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1)  liquid activated sintering
液相活化烧结
1.
On the other hand, by studying the LTS case the liquid activated sintering theory is right in this area, and we can select the certain metal materials to promote the sintering of MgB2 superconductor using the rules which discussed in the following content.
另一方面,通过研究金属Ag和Sn掺杂在低温下的情况,验证液相活化烧结理论在能够促进低温制备金属掺杂MgB2超导体中的正确性,并提出了金属活化烧结组元的选取判据,最终结合金属Sn掺杂MgB2超导体相关研究对比得出了在高、低温下烧结得到的超导体的超导机制。
2)  boron-activated sintering
硼活化(液相)烧结
3)  liquid phase sintering
液相烧结
1.
Mechanism of liquid phase sintering for Al_2O_3/3Y-TZP composite;
Al_2O_3/3Y-TZP复相陶瓷的液相烧结机理
2.
Crystallization and phase changing of amorphous silicon nitride nanopowders by liquid phase sintering;
液相烧结非晶纳米氮化硅陶瓷粉体结晶与相变行为研究
3.
A study on liquid phase sintering process of hard cladding materials;
硬质覆层材料的液相烧结工艺研究
4)  liquid-phase-sintering
液相烧结
1.
Experiment process of liquid-phase-sintering of high-density W-Ni-Mn alloy was introduced.
介绍了高密度合金W-Ni-Mn液相烧结的实验过程,并对烧结体密度和显微组织进行了测试和分析,发现Mn能够降低烧结温度和细化晶粒,但其高氧化性对合金的烧结工艺和性能影响显著。
5)  liquid-phase sintering
液相烧结
1.
The microstructure,thermal conductivity,electrical conductivity,relative density of Mo-Cu alloy prepared by infiltration and liquid-phase sintering process are investigated.
研究熔渗和液相烧结法制得Mo-Cu合金的显微组织、电导率、致密度、热导率。
2.
08)O_4 was prepared by liquid-phase sintering process.
采用液相烧结,制备了组成为Mn_(0。
3.
The addition of ZnO led to a liquid-phase sintering mechanism of Ca 0.
4Zr4P6O24 陶瓷的液相烧结。
6)  liquid sintering
液相烧结
1.
Reactivity in liquid sintering process of Al/fly ash particulate composites;
铝/飞灰颗粒复合材料液相烧结过程的反应性
2.
By addition of complex sintering aids to ZTA nano multiphase ceramics, liquid sintering occurred at lower temperature, so the densification process was accelerated and the relative density was improved.
在微 纳复合ZTA材料中加入少量复合助剂 ,材料在较低温度下实现液相烧结 ,促进了材料的致密化过程 ,提高了材料的相对密度。
3.
The in-situ reaction liquid sintering technical process, sintering mechanism and mechanical properties as well as its application of ternary-boride based cermet such as Mo2FeB2 based cermet(KHM) were reviewed.
介绍了三元硼化物基金属陶瓷的发展现状,以MO2FeB2基金属陶瓷KHM为例,对三元硼化物基金属陶瓷的原位反应液相烧结工艺过程、烧结机理和力学性能及其应用进行了综述,并对它的应用前景和发展趋势进行了展望。
补充资料:液相反应活化体积
分子式:
CAS号:

性质:压力对溶液反应的影响可表示为(lnk/p)T=-Δ≠Vm/RT。Δ≠Vm是反应的活化体积,为活化络合物的偏摩尔体积减去反应物偏摩尔体积之和,即Δ≠Vm=Vm≠-∑VRi。当Δ≠Vm<0,反应速率随压力升高而加速。据此也可研究活化络合物的结构。

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