期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
温度对钢/铝粘接接头失效强度影响的研究 被引量:3
1
作者 那景新 浦磊鑫 +1 位作者 秦国锋 陈立军 《汽车工程》 EI CSCD 北大核心 2019年第2期225-231,共7页
为给钢/铝粘接结构在车辆中的实际应用提供参考和指导,本文中选取了3种处于不同应力状态下的接头,包括厚基底剪切接头、45°嵌接接头和对接接头,选取-40,-10,25,50和80℃5个温度点进行测试,以研究温度变化对Plexus MA832钢/铝粘接... 为给钢/铝粘接结构在车辆中的实际应用提供参考和指导,本文中选取了3种处于不同应力状态下的接头,包括厚基底剪切接头、45°嵌接接头和对接接头,选取-40,-10,25,50和80℃5个温度点进行测试,以研究温度变化对Plexus MA832钢/铝粘接接头失效载荷、失效形式和失效准则的影响。研究结果表明:随着温度的升高,3种应力状态接头的失效强度均呈三次多项式的下降趋势,但下降幅度与接头的应力状态有关。其中,厚基底剪切接头的强度下降最为明显,80比25℃时下降约56%;但温度变化并未引起粘接接头失效形式的变化,均表现为内聚力破坏。此外,通过接头胶层应力曲线的拟合,建立了不同温度下Plexus MA832粘接胶层的二次应力失效准则,并在此基础上,最终建立了钢/铝粘接接头在任意温度下的失效准则表达式。 展开更多
关键词 钢/铝粘接 头失效 温度 失效预测 失效准则
在线阅读 下载PDF
Bonding mechanism of X10CrNi18-8 with Ni/Al_2O_3 composite ceramic by pressureless infiltration 被引量:7
2
作者 杨少锋 陈维平 +2 位作者 韩孟岩 杨超 朱德智 《Journal of Central South University》 SCIE EI CAS 2011年第4期953-959,共7页
Abstract: An alloy steel/alumina composite was successfully fabricated by pressureless infiltration of X10CrNil8-8 steel melt on 30% (mass fraction) Ni-containing alumina based composite ceramic (Ni/Al2O3) at 1 6... Abstract: An alloy steel/alumina composite was successfully fabricated by pressureless infiltration of X10CrNil8-8 steel melt on 30% (mass fraction) Ni-containing alumina based composite ceramic (Ni/Al2O3) at 1 600 ℃. The infiltration quality and interfacial bonding behavior were investigated by SEM, EDS, XRD and tensile tests. The results show that there is an obvious interfacial reaction layer between the alloying steel and the Ni/Al2O3 composite ceramic. The interfacial reactive products are (FexAly)3O4 intermetallic phase and (AlxCry)2O3 solid solution. The interracial bonding strength is as high as about 67.5 MPa. The bonding mechanism of X10CrNi 18-8 steel with the composite ceramic is that Ni inside the ceramic bodies dissolves into the alloy melt and transforms into liquid channels, consequently inducing the steel melt infiltrating and filling in the pores and the liquid channels. Moreover, the metallurgical bonding and interfacial reactive bonding also play a key role on the stability of the bonding interface. 展开更多
关键词 pressureless infiltration steel/alumina composites interface bonding infiltration mechanism
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部