径向坝闸板轴承摩擦的应变计测量

Henning Føsker, Halvard Bjørndal, Terje Ellefsrød, Kjell Knutsen
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引用次数: 1

摘要

至少有五种已知的径向闸门故障是由耳轴轴承卡住引起的。径向浇口臂通常设计为承受轴承名义摩擦产生的弯矩。经验表明,缺乏润滑和多年的劣化会导致摩擦增加,甚至导致轴承失灵。浇口臂上的轴承摩擦产生的弯矩超过了弯矩承受能力,导致浇口倒塌。Norconsult开发了一种方法来测量门在使用时的耳轴轴承摩擦。通过安装在闸板臂上的应变片,测量闸板运动过程中由轴承摩擦引起的应变。来自应变片和门位置变送器的信号以数字方式记录,允许直接显示测试结果。该方法对测量结果进行了客观、精确的验证,并将主观和错误评估的风险降至最低。收费导致下游洪水泛滥,水库水位下降,影响了船只交通和水路的娱乐用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strain gauge measurements of friction on radial dam gate bearings
At least five known radial gate failures are caused by trunnion bearing seizure. The radial gate arms are normally designed to withstand bending moments from nominal friction on the bearings. Experience has shown that lack of lubrication and years of deterioration leads to increased friction and even seizure of the bearings. The bending moments produced by bearing friction imposed on the gate arms are beyond the moment capacity, resulting in collapse. Norconsult has developed a method for measuring trunnion bearing friction while the gates are in service. By means of strain gauges attached to the gate arms, the strain caused by the bearing friction is measured during gate movement. The signals from the strain gauges and a gate position transmitter are logged digitally, allowing direct presentation of test results. The method gives objective and precise verification of measuring results, and the risk of subjective and wrong assessments is minimized. charge results in downstream flooding and lowering of the reservoir, affecting boat traffic and recreational use of the water way.
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