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1)  propagating sintering
蔓延燃烧
1.
It is showed that under laser power 800W and irradiation time 16s,reaction of sample penetrates deeply,characterization of serious and rapid propagating sintering appers,and phases were formed within short time of reaction stage during laser heating.
结果表明,在激光输出功率 800W、持续作用时间为 16s的情况下,反应向试样的纵深方向发展,表现出剧烈、快速的蔓延燃烧特征,相的形成是在激光加热与反应阶段的短暂时间内完成。
2)  SHS
自蔓延燃烧
1.
RESEARCH PROGRESS ON CERAMIC POWDER PREQRED BY SELF-PROPAGATING HIGH-TEMPERATING MPERATURE SYNTHESIS(SHS);
蔓延燃烧合成陶瓷粉体的研究进展
2.
Review of study on SHS in its advantage, development and applications.
本文综述了自蔓延燃烧技术(简称SHS)的优点、发展及应用等,共叙述了SHS技术的原理及制备陶瓷粉体的工艺过程。
3)  self-propagating combustion
自蔓延燃烧
1.
The thermophysical parameters of the preheated W-Ti mixed powders,which enjoy self-propagating combustion properties,were worked out.
以Ti和C混合粉末的自蔓延燃烧对W-Ti混合粉末进行预热,对混合粉末的热物性参数进行计算,采用有限差分方法对简化的非稳态传热过程及预热效果进行数值模拟,分析材料热物性、燃烧粉末与待预热粉末的质量比等对预热效果的影响。
2.
The sol-gel self-propagating combustion method was used to prepare single phase nanocrystalline Co0.
以硝酸铜、硝酸铁、硝酸钴和柠檬酸为原料,采用溶胶-凝胶自蔓延燃烧法一步直接合成了单相Co0。
3.
Nano-CaFe2O4/α-Fe2O3 samples are prepared by Sol-Gel self-propagating combustion.
采用自蔓延燃烧溶胶-凝胶法制备纳米复合粉体CaFe2O4/α-Fe2O3,利用热分析(TG-DTA)和X射线衍射(XRD)方法对其晶体结构进行分析。
4)  self-combustion
自蔓延燃烧
1.
Ni-Zn ferrites were prepared with the citrate precursor by self-combustion technique, using ferric citrate or ferric nitrate, nickel nitrate, zinc nitrate, citric acid as the starting materials.
以柠檬酸铁或硝酸铁、硝酸锌、硝酸镍和柠檬酸为原料,利用溶胶直接自蔓延燃烧反应成功制备了尖晶石结构的NiZn铁氧体粉末。
5)  SHS
自蔓延燃烧法
1.
The mechanism and synthesis metholds of AlN powders by self-propagating high-temperature(SHS) was summarized in this paper.
概述了自蔓延燃烧法(Self-propagating high-temperature synthesis,简称SHS)制备氮化铝(AlN)粉体的原理及方法。
6)  self-propagating high-temperature synthesis
自蔓延燃烧合成
1.
Al-Ti-C master alloys used as grain refiners of the aluminum and its alloys have been prepared by self-propagating high-temperature synthesis.
利用自蔓延燃烧合成技术制备用于铝及铝合金晶粒细化的Al-Ti-C中间合金时,在自蔓延(SHS)和热爆(TE)两种不同的燃烧模式下都能反应生成Al-Ti-C,通过XRD衍射分析发现两种引燃模式得到的Al-Ti-C均满足实现铝晶粒细化的前提条件,即含有Al3Ti和TiC相。
2.
Al-Ti-C master alloys used as grain refiners of the aluminum and its alloys have been prepared by Self-propagating high-temperature synthesis (SHS) using Al, Ti and graphite.
本文中采用自蔓延燃烧合成法(SHS)以Al、Ti和石墨为原料制备出用于铝及铝合金晶粒细化的Al-Ti-C中间合金细化剂。
补充资料:沸腾床燃烧(见流化床燃烧)


沸腾床燃烧(见流化床燃烧)
boiling-bed combustion:see fluidized-bed combustion

沸腾床燃烧(boiling一bed eombustion)见流化床燃烧。
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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