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Capabilities of acoustic methods in testing of interference-fit joints

机译:干涉关节测试中声学方法的能力

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Tightness of joints on railway wheelsets is controlled by instruments based on a shrink fit method. To date, the shrink fit method has been replaced by an interference fit method. As a result, standard values of tightness have doubled. Therefore, there is an urgent need to upgrade and develop new methods for testing interference-fit joints. A promising solution is to use acoustic methods based on influence of material properties on propagation patterns of elastic waves. The purpose of this study is to evaluate the possibility to test fixed detachable joints by acoustic methods. Reference samples of interference-fit joints with known interference fits (29, 72 and 126 μm) were designed and produced. Experimental tests of samples and wheelset axles with inner bearing rings were conducted by a pulse-echo method and a method of free oscillations. The authors developed a procedure for determining the equivalent thickness of oil clearance using the proportionality factor of echo amplitude and sequence number of echo signals. When testing reference samples and loose bearing rings, frequency responses of the signals were obtained.
机译:铁路轮轮上的关节紧绷由基于收缩拟合方法的仪器控制。迄今为止,收缩拟合方法已被干扰拟合方法取代。结果,紧绷的标准值加倍。因此,迫切需要升级和开发用于测试干涉关节的新方法。有希望的解决方案是基于材料特性对弹性波传播模式的影响来使用声学方法。本研究的目的是评估通过声学方法测试固定可拆卸接头的可能性。设计并制造具有已知干涉配合(29,72和126μm)的干涉配合的参考样品。通过脉冲回波方法和自由振荡的方法进行具有内轴承环的样品和轮孔轴的实验测试。作者开发了一种方法,用于使用回波幅度和回波信号的序列数的比例因子确定油间隙等效厚度。当测试参考样品和松动的轴承环时,获得信号的频率响应。

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