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超细晶硬质合金中VC/Cr_3C_2对晶粒长大的抑制作用及机理研究 被引量:21
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作者 李宁 邱友绪 +3 位作者 张伟 文玉华 张勇 周永贵 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2007年第10期1763-1766,共4页
研究了超细晶硬质合金VC/Cr3C2抑制剂作用及抑制机理。研究发现复合添加VC/Cr3C2可以有效抑制WC-10Co合金烧结过程中晶粒的连续长大,合金平均晶粒尺寸为0.5μm,具有较高TRS(横向断裂强度Transverse Rupture Strength)和硬度。TEM和EDS... 研究了超细晶硬质合金VC/Cr3C2抑制剂作用及抑制机理。研究发现复合添加VC/Cr3C2可以有效抑制WC-10Co合金烧结过程中晶粒的连续长大,合金平均晶粒尺寸为0.5μm,具有较高TRS(横向断裂强度Transverse Rupture Strength)和硬度。TEM和EDS分析发现抑制剂元素的主要存在方式是溶解在粘结相中且分布均匀,未发现抑制剂元素偏聚和第二相析出,说明抑制机理在于抑制剂元素溶入粘结相Co后,显著降低W,C在Co中的溶解度,使液相烧结阶段WC晶粒的溶解-析出过程受到阻碍,从而抑制液相烧结阶段的晶粒连续长大。 展开更多
关键词 vc/cr3C2 超细晶 硬质合金 抑制剂
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VC/Cr_3C_2及配碳量对WC-0.5Co超细硬质合金组织与性能的影响 被引量:9
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作者 郑虎春 范景莲 +2 位作者 杨文华 张忠健 刘涛 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2015年第4期912-917,共6页
以超细WC粉末和超细WC-6Co复合粉末为原料,添加VC/Cr3C2作为晶粒长大抑制剂,同时进行配碳,采用高能球磨和气压强化烧结制备晶粒度小于0.5μm的WC-0.5Co超细硬质合金,研究了不同VC/Cr3C2添加量及配碳量对其组织与性能的影响。结果表明:VC... 以超细WC粉末和超细WC-6Co复合粉末为原料,添加VC/Cr3C2作为晶粒长大抑制剂,同时进行配碳,采用高能球磨和气压强化烧结制备晶粒度小于0.5μm的WC-0.5Co超细硬质合金,研究了不同VC/Cr3C2添加量及配碳量对其组织与性能的影响。结果表明:VC/Cr3C2有效抑制了烧结过程中WC晶粒的长大,显著提高了WC-0.5Co超细硬质合金的硬度。当VC/Cr3C2添加量为0.73%(质量分数,下同)时,合金的硬度(HV0.05)最高,达到32 658 MPa;同时一定的配碳量有利于控制合金中的脱碳,提高合金性能,当配碳量为0.2%时,WC-0.5Co-0.73VC/Cr3C2合金的综合力学性能最好,断裂韧性为6.935 MPa·m1/2,维氏硬度(HV0.05)为32 216 MPa。 展开更多
关键词 vc/cr3C2 配碳量 WC-0.5Co超细硬质合金 显微组织 力学性能
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Powder Extrusion Molding of Nanocrystalline WC-10Co Composite Cemented Carbide 被引量:1
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作者 史晓亮 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2006年第1期46-48,共3页
The rods that were shaped from nanocrystalline WC- 10.21 Co-0.42 VC/ Cr3 C2 ( wt% ) composite powders by using powder extrusion molding (PEM) were investigated. The nanocrystalline WC- 10.21 Co- 0. 42 VC/ Cr3 C2 ... The rods that were shaped from nanocrystalline WC- 10.21 Co-0.42 VC/ Cr3 C2 ( wt% ) composite powders by using powder extrusion molding (PEM) were investigated. The nanocrystalline WC- 10.21 Co- 0. 42 VC/ Cr3 C2 ( wt% ) composite powders were prepared by the spray thermal decomposition-continuous reduction and carburization technology. In order to improve the properties of rods shaped by using powder extrusion molding, the cold isostatic pressing (CIP) technology was used before or after debinding. Specimens were siutered by vacuum siutering and hot isostatic pressing (HIP). The density, Rockwell A hardness, magnetic coercivity , and magnetic saturation induction of siutered specimen were measured. The microstructure of the green bodies and the siutered specimens was studied by scanning electron microscopy (SEM). Results show that the rod formed by using powder extrusion molding after debinding and followed by cold isostatic pressing can be siutered to 99.5% density of composite cemented carbide rods with an average grain size of about 200- 300 nm, magnetic coercivity of 30.4 KA / m, Rockwell A hardness of 92.6 and magnetic saturation induction of 85% . Superfine WC- 10 Co cemented carbide rods with excellent properties were obtained. 展开更多
关键词 powder extrusion molding cold isostatic pressing NANOcrYSTALLINE WC- 10.21 Co-0. 42 vc/ cr3 C2 wt% composite powders
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