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Mechanism of bolt pretightening and preload relaxation in composite interference-fit joints under thermal effects

机译:在热效应下复合干涉关节中的螺栓预防和预加载放松的机制

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The present research investigates the mechanism of bolt pretightening and preload relaxation in composite interference-fit joint structures under thermal effects. In view of the dissimilar material properties and the interfacial friction in such joints, the mechanical behavior of bolt and composites during assembly can be regarded as immediate preload response which is described by a linear elastic model, whereas the long-term behavior of composites during preload relaxation in service is considered as delayed response which is characterized by a viscoelastic model. The clamping forces on both sides of joints were captured to evaluate the preload balanced by the frictional behavior. The preload relaxation of joints with various interference-fit sizes and tightening torques under thermal effects were monitored for 240 hours to calibrate and validate the proposed model. The research revealed that the interference-fit size determined the level of frictional force which resulted in a difference between clamping forces at two sides of the fasteners. The preload first increases slowly with the growth of temperature, then decreases sharply when it approaches to glass transition temperature of matrix. The interference-fit joint behaves better in terms of maintaining the stability of preload than clearance-fit joints.
机译:本研究研究了热效应下复合干涉关节结构中的螺栓预防和预加载放松的机制。鉴于这种关节中的不同材料特性和界面摩擦,组装期间的螺栓和复合材料的机械特性可以被视为由线性弹性模型描述的即时预载响应,而复合材料在预载期间的长期行为服务中的放松被认为是延迟响应,其特征在于粘弹性模型。接头两侧的夹紧力被捕获以评估通过摩擦行为平衡的预载荷。监测在热效应下具有各种干扰尺寸和拧紧扭矩的关节的预紧放松240小时以校准并验证所提出的模型。该研究表明,干涉尺寸确定了摩擦力的水平,这导致紧固件两侧的夹紧力之间的差异。预载荷首先在温度的生长中缓慢增加,然后在玻璃化转变温度的玻璃化转变温度达到基质的情况下急剧下降。在保持预紧的稳定性方面的干扰拟合接头的表现优于间隙配合。

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