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1)  Combustion wave
燃烧波
1.
Study on primary combustion wave characteristics of magnesium-based hydroreactive metal fuel
镁基水反应金属燃料一次燃烧波特性研究
2.
The effects of Cu content and density of powder compacts on the features and velocity of the combustion wave during its propagation through the bi-layered powder compacts of (Ti-2B-60wt%Cu)/(3Ti-2BN-xCu) (x=0, 10, 20, 40wt%) were investigated.
研究了当燃烧波蔓延通过(Ti-2B-60wt%Cu)/(3Ti-2BN-x·Cu)(x=0、10、20、 40wt%)两层混合粉料时,稀释剂Cu含量和生坯压制压力p的变化对燃烧波形态和传播速度的 影响。
3.
Combustion wave temperature distribution of GAP/AN propellant was studied by means of advanced double W Re microthermocouple technique.
利用先进的双钨铼微热电偶技术, 研究了GAP/AN 推进剂的燃烧波温度分布。
2)  combustion wave rate
燃烧波速
1.
Based on the idea of local equilibrium,the filtration of the binary SHS systems were studied under the assumption of one-dimensional,lower combustion wave rate and steady state.
推导出燃烧温度和不同反应级数下燃烧波速的数学表达式,详细分析了有关参数对燃烧温度、燃烧波速的影响情况,得到了一些与实验一致的结果,同时还得到了一些新的预测。
3)  microwave combustion method
微波燃烧法
1.
Preparation of non-grinding CaAl_2O_4:Eu~(2+),Dy~(3+) blue long afterglow material by microwave combustion method;
微波燃烧法制备不球磨CaAl_2O_4:Eu~(2+),Dy~(3+)蓝色长余辉材料
4)  velocity of combustion wave
燃烧波速率
5)  Combustion wave structure
燃烧波结构
1.
Analysis of combustion wave structure of boron-based fuel-rich propellant;
含硼富燃料推进剂燃烧波结构分析
6)  combustion wave pressure
燃烧波压力
1.
In this paper,the experimental investigation was conducted at ambient pressure and temperature in the detonation tube(length of 2000mm and inner diameter of 40 mm) to acquire the relationship between the combustion wave pressure,flame velocity and structure parameters of the disturber,including number of disturber pi.
4M Pa,火焰传播速度>1 000 m/s),燃烧波压力和火焰传播速度随上述参数的改变变化不大。
补充资料:沸腾床燃烧(见流化床燃烧)


沸腾床燃烧(见流化床燃烧)
boiling-bed combustion:see fluidized-bed combustion

沸腾床燃烧(boiling一bed eombustion)见流化床燃烧。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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