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Solid-State Combustion in Mechanically Activated SHS Systems. I. Effect of Acivation Time on Process Parameters and Combustion Product Composition

机译:机械活化SHS系统中的固态燃烧。一,活化时间对工艺参数和燃烧产物组成的影响

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The factors responsible for the transition from reagent interaction involving a liquid phase in ordinary SHS powder mixtures to solid-state combustion after preliminary activation of these mixtures in an energy-intensive planetary mill were studied for Ni + 13 wt.% Al and Ni + 45 wt.% Ti compositions. The dependences of the burning rate and temperature on the duration and conditions of mechanical acivation were determined. It is found that the occurrence of solid-state SHS in a powder mixture is due to the formation of "laminated composites," in which the reagents are gound to ultrafine size, the area of their contact increases severalfold, and the concentration of nonequilibrium defects is high. In activated samples, heat release proceeds in several stages and at lower temperature than in powder mixtures.
机译:对于Ni + 13 wt。%Al和Ni + 45,研究了在普通的SHS粉末混合物中由涉及液相的试剂相互作用过渡到在能源密集型行星磨机中将这些混合物初步活化后固态燃烧的过渡因素。重量%的Ti组成。确定了燃烧速率和温度对机械活化持续时间和条件的依赖性。发现在粉末混合物中固态SHS的产生是由于形成了“层状复合物”,其中试剂被粉碎至超细尺寸,它们的接触面积增加了几倍,并且非平衡缺陷的浓度增加了高。与粉末混合物相比,在活化的样品中,放热分几个阶段进行,且温度较低。

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