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Numerical Investigation of 1 × 7 Steel Wire Strand under Fretting Fatigue Condition

机译:微动疲劳条件下1×7钢丝绳的数值研究

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摘要

Wire ropes undergo a fretting fatigue condition when subjected to axial and bending loads. The fretting behavior of wires are classified as line contact and trellis point of contact. The experimental study on the fatigue of wire ropes indicates that most of the failure occurs due to high localized stresses at trellis point of contact. A continuum damage mechanics approach was previously proposed to estimate the fatigue life estimation of wire ropes. The approach majorly depends on the high value of localized stresses as well as the micro-slippage occurs at the contact region. Finite element approach has been used to study radial and axial distribution of stresses and displacement in order to clearly understand the evolution of stresses and existence of relative displacements between neighboring wires under various loading and frictional conditions. The relative movements of contacting wires are more when friction is not considered. In the presence of friction, the relative movement occurs at the boundaries of the contact region. The location of microslip in the presence of friction is backed by the experimental observation stating the crack is initiated at or the outer boundary of the contact spot. The existence of slip is due to different displacement of outer and central wires.
机译:钢丝绳在承受轴向和弯曲载荷时会发生微动疲劳。电线的微动行为可分为线路接触和网格接触点。钢丝绳疲劳的实验研究表明,大部分故障是由于在网格接触点处的局部高应力引起的。先前提出了一种连续损伤力学方法来估计钢丝绳的疲劳寿命。该方法主要取决于局部应力的高值以及在接触区域发生微滑动。为了清楚地了解应力的演变以及在各种载荷和摩擦条件下相邻钢丝之间的相对位移的存在,已使用有限元方法研究应力和位移的径向和轴向分布。当不考虑摩擦时,接触线的相对运动更多。在存在摩擦的情况下,相对运动在接触区域的边界处发生。实验观察表明,存在摩擦时微滑移的位置表明裂纹在接触点处或接触点的外边界处开始。滑移的存在是由于外线和中心线的位移不同所致。

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