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The effectiveness of reference-free modified embedded atom method potentials demonstrated for NiTi and NbMoTaW

机译:NITI和NBMOTAW所证明了无参考的修改嵌入原子方法的有效性

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One of the effective potentials that has proven to be very versatile and useful for describing metals is the modified embedded atom method (MEAM) potential. The reference-free version of the MEAM (RF-MEAM) potential provides more flexibility for fitting than the 2NN-MEAM because it also describes the pair potential as an explicit function. In this work, we present a methodology to fit RF-MEAM potentials to DFT data. We then evaluate the performance of the fitted potential by comparing MD simulations with experimental and DFT data. As an example, the methodology is applied to a binary and a quaternary alloy, namely NiTi and NbMoTaW. In the case of the equi-atomic NiTi shape memory alloy, our attention focuses on designing a potential that properly captures its mechanical behavior, given that the existing potentials fail to predict elastic constants in agreement with experiments. To reach our aim, we included the stress tensors of different high temperature NiTi configurations in the fitting database. The obtained RF-MEAM potential outperforms existing EAM and MEAM potentials in predicting the lattice and elastic constants of austenitic and martensitic phases as well as the corresponding transformation temperatures. To demonstrate the suitability of this methodology also for more complex systems, a RF-MEAM potential is fitted to model the multi-component NbMoTaW high-entropy alloy. Validation is achieved through comparison between observables obtained through the MD output and ab initio data. The article also reports key improvements to the optimization code MEAMfit v2 and the freely-available LAMMPS implementation of the RF-MEAM formalism. Most notably, resorting to analytic derivatives of the objective function with respect to the potential parameters rather than derivatives through finite differences, the time necessary for fitting has decreased by an order of magnitude.
机译:已被证明是非常通用的有效潜力之一,用于描述金属是修改的嵌入原子方法(MEAM)电位。 MEAM的可参考版本(RF-MEAM)电位提供比2NN-MEAM的拟合更多的灵活性,因为它还将该对势描述为显式功能。在这项工作中,我们提出了一种方法来适应DFT数据的RF-MEAM电位。然后,我们通过将MD仿真与实验和DFT数据进行比较来评估拟合电位的性能。作为示例,该方法应用于二元和第四节合金,即Niti和NbMotaw。在Equi-Atomic Niti形状记忆合金的情况下,我们的注意力侧重于设计适当捕获其机械行为的潜力,因为现有电位未能在与实验一致地预测弹性常数。为了达到我们的目标,我们包括拟合数据库中不同高温NITI配置的压力张量。所获得的RF-MEAM势能优于预测奥氏体和马氏体相的晶格和弹性常数以及相应的转化温度的现有EAM和MEAM电位。为了证明这种方法的适用性,对于更复杂的系统,RF-MEAM电位拟合以模拟多组分NBMOTAW高熵合金。通过通过MD输出和AB Initio数据获得的可观察到之间的比较来实现验证。本文还报告了优化代码MEAMFIT V2的关键改进以及RF-MEAM形式主义的自由可用的LAMMPS实施。最值得注意的是,借助通过有限差异的潜在参数而不是衍生物的目标函数的分析衍生物,拟合所需的时间减少了一个数量级。

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