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1)  thermal explosive synthesis TiNi
热爆合成钛镍
2)  Ni Ti alloy
镍钛热记忆合金
1.
Methods Fourty nine patients with esophageal stenosis were treated with implanting national Ni Ti alloy cradles.
方法 采用透视下徒手置入法为 4 9例食管狭窄患者置入国产镍钛热记忆合金支架 ,对置入效果和操作时间进行观察。
3)  tinidur
钛镍铬耐热合金
4)  combustion synthesis
热爆合成
1.
The ΔGT of NiTi reaction system by combustion synthesis was calculated.
对热爆合成NiTi反应标准吉布斯自由能(△G_T)进行计算,表明Ni_3Ti、NiTi_2和NiTi都有可能存在于反应过程中。
2.
Meanwhile,the reaction mechanism of combustion synthesis of TiAl intermetallic was analyzed from the point of thermodynamics and dynamics.
采用放电等离子技术低温快速热爆合成TiAl金属间化合物粉末,利用X射线衍射对合成粉末进行物相鉴定,并研究了合成温度以及保温时间对TiAl化合物粉末合成的影响。
3.
The effect of Al content on the process of synthesis and relative density of the composite, and the mechanism of combustion synthesis of TiC particles are studied.
研究了体系中Al含量对反应合成过程及复合材料致密度的影响 ,分析了热爆合成TiC粒子的形成机制。
5)  thermal explosion synthesis
热爆合成
1.
Kinetics of thermal explosion synthesis of Ti-Al_2O_3 cermet;
Ti-Al_2O_3金属陶瓷热爆合成的动力学
2.
Al-Ti-C master alloys were prepared by thermal explosion synthesis of Al-Ti-C preforms in molten aluminum,the influence of molten aluminum temperature on the microstructures of AlTi-C master alloy and grain refining performance were also investigated using XRD,SEM and grain refining tests.
利用Al,Ti和C粉末原料,采用铝液中的热爆合成法制备出用于铝及铝合金晶粒细化的Al-Ti-C中间合金。
6)  thermal explosive synthesis
热爆合成
1.
A new method of producing SnO2 nano-fibers was reported, which was named the thermal explosive synthesis ( TES ).
本文从纳米半导体、纳米碳化物、纳米氮化物、纳米氧化物的角度综述了纳米纤维材料的研究进展,报道了一种制备SnO_2纳米纤维的新方法——热爆合成法。
补充资料:镍铌钛黄色金红石
CAS:68611-43-8
中文名称:C.I黄色颜料161;镍铌钛黄色金红石
英文名称:C.I. Pigment yellow 161;Nickel niobium titanium yellow rutile
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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