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1)  in-situ synthesis vanadium carbide
原位生成VC
2)  In-situ Synthesis
原位生成
1.
Study of in-situ synthesis of TiB_2by laser cladding and its microstructure;
激光熔覆原位生成TiB_2及其组织结构研究
2.
The carburising reaction of V to form VC take place under solid phase sintering at 850 ℃, and the in-situ synthesis VC particulate is fine, so the size is smaller than 0.
讨论了烧结温度对VC颗粒大小和分布的影响,在850℃固相烧结时,钒的碳化反应能够完成,而且VC颗粒不易长大,原位生成小于0。
3.
Studies of microstructure on the coating by scanning electronic microscope(SEM),electron probe microzone analysis(EPMA) show that in-situ synthesis of TiB2 and TiB major ceramic phases disperse homogeneously in the γ-Co based alloy.
结果表明,涂层中原位生成的TiB2和TiB陶瓷颗粒相均匀分布在γ-Co基合金涂层中。
3)  in-situ [英][,ɪn 'sɪtju:]  [美]['ɪn 'sɪtju]
原位生成
1.
Microstructure and tensile properties of in-situ titanium matrix composites;
原位生成(TiBw+TiCp)/Ti复合材料的高应变速率超塑性
2.
Joiningsofseveralceramicsandcomposites(SiC,CandCf/SiC)athightemperatureviaprecursor (silicone resin, SR249) -infiltration-pyrolysis process and in-situ nano-ceramicgrains reinforced ceramic-metal (SiC-Ti) gradient materials for joining of ceramic andmetal have been firstly studied in this dissertation.
本文为解决陶瓷及其复合材料之间以及与金属之间的高温连接问题,率先开展了用先驱体(硅树脂SR249)转化法对多种陶瓷及复合材料(SiC、C及C_f/SiC)之间的高温连接研究,用聚碳硅烷(PCS)转化原位生成纳米陶瓷相增强的陶瓷-金属(SiC-Ti)梯度材料实现对陶瓷与金属的连接。
4)  in situ
原位生成
1.
Reinforcement of EVA by sodium methacrylate prepared in situ;
原位生成甲基丙烯酸钠补强EVA的研究
2.
In situ Formation of TiB_2 Particles and the Effect of TiB_2 Particles on the Microstructure and Properties of Al Alloy;
TiB_2粒子的原位生成及对铝合金组织与性能的影响
5)  in situ formation
原位生成
1.
Thermodynamics and kinetics are applied to study the in situ formation of titanium diboride in Cu?B?Ti during sintering.
通过对Cu B Ti粉末在机械合金化和烧结过程中结构变化的分析 ,研究了Cu B Ti体系原位生成TiB2 的热力学和动力学 ,并建立了反应生成TiB2 的微观反应机制 。
2.
The pinciple of the in situ formation of TiB and TiC reinforcements in Ti is analysed.
分析了增强体TiB和TiC在Ti中的原位生成原理,研究了利用B4C粉末与海绵Ti混合熔炼制备钛基复合材料的技术。
6)  formation in-situ
原位生成
1.
In this article, the mechanical properties, crystal structure and orientation structure and ultra-violet protect factor (UPF) of the composite fibers prepared by the method of formation in-situ have been studied.
研究了原位生成纳米和TiO2/PET复合纤维的力学性能、结晶性和取向性,初步表征了纤维的紫外线屏蔽功能。
补充资料:vanadium carbide VC
分子式:
CAS号:

性质:银白色晶体。密度5.25~5.4g/cm3。熔点2750℃。比石英略硬。可由五氧化二钒用焦炭还原制得。主要用于制造钒钢。

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