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Thermal-stress-free fasteners for joining orthotropic materials

机译:用于连接正交各向异性材料的无热应力紧固件

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摘要

Hot structures fabricated from orthotropic materials are an attractive design option for future high speed vehicles. Joining subassemblies of these materials with standard cylindrical fasteners can lead to loose joints or highly stressed joints due to thermal stress. A method has been developed to eliminate thermal stresses and maintain a tight joint by shaping the fastener and mating hole. This method allows both materials (fastener and structure), with different coefficients of thermal expansion (CTEs) in each of the three material directions, to expand freely with temperature yet remain in contact. For the assumptions made in the analysis, the joint will remain snug, yet free of thermal stress at any temperature. Finite element analysis was used to verify several thermal-stress-free fasteners and to show that conical fasteners, which are thermal-stress-free for isotropic materials, can reduce thermal stresses for transversely isotropic materials compared to a cylindrical fastener. Equations for thermal-stress-free shapes are presented and typical fastener shapes are shown.
机译:由正交各向异性材料制成的热结构对于未来的高速车辆是有吸引力的设计选择。这些材料的子组件与标准圆柱紧固件的连接可能由于热应力而导致接头松动或应力过大。已经开发出一种方法,其通过成形紧固件和配合孔来消除热应力并保持紧密的连接。这种方法允许两种材料(紧固件和结构)在三个材料方向中的每个方向上具有不同的热膨胀系数(CTE),随温度自由膨胀但仍保持接触。对于分析中所做的假设,接头将保持贴合,但在任何温度下都不会受到热应力的影响。有限元分析用于验证几种无热应力的紧固件,并表明圆锥形紧固件(对于各向同性材料而言是无热应力的)与圆柱形紧固件相比,可以减小横向各向同性材料的热应力。给出了无热应力形状的方程式,并显示了典型的紧固件形状。

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    Blosser, M. L.;

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  • 年度 1987
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