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A more realistic approach toward the differential equation governing the glass transition phenomenon

机译:对控制玻璃化转变现象的微分方程的一种更现实的方法

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In this contribution, the non-linear differential equation governing the glass transition phenomena of metallic glasses has been investigated analytically through a powerful mathematical tool known as the Adomian decomposition method. Unlike the previous works in this context, no simplifying assumption has been made so that the approach is more realistic. Furthermore and as a salient advantage, the method is free of discretization, linearization and perturbation. For the sake of exemplification, the resulted general solution was tested for the alloy Zr_(41.2)Ti_(13.8)Cu_(12.5)Ni_(10)Be_(22.5) and the relevant "free volume vs. temperature" curves were obtained. In addition, as another illustrative example, the glass transition temperature for the alloy Pd_(40)Ni_(40)P_(20) was estimated by the proposed scheme. The employed approach was successful to predict the glass transition temperature for the test case alloys closer to the experimental values than those of by the prior mathematical works in the literature.
机译:在这一贡献中,通过一种称为Adomian分解方法的强大数学工具,对控制金属玻璃的玻璃化转变现象的非线性微分方程进行了分析研究。与之前的工作不同,这里没有做任何简化的假设,因此该方法更为实际。此外并且作为显着的优点,该方法没有离散化,线性化和微扰。为了举例说明,测试所得的一般溶液的合金Zr_(41.2)Ti_(13.8)Cu_(12.5)Ni_(10)Be_(22.5),并获得相关的“自由体积-温度”曲线。另外,作为另一个说明性实例,通过提出的方案估计了合金Pd_(40)Ni_(40)P_(20)的玻璃化转变温度。与文献中现有的数学工作相比,所采用的方法成功地预测了测试用例合金的玻璃化转变温度更接近于实验值。

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