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- Minimum ignition temperature of a dust cloud 粉尘云最低着火温度
- Minimum ignition temperature of a dust layer 粉尘层最低着火温度
- minimum ignition temperature (TIM) 最低着火温度(TIM)
- minimum ignition temperature of dust cloud 粉尘云最低着火温度
- Determination of the minimum ignition temperature of dust cloud 粉尘云最低着火温度测定方法
- Determination of the minimum ignition temperature of dust layer 粉尘层最低着火温度的测定方法
- Minimum ignition temperature of an explosive atmosphere 爆炸性环境的最低点燃温度
- Design of the Experiment System for the Determination of the Minimum Ignition Temperature of Dust Clouds 粉尘云最小点火温度测试实验系统设计
- minimum ignition temperature 最低着火温度
- Electrical apparatus for use in the presence of combustible dust -- Part 2-1: Test methods - Methods for determining the minimum ignition temperatures of dust 第2-1部分:试验方法。尘埃最小引燃温度的测量方法
- A sample so irradiated shows a somewhat lower ignition temperature. 这样照射后的试样,爆发点有所降低。
- The minimum ignition energy for flammable mixtures containing hydrogen is extremely low. 可燃的含氢混合物的最小点燃能量非常低。
- The addition of little Be can further improve the ignition temperature. 加入微量的铍能进一步提高含混合稀土的阻燃镁合金的起燃温度。
- Metals are characterized by relatively high ignition temperatures. 金属的特点是较高的点燃温度。
- The reaction sets in as the mixture of combustibles attains the ignition temperature. 当所混合的可燃物到达点火温度时,反应便会产生。
- Explosion proof electrical apparatus should be chosen according to the ignition temperature of gases or vapors. 五、根据气体或蒸气的引燃温度选取防爆电气设备型式。
- The other factors have more remarkable influences on the ignition temperature of HTA to the finer pulverized coal. 其余各因素对细颗粒煤粉气流的着火热空气度产生的影响比粗颗粒大;
- The effect of mischmetal additions on the ignition temperature of ZM5 Mg alloy was investigated and compared with t. 针对ZM5镁合金,研究了混合稀土及其加入量对起燃温度的影响,并与纯稀土的阻燃效果进行了比较。
- First ,in order to get aim ignition temperature ,adjusting excess coefficient of air over dichotomy . 首先是采用二分法调整空气过剩系数,满足点火温度的要求;
- This article recommends a method which can deduce critical heat flux and ignition temperature from the data determined by cone calorimeter. 笔者介绍了一种从锥形量热计测得的数据推导临界辐射能流和点燃温度的方法。