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- Nanoceramics can remarkably reduce the sintering densification of ceramic materials and save energy. 纳米陶瓷材料可显著降低材料的烧结致密化程度,节约能源;
- sintering densification technology 烧结致密化技术
- Element P can also act as a fluxing agent to decrease the surface tension and viscosity of the melt, thereby improve the sintered densification and the microstructural homogeneity. P元素亦能充当稀释剂而降低熔体粘度及表面张力, 从而改善烧结致密度及组织均匀性;
- Experimental Research on Mullitization and Sintering Densification of Sillimanite under High Temperature 硅线石高温莫来石化及烧结试验研究
- Keywords Cu-W alloy metal powder briquette sintering densification self lubrication; 铜钨合金;金属粉末;压坯;烧结;致密化;自润滑;
- Keywords ceria;cordierite glass-ceramics;phase transformation;sintering densification;property; 氧化铈;堇青石微晶玻璃;相变;烧结致密化;性能;
- Keywords strontium-lead titanate;chemical coprecipitation;nano-powder;sintering densification; 钛酸锶铅;化学共沉淀;纳米粉;烧结致密化;
- sintering densification 烧结致密化
- Numerical simulations and experiments of the sintered densification in selective laser sintering 选区激光烧结成型中致密度的数值模拟与实验
- Densification of the product could be substantial. 产品的致密化(致密效果)应该很密实。
- Sintering at high temperature may enhance densification and decrease the moisture adsorption rate. 同时,由于试体之致密化,其吸水率则随烧结温度增加而降低。
- This is because nano-silica can accelerate the sintering process and promote the densification of corundum castble. 这是由于纳米二氧化矽能够促进刚玉浇注料的烧结,使结构致密化所致。
- Shanxi's Datong with the sintering plant Steel Ltd. 山西大同同嘉钢铁有限公司烧结厂。
- Sintering aids for BaTiO 3 PTCR thermistors. BaTiO_3系PTCR热敏电阻器用烧结助剂的研究
- Microwave sintering of ceramics has the characteristics of quick densification, fine grains and homogeneous microsructure. 微波烧结工艺具有烧结快速、产品致密、晶粒细小以及微观结构均匀等特点。
- Father Christmas, which is Sinter Claas. 圣诞老人成了一个泉华。
- In Holland, children called him "Sinter Klass. 芬兰的孩子称他为“Sinter Klass”。
- The densification behaviour is affected by the Ni2+ solutes. 钛酸钡致密化行为的差异受到镍溶质的影响。
- Its subject coverage includes: densification, grain growth, process parameters, porosity, microstructure, and effect of sintering on mechanical properties. 它的主题涉及的范围包括:密封、晶粒生长、处理参数、多孔性、显微结构与烧结对机械性能的影响。
- It has also been proved that the model can describe and predict the densification behaviors of micron- and submicron-sized ceramic sintering in our preliminary study earlier. 已完成之初期研究成果亦证实此模型能够用来描述与预测微米级及次微米级陶瓷粉末之烧结致密化过程。