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1)  β-Si3N4 ceramic
β-Si3N4陶瓷
1.
Progresses of reasearch on the factors of the thermal conductivity,preparation methods,mechanical and electrical properties of high thermal conductivity β-Si3N4 ceramics are reviewed.
从热导率的影响因素、制备方法及力学电学性能3方面归纳了高热导β-Si3N4陶瓷的研究进展,并对高热导β-Si3N4陶瓷存在的问题和今后的研究方向提出了几点看法。
2)  Si3N4 ceramic
Si3N4陶瓷
1.
Si3N4 ceramic is brazed with Ti40Zr25Ni15Cu20 amorphous filler metal,the effect of brazing processing parameter on reaction layer products is discussed.
采用Ti40Zr25Ni15Cu20非晶钎料钎焊Si3N4陶瓷,研究了钎焊工艺参数对连接界面产物的影响。
2.
For purposes of meeting these application conditions,the Si3N4 ceramic hybrid ball bearings were developed in this study.
为了满足动量轮对轴承的使用要求,本研究开发了Si3N4陶瓷球混合轴承。
3.
The microstructure and strength of Si3N4 ceramic joint brazed with(Ag72Cu28)96Ti4 rapidly-cooled filler metals were studied.
采用(Ag72Cu28)96Ti4急冷钎料钎焊Si3N4陶瓷,研究联接温度、时间和压力等工艺参数对Si3N4陶瓷的接头界面结构以及强度的影响,并与同成分的常规钎料进行对比。
3)  Si_3N_4 ceramic
Si3N4陶瓷
1.
Si_3N_4 ceramic was brazed with Ti40Zr25Ni15Cu20 amorphous filler metal, the effect of brazing processing parameters on interfacial microstructure and joint strength was discussed.
采用Ti40Zr25Ni15Cu20非晶钎料钎焊Si3N4陶瓷,研究钎焊工艺参数对界面反应层和接头连接强度的影响。
2.
Selective laser sintering of coated Si_3N_4 ceramic powders;
将自制共聚物与磷酸二氢铵以适当的比例混合,采用机械混合与喷雾干燥等手段对Si3N4陶瓷粉进行了包覆处理,并在SLS设备上进行了烧结成型实验,成功地实现了包覆粉末的SLS烧结。
4)  Si_3N_4 ceramics
Si3N4陶瓷
1.
In this paper, Si_3N_4 ceramics were brazed with different thickness Ag-Cu-Ti alloy, and effects of weld thickness on the joint strength were investigated.
采用不同厚度的Ag-Cu-Ti钎料连接Si3N4陶瓷材料,研究了钎缝厚度对连接强度的影响规律,利用扫描电镜观察了接头微观结构。
5)  Si 3N 4 ceramic
Si3N4陶瓷
1.
Wear mechanism for couple consisting of Si 3N 4 ceramic and chilled cast iron under unlubricated condition were studied throug h block-pin test.
研究了无润滑条件下 Si3N4陶瓷 -白口铸铁磨擦副的磨损机理。
6)  Si 3N 4 ceramics
Si3N4陶瓷
1.
The mechanism of transient liquid phase (TLP) diffusion bonding of Si 3N 4 ceramics with multiple Ti/Ni/Ti interlayers was investigated by analyzing the interfacial microstructures and examining the joint strengths.
通过接头界面结构分析和强度测试研究了 Ti/ Ni/Ti复合层过渡液相 (TL P)扩散连接 Si3N4陶瓷的结合机理。
补充资料:氮化硅(si_(3)N_(2))基陶瓷制品


氮化硅(si_(3)N_(2))基陶瓷制品


氟化硅(s11N z)基陶瓷制品中国科学院上海硅酸盐研究所供稿
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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