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STRESS RELIEF IN CONTACT-AIDED CELLULAR COMPLIANT MECHANISMS

机译:接触辅助细胞顺应性机理中的应力消除

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摘要

Cellular structures with an internal contact-mechanism are investigated. These contact-aided compliant mechanisms are shown to reduce the local tensile stresses, thereby providing additional global strain before yielding or fracture failure compared to honeycomb or auxetic cellular structures. An analytical model for such structures is developed and it is validated using FEA simulations. Two different materials are considered for comparison. More than 100% improvement in global strain capability is possible using the contact. A high-strain morphing aircraft skin is examined as an application of these mechanisms. The contact-aided cellular compliant mechanisms are more advantageous in terms of both the structural mass as well as the global strain compared to a non-contact design. In the application considered the stress-relief mechanism increased the global strain capability by as high as 37%.
机译:研究了具有内部接触机制的细胞结构。这些接触辅助的柔顺机构显示出减少局部拉伸应力的能力,从而与蜂窝或膨胀蜂窝结构相比,在屈服或断裂破坏之前提供了额外的整体应变。开发了此类结构的分析模型,并使用FEA仿真进行了验证。考虑两种不同的材料进行比较。使用该触点可以使整体应变能力提高100%以上。作为这些机制的应用,研究了高应变变形飞机蒙皮。与非接触设计相比,接触辅助细胞顺应性机构在结构质量以及整体应变方面均更具优势。在应用中考虑了应力消除机制,使整体应变能力提高了37%。

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  • 来源
  • 会议地点 Ellicott City MD(US);Ellicott City MD(US);Ellicott City MD(US)
  • 作者单位

    Department of Mechanical and Nuclear Engineering The Pennsylvania State University University Park, PA 16802;

    Department of Mechanical and Nuclear Engineering The Pennsylvania State University University Park, PA 16802;

    Department of Aerospace Engineering The Pennsylvania State University University Park, PA 16802;

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  • 正文语种 eng
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