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Design Parameter Study of a New Test Apparatus Developed for Quantitative Rating of Squeak Propensity of Materials

机译:为材料的吱吱声倾向定量评估开发的新型测试仪器的设计参数研究

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摘要

A novel, unique squeak test apparatus was developed to measure squeak propensity of a given pair of materials with a purpose to build a database for automotive engineers. The apparatus employs a sprag-slip mechanism to generate friction-induced, unstable sliding motion between the two materials that leads to a repeatable squeak noise to enable quantitative rating of the squeak propensity of a given pair of materials. An analytical model of the system was developed to study dynamic characteristics of the mechanism to gain insights to design the test apparatus. Stability analysis of the system identified unstable regions of the motion in parameter planes defined by the kinetic coefficient of friction and the attack angle. Furthermore, the effect of these system parameters on the amplitude of the limit cycle was investigated to obtain guidance to design the device. An automatic rating algorithm of squeak noises previously developed by authors was employed to calculate the squeak propensity of the material pairs. A practical engineering procedure is envisioned that can handle squeak problems in the design stage more effectively by taking advantage of such a squeak propensity database.
机译:开发了一种新颖的独特的吱吱声测试设备,以测量给定材料对的吱吱声倾向,目的是为汽车工程师建立数据库。该设备采用楔滑机构在两种材料之间产生摩擦引起的不稳定滑动,从而导致可重复的吱吱声,从而可以定量评估给定材料对的吱吱声倾向。开发了该系统的分析模型,以研究该机构的动态特性,从而获得设计测试设备的见识。系统的稳定性分析确定了由摩擦动力学系数和迎角定义的参数平面中运动的不稳定区域。此外,研究了这些系统参数对极限循环幅度的影响,以获得设计该器件的指导。使用作者先前开发的尖叫声自动评级算法来计算材料对的吱吱声倾向。设想了一种实用的工程程序,可以利用这种吱吱声倾向数据库在设计阶段更有效地处理吱吱声问题。

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