首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >Possible shortcomings of the calibration methods for certain non-destructive monitoring devices for helically wound steel cables
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Possible shortcomings of the calibration methods for certain non-destructive monitoring devices for helically wound steel cables

机译:某些用于螺旋缠绕钢缆的无损监测装置的校准方法可能存在的缺陷

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摘要

Coupled extensional-torsional behaviour of axially pre-loaded helically wound steel cables (wire ropes and/or spiral strands) under specific forms (i.e. unit-step, triangular, and half-sine) of impact loading are considered in some detail. The final closed-form formulations can handle both the no-slip and/or the traditionally used full-slip coupled extensional/ torsional constitutive equations for helically wound cables, and describe the various characteristics of the resulting pairs of axial or torsional waves at any location along the cable with one end fixed against movement and the other end subjected to impact loading. By using extensive numerical results, which cover the full range of current manufacturing limits for the lay angle (with this being the sole controlling geometrical parameter as far as the axial/torsional stiffnesses are concerned), it is shown that significant differences exist between a number of axial/torsional wave characteristics, depending on whether the no-slip or the full-slip version of the constitutive relations is used in the analysis. It is demonstrated that modest increases in the magnitudes of the lay angles can lead to significant increases in the differences between the no-slip and the full-slip wave propagation characteristics. The present findings may have significant practical implications in relation to the currently adopted techniques used by industry for calibrating the electronic boxes, which are subsequently used as permanently installed devices, for the in situ detection of individual wire fractures under, say, fatigue loading associated with cable-supported structures.
机译:在某些特定形式(即单位步长,三角形和半正弦)的冲击载荷下,轴向预紧的螺旋缠绕钢绞线(钢丝绳和/或螺旋绞线)的拉伸和扭转耦合行为被详细考虑。最终的封闭形式公式可以处理螺旋缠绕电缆的防滑和/或传统上使用的全防滑耦合拉伸/扭转本构方程,并描述在任何位置产生的成对轴向或扭转波的各种特性沿电缆固定,一端固定不动,另一端承受冲击载荷。通过使用广泛的数值结果,该数值范围涵盖了当前制造角度的整个制造极限范围(就轴向/扭转刚度而言,这是唯一的控制几何参数),表明多个轴承之间存在显着差异。根据在分析中使用无滑移形式还是全滑移本构关系,确定轴向/扭转波特性。已经证明,适当增加摆角的幅度会导致无滑移波和全滑移波传播特性之间的差异显着增加。与工业上用于校准电子盒的当前采用的技术有关,本发明的发现可能具有重大的实际意义,电子盒随后被用作永久性安装的设备,用于在例如与之相关的疲劳载荷下原位检测单个电线的断裂。电缆支撑的结构。

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