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多尺度强韧化碳基润滑薄膜的研究进展 被引量:22
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作者 蒲吉斌 王立平 薛群基 《中国表面工程》 EI CAS CSCD 北大核心 2014年第6期4-27,共24页
随着海洋、空间、核能等苛刻环境工况下机械装备的发展,兼具高硬度、高承载能力、良好韧性及优异摩擦磨损性能的强韧化复合碳基润滑薄膜成为类金刚石薄膜的研究重点。文中系统归纳和评述了碳基薄膜的多元/多相复合、梯度多层、纳米多层... 随着海洋、空间、核能等苛刻环境工况下机械装备的发展,兼具高硬度、高承载能力、良好韧性及优异摩擦磨损性能的强韧化复合碳基润滑薄膜成为类金刚石薄膜的研究重点。文中系统归纳和评述了碳基薄膜的多元/多相复合、梯度多层、纳米多层、微/纳表界面织构化等强韧化关键技术及其强韧化机制。包括纳米晶—非晶复合结构的界面强化效应和晶界滑移强韧化;功能化梯度/多层结构膜基界面匹配、应力缓冲和微裂纹抑制强韧化;纳米晶—非晶类石墨结构、类富勒烯结构以及微/纳表面织构强韧化机制等。这些技术大幅改善了类金刚石薄膜的韧性,提高了薄膜抗疲劳磨损性能,使其能有效应用于水润滑、油润滑、高温、真空、特殊气氛以及沙尘等极端苛刻环境。文中指出强韧化碳基薄膜将向着应对极端苛刻环境的多尺度复合强韧化、适应复杂多变环境的智能化,以及满足未来空间需求的超长寿命方向发展。 展开更多
关键词 类金刚石薄膜 强韧化 功能梯度多层 摩擦磨损
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Interface microstructure and mechanical properties of selective laser melted multilayer functionally graded materials 被引量:4
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作者 WANG Di DENG Guo-wei +4 位作者 YANG Yong-qiang CHEN Jie WU Wei-hui WANG Hao-liang TAN Chao-lin 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第4期1155-1169,共15页
Functionally graded material(FGM)can tailor properties of components such as wear resistance,corrosion resistance,and functionality to enhance the overall performance.The selective laser melting(SLM)additive manufactu... Functionally graded material(FGM)can tailor properties of components such as wear resistance,corrosion resistance,and functionality to enhance the overall performance.The selective laser melting(SLM)additive manufacturing highlights the capability in manufacturing FGMs with a high geometrical complexity and manufacture flexibility.In this work,the 316L/CuSn10/18Ni300/CoCr four-type materials FGMs were fabricated using SLM.The microstructure and properties of the FGMs were investigated to reveal the effects of SLM processing parameters on the defects.A large number of microcracks were found at the 316L/CuSn10 interface,which initiated from the fusion boundary of 316L region and extended along the building direction.The elastic modulus and nano-hardness in the 18Ni300/CoCr fusion zone decreased significantly,less than those in the 18Ni300 region or the CoCr region.The iron and copper elements were well diffused in the 316L/CuSn10 fusion zone,while elements in the CuSn10/18Ni300 and the 18Ni300/CoCr fusion zones showed significantly gradient transitions.Compared with other regions,the width of the CuSn10/18Ni300 interface and the CuSn10 region expand significantly.The mechanisms of materials fusion and crack generation at the 316L/CuSn10 interface were discussed.In addition,FGM structures without macro-crack were built by only altering the deposition subsequence of 316L and CuSn10,which provides a guide for the additive manufacturing of FGM structures. 展开更多
关键词 selective laser melting multilayer functionally graded material interfacial characterization crack defects mechanical properties
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