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REDUCTION OF NOISE IN AN EXCAVATOR CABIN USING ORDER TRACKING AND ULTRASONIC LEAK DETECTION

机译:订单跟踪和超声波泄漏检测降低挖掘机机舱噪声

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摘要

This study examined the noise transmitted into the operator's cabin of a crawler excavator during operation. The sources of the noise generated by the excavator and the air-borne and structure-borne transmission paths into the cabin of the excavator were identified and characterized. Order tracking, which utilizes tachometer measurements to relate the occurrence of an event to a multiple of engine rotational speed, was used to identify noise and vibration components related to excitation from the excavator's engine and hydraulic systems. The results of the analysis showed 1st order engine rotational imbalance, 3rd order engine combustion, and 9th and 18th order hydraulic pressure fluctuations were the primary components of noise and vibration generated by the excavator. An ultrasonic leak detector was used to identify small sound leaks into the cabin. Finally, passive noise control treatments were designed to attenuate and dissipate the acoustic energy transmitted into the excavator cabin. These cabin noise control treatments included covering the floor with an acoustic barrier, adding damping to the windows, lining the ceiling and walls with absorptive foam, and sealing leaks found along window, door, and panel edges. Experimental results showed that the noise control treatments reduced the overall A-weighted sound pressure level in the cabin by up to 3 dB.
机译:这项研究检查了在操作过程中传递到履带挖掘机操作员驾驶室内的噪声。识别并表征了挖掘机产生的噪声源以及进入挖掘机机舱的空中和结构传播路径。订单跟踪利用转速表的测量值将事件的发生与发动机转速的倍数相关联,用于识别与挖掘机发动机和液压系统的励磁有关的噪声和振动分量。分析结果表明,一阶发动机旋转不平衡,三阶发动机燃烧以及九阶和十八阶液压波动是挖掘机产生的噪声和振动的主要成分。超声波检漏仪用于识别小声音泄漏到机舱中。最后,设计了被动噪声控制处理方法,以衰减和消散传递到挖掘机机舱中的声能。这些机舱噪音控制措施包括用隔音层覆盖地板,增加窗户的阻尼,用吸收性泡沫衬砌天花板和墙壁以及密封窗户,门和面板边缘的泄漏。实验结果表明,噪声控制处理可将机舱中的A加权总体声压级降低多达3 dB。

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