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1)  Silica-based ceramic core
硅基陶瓷型芯
2)  silica-based ceramic mold
硅基陶瓷型
1.
The present investigation is focus on the preparation process of silica-based ceramic mold using silica sol as binder.
主要研究了以硅溶胶为粘结剂的硅基陶瓷型制备工艺。
3)  Al2O3-based ceramic core
Al2O3基陶瓷型芯
1.
Al2O3-based ceramic core materials were prepared by sintering in ordinary pressure.
采用常压烧结制备Al2O3基陶瓷型芯材料,通过XRD,SEM分析表征了材料的成分和内部结构。
4)  ceramic core
陶瓷型芯
1.
Quality evaluation of the ceramic core shaped by side extrusion and mould design;
侧向挤压陶瓷型芯模具设计与型芯质量评估
2.
Effects of Na_2O Content in Filler on Quality of Ceramic Core;
填料中Na_2O含量对陶瓷型芯质量的影响
5)  silicon-based ceramics
硅基陶瓷
6)  silica-based core
硅基型芯
1.
Several properties of hot-pressing low-temperature firing silica-based core and two general hot-pressing silica-based cores, involving bend strength, hot deformation of core at double-supporting points,collapsibility of potassium hydroxide solution at boiling point 200 ℃, the retained strength of the core under 1600℃ of were tested, and the comparison and analysis of them was made.
测定热压成型低温焙烧硅基型芯和两种普通硅基热压注的几种性能:抗弯强度,双支点高温热变形量,在沸点为200℃氢氧化钾溶液中的溶失性及1600℃高温后残留强度,并将它们做了对比分析。
补充资料:氮化硅晶须补强碳化硅陶瓷基复合材料
分子式:
CAS号:

性质:以碳化硅陶瓷为基体,以氮化硅晶须为增强体的复合材料。它既保留了碳化硅陶瓷优良的耐高温、抗蠕变、抗氧化、抗化学腐蚀、耐磨等性能,又具有比碳化硅陶瓷更高的强度和韧性,最高使用温度可达1400℃以上。由于氮化硅晶须与碳化硅陶瓷基体具有较好的物理相容性,化学性质相近,界面的结合力较强。该复合材料的烧结温度高,界面控制困难,成本高,主要用于航空、航天领域的高温部件。

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