Battaglia Miriam, Sellitto Andrea, Giamundo Angela, Visone Michele, Riccio Aniello
Department of Engineering, University of Campania "Luigi Vanvitelli", Via Roma 29, 81031 Aversa, Italy.
BLUE Engineering S.r.l., Via Ex Aeroporto 30/32, 80038 Pomigliano d'Arco, Italy.
Materials (Basel). 2023 Jul 5;16(13):4832. doi: 10.3390/ma16134832.
Shape memory alloys (SMAs) are gaining popularity in the fields of automotive and aerospace engineering due to their unique thermomechanical properties. This paper proposes a numerical implementation of a comprehensive constitutive model for simulating the thermomechanical behavior of shape memory alloys, with temperature and strain as control variables to adjust the shape memory effect and super elasticity effect of the material. By implementing this model as a user subroutine in the FE code Abaqus/Standard, it becomes possible to account for variations in material properties in complex components made of shape memory alloys. To demonstrate the potential of the proposed model, a skid plate system design is presented. The system uses bistable actuators with shape memory alloy springs to trigger plate movement. The kinematics and dynamics of the system are simulated, and effective loads are generated by the shape memory alloy state change due to the real temperature distribution in the material, which depends on the springs' geometrical parameters. Finally, the performance of the actuator in switching between different configurations and maintaining stability in a specific configuration is assessed. The study highlights the promising potential of shape memory alloys in engineering applications and demonstrates the ability to use them in complex systems with accurate simulations.
形状记忆合金(SMA)因其独特的热机械性能而在汽车和航空航天工程领域越来越受欢迎。本文提出了一种综合本构模型的数值实现方法,用于模拟形状记忆合金的热机械行为,以温度和应变作为控制变量来调节材料的形状记忆效应和超弹性效应。通过将该模型作为用户子程序在有限元代码Abaqus/Standard中实现,可以考虑由形状记忆合金制成的复杂部件中材料性能的变化。为了证明所提出模型的潜力,给出了一种防滑板系统设计。该系统使用带有形状记忆合金弹簧的双稳态致动器来触发板的运动。对系统的运动学和动力学进行了模拟,并且由于材料中的实际温度分布导致形状记忆合金状态变化而产生有效载荷,这取决于弹簧的几何参数。最后,评估了致动器在不同配置之间切换以及在特定配置下保持稳定性的性能。该研究突出了形状记忆合金在工程应用中的广阔前景,并展示了在精确模拟的复杂系统中使用它们的能力。