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A new release device based on styrene-based SMP reinforced by carbon fiber

机译:一种基于碳纤维增强的基于苯乙烯的SMP的新释放装置

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Shape memory polymer composites (SMPC) release device can be fabricated to solve the disadvantages of traditional explosive release device, such as large weight, bad stability, and strong impact force and damage due to explosion. The release device is made up of two thin-walled tubes, the first one is responsible for the torsion, and the second is used to fit the first tube. The tubes are made from carbon fiber reinforced styrene-based shape memory polymer (SMP). Resistor heater is applied to heat the device and actuate the shape recovery process. This SMPC release device can connect the main device and the device which need released. When the instruction comes, it can separate the two devices immediately. Firstly, the first tube is heated by the resistor heater, then the twisting and stretching force is exited on the heating part of the tube, unloading after cooling, the two thin-walled tubes of release device is connected. Secondly, the twisted part of the first tube is heated, it twisted to the original angle, and then the stretched part drew back to the original shape after heating. So the working part pulled the claws of it out of the second tube automatically, and separated the release device to two parts, thus the release is completed. Optimal solutions are designed to achieve high driving efficiency. This paper has evaluated the strength and verified the feasibility of the SMPC release device, measured the tensile strength and the reverse effect, compared with the theoretical and experimental results. Finite element analysis is used to simulate the deformation.
机译:形状记忆聚合物复合材料(SMPC)释放装置可以制造,以解决传统爆炸装置的缺点,例如大量重量,稳定性和强烈的冲击力和由于爆炸而损坏。释放装置由两个薄壁管组成,第一个是负责扭转的负责,并且第二个用于装配第一管。管由碳纤维增强苯乙烯的形状记忆聚合物(SMP)制成。电阻加热器用于加热装置并致动形状恢复过程。该SMPC释放装置可以连接主设备和需要释放的设备。当指令到来时,它可以立即分开两个设备。首先,第一管通过电阻器加热器加热,然后扭转和拉伸力在管的加热部分上离开,冷却后卸载,两个薄壁的释放装置连接。其次,加热第一管的扭曲部分,它扭曲到原始角度,然后拉伸部分在加热后返回原始形状。因此,工作部件自动将其从第二管中拉出,并将释放装置分开到两部分,从而完成释放。最佳解决方案旨在实现高驾驶效率。本文评价了强度,验证了SMPC释放装置的可行性,测量了抗拉强度和逆向效果,与理论和实验结果相比。有限元分析用于模拟变形。

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