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Strain Measurements on ACSR Conductors During Fatigue Tests III—Strains Related to Support Geometry

机译:疲劳试验中ACSR导体的应变测量III —与支撑几何形状有关的应变

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摘要

A simple conductor bending model taking into account the geometry of the suspension clamp has been used to interpret the strains measured on top and bottom wires of two ACSR conductors outer layer. Taut Drake and Bersfort ACSR conductor specimens were fitted with a short commercial metallic suspension clamp and forced to vibrate at one of their normal modes. On each gauged wire, five equally-spaced cross-sections were monitored near the last point of contact of the conductor with the bed of the clamp or with the bolted keeper. Three strain gauges were used at each selected wire cross-section making it possible to obtain the wire traction strain as well as the binormal and normal bending strains. This more complex conductor-clamp model was found to yield theoretical strain values closer to measured values than the usual models where clamp geometry is ignored. Hence, this could be a step to a more precise estimate of a given conductor-clamp fatigue limit when undergoing Aeolian vibrations.
机译:考虑悬挂夹几何形状的简单导体弯曲模型已用于解释在两个ACSR导体外层的顶部和底部电线上测得的应变。绷紧的Drake和Bersfort的ACSR导体样品装有一个短的商用金属悬挂夹,并被迫以其正常模式之一振动。在每根标准导线上,在导体与夹具底座或螺栓固定器的最后接触点附近监测五个等距的横截面。在每个选定的导线横截面处使用三个应变仪,从而可以获得导线的牵引应变以及双法向和法向弯曲应变。发现这种更复杂的导体钳位模型比忽略钳位几何形状的普通模型产生的理论应变值更接近测量值。因此,这可能是朝着风振振动更精确地估计给定的导体夹疲劳极限的一步。

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