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Bio-inspired integrated pneumatic actuation for compliant fiber-reinforced plastics

机译:生物启发的柔性纤维增强塑料的集成气动驱动

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摘要

Compliant mechanisms of fiber-reinforced plastic (FRP) have been developed to reduce the mechanical complexity of kinetic systems. In a further step, pneumatic actuation was integrated into the set-up of the FRP, offering lightweight, slender, and inconspicuous actuation. Inflation of an integrated cushion causes rotation through the asymmetric material lay-up. Inspiration from the ultrastructure of pressurized veins in arthropod wings has led to the development of a thin layer of elastomer surrounding this pneumatic cushion to avoid delamination. T-peel tests revealed that the elastomer forms a higher adhesion to itself than to glass-fiber-reinforced plastic (GFRP) layers with an epoxy matrix. The angle-pressure relationship for specific GFRP samples with a defined compliant hinge zone was investigated physically and numerically, showing good consistency between the two. Further, a mathematical model, taking into account the bending stiffness of the cushion-surrounding FRP layers, was developed, and a parametric study was conducted on the actuation angles.
机译:已经开发了纤维增强塑料(FRP)的柔顺机制以降低动力学系统的机械复杂性。在进一步的步骤中,气动致动被整合到FRP的设置中,提供轻质,细长和不起眼的致动。整体缓冲的膨胀导致通过不对称材料铺设的旋转。从节肢动物翼的加压静脉超微结构的灵感导致了围绕这种气动垫的薄层弹性体的开发,以避免分层。 T-剥离试验显示弹性体与具有环氧基质的玻璃纤维增​​强塑料(GFRP)层形成更高的粘附性。物理上,在数值上进行研究具有限定的柔顺铰链区的特定GFRP样品的角度压力关系,在两者之间显示出良好的一致性。此外,开发了一种数学模型,考虑了靠垫周围的FRP层的弯曲刚度,并且在致动角度进行了参数研究。

著录项

  • 来源
    《Composite Structures》 |2020年第2期|111558.1-111558.12|共12页
  • 作者单位

    Univ Stuttgart Inst Bldg Struct & Struct Design ITKE Keplerstr 11 D-70174 Stuttgart Germany;

    Univ Stuttgart ITFT Pfaffenwaldring 9 D-70569 Stuttgart Germany;

    Univ Stuttgart Inst Bldg Struct & Struct Design ITKE Keplerstr 11 D-70174 Stuttgart Germany;

    Univ Stuttgart Inst Bldg Struct & Struct Design ITKE Keplerstr 11 D-70174 Stuttgart Germany;

    Univ Stuttgart Inst Bldg Struct & Struct Design ITKE Keplerstr 11 D-70174 Stuttgart Germany;

    German Inst Text & Fiber Res Denkendorf Korschtalstr 26 D-73770 Denkendorf Germany;

    Univ Stuttgart ITFT Pfaffenwaldring 9 D-70569 Stuttgart Germany|German Inst Text & Fiber Res Denkendorf Korschtalstr 26 D-73770 Denkendorf Germany;

    Univ Stuttgart Inst Bldg Struct & Struct Design ITKE Keplerstr 11 D-70174 Stuttgart Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Integrated pneumatic actuation; Compliant fiber-reinforced plastics; Bio-inspiration; Hinge zone; Angular displacement;

    机译:集成气动驱动;符合纤维增强塑料;生物启发;铰链区;角位移;

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