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MEASUREMENT OF ABSOLUTE DISPLACEMENT OF A TWIN CALLIPER DISC BRAKE DURING NOISE

机译:噪声期间双卡钳盘式制动器绝对位移的测量

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This paper examines the application of the proven technique of holographic interferometry for the measurement and analysis of the absolute displacement, both out-of-plane and in-plane, of a twin caliper disc brake generating noise at 2200 Hz. The standard technique of holographic interferometry has been developed such that both separate dynamic images of the in-plane and out-of-plane vibration, together with a combined dynamic image indicating absolute displacement may be represented. The technique makes use of a series of time related holograms recorded from three different viewing perspectives of the brake. Each image records absolute displacement but as each of the three holograms view the brake from a different viewpoint then each comprises varying degrees of out-of-plane and in-plane vibration, dependant on their angular position. This varying degree of displacement allows their manipulation to identify and isolate the in-plane and out-of-plane contributions to the overall excitation so that each may be considered separately. The out-of-plane is represented as a three-dimensional image whereas arrows represent the in-plane amplitude as a "quiver" plot. The results show the disc modes to be extremely complex for the twin caliper system and further indicate that the in-plane vibration amplitudes are significantly larger in magnitude than out-of-plane vibration amplitudes.
机译:本文探讨全息干涉的成熟技术的用于测量和绝对位移的分析,两个外的平面和平面内,双钳盘式制动器产生的噪音在2200赫兹的应用。全息干涉的标准技术已被开发,使得在面内和面外振动的两个单独的动态图像,具有组合的动态图像,其指示绝对位移一起可被表示。该技术利用了一系列从制动三种不同的观看角度记录的时间相关的全息图的。每个图像记录绝对位移但作为每三个全息图从不同的观点查看制动那么每个包括不同程度的外的平面和在面内振动的,依赖于它们的角位置。此不同程度的位移的允许其操作以鉴定和分离的整体激励,使得每一个可以被单独考虑的面内和外的平面的贡献。而箭头表示的面内振幅为“颤动”情节外的平面被表示为三维图像。结果表明该盘模式是用于双卡钳系统非常复杂,并进一步表明,在平面内的振动幅度在幅度比外的平面的振动振幅较大的显著。

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