Exploring Sintering, Densification, and Mechanical Behaviour of Invar Alloys through Molecular Dynamics Simulations

Sandeep Kumar Sahni, Somnath Bhowmick, Anish Upadhyaya
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Abstract

In this work, the molecular dynamics simulation method is employed to understand the sintering behaviour and mechanical properties of the Invar alloy. The densification behaviour of Invar alloy nanoparticles with different sizes at a fixed sintering temperature is investigated. The influence of external pressure is also simulated. Finally, the uniaxial tensile test is employed to study the mechanical response of the sintered product. The results show a qualitative relationship between particle size, external pressure, densification, and mechanical properties. Smaller particle sizes and higher external pressure promote densification. The uniaxial tensile results show that the sintered structure has a lower Young’s modulus than the bulk crystal because of the porosity, and the sample with high porosity has a low value of mechanical strength.
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通过分子动力学模拟探索因瓦合金的烧结、致密化和机械行为
本研究采用分子动力学模拟方法来了解因瓦合金的烧结行为和机械性能。研究了不同尺寸的因瓦合金纳米颗粒在固定烧结温度下的致密化行为。此外,还模拟了外部压力的影响。最后,采用单轴拉伸试验来研究烧结产品的机械响应。结果表明,粒度、外部压力、致密化和机械性能之间存在定性关系。较小的粒度和较高的外部压力会促进致密化。单轴拉伸结果表明,由于存在孔隙率,烧结结构的杨氏模量低于块状晶体,孔隙率高的样品机械强度值低。
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