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High actuation properties of shape memory polymer composite actuator

机译:形状记忆聚合物复合致动器的高致动特性

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The shape memory polymers (SMPs) possess two shapes: permanent shape and temporary shape. This property leads to replacement of shape memory alloys by SMPs in various applications. In this work, two properties, namely structure activeness and the shape memory property of 'controlled behavior composite material (CBCM)' plate and its comparison with the conventional symmetrical composite plate (SYM), are studied. The SMPC plates (CBCM and SYM) are manufactured using epoxy resin with a thermal glass transition temperature (Tg) of 130 °C. The shape memory properties of these composites are investigated (under three-point bending test) and compared by deforming them to the same displacement. Three types of recoveries are conducted: unconstrained recovery, constrained recovery, and partial recovery under load. It is found that by coupling the structure activeness (due to its asymmetry) and its shape memory property, higher activated displacement is obtained during the unconstrained recovery. Also, at a lower recovery temperature (90 °C) than the fixing temperature, a recovery close to 100% is obtained for CBCM, whereas for SYM it is only 25%. During constrained recovery, CBCM produces five times larger recovery force than SYM. In addition, higher actuation properties are demonstrated by calculating recovered work and recovery percentages during partial recovery under load.
机译:形状记忆聚合物(SMP)具有两种形状:永久形状和临时形状。该特性导致在各种应用中用SMP替代形状记忆合金。在这项工作中,研究了两种性能,即“可控行为复合材料(CBCM)”板的结构活性和形状记忆性能,以及与常规对称复合板(SYM)的比较。 SMPC板(CBCM和SYM)是使用环氧树脂制成的,其玻璃化温度(Tg)为130°C。研究了这些复合材料的形状记忆性能(在三点弯曲试验下),并通过将它们变形至相同位移进行比较。进行三种类型的恢复:无约束恢复,受约束恢复和负载下的部分恢复。发现通过结合结构的活动性(由于其不对称性)和形状记忆特性,可以在不受约束的恢复过程中获得更高的激活位移。同样,在比固定温度低的恢复温度(90°C)下,CBCM的恢复率接近100%,而SYM的恢复率仅为25%。在受限恢复期间,CBCM产生的恢复力是SYM的五倍。此外,通过计算负载下部分恢复过程中的恢复功和恢复百分比,可以显示更高的驱动性能。

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