Belashov Andrey V, Zhikhoreva Anna A, Beltukov Yaroslav M, Semenova Irina V
Ioffe Institute, Russian Academy of Sciences, 26, Polytekhnicheskaya, 194021 St. Petersburg, Russia.
Polymers (Basel). 2025 Apr 8;17(8):1008. doi: 10.3390/polym17081008.
Nonlinear elastic properties of polymers and polymer-based composites are essential for accurate prediction of their response to dynamic loads, which is crucial in a wide range of applications. These properties can be affected by strain rate, temperature, and pressure. The temperature susceptibility of nonlinear elastic moduli of polymers remains poorly understood. We have recently observed a significant frequency dependence of the nonlinear elastic (Murnaghan) moduli of polystyrene. In this paper we expanded this analysis by the temperature dependence. The measurement methodology was based on the acousto-elastic effect, and involved analysis of the dependencies of velocities of longitudinal and shear single-frequency ultrasonic waves in the sample on the applied static pressure. Measurements were performed at different temperatures in the range of 25-65 °C and at different frequencies in the range of 0.7-3 MHz. The temperature susceptibility of the nonlinear moduli and was found to be two orders of magnitude larger than that of linear moduli λ and μ. At the same time, the observed variations of modulus with temperature were low and within the measurement tolerance. The observed tendencies can be explained by the shift of nonlinear moduli towards higher frequencies with increasing temperature.
聚合物及聚合物基复合材料的非线性弹性特性对于准确预测其对动态载荷的响应至关重要,这在广泛的应用中都很关键。这些特性会受到应变率、温度和压力的影响。聚合物非线性弹性模量的温度敏感性仍未得到充分理解。我们最近观察到聚苯乙烯的非线性弹性(穆尔纳根)模量存在显著的频率依赖性。在本文中,我们通过温度依赖性扩展了这一分析。测量方法基于声弹性效应,涉及分析样品中纵向和剪切单频超声波速度与所施加静压力的相关性。在25 - 65°C的不同温度以及0.7 - 3 MHz的不同频率下进行了测量。发现非线性模量 和 的温度敏感性比线性模量λ和μ的温度敏感性大两个数量级。同时,观察到的 模量随温度的变化很小,且在测量公差范围内。观察到的趋势可以通过随着温度升高非线性模量向更高频率的偏移来解释。