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超细WC和细WC/Co添加对WC-10Co硬质合金微观结构与力学性能的影响 被引量:4
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作者 于淞百 蒋豪丽 +4 位作者 闵凡路 张海龙 王丛旭 姚占虎 张建峰 《材料工程》 EI CAS CSCD 北大核心 2023年第7期136-145,共10页
在粒径为0.5μm的超细碳化钨(WC)粉体表面包覆钴(Co)纳米颗粒获得细WC/Co,将细WC/Co、粗WC和Co粉通过球磨混合均匀,压制成型后在1420℃下真空烧结1 h,得到WC-10Co硬质合金。借助扫描电子显微镜、透射电子显微镜、万能试验机等对比研究细... 在粒径为0.5μm的超细碳化钨(WC)粉体表面包覆钴(Co)纳米颗粒获得细WC/Co,将细WC/Co、粗WC和Co粉通过球磨混合均匀,压制成型后在1420℃下真空烧结1 h,得到WC-10Co硬质合金。借助扫描电子显微镜、透射电子显微镜、万能试验机等对比研究细WC/Co和超细WC对WC-10Co硬质合金微观形貌和力学性能的影响。结果表明:相比于超细WC,细WC/Co促进合金的致密化,并形成双晶结构。添加细WC/Co和超细WC制备的硬质合金的平均晶粒度分别为2.18μm和3.57μm。细WC/Co的添加会降低晶粒生长速度并抑制细晶完全溶解,而粗晶通过缺陷辅助生长及溶解-析出生长机制生长为表面阶梯状的缺角三棱柱形;硬质合金的硬度和断裂韧度得到提升,二者分别为1131HV 30和22.1 MPa·m^(1/2),而在1131HV 30同等硬度下,其断裂韧度比线性拟合的断裂韧度高27.7%。机理分析认为,超细WC的添加会导致异常晶粒产生,不利于性能;而细WC/Co的添加能够同时形成双晶结构和均匀的钴相分布结构,降低晶粒缺陷,提升综合力学性能。 展开更多
关键词 wc-10CO硬质合金 细wc/Co添加 细wc添加 微观结构 力学性能
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不同细WC添加量对板状硬质合金显微组织和力学性能各向异性的影响
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作者 丁青军 郑勇 +2 位作者 柯峥 严永林 周伟 《硬质合金》 CAS 2019年第6期414-422,共9页
本文以真空烧结法制备了显微组织中含有板状粗WC晶粒的WC-Co硬质合金。用三点弯曲法、洛氏硬度计、压痕法分别测得试样的抗弯强度、硬度和断裂韧性,并通过XRD,SEM等手段研究不同细WC添加量对板状硬质合金显微组织及力学性能各向异性的... 本文以真空烧结法制备了显微组织中含有板状粗WC晶粒的WC-Co硬质合金。用三点弯曲法、洛氏硬度计、压痕法分别测得试样的抗弯强度、硬度和断裂韧性,并通过XRD,SEM等手段研究不同细WC添加量对板状硬质合金显微组织及力学性能各向异性的影响。结果表明:随着细WC添加量的增加,板状硬质合金中板状粗WC晶粒定向排列程度越弱,板状硬质合金在垂直于压制方向和平行于压制方向的显微组织差异逐渐减小;当细WC的添加量为35%(质量分数,下同)和45%时,硬质合金中板状粗WC晶粒基本是随机分布,不同方向上的显微组织差异较小。随着细WC添加量增加,硬质合金垂直于压制方向和平行于压制方向上的强度和硬度增加,断裂韧性下降,并且两个方向上的力学性能差异逐渐减小;当细WC的添加量为35%和45%时,两个面上的力学性能基本一致;当细WC的添加量为35%时,硬质合金的综合力学性能较佳。 展开更多
关键词 硬质合金 各向异性 板状wc晶粒 细wc 显微组织 力学性能
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Preparation of ultra-fine grain Ni-Al-WC coating with interlocking bonding on austenitic stainless steel by laser clad and friction stir processing 被引量:4
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作者 熊拥军 邱子力 +3 位作者 李瑞迪 袁铁锤 吴宏 刘锦辉 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第11期3685-3693,共9页
The ultra-fine structured Ni?Al?WC layer with interlocking bonding was fabricated on austenitic stainless steel by combination of laser clad and friction stir processing (FSP). Laser was initially applied to Ni?Al ele... The ultra-fine structured Ni?Al?WC layer with interlocking bonding was fabricated on austenitic stainless steel by combination of laser clad and friction stir processing (FSP). Laser was initially applied to Ni?Al elemental powder preplaced on the austenitic stainless steel substrate to produce a coating for further processing. The as-received coating was subjected to FSP treatment, processed by a rotary tool rod made of WC?Co alloy, to obtain sample for inspection. Microstructure, phase constitutions, hardness and wear property were investigated by methods of scanning electronic microscopy (SEM) with energy-dispersive X-ray spectroscopy (EDX) microanalysis, and X-ray diffraction (XRD), hardness test alongside with dry sliding wear test. The results show that the severe deformation effect exerted on the specimen resulted in an ultra-fine grain layer of about 100μmin thickness and grain size of 1?2μm. Synergy between introduction of WC particles to the deformation layer and deformation strengthening contributes greatly to the increase in hardness and friction resistance. An interlocking bonding between the coating and matrix which significantly improves bonding strength was formed due to the severe deformation effect. 展开更多
关键词 laser clad friction stir processing Ni-Al-wc coating ultra-fine grain interlocking bonding
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Effect of jet milling on micro-strain behavior and rupture behavior of agglomerates of ultrafine WC powders 被引量:7
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作者 Ya-li SUN Qing-cai LIU +3 位作者 Xin HUANG Fa-xing ZHANG Jian YANG Hua MEI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第10期2128-2140,共13页
The Williamson-Hall and uniaxial compression methods were used to study the variations of the micro-strain and stress-strain relations in WC powders after jet milling and ball milling, respectively. The rupture behavi... The Williamson-Hall and uniaxial compression methods were used to study the variations of the micro-strain and stress-strain relations in WC powders after jet milling and ball milling, respectively. The rupture behavior of agglomerates in WC powders was investigated. Meanwhile, the as-obtained WC powders treated by different milling methods were used to fabricate WC-10%Co cemented carbides, followed by the performance assessment of cemented carbides. The results show that the micro-strain of the jet-milled WC powders decreases significantly compared with that of the ball-milled WC powders, and that the cemented carbides prepared by jet-milled WC powders exhibit excellent properties with a transverse-rupture strength of 4260 MPa, due to the elimination of agglomerates and the reduction of lattice strain. 展开更多
关键词 ultrafine wc powder micro-strain stress-strain relation jet milling agglomerate rupture mechanism
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