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Prediction Model and Experimental Study on Braking Distance under Emergency Braking with Heavy Load of Escalator

机译:高负荷自动扶梯紧急制动下制动距离的预测模型与实验研究

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In order to study the relationship between the braking distance and the load of escalator and realize the prediction of the rated load braking distance with a little load, the method of combining theoretical analysis and experimental research is used. First, the dynamic characteristics of the escalator during emergency braking are analyzed, and the prediction model of the braking distance of the escalator under different loads is derived based on the law of conservation of energy. Furthermore, the influence coefficients under different loads were determined through experimental studies, the model was revised, and the concept of equivalent no-load kinetic energy (ENKE) was proposed. The research shows that the braking distance of the escalator increases nonlinearly with the increase in load. When the no-load braking distance and the 25% rated load braking distance change greatly, the braking distance increases faster as the load increases; the escalators with large brake force have a small ENKE and are easy to stop. Otherwise, it is difficult to stop. The test results show that the comparison between the predicted value of the prediction model and the measured value has a maximum error of 2.7%, and the maximum error at rated load is only 2.0%, which fully meets the needs of engineering measurement. And the prediction method reduces test costs, enhances test security, and improves test coverage.
机译:为了研究制动距离与自动扶梯的负荷之间的关系,并实现额定负载制动距离的预测,使用了理论分析和实验研究的方法。首先,分析了在紧急制动期间自动扶梯的动态特性,并且基于能量守恒定律导出了不同载荷下自动扶梯的制动距离的预测模型。此外,通过实验研究确定不同载荷下的影响系数,修订了模型,提出了等效空载动能(eNKE)的概念。研究表明,随着负载的增加,自动扶梯的制动距离不会增加。当空载制动距离和25%额定负载制动距离变化很大时,随着负载的增加,制动距离增加了更快;具有大型制动力的自动扶梯具有小檐孔,易于停止。否则,很难停止。测试结果表明,预测模型的预测值和测量值之间的比较最大误差为2.7%,额定负载的最大误差仅为2.0%,这完全满足了工程测量的需求。并且预测方法降低了测试成本,提高了测试安全性,并提高了测试覆盖率。

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