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热循环下PMMA涂层NiTi合金的形状记忆行为

Shape Memory Behaviour of PMMA-Coated NiTi Alloy under Thermal Cycle.

作者信息

Samal Sneha, Kosjakova Olga, Vokoun David, Stachiv Ivo

机构信息

FZU-Institute of Physics of Czech Academy of Science, Prague 8, Na Slovance 1999/2, 18221 Prague, Czech Republic.

出版信息

Polymers (Basel). 2022 Jul 20;14(14):2932. doi: 10.3390/polym14142932.

Abstract

Both poly(methyl methacrylate) (PMMA) and NiTi possess shape memory and biocompatibility behavior. The macroscale properties of PMMA-NiTi composites depend immensely on the quality of the interaction between two components. NiTi shape memory alloy (SMA) and superelastic (SE) sheets were spin coated on one side with PMMA. The composite was prepared by the spin coating method with an alloy-to-polymer-thickness ratio of 1:3. The bending stiffness and radius of curvature were calculated by using numerical and experimental methods during thermal cycles. The experimental radius curvatures in actuation have good agreement with the model. The change in shape results from the difference in coefficients of thermal expansion between PMMA and NiTi. Actuation temperatures were between 0 and 100 °C for the SMA-PMMA composite with a change in curvature from 10 to 120 mm with fixed Young's modulus of PMMA at 3 GPa, and a change in Young's modulus of NiTi from 30 to 70 GPa. PMMA-NiTi composites are useful as actuators and sensor elements.

摘要

聚甲基丙烯酸甲酯(PMMA)和镍钛合金都具有形状记忆和生物相容性。PMMA - 镍钛复合材料的宏观性能在很大程度上取决于两种组分之间相互作用的质量。镍钛形状记忆合金(SMA)和超弹性(SE)片材的一侧旋涂有PMMA。通过旋涂法制备复合材料,合金与聚合物的厚度比为1:3。在热循环过程中,采用数值和实验方法计算弯曲刚度和曲率半径。实验测得的驱动时的曲率半径与模型吻合良好。形状变化是由PMMA和镍钛之间热膨胀系数的差异导致的。对于SMA - PMMA复合材料,驱动温度在0至100°C之间,曲率变化范围为10至120毫米,其中PMMA的杨氏模量固定为3 GPa,镍钛的杨氏模量从30 GPa变化到70 GPa。PMMA - 镍钛复合材料可用作致动器和传感元件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74f7/9324931/7d0910acd796/polymers-14-02932-g001.jpg

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