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1)  titanium nitride
氮化钛
1.
Study on preparation and reaction mechanism of titanium nitride powder;
氮化钛粉体制备及反应机理的研究
2.
Study on Process of Titanium Nitride Deposition onto Gears and Effects on Load-Carrying Ability of Gears;
氮化钛涂层的齿面制备工艺及其对齿轮承载能力的影响
3.
Titanium nitride films were grown by unbalanced magnetron sputtering on substrates of Si(100) and Ti alloy at different partial pressure ratios of N_2 and Ar and at different target substrate separations.
本文利用非平衡磁控溅射技术,通过改变薄膜沉积时氮气和氩气分压比(PN/PAr)和靶基距,在Si(100)和钛合金(Ti6A14V)基体上制备了氮化钛薄膜。
2)  TiN [英][tɪn]  [美][tɪn]
氮化钛
1.
Study on Super-fine Particle of TiN Added into Molten Pure Iron;
高温纯铁熔体中外加氮化钛超细颗粒的研究
2.
Preparation Methods of TiN Hard Films;
氮化钛硬质薄膜的制备方法
3.
Study on Corrosion Resistance Improvement of TiN Ceramic Process of Carbon Steel Surface;
碳钢表面氮化钛陶瓷化的耐腐蚀性能研究
3)  Titanium carbonitride
碳(氮)化钛
4)  Ti(C,N)
碳氮化钛
1.
Effect of Ti(C,N) on properties of low-carbon MgO-C brick;
氮化钛对低碳镁碳砖性能的影响
2.
Effect of Ti(C,N) content on properties of low carbon MgO-C brick;
氮化钛的加入量对低碳镁碳砖性能的影响
3.
The conclusions are given as following: it's impossible to form pure TiN When there is solid carbon in the slag Fe interface, but Ti(C,N) can be formed, contained TiN amount increases with pressure of Nitrgon in the slag Fe int erface.
由热力学计算结果分析了高炉冶炼含TiO_2铁矿时钛的物理化学行为,指出:有固体碳存在 时,渣铁界面不可能有纯TiN生成,应该析出Ti(C,N)固溶体,其中TiN含量随着渣铁界面处氮分压 值的增加而增加;生铁合钛量主要受形成碳氮化钛的反应所控制,与渣中TiO_2含量无关;温度低, 有利于限制 Ti(C,N)的析出,“低硅钛”操作是合理的。
5)  titanium carbonitride
氮碳化钛
1.
The main preparation technologies of titanium carbonitride coating are reviewed in the present paper.
氮碳化钛涂层具有优良的力学及摩擦学性能,作为硬质耐磨涂层,已广泛用于切削刀具、钻头和模具等,具有广阔的应用前景。
2.
Titanium carbonitride coating has excellent mechanical and tribological properties.
 氮碳化钛涂层有优良的力学及摩擦学性能,作为硬质耐磨涂层,它已广泛用于切削刀具、钻头和模具等场合,具有广泛的应用前景。
6)  titanium carbonitride
碳氮化钛
1.
Studies on the carbothermal preparation of titanium carbonitride powders in the open system
开放体系下碳热还原法制备碳氮化钛粉末的研究
2.
Based on thermodynamic analysis, titanium carbonitride were prepared by carbothermal reduction from high titanium slag which were compounded by TiO2 - CaO - SiO2 - Al2O3 - MgO based on the titanium - bearing blast furnace slag of PZH Steel.
在热力学分析基础上,以攀钢高钛渣为基准配制的TiO2-CaO-Al2O3-MgO五元合成高钛渣为主要原料,采用碳热还原法制取碳氮化钛
3.
and the calculating results show that the titanium carbonitrides undissolved or precipitated at high temperature are very similar to the pure TiN.
根据相关热力学理论,提出了钛微合金钢中钛、碳、氮元素在奥氏体中的平衡固溶量及平衡沉淀析出的碳氮化钛的化学式系数的理论计算方法,对典型化学成分的钛微合金钢进行了理论计算并对计算结果进行了分析。
补充资料:氮化钛
分子式:
CAS号:

性质: 有二氮化二钛(Ti2N2)和四氮化三钛(Ti3N4)两种。二氮化二钛为黄色固体。溶于煮沸的王水。遇到热的氢氧化钠溶液则有氨放出。四氮化三钛的性质与二氮化二钛相似。二氮化二钛由金属钛在900~1000℃的氮或氨中加热而得。四氮三钛由四氯化钛在1000℃的氨中加热而得。由于氮化钛具有高熔点、高硬度、高温化学稳定性及优良的导热、导电性能,适用于耐高温、耐磨损领域。

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