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离子束增强沉积CrN膜层及其微动摩擦学性能研究 被引量:10
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作者 唐宾 李咏梅 +1 位作者 秦林 吴培强 《材料热处理学报》 EI CAS CSCD 北大核心 2005年第3期58-60,共3页
以不同氮离子辅助轰击能量制备CrN膜层,利用纳米压入仪及显微硬度计分别测试单晶Si片上膜层的硬度及断裂韧度K1C,使用XRD、XPS及EPMA分析离子轰击能量对镀层组织结构的影响。结果表明,采用能量较低的氮离子轰击得到的涂层,由于金属Cr的... 以不同氮离子辅助轰击能量制备CrN膜层,利用纳米压入仪及显微硬度计分别测试单晶Si片上膜层的硬度及断裂韧度K1C,使用XRD、XPS及EPMA分析离子轰击能量对镀层组织结构的影响。结果表明,采用能量较低的氮离子轰击得到的涂层,由于金属Cr的存在,涂层硬度虽有所降低,但断裂韧度K1C数值较高。选择较低的4keV辅助轰击能量,在M2高速钢基体上沉积CrN涂层,膜层在空气介质中表现出优异的耐磨减摩特性。但在水介质条件下,由于膜层接触区域的去钝化再钝化使腐蚀和磨损相互加速,导致CrN膜层摩擦系数,尤其是磨损量明显高于基材。 展开更多
关键词 离子束增强沉积 CRN 组织结构 微动摩擦学性能
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Ti6Al4V合金渗镀Mo-N陶瓷层的微动摩擦学性能 被引量:7
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作者 秦林 范爱兰 +2 位作者 吴培强 唐宾 徐重 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2006年第7期1053-1056,共4页
采用离子渗镀技术在Ti6Al4V合金表面形成均匀致密的钼氮陶瓷渗镀层,对陶瓷层微动摩擦学性能进行研究。100000周次微动磨损试验结果表明,渗镀的Mo-N陶瓷层显著提高了Ti6Al4V合金的抗微动磨损能力。Ti6Al4V合金微动磨损机制是粘着与磨粒... 采用离子渗镀技术在Ti6Al4V合金表面形成均匀致密的钼氮陶瓷渗镀层,对陶瓷层微动摩擦学性能进行研究。100000周次微动磨损试验结果表明,渗镀的Mo-N陶瓷层显著提高了Ti6Al4V合金的抗微动磨损能力。Ti6Al4V合金微动磨损机制是粘着与磨粒磨损的综合效应,Mo-N陶瓷层微动磨损机制是犁削。 展开更多
关键词 钛合金 钼氮陶瓷层 微动摩擦学性能
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Microstructure and mechanical properties of continuous drive friction welded Ti_(2)AlNb alloy under different rotational rates
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作者 Zhi-qiang BU Xiu-ping MA +3 位作者 Jia-yun WU Zhen LÜ Hu CHEN Jin-fu LI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第10期3221-3232,共12页
Ti_(2)AlNb-based alloy was joined in a continuous drive friction welding machine under different rotational rates(500,1000 and 1500 r/min).The microstructure and mechanical properties of the joints were investigated.I... Ti_(2)AlNb-based alloy was joined in a continuous drive friction welding machine under different rotational rates(500,1000 and 1500 r/min).The microstructure and mechanical properties of the joints were investigated.It is shown that the weld zone(WZ) is fully composed of recrystallized B2 phase,and the grain size decreases with increasing rotational rate.The thermo-mechanically affected zone(TMAZ) suffers severe deformation during welding,due to which most of original precipitation phase is dissolved and streamlines are present.In the heat affected zone(HAZ),only the fine O phase is dissolved.The as-welded joint produced using 1000 r/min has the best mechanical properties,whose strength and elongation are both close to those of the base metal,while the as-welded joint obtained using 500 r/min exhibits the worst mechanical properties.Post-weld annealing treatment annihilates the deformation microstructure and fine O phase precipitates in the joints,consequently improving the mechanical properties significantly.Decomposed α_(2) phase is a weakness for the mechanical performance of the joint since microcracks are apt to form in it in the tensile test. 展开更多
关键词 Ti2AlNb alloy continuous drive friction welding MICROSTRUCTURE mechanical properties
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