sufficient development space for PM.While,emerging technologies require more preeminent PM materials.Iron-based parts are still the main PM products due to their mechanical performance and low cost.MIM will occupy the growing market of highly flexible and complex parts.AM opens a door for fast prototyping,great flexibility and customizing at low cost,driving weight and assembling reduction. 展开更多
关键词 AUTOMOTIVE powder metallurgy lean alloy Al alloy Ti alloy metal injection molding additive manufacturing
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高性能粉末冶金材料发展及其解决方案 被引量:12
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作者 谭兆强 Ulf Engström +2 位作者 苏鹏飞 李昆 刘咏 《粉末冶金工业》 CAS 北大核心 2020年第3期1-8,共8页
与其它制造技术相比,粉末冶金技术可以更经济和高效地生产结构部件,并能达到高的尺寸精度和性能需求,这一优势一直驱动着粉末冶金技术的发展。粉末冶金技术为了能够适应汽车工业不断发展的应用需求,迫切需要开发具有更高尺寸精度、更高... 与其它制造技术相比,粉末冶金技术可以更经济和高效地生产结构部件,并能达到高的尺寸精度和性能需求,这一优势一直驱动着粉末冶金技术的发展。粉末冶金技术为了能够适应汽车工业不断发展的应用需求,迫切需要开发具有更高尺寸精度、更高性能以及经济高效的粉末冶金材料解决方案,粉末冶金技术可以通过不同的工艺路径来实现这一目标。例如开发经济的新型合金体系,实现更高密度的新型压制技术,结合高温烧结和快速冷却的烧结工艺,以及碳势控制和二次热处理等工艺,都是可行的解决方案,单独或组合采用这些工艺都可以提高材料性能。随着人们对可持续发展越来越重视,选择对环境影响最小的材料和制造工艺变得尤为重要。本文探讨了满足性能要求的金属粉末方案和工艺条件等关键因素,并列举了具有成本效益和可持续性的汽车应用案例,如同步轮毂,凸轮轴桃片,链轮,齿轮等高要求的应用。 展开更多
关键词 高性能 高精度 生产效率 可持续性
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