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Coupled Extensional-torsional Vibration Frequency of Hoisting Rope in Tower-type Friction Drive Hoist System

机译:塔式摩擦驱动提升系统中提升绳的扭扭耦合振动频率

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摘要

In order to avoid resonance, and to enhance safety of hoisting system and monitoring reliability, an impact mechanical model of mine hoisting rope for friction drive hoist system was built. According to Hamilton principle and considering the effect of oriented pulley and hoisting rope string, coupled extensional-torsional and extensional only mathematical models of hoisting rope were deduced-Mode shape and transcendental equation of angular frequency were obtained based on the hypothesis that the wave of vibration propagated with sine shape. With numerical calculation, results show that the frequency considering the effect of oriented pulley and hoisting rope string was slightly lower comparing with the frequency ignoring the effect at the bottom of shaft, but much different at the mouth; and there is significant difference between coupled frequency and extensional vibration only. Thereby, to make the design and monitoring of mine hoisting much more reliably, it is suggested that the extensional-torsional coupled vibration of hoisting rope, oriented pulley and hoisting rope string should be considered.
机译:为了避免共振,提高起重系统的安全性和监测可靠性,建立了摩擦驱动起重系统的矿用起重绳索冲击力学模型。根据汉密尔顿原理,并考虑定向滑轮和起重钢丝绳的作用,推导了拉扭和拉紧耦合的数学模型。根据振动波的假设,得到了振型的模态形式和角频率的先验方程。以正弦形状传播。数值计算结果表明,与忽略滑轮底部影响的频率相比,考虑了定向滑轮和起重钢丝绳作用的频率要低一些,但在嘴部则有很大的不同。并且仅耦合频率和拉伸振动之间存在显着差异。因此,为了使矿井提升的设计和监控更加可靠,建议应考虑提升绳索,定向滑轮和提升绳索串的拉伸-扭转耦合振动。

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