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Oxidation of Aluminum in Mixtures with Polyethylene after Plastic Deformation at High Pressures

机译:高压下塑性变形后聚乙烯混合物中氧化铝

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摘要

Powder mixtures of low-density polyethylene and aluminum with the 20-80% weight ratio of the species are subjected to plastic deformation at pressures of 1 and 4 GPa in high-pressure devices of the Bridgman anvil type. Mass changes in the deformed mixtures in the temperature range from 30 to 800au broken vertical bar C are studied by the method of thermal gravimetry. A mass loss associated with polymer decomposition occurs in the temperature range from 30 to 450au broken vertical bar C, which is always smaller than the polymer content in the mixtures. A possible reason is the formation of thermally stable products due to aluminum interaction with polymer decomposition products. In the temperature range from 450 to 800au broken vertical bar C, the mass of the specimens increases, which is caused by aluminum oxidation and nitridation. The mass change depends on the deformation magnitude and pressure. To separate the oxidation and nitridation processes, the thermogravimetric measurements are performed in air, nitrogen, and argon. The thermal effects of aluminum interaction both with the polymer decomposition products and with oxygen and nitrogen are analyzed by the method of differential scanning calorimetry.
机译:低密度聚乙烯和铝的粉末混合物在Bridgman Anvil型的高压装置中,在1和4GPa的压力下对物种的塑性变形进行塑性变形。通过热重量法研究了30至800au断裂垂直条C的温度范围内变形混合物的质量变化。与聚合物分解相关的质量损失在30至450AU的温度范围内发生,其垂直棒C断,其总是小于混合物中的聚合物含量。可能的原因是由于铝合金与聚合物分解产物的铝相互作用形成热稳定产品。在450至800au断裂垂直条C的温度范围内,标本的质量增加,这是由氧化铝和氮化引起的。质量变化取决于变形幅度和压力。为了分离氧化和氮化过程,在空气,氮气和氩气中进行热重度测量。通过差示扫描量热法分析铝相互作用与聚合物分解产物和氧气和氮气的热效应。

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