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1)  Al_2O_3/Ti_3SiC_2
Al2O3/Ti3SiC2
1.
Preparation and Properties of Al_2O_3/Ti_3SiC_2 Multilayer Materials;
采用两种方法制备Al2O3/Ti3SiC2层状复合材料,一是原位-热压法,即Ti3SiC2是在层状材料的制备过程中同时被合成的;一是分步法,即制备过程分两步进行,首先制备出Ti3SiC2高纯粉,再采用热压法进行烧结制备层状材料。
2)  Ti_3SiC_2
Ti3SiC2
1.
High-speed friction characteristics and frictional oxidation behavior of a polycrystal bulk Ti_3SiC_2 were investigated.
研究了高纯度多晶块体Ti3SiC2高速摩擦特性及摩擦氧化行为。
2.
The layered ceramic material Ti_3SiC_2 has a hexagonal crystallographic structure with space group P6_3/mmc.
层状结构的Ti3SiC2陶瓷属于六方晶体结构,空间群为P63/mmc。
3.
With the properties of both metal and ceramics,Ti_3SiC_2 is a kind of layered ternary carbide.
兼有金属和陶瓷性能的Ti3SiC2是一种三元层状碳化物材料,既有象陶瓷那样的高温性能,又有类似金属的导热性和导电性,应用前景十分广阔。
3)  Ti 3SiC 2
Ti3SiC2
1.
Ti 3SiC 2 is a novel layered ceramic material, it combines many of the best attributes of both metals and ceramics.
新型层状陶瓷Ti3SiC2 兼有金属和陶瓷的许多优良性能 ,具有高的热导率和电导率 ,易加工 ,同时具有良好的抗热震性、抗氧化性和高温稳定性。
2.
The research progress on the ternary carbide Ti 3SiC 2 is summarized in the present paper.
本文综合介绍Ti3SiC2 的最新研究进展。
4)  TiC/ Ti3SiC2
TiC/Ti3SiC2
1.
TiC/ Ti3SiC2 mixed powders were synthesized by mechanical alloying taking Ti, Si and C element powders as the starting materials.
以Ti、Si和C单质粉末为原料,采用机械合金化合成了TiC/Ti3SiC2混合粉体,并用放电等离子烧结球磨粉体制备了致密的TiC/Ti3SiC2陶瓷。
5)  Ti_3SiC_2/TiB_2
Ti3SiC2/TiB2
1.
Dense Ti_3SiC_2/TiB_2 composites were successfully fabricated by hot-pressed 2TiC/Ti/Si/0.
2Al/TiB2粉为原料,采用热压烧结工艺成功制备了Ti3SiC2/TiB2复合材料。
6)  Al_2O_3
Al2O3
1.
The Fe-matrix composites reinforced with Al_2O_3were fabricated by melting-casting.
采用熔铸法成功的制备成了Al2O3/Fe复合材料,利用扫描电子显微镜(SEM),来观察增强相Al2O3的微观组织。
2.
The phase transformation of γ-Al_2O_3 at high temperature was characterized by Raman techniques.
通过不同波长的Raman激发光对γ-Al2O3的高温相变过程进行了研究。
3.
Steric hindrance layer can be established when the surfaces of nano-Al_2O_3 were grafted with polyacetal,which(increased) the dispersibility of the nano-particles as well as the compatibility between the particles and the resin matrix.
在纳米Al2O3表面接枝聚缩醛可在粒子表面建立起空间位阻稳定层,不但提高了纳米粒子的分散稳定性,还可以增强纳米粒子与树脂基体的相容性。
补充资料:TC4(Ti6Al4V)焊接组织


TC4(Ti6Al4V)焊接组织


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