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Fatigue Failure of Steel-Cords for Synchronous Belt (Effect of Restraint between Wires)

机译:同步带钢丝绳的疲劳失效(电线之间约束的效果)

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Fatigue failure mechanism in synchronous belts with steel cord was investigated. The belt failure was initiated near the tooth root, where the steel cords were broken. The steel cord was made for twisting nineteen steel wires. It consisted of one core wire, six inner layer wires and nine outer layer wires. The bending fatigue tests of the steel cord were carried out and discussed the fatigue failure mechanism. The bending fatigue was firstly initiated for the outer wires. However, the bending stress was highest in the center core wire according to our geometrical analysis. Therefore, the interaction between the wires may increase the axial stress and the total stress of the bending and the axial stresses may fatigue the outer wire. On the other hand, the FEM results showed that the maximum stress occurs in the outer layer wire by the restriction between wires.
机译:研究了钢丝绳同步带的疲劳失效机制。皮带发生故障在齿根附近启动,其中钢丝绳被破坏。钢丝绳采用扭曲九钢丝。它包括一个芯线,六根内层线和九个外层线。进行了钢丝绳的弯曲疲劳试验,并讨论了疲劳失效机制。首先对外线启动弯曲疲劳。然而,根据我们的几何分析,中心芯线在中心芯线中弯曲应力最高。因此,导线之间的相互作用可以增加轴向应力,并且弯曲的总应力和轴向应力可以疲劳外线。另一方面,有组件结果表明,通过电线之间的限制,在外层线中发生最大应力。

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