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1)  pressureless reactive sintering
无压反应烧结
1.
With nanometer (75mol%Bi2O3+25mol%Y2O3) powder prepared by coprecipitation as raw material, the nanocrystalline Bi2O3-Y2O3 fast ionic conductor was fabricated through pressureless reactive sintering technique.
在T=600℃,t=2h无压反应烧结条件下,纳米晶Bi2O3-Y2O3 快离子导体材料的相对密度可达96%以上,并且微观结构致密均匀,很少有残留气孔和裂纹, 平均晶粒尺寸在100nm以下。
2)  hot-pressing reaction sintering
热压反应烧结
3)  reactive hot-pressing
反应热压烧结
1.
(ZrB2-ZrO2)/BN composites were prepared by reactive hot-pressing at 1600 ℃ under 30 MPa for 90 min using BN,ZrO2,B4C and C as original materials.
采用反应热压烧结工艺制备了BN-ZrB2-ZrO2复合材料。
4)  Pressureless Sintering
无压烧结
1.
Preparation process of ZrB_2/B_4C ceramic composites by pressureless sintering based on mechanical mixing;
基于机械混合法无压烧结制备ZrB_2/B_4C陶瓷复合材料
2.
Research on pressureless sintering of hexagonal boron nitride;
六方氮化硼无压烧结研究
3.
Discussion on pressureless sintering of SiC ceramic;
SiC陶瓷无压烧结工艺探讨
5)  pressless sintering
无压烧结
1.
In this paper,the ZrB_2-SiC ceramic matrix composites were prepared by pressless sintering with YAG as sintering additive.
以钇铝石榴石-YAG为烧结助剂,通过无压烧结制备了ZrB2-SiC复相陶瓷。
2.
Zirconium diboride-silicon carbide (ZrB2-SiC) composites were prepared by pressless sintering with yttrium aluminum garnet (YAG) as sintering additive.
以钇铝石榴石(yttriumaluminumgarnet,YAG)为烧结助剂,通过无压烧结工艺制备了ZrB2-SiC复相陶瓷。
3.
The mechanical properties and microstructure of silicon nitride ceramics with MgO-Al2O3-SiO2 as additives produced by pressless sintering were investigated by XRD, SEM, TEM, EDS, and HRTEM.
以MgO-Al2O3-SiO2为烧结助剂,借助XRD、SEM、TEM、EDS、HRTEM等手段,研究了无压烧结氮化硅陶瓷材料的力学性能和显微结构,着重探讨了材料制备工艺、力学性能和显微结构之间的关系,通过调整制备工艺改善材料微观结构以提高材料的力学性能。
6)  reaction sintering
反应烧结
1.
Microstructure and properties of Mo_2FeB_2 cermets clad layer by reaction sintering;
反应烧结三元硼化物金属陶瓷覆层的组织与性能
2.
Densification of laser ignited reaction sintering of Ni-Al-Cu powder alloy;
Ni-Al-Cu粉末合金激光点火反应烧结的致密化研究
3.
The samples prepared by general sintering and reaction sintering are investigated by XRD,SEM and other testing means for their structure and performance.
采用常规烧结法和反应烧结法烧结制品,并利用XRD和SEM等测试手段对制品的结构与性能进行了分析研究。
补充资料:压水反应堆
分子式:
CAS号:

性质:用高压水作慢化剂和冷却剂的动力反应堆,属轻水堆的一种。为提高冷却剂水系统的热效率,常采用加压设计。运行压力一般为15.3MPa,冷却剂出口温度可达325℃。采用235U加浓度为2%~3%的铀作燃料。这种堆的体积小,比功率比沸水堆大,安全性能也好,还可作船用堆。压水堆的运行压力高,需用高压设备。制造成本高。

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