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1)  ceramic slurry
陶瓷浆料
1.
An optimum ingredient ration phosphate ceramic slurry was set up,by means of orthogonal experiment,with high chromium corundum chosen as the refractory and aggregating mateial,and aphosphate as the bonding agent.
选用高铬刚玉为耐火骨料、磷酸盐等为粘结剂、氧化镁为固化剂 ,通过正交试验 ,确定了磷酸盐陶瓷浆料的最佳配比 ,并考察了陶瓷浆料的多种性能、进行了精密铸件的生产应用。
2.
In order to get high solid volume fraction and low viscosity slurry,the influences of powder size,dispersant,ball milling time and pH values on the rheological properties of BaTiO3 ceramic slurry were investigated.
s、可易于浇注的BaTiO3陶瓷浆料
2)  ceramic slip
陶瓷浆料
1.
When starch macromolecule in water was heated to a certain temperature, the starch particles swelled by water uptake, and this swelling removed water from ceramic slip causing the fluid suspension to consolidate into a rigid body.
当淀粉大分子在水溶液中加热到一定温度时,淀粉颗粒吸水溶胀,陶瓷浆料脱水并固化成坚硬的坯体;而且溶胀后的淀粉可作为粘结剂,有助于坯体固化并增加其强度。
2.
The effects of different contents of acetate starch on the rheologicl behaviour of the ceramic slip, as well as the linear shrinkage, density, strength and microstructure of the green body were discussed.
为获得以淀粉作凝固剂原位凝固成型氧化铝高性能陶瓷的方法,文中探讨了酯化淀粉添加量对陶瓷浆料流变特性以及成型出的素坯的线收缩、密度、干坯强度和显微结构的影响。
3)  ceramic slurry
陶瓷料浆
1.
The principle and technology of stabilization of advanced ceramic slurry was introduced.
综述了先进陶瓷料浆稳定化的原理和技术。
4)  SiC ceramic slurry
SiC陶瓷浆料
1.
5 by adding ammonia, the viscosity of 32 vol% SiC ceramic slurry decreased from 110 mPa·s to 72 mPa·s.
主要研究了pH值、分散剂、固相体积分数等因素对SiC陶瓷浆料流变性能的影响,并对其作用机理进行了分析。
5)  ceramic compound slurry
陶瓷复合料浆
6)  Al_2O_3 slurry
氧化铝陶瓷料浆
1.
When the content of talc was less than 4wt% , the viscosity of Al_2O_3 slurry increased slightly with an increase in talc content.
通过流变实验分析了滑石含量及球磨工艺对水基氧化铝陶瓷料浆流变性的影响。
补充资料:电解质陶瓷(见快离子导体陶瓷)


电解质陶瓷(见快离子导体陶瓷)
electrolyte ceramics

电解质陶瓷electrolyte陶瓷。Cera』n1CS即快离子导体
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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