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Thermally coupled processes in a composite granular mixture(Ni + Al)-(Ti + C)

机译:复合粒状混合物(Ni + Al) - (Ti + C)中的热偶联方法

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For the first time combustion of a thermally conjugated granulated mixture consisting of the mixture of Ni + Al and Ti + C granules, differing in burning velocity and temperature has been investigated experimentally in co-current flows of argon and nitrogen.It has been established that in the whole investigated gas flow rates the ignition of Ni + Al granules occurs in the combustion front.The high efficiency of Ti + C donor granules energy usage has been shown, since the time of heat exchange between the granules does not depend on the sample size, but is determined only by the characteristics of internal heat transfer.A strong increase in the burning rate of the composite mixture at low nitrogen flow rates has been explained via interaction of aluminum with nitrogen and effective reduction of heat loss of the donor.The possibility of isolating the target synthesis product was shown even if its melting point is below the adiabatic temperature of combustion of the composite mixture.
机译:对于第一次燃烧由Ni + Al和Ti + C颗粒的混合物组成的热缀合的颗粒状混合物,在实验上实验研究了燃烧速度和温度的不同,在氩气和氮气的同态流动中进行了研究。已经确定在整个研究的气流速率中,Ni + Al颗粒的点火发生在燃烧前。已经显示了Ti + C供体颗粒能量使用的高效率,因为颗粒之间的热交换时间不依赖于样品尺寸,但是仅通过内部传热的特点来确定。通过铝与氮气的相互作用并有效减少供体的热量损失的相互作用,解释了在低氮流速下的复合混合物的燃烧速率的强烈增加。即使其熔点低于复合混合物的燃烧的绝热温度,也显示出分离目标合成产物的可能性。

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