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Development of shape memory alloy-based adaptive fiber-reinforced plastics by means of open reed weaving technology

机译:开放式芦苇织造技术开发基于形状记忆合金的自适应纤维增强塑料

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The functionalization of fiber-reinforced plastics has been improved continuously in recent years in order to broaden their application potential. By using shape memory alloys in fiber-reinforced plastics, adaptive fiber-reinforced plastics can be developed, which in turn can change their shape depending on the activation of shape memory alloys. In order to ensure the proper force transmission from shape memory alloys to fiber-reinforced plastic, these shape memory alloys need to be integrated into the reinforcing fabric. Hence, this paper presents the application of open reed weaving technology for the development of functionalized preforms for adaptive fiber-reinforced plastics. For an optimized shape memory effect during their thermal induced activation, the shape memory alloys were coated with release agent and then integrated into the woven fabric by open reed weaving technology. The hinged width of functionalized preforms was varied from 50 mm to 150 mm. These preforms were infused by a thermosetting resin matrix system with a modifier. Subsequently, the electro-mechanical testing of adaptive fiber-reinforced plastics was executed. Results show that the maximum deformation of adaptive fiber-reinforced plastics was proportional to their hinged width.
机译:近年来,纤维增强塑料的官能化已经不断提高,以扩大其应用潜力。通过使用纤维增强塑料中的形状记忆合金,可以开发自适应纤维增强塑料,这又可以根据形状记忆合金的激活改变它们的形状。为了确保从形状记忆合金到纤维增强塑料的适当力传递,这些形状记忆合金需要集成到加强织物中。因此,本文介绍了开放式簧片编织技术在适应性纤维增强塑料的官能化预制件开发中的应用。为了在其热诱导的活化期间进行优化的形状记忆效果,通过开放的簧片编织技术将形状记忆合金涂覆脱模剂,然后通过开放的擦拭技术整合到织物中。官能化预制件的铰接宽度从50mm到150mm变化。这些预制件由具有改进剂的热固性树脂基质系统注入。随后,执行了自适应纤维增强塑料的电力测试。结果表明,自适应纤维增强塑料的最大变形与其铰接宽度成比例。

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