EFFECT OF POTASSIUM ON THE HEAT CAPACITY AND THERMUNCTIONS OF AlFe5K10 ALUMINIUM ALLOY

I. Ganiev
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Abstract

Heat capacity is the most important characteristic of substances, and its change with temperature can determine the type of phase transformation, Debye temperature, the energy of formation of vacancies, the electron heat capacity coefficient, and other properties. In the work, the heat capacity of the AlFe5K10 alloy with potassium was determined in the “cooling” mode from the known heat capacity of the standard copper sample. In order to succeed, by processing the curves of the cooling rates of the samples of the aluminum alloy AlFe5K10 with potassium and the standard, polynomials describing their cooling rates were obtained. Further, according to the experimentally found values of the cooling rates of the samples of alloys and the standard, knowing their masses, the polynomials of the temperature dependence of the heat capacity of the alloys and the standard were established, which are described by a four-termed equation. Using integrals of specific heat, models of the temperature dependence of the change in enthalpy, entropy and Gibbs energy were established. The dependences obtained show that with increasing temperature, the heat capacity, enthalpy and entropy of the alloys increase, while the values of Gibbs energy decrease. At the same time, potassium addition reduces the heat capacity, enthalpy and entropy of the original AlFe5K10 aluminium alloy. The value of Gibbs energy increases in that case.
钾对AlFe5K10铝合金热容量和热性能的影响
热容是物质最重要的特性,它随温度的变化可以决定相变类型、德拜温度、空位形成能量、电子热容系数等性质。在工作中,根据已知的标准铜样品的热容,在“冷却”模式下确定了含钾AlFe5K10合金的热容。为此,通过对AlFe5K10铝合金样品用钾和标准液的冷却速率曲线进行处理,得到了描述其冷却速率的多项式。根据合金和标准试样的冷却速率的实验值,在已知合金和标准试样质量的情况下,建立了合金和标准试样的热容量与温度关系的多项式,并用四项方程来描述。利用比热积分,建立了焓变、熵变和吉布斯能随温度变化的模型。结果表明,随着温度的升高,合金的热容、焓和熵增大,而吉布斯能减小。同时,钾的加入降低了原AlFe5K10铝合金的热容、焓和熵。在这种情况下,吉布斯能的值增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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