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Propagation of Ultrasonic Guided Waves in Composite Multi-Wire Ropes

机译:复合多股钢丝绳中超声波导波的传播

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摘要

Multi-wire ropes are widely used as load-carrying constructional elements in bridges, cranes, elevators, etc. Structural integrity of such ropes can be inspected by using non-destructive ultrasonic techniques. The objective of this work was to investigate propagation of ultrasonic guided waves (UGW) along composite multi-wire ropes in the cases of various types of acoustic contacts between neighboring wires and the plastic core. The modes of UGW propagating along the multi-wire ropes were identified using modelling, the dispersion curves were calculated using analytical and semi-analytical finite element (SAFE) techniques. In order to investigate the effects of UGW propagation, the two types of the acoustic contact between neighboring wires were simulated using the 3D finite element method (FE) as well. The key question of investigation was estimation of the actual boundary conditions between neighboring wires (solid or slip) and the real depth of penetration of UGW into the overall cross-section of the rope. Therefore, in order to verify the results of FE modelling, the guided wave penetration into strands of multi-wire rope was investigated experimentally. The performed modelling and experimental investigation enabled us to select optimal parameters of UGW to be used for non-destructive testing.
机译:多钢丝绳被广泛用作桥梁,起重机,电梯等的承载结构元件。可以通过使用无损超声技术来检查这种钢丝绳的结构完整性。这项工作的目的是研究在相邻金属丝和塑料芯之间的各种声接触情况下,超声波导波(UGW)沿复合多金属丝绳的传播。使用建模方法确定了UGW在多钢丝绳上的传播方式,并使用分析和半解析有限元(SAFE)技术计算了色散曲线。为了研究UGW传播的影响,还使用3D有限元方法(FE)模拟了相邻导线之间的两种声接触。研究的关键问题是估计相邻钢丝(实心或滑移)之间的实际边界条件以及UGW进入绳索整个横截面的实际穿透深度。因此,为了验证有限元建模的结果,实验研究了导波对多股钢丝绳股线的渗透。进行的建模和实验研究使我们能够选择用于非破坏性测试的UGW的最佳参数。

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