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Effect of Content and Mechanical Activation on the Combustion of a Ni-Al-C System

机译:含量与机械激活对Ni-Al-C系统燃烧的影响

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Effect of carbon content in a Ni-Al-C system and preliminary mechanical activation on a burning rate, sample elongation, and mixture yield after mechanical activation, as well as on the structural features of combustion products is under study. Combustion in pressed samples from a mechanically preactivated Ni + Al mixture at room temperature could not be activated. The addition of carbon [2, 4, and 6% (by weight)] into the reacting Ni + Al mixture allows for combustion in Ni-Al-C based pressed samples. Preliminary mechanical activation of the reacting Ni + Al + xC mixture expands a carbon content limit in the mixture at which the combustion of pressed samples is possible. In addition, mechanical activation, as well as an increase in the carbon content in the Ni-Al-C system reduces the burning rate. The observed relationships are explain.
机译:碳含量在Ni-Al-C系统中的影响以及机械活化后燃烧速率,样品伸长和混合物产率的初步机械活化,以及燃烧产物的结构特征。 在室温下从机械常用的Ni + Al混合物中压制样品中的燃烧不能被激活。 将碳[2,4和6%(重量)]加入反应Ni + Al混合物中允许在基于Ni-Al-C的压制样品中燃烧。 反应Ni + Al + XC混合物的初步机械活化会使压制样品燃烧的混合物中膨胀碳含量极限。 此外,机械活化,以及Ni-Al-C系统中的碳含量的增加降低了燃烧速率。 观察到的关系是解释的。

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