说明:双击或选中下面任意单词,将显示该词的音标、读音、翻译等;选中中文或多个词,将显示翻译。
您的位置:首页 -> 词典 -> MoS_2/Ti_3SiC_2
1)  MoS2/Ti3SiC2
MoS_2/Ti_3SiC_2
1.
The MoS2/Ti3SiC2 multilayer materials were prepared by multistep that pre-synthesized Ti3SiC2 powders are used to prepare multilayer materials.
研究了采用分步法制备MoS_2/Ti_3SiC_2层状复合材料的工艺,其制备过程分2步进行。
2)  Ti3SiC2
Ti_3SiC_2
1.
Ti3SiC2 material with high purity and density was fabricated by the spark plasma sintering with the addition of aluminium.
以铝为助剂结合放电等离子烧结工艺,在较低温度下快速制备出高纯致密Ti_3SiC_2块体材料,掺加适量铝能加快Ti_3SiC_2的反应合成,提高制备材料的纯度,并促进Ti_3SiC_2晶体的生长和材料的快速烧结致密,在升温速率为80℃/min,z轴压力为30MPa时,材料制备的最佳温度为1200~1250℃,所制备材料经XRD、SEM和EDS分析表明不含TiC和SiC等杂质相,Ti_3SiC_2为5~25μm的板状结晶。
3)  MoS2
MoS_2
1.
MoS2 powders coated with Ni are successfully prepared via Ni (NO3) 2 decomposition-hydrogen reduction, then added to Ni-Cr25 (wt% ) alloy powders to produce solid self-lubricating composites of Ni-Cr25(wt% ) alloy by vacuum hot pressing at 1 050℃ and 10 MPa.
添加Ni包覆MoS_2粉末,Ni-Cr25(w%)高温固体自润滑材料的机械性能优于未包覆材料,对(MoS_2/Ni)20w%的高温固体自润滑材料的摩擦磨损性能分析表明:在室温和600℃下,材料有较低的摩擦系数,室温磨损率也很低,在高温下与未添加包覆材料相比前者具有很好的宽温带摩擦学性能。
2.
Bonded coatings are made by super fine powder MoS2 and graphite that can resist high temperature and reduce friction.
利用MoS_2超细粉+石墨制作的粘结涂层,涂层耐一定高温,减摩效果好。
3.
Tribolpgical characteristics and wear failure mechanism of bonded solid lubricant (MoS2) film used on YL12 aluminum alloy - 45# steel frictional pair were studied systematically.
本文系统考察了以MoS_2为固体润滑剂的有机粘结固体润滑涂层润滑YL12铝合金-45#钢磨擦副时的摩擦学性能及其在铝合金表面的失效机理。
4)  MoS_2-LaF_3cosputtered film
MoS_2-LaF_3
5)  MoS_2 films
MoS_2膜
6)  Ti_3SiC_2 class material
Ti_3SiC_2系材料
1.
And the wear mechanisms of Ti_3SiC_2 class materials with the interaction and coupled action under high-current,thermal stress and friction force were discussed.
研究了三元层状化合物钛硅碳(Ti_3SiC_2)和钛铝碳(Ti_3AlC_2)材料的载流磨损特性,探讨了在大电流、热应力和摩擦力的交互和耦合作用下Ti_3SiC_2系材料的支配性磨损机理。
补充资料:bioactive glass-ceramic composite reinforced by SiC whisker
分子式:
CAS号:

性质:由碳化硅晶须与生物活性玻璃陶瓷复合而成的生物陶瓷复合材料。高强度、高弹性模量、无毒的碳化硅晶须在陶瓷基材中弥散分布,使材料中的裂纹相对均匀,裂纹扩展发生转向和分支;外力作用下碳化硅晶须拔出时产生的拔出效应,使复合陶瓷的弯曲强度达460MPa,断裂韧性达4.3MPa·m1/2,维伯尔系数高达24.7,标志着它是可承力的生物陶瓷复合材料。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条