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Evaluation of Thermal and Mechanical Behaviors of Bolted Joints made of Titanium and Titanium Alloy and Its Application to Robust Joint Design

机译:钛和钛合金螺栓连接接头的热力学性能评估及其在稳健接头设计中的应用

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Titanium and titanium alloys have some excellent characteristics when used for the parts and components of machines and structures. As for bolted joints, however, they are limitedly used mainly due to the high cost. Its specific characteristics, e.g., low weight and high resistance to corrosion, are highly attractive from the engineering point of view. In this paper, thermal and mechanical behaviors of the bolted joints made of titanium or titanium alloy are comprehensively evaluated by finite element analysis, aiming at its broader use by utilizing the distinctive features of small coefficient of linear expansion and Young's modulus. As a first step, thermal contact coefficients at the interface composed of titanium, titanium alloys and other engineering materials are measured, and then the empirical equations for evaluating the coefficients are derived in the same form proposed in the. previous papers. In the next place, numerical analyses are executed by incorporating the thermal contact coefficients into the finite element formulation. Numerical results suggest that threaded fasteners made of titanium alloys are favorably applied to the joints whose clamping forces are likely to decrease when subjected to thermal load. It was also found that the aforementioned threaded fasteners are effective, owing to its low Young's modulus, for reducing the stress amplitude generated by alternating external forces.
机译:钛和钛合金用于机械和结构的零件和组件时,具有一些优异的特性。然而,对于螺栓连接,主要由于成本高而限制了它们的使用。从工程学的观点来看,它的特殊特性,例如低重量和高耐腐蚀性,极具吸引力。本文通过有限元分析,对钛或钛合金制螺栓连接的热力学性能进行了综合评估,以利用其线性膨胀系数和杨氏模量小的特点,将其广泛应用为目标。第一步,测量由钛,钛合金和其他工程材料组成的界面处的热接触系数,然后以建议的相同形式导出用于评估系数的经验方程式。以前的论文。接下来,通过将热接触系数纳入有限元公式来执行数值分析。数值结果表明,由钛合金制成的螺纹紧固件适用于在承受热负荷时其夹紧力可能会降低的接头。还发现,上述螺纹紧固件由于其低的杨氏模量而有效地减小了由交变的外力产生的应力幅度。

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