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首页> 外文期刊>SAE International Journal of Materials and Manufacturing >Analysis of the Cross-Sectional Shape and Wiping Angle of a Wiper Blade
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Analysis of the Cross-Sectional Shape and Wiping Angle of a Wiper Blade

机译:刮水片的横截面形状和擦拭角分析

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The windshield wiper is a component that is closely related to safety because it plays an important role in ensuring the driver's vision despite external factors such as rain and dust. Here, the mechanical properties of different types of blade rubber were evaluated using a miniature tensile test machine for a structural analysis of the types of wiper blade rubber used in automobiles. In addition, a compression set and the aging characteristics of each type of rubber were determined by comparing the mechanical properties and shape changes of the blade rubber after more than one year of use to the same blade rubber before use. Using the mechanical properties as measured by a tensile test, a nonlinear structural analysis of the wiper blade system was conducted using a 3D finite element method (FEM). The contact force distribution and wiping angle of the blade rubber under a static load were measured. According to the structural analysis, there is a difference in the wiping angle of more than 30° and a difference in the contact force distribution of more than 1.5 times between the new rubber and the old rubber. A sensitivity analysis was conducted using the design of experiments (DOE)-derived three main factors affecting the cross section of the blade rubber. Based on the main factors, the effects of the wiper blade's cross-sectional shape on the angle and contact force distribution were analyzed using the response surface method (RSM). When a static load of 2 N is applied and when the width of the web reaches 0.75 mm, the length of the web is 0.9 mm, and the tip width is 0.65 mm, the contact force distribution range is reduced, and the wiping angle is in the normal range. The results of this study indicate that it is possible to predict the main factors and the design direction of the cross-sectional shape of a wiper blade.
机译:挡风玻璃刮水器是与安全密切相关的组件,因为它在确保驾驶员的愿景中起着重要作用,尽管外部因素如雨水和灰尘。这里,使用微型拉伸试验机评估不同类型的叶片橡胶的机械性能,用于汽车类型的刮水片橡胶类型的结构分析。另外,通过将在使用前一年多的叶片橡胶之后的叶片橡胶的机械性能和形状变化比较,通过将叶片橡胶的机械性能和形状变化进行比较在使用前,通过比较叶片橡胶的机械性能和形状的变化来确定压缩集和老化特性。使用通过拉伸试验测量的机械性能,使用3D有限元方法(FEM)进行刮水片系统的非线性结构分析。测量叶片橡胶在静载荷下的接触力分布和擦拭角。根据结构分析,擦拭角度大于30°的差异,并且在新橡胶和旧橡胶之间的12.5倍以上的接触力分布差异的差异。使用实验设计(DOE)设计的三个主要因素进行了灵敏度分析,影响了刀片橡胶横截面的三个主要因素。基于主要因素,使用响应面法(RSM)分析了刮水叶片的横截面形状对角度和接触力分布的影响。当施加2 n的静载荷时且幅材的宽度达到0.75mm时,幅材的长度为0.9mm,尖端宽度为0.65mm,接触力分布范围减小,擦拭角度在正常范围内。该研究的结果表明可以预测刮水片的横截面形状的主要因素和设计方向。

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