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Flexibility of hybrid load transfer assemblies: Influence of tightening pre-stress

机译:混合式负载传递组件的灵活性:拧紧预应力的影响

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University of Toulouse, Institut Clement Ader, INSA DCM, 135 Avenue de Rangueil, F-31077 Toulouse, France;Institut Superieur de Technologie d'Antanarivo, BP 8122, Antanarivo 101, Madagascar;University of Toulouse, Institut Clement Ader, INSA DCM, 135 Avenue de Rangueil, F-31077 Toulouse, France;University of Toulouse, Institut Clement Ader, INSA DCM, 135 Avenue de Rangueil, F-31077 Toulouse, France;%The flexibility of bolted assemblies of thin parts is a significant parameter, especially in calculating the load distribution between the various fasteners in an assembly. This characteristic is poorly understood in the case of assemblies that are working both in plastic deformation-shearing and friction. The present study firstly focuses on flexibility of an assembly working only by friction. It highlights the influence of pre-stressing and the coefficient of friction on flexibility as also on hysteresis and assesses the influence of the assembled parts' geometrical characteristics. The study then goes on to consider a hybrid load transfer assembly. Simulations performed using ABAQUS software provided insight as to how the joint behaves in relation to the pre-stress applied. The results are compared to the case of an assembly working without pre-stress. Using these simulations, a model for determination is proposed. This allows the apparent flexibility of the fastener to be calculated, dissociating the case of apparent flexibility on the first loading cycle needed to calculate the load transfer from the apparent flexibility of the following loading cycles. The formulations proposed thus allow the behaviour of a hybrid load transfer fastener to be characterised in relation to the transferred load F_t and a dimensionless parameter characterising the latter's global behaviour (adhesion or slipping).
机译:法国图卢兹大学克莱门德学院,DCM,135 Avenue de Rangueil,F-31077法国图卢兹;法国安塔纳里沃理工学院超级学院,BP 8122,马达加斯加安塔纳里沃101;图卢兹大学,卡萨尔·阿德学院,INSA DCM法国图卢兹F-31077,Rangueil 135大道;法国图卢兹F-31077法国卢蒙德大道135号,法国INSA DCM图卢兹大学;%薄零件螺栓组件的柔韧性是一个重要参数,特别是计算组件中各个紧固件之间的载荷分布。在以塑性变形-剪切和摩擦方式工作的组件的情况下,很难理解该特性。本研究首先关注仅通过摩擦工作的组件的柔性。它强调了预应力和摩擦系数对柔韧性以及滞后性的影响,并评估了组装零件的几何特性的影响。然后,研究继续考虑混合负载转移组件。使用ABAQUS软件执行的模拟提供了有关接头如何与所施加的预应力有关的表现的见解。将结果与没有预应力的装配情况进行比较。使用这些模拟,提出了一种确定模型。这允许计算紧固件的表观柔韧性,从而从随后的加载循环的表观柔韧性中分离出在计算载荷传递所需的第一加载周期上的表观柔韧性的情况。因此,提出的公式允许相对于所传递的载荷F_t表征混合载荷传递紧固件的性能,并表征其整体性能(粘附或滑移)的无因次参数。

著录项

  • 来源
    《Aerospace science and technology》 |2013年第1期|84-92|共9页
  • 作者单位

    University of Toulouse, Institut Clement Ader, INSA DCM, 135 Avenue de Rangueil, F-31077 Toulouse, France;

    Institut Superieur de Technologie d'Antanarivo, BP 8122, Antanarivo 101, Madagascar;

    University of Toulouse, Institut Clement Ader, INSA DCM, 135 Avenue de Rangueil, F-31077 Toulouse, France;

    University of Toulouse, Institut Clement Ader, INSA DCM, 135 Avenue de Rangueil, F-31077 Toulouse, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    flexibility; bolted assembly; load transfer;

    机译:灵活性;螺栓连接;负荷转移;

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