首页> 外文会议>Analysis of Bolted Joints >AN EXPERIMENTAL INVESTIGATION OF THE EFFECTS OF CLAMPED LENGTH AND LOADING DIRECTION ON SELF-LOOSENING OF BOLTED JOINTS
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AN EXPERIMENTAL INVESTIGATION OF THE EFFECTS OF CLAMPED LENGTH AND LOADING DIRECTION ON SELF-LOOSENING OF BOLTED JOINTS

机译:束缚长度和载荷方向对螺栓节点自松动影响的实验研究

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An experimental investigation was conducted to study the effects of clamped length and loading direction on the self-loosening behavior of bolted joints. Specially designed fixtures were used for the study. The experiments mimicked two plates jointed by an M12x1.75 Class 10.9 bolt and a nut. The joints were subjected to cyclic external loading. A constant preload of 25 kN was used for all the experiments conducted. During an experiment, the relative displacement between the two clamped plates, ?, was a controlling parameter. The reduction in clamping force, the applied transverse load, and the nut rotation were measured cycle by cycle. The relationship between, Δδ/2 , the amplitude of the relative displacement between the two clamped plates, and, N_L, the number of loading cycles to loosening is referred to as self-loosening curve and was obtained for different clamped lengths and applied load directions. Similar to a fatigue curve, an endurance limit can be identified from the self-loosening curve. It was found that increasing the clamped length can enhance the self-loosening endurance limits in terms of the controlled relative displacement of the two clamped plates. However, the load carrying capability was not influenced significantly due to the thickness of the clamped plates. For a given bolted jointed structure, an angle of the external load from the pure shearing direction resulted in an increase in self-loosening resistance.
机译:进行了实验研究,以研究夹紧长度和载荷方向对螺栓连接的自松性能的影响。研究中使用了专门设计的固定装置。实验模仿了两个用M12x1.75 10.9级螺栓和螺母连接的板。关节承受周期性的外部载荷。进行的所有实验均使用25 kN的恒定预载。在实验过程中,两个夹紧板之间的相对位移是一个控制参数。逐周期测量夹紧力的减小,施加的横向载荷和螺母旋转。 Δδ/ 2(两个夹紧的板之间的相对位移的幅度)与N_L(到松动的加载循环数)之间的关系称为自松曲线,并且是针对不同的夹紧长度和施加的载荷方向而获得的。与疲劳曲线类似,可以从自松曲线确定持久极限。已经发现,就两个被夹紧的板的受控相对位移而言,增加被夹紧的长度可以增强自松动的耐久性极限。然而,由于夹板的厚度,承载能力没有受到显着影响。对于给定的螺栓连接结构,外部载荷与纯剪切方向的夹角导致自松性增强。

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