期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Cu-1.4Ni-1.2Co-0.6Si合金的析出与再结晶的交互行为 被引量:4
1
作者 肖翔鹏 黄国杰 +2 位作者 柳瑞清 蔡薇 张建波 《稀有金属》 EI CAS CSCD 北大核心 2014年第4期596-602,共7页
通过对施加30%~70%的冷变形量的Cu-1.4Ni-1.2Co-0.6Si合金时效过程中的显微硬度及导电率规律分析和透射电镜观察,发现固溶合金时效前冷变形可加速时效初期第二相析出,导电率得以快速上升。如合金经过30%形变400℃时效1 h后导电率可达43... 通过对施加30%~70%的冷变形量的Cu-1.4Ni-1.2Co-0.6Si合金时效过程中的显微硬度及导电率规律分析和透射电镜观察,发现固溶合金时效前冷变形可加速时效初期第二相析出,导电率得以快速上升。如合金经过30%形变400℃时效1 h后导电率可达43%IACS,而固溶后直接时效为40.7%IACS。经过冷轧-时效后,沿位错分布着许多细小的析出相,使位错在时效过程中运动困难,同时合金内形成了高密度的位错,析出相弥散细小分布在基体中,故可以获得较高的显微硬度,如经30%形变于400℃时效2 h其显微硬度可达HV223,而未加形变直接时效合金的显微硬度为HV202。形变析出与再结晶过程中再结晶时间tR和时效析出时间tP取决于形变量和时效制度,在一定的形变量和较高的时效温度的条件下,合金内晶粒易发生再结晶。合金70%变形500℃时效2 h,由于基体中产生高密度的位错,会降低再结晶激活能QR,故在显微组织中发现了亚晶粒,从而降低了合金的强化效果,此时其显微硬度为HV206。该合金在450℃时效处理时组织转变主要有两种:一是第二相弥散分布在铜基体中;另一种是析出与再结晶交互作用而产生的不连续析出。 展开更多
关键词 CU-1 4Ni-1 2co-0 6Si合金 时效析出 再结晶 不连续析出
原文传递
Powder Extrusion Molding of Nanocrystalline WC-10Co Composite Cemented Carbide 被引量:1
2
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
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部