1) roast kinetics
焙烧动力学
3) baking start-up
焙烧启动
1.
By analysis on baking data of 300kA large-type prebaked cells,the deficiency existing in original baking start-up process was discovered,and then improvement measures were taken accordingly.
本文通过300kA大型预焙槽焙烧数据的分析,发现了原来的焙烧启动过程中存在的不足,采取了改进措施并得了好的效果。
2.
Energy saving, consumption reducing and baking start-up technology in large-scale pre-baked aluminum electrolysis cell have been being come to attention by producing managers and academicians.
大型预焙铝电解槽节能降耗和焙烧启动技术一直是国内外铝电解生产管理和科技工作者关注的重点。
3.
This paper introduces the energy-saving practical experience during baking start-up of 300KA aluminum electrolysis smelting cells,putting forward some energy-saving concepts on power-on baking,start-up,parameter management,such as voltage,bath temperature,two levels,etc.
本文介绍了300 kA电解槽焙烧启动期间节能生产的实践经验,在通电焙烧、启动以及参数管理如电压、电解质温度、两水平等方面提出了节能生产的观点。
4) baking and start-up
焙烧启动
1.
Analyses of anode faults in the course of baking and start-up of aluminum electrolysis cell;
铝电解槽焙烧启动过程中阳极故障分析
5) sintering kinetics
烧结动力学
1.
The sintering kinetics of the porous ceramics from natural zeolite was investigated by stepwise isothermal dilatometry(SID),and X-ray diffration,scanning electron microscope,and porosity measurement.
用阶梯等温热膨胀法(stepwise isothermal dilatometry,SID),结合X射线衍射分析、扫描电镜和孔隙率测试等手段研究了天然沸石多孔陶瓷的烧结动力学。
2.
The effect of codopant CuO+ TiO2 on the sintering and microstructure of alumina ceramics and the sintering kinetics during liquid- phase- sintering were investigated.
研究了CuO+TiO2复相添加剂对氧化铝陶瓷烧结性能,显微结构的影响以及形成液相时氧化铝陶瓷烧结动力学。
3.
The sintering kinetics of alumina was also studied in the presence of liquid phase formed by CuO and TiO2.
研究了CuO+TiO2复相添加剂对Al2O3陶瓷烧结性能、显微结构的影响以及添加剂形成液相时Al2O3陶瓷的烧结动力学。
6) kinetic characteristics
燃烧动力学
1.
Study on the kinetic characteristics of biomass tar;
生物质焦油燃烧动力学特性研究
补充资料:动力机械:内燃机动力学
研究内燃机运转中的力学现象的科学。其主要任务是研究分析内燃机运转时各主要零件的运动规律及其受力情况﹐用以作为内燃机零件设计﹑计算的依据。它还研究这些力对内燃机动力装置的影响及其消减方法。内燃机动力学的主要内容为曲柄连杆机构运动学﹑曲柄连杆机构动力学和内燃机平衡分析等。
曲柄连杆机构运动学 研究曲柄﹑连杆﹐尤其是活塞的运动规律。活塞作周期性往复运动时的位移、速度和加速度可用下述各式近似求算
式中为曲轴转角﹔ 为曲轴旋转角速度﹔为曲柄半径﹔为曲柄半径 与连杆长度之比﹐即 = /
曲柄作回转运动﹐连杆作复杂的平面运动。连杆的运动往往被简化分解为随活塞组的往复运动和随同曲柄的旋转运动。
曲柄连杆机构动力学 研究分析曲柄连杆机构(见曲柄滑块机构)在运动中力的生成﹑传递和输出。作用在曲柄连杆机构上的力有曲柄连杆机构运动时产生的往复惯性力和离心惯性力﹐以及内燃机气缸内的气体压力。
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