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Vibration Mitigation Effect Investigation of a New Slab Track Plate Design

机译:新型平板轨道板设计的减振效果研究

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摘要

This study proposed a novel vibration mitigation slab track plate design to mitigate the vibration induced in urban rail transit operations. The optimal recipe for the newly designed slab track plate is obtained by a series of laboratory tests, and both newly designed vibration mitigation slab track plates and normal slab track plates are fabricated and hereinafter tested. The newly designed slab track plate was examined with a series of laboratory tests in comparison with the normal slab track plate. The PolyMAX method is then adopted for extracting the modal properties, including resonant frequencies, and damping ratios are also determined for both the designed slab and normal slab track plates. A vibration mitigation level (Ls) is defined to address the vibration mitigation performance taking the acceleration response of the normal slab track plate as reference. The newly designed slab track plate demonstrated better dynamic and damping characteristics in comparison with the normal slab track plate. Under the same excitation force, the newly designed slab track plate can mitigate 8.9 dB on average in the frequency range [20, 400] Hz, expressing the feasibility of effective vibration mitigation capacity.
机译:这项研究提出了一种新颖的减振平板轨道板设计,以减轻城市轨道交通运营中引起的振动。通过一系列的实验室测试获得了新设计的平板履带板的最佳配方,然后制作了新设计的减震平板履带板和普通平板履带板,然后进行了测试。与常规平板轨道板相比,新设计的平板轨道板经过了一系列实验室测试。然后采用PolyMAX方法提取模态特性,包括共振频率,并且还确定了设计平板和正常平板轨道板的阻尼比。定义了减震等级(Ls),以正常平板轨道板的加速度响应为参考来解决减震性能。与常规平板轨道板相比,新设计的平板轨道板表现出更好的动态和阻尼特性。在相同的激励力下,新设计的平板轨道板在[20,400] Hz频率范围内平均可减轻8.9 dB,这表明有效的减振能力是可行的。

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