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1)  high-pressure hydrothermal activation
高压水热反应
2)  reaction hot pressing
反应热压
1.
The microstructure and the chemical compositions in micro zone of densified TiAl base alloy specimen manufactured from 1∶1 Ti Al mixture by reaction hot pressing have been reviewed and analysed by using scanning electronic microscope.
采用扫描电子显微镜对反应热压1∶1的Ti-Al混合粉所制备的TiAl基合金致密体的显微结构和微区化学成分进行了观察和分析,根据Al元素的分布和各相存在的成分范围,发现Ti与Al反应过程中,首先在原Ti颗粒内部形成TiAl3,TiAl,Ti3Al和α-Ti四相。
3)  reactive hot pressing
反应热压
1.
Aluminum-based composites reinforced with in-situ Al_2O_3, TiB_2 and Al_3Ti particles were prepared through reactive hot pressing from Al, B_2O_3 and TiO_2 powders and Al, B and TiO_2 powders.
 采用反应热压法以Al、B2O3、TiO2粉和Al、B、TiO2粉为原料制备了两种(Al2O3+TiB2+Al3Ti)/Al复合材料。
2.
FeAl/TiC composites were prepared by reactive hot pressing of blended elemental powders.
采用元素粉反应热压工艺制备了FeAl/TiC复合材料。
3.
In this paper using Ti, TiH_2, BN, B_4C, C and B as raw materials, reactive hot pressing method is proposed to produce TiB_2-Ti(C,N) composites with different phase composition and C/N ratio and by different chemical reaction design.
采用反应热压法制造TiB_2-Ti(C, N)复相陶瓷,用Ti,TiH_2,BN,B_4C,C,B等为原料,通过化学反应设计可以制备出不同相组成及碳氮比的复相陶瓷。
4)  hydrothermal reaction
水热反应
1.
A two-fold penetration coordination polymer [Cu(bpy)(OH)]n (1) (bpy=4,4'-bipyridyl) has been synthesized through hydrothermal reaction and structurally characterized by single crystal X-ray diffraction method.
利用水热反应,合成了一个具有二重穿插结构的一价铜配位聚合物[Cu(bpy)(OH)]n(1)(bpy=4,4'-联吡啶),并利用元素分析,X射线单晶衍射,红外光谱以及热重分析等手段对标题化合物进行了表征。
2.
Ferric inorganic polyeation was prepared from the materials of ferric chloride and sodium hydroxide which was mixed by difference proportion,thenα-Fe_2O_3 was synthesized using ferric inorganic polycation as precursor by hydrothermal reaction.
以三氯化铁和氢氧化钠为原料,按照不同的比例混合进行反应,得到铁的无机多聚离子,并采用水热反应合成了α-Fe_2O_3。
3.
Gypsum was used as raw material to prepare porous hydroxyapatite with hierachical structure by hydrothermal reaction.
使用石膏作为原料,通过水热反应得到具有特殊结构的多孔羟基磷灰石。
5)  polymerization under hot water
热水反应
6)  high-pressure reaction
高压反应
补充资料:热反应
分子式:
CAS号:

性质:又称高能反应。指反冲原子耗散能量到热能以前的反应,包括由弹性碰撞引起的热反应和由非弹性碰撞引起的超热反应。

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