1) iron oxide ceramics
氧化铁陶瓷
1.
The article also stated the analysis results of morphology and electronic property of the iron oxide ceramics from the solgel with different pH value.
本文研究了硝酸铁和乙二醇甲醚系统溶胶形成凝胶的过程和条件;pH>3的溶胶凝胶化过程的特点;硅醇对此系统溶胶凝胶化的作用;测定和分析了不同pH值溶胶-凝胶烧成氧化铁陶瓷的结构和电性
2) ferrite ceramics
铁氧体陶瓷
1.
Experimental research on grinding force of ferrite ceramics in grinding with resin diamond wheels;
树脂结合剂金刚石砂轮磨削铁氧体陶瓷磨削力的实验研究
2.
The influence of the characteristic of the resin bond diamond wheels and grinding parameters on ferrite ceramics is studied by the grinding comparative experiments.
通过磨削对比试验研究了树脂结合剂金刚石砂轮的特性参数和磨削用量对铁氧体陶瓷表面粗糙度的影响;通过砂轮速度、磨削深度、横向进给速度和纵向进给速度等四因素及各因素之间交互试验的数据分析和金相显微图像比较,探讨了各因素对陶瓷表面粗糙度的影响规律,并优化了降低表面粗糙度的磨削参数。
3) Alumina ceramics
氧化铝陶瓷
1.
Effects of sintering temperature on fatigue damage of alumina ceramics;
烧结温度对氧化铝陶瓷疲劳损伤过程的影响
2.
Quantitatively research of fatigue damage of alumina ceramics;
氧化铝陶瓷疲劳损伤过程的数字描述
3.
Application of steel-alumina ceramics composite pipe for dilute phase pneumatic conveying;
氧化铝陶瓷内衬复合钢管在稀相气力输送中的应用
4) alumina
[英][ə'lu:mɪnə] [美][ə'lumɪnə]
氧化铝陶瓷
1.
Dynamic behaviors of alumina ceramic under high pressure and high strain-rate;
氧化铝陶瓷在高压高率条件下动态特性
2.
Experimental study on shear response of alumina under combined compression and shear loading;
压剪复合冲击下氧化铝陶瓷的剪切响应实验研究
3.
The effect of different impurities and dopants on the dielectric loss of alumina ceramics are reviewed.
综述了不同杂质及掺杂对氧化铝陶瓷介电损耗影响的研究进展。
5) alumina ceramic
氧化铝陶瓷
1.
Effects of nano-silica coating on microtensile bond strength of glass infiltrated alumina ceramic;
纳米硅涂层对玻璃渗透氧化铝陶瓷粘结强度的影响
2.
Mechanical properties of brazing joint of alumina ceramics to mild steel
氧化铝陶瓷与低碳钢钎焊接头的力学性能
3.
Vacuum flashover developing across alumina ceramic at pulsed voltage
真空冲击电压下氧化铝陶瓷沿面闪络现象的发展过程
6) Al2O3 ceramics
氧化铝陶瓷
1.
The research developed the high temperature glaze suitable for Al2O3 ceramics in metallized process under 1450℃.
本文总结并实验对比了国内外的几种高温釉,从而提出釉料化学性质、釉料中氧化铁等变价元素以及原料矿物组成是导致氢烧釉面失光的主要因素,并成功试制出适宜于氧化铝陶瓷以及1450℃金属化工艺的高温釉。
2.
Al2O3 ceramics were successfully superfast densified by spark plasma sintering (SPS) underthe conditions of heating rate as high as 600℃/min, no holding time at the sintering temperaturefrom 1350 to 1700 ℃ and then fast cooling to 600℃ within 3 minutes.
本文介绍用放电等离子超快速烧结方法制备的氧化铝陶瓷的力学性能和显微结构特征。
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。
参考词条