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Optimization of reinforcement turn-up effect on tyre durability and operating characteristics for racing tyre design

机译:优化补胎对轮胎耐久性和赛车轮胎工作特性的影响

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The damage occurring around the tyre bead region has been pointed out as one of the causes of critical failure during the service life of a tyre. This study investigates the influence of the carcass (body) ply turnup and bead reinforcement turn-up around the bead region on tyre durability and operating characteristics using finite element analysis (FEA). A slick motorsport tyre with two carcass plies was modelled in ABAQUS based on the material properties obtained from tests and the profile provided by the tyre manufacturer. Various factors including the material property, the cross-section area, the spacing and angles of the reinforcement cords and the height of reinforcement turn-up, were characterized by numerical experiments using the design of experiment (DOE) method. The effects of these parameters on tyre durability and operating characteristics, in terms of mean response analysis of carcass stress, vertical stiffness, lateral stiffness, cornering stiffness and the strain energy density (SED) of elements in the critical region, were determined from the finite element tyre model. Similarly, optimum reinforcement turnup heights were obtained and provided predictive information for tyre design purpose. Furthermore it was observed, from both experiment and prediction, that the vertical stiffness was rather high for the requirement of the Formula Student (FS) racing car. In order to reduce the tyre vertical stiffness and improve the tyre durability, an improved tyre based on the original design but with single carcass ply was proposed. The FEA results on tyre durability and operating characteristics from both the original and improved design tyres were compared. The FEA predictions indicated that the improved design model was capable of providing the required tyre characteristics as well as improved tyre durability. It is therefore proposed that the predictive technology using FEA can be utilized to optimize the tyre reinforcement turn-up effect in future tyre design.
机译:已经指出,在轮胎胎圈区域周围发生的损坏是轮胎使用寿命期间严重故障的原因之一。这项研究使用有限元分析(FEA)来研究胎体(胎体)帘布层翻转和胎圈区域周围的胎圈加强筋翻转对轮胎耐久性和工作特性的影响。基于从测试中获得的材料性能和轮胎制造商提供的轮廓,在ABAQUS中对具有两个胎体帘布层的光滑赛车轮胎进行了建模。通过实验设计(DOE)方法,通过数值实验对材料的性能,横截面面积,加强绳的间距和角度以及加强圈的高度等各种因素进行了表征。从有限区域确定了胎体应力,垂直刚度,横向刚度,转弯刚度和关键区域元素的应变能密度(SED)的平均响应分析方面,这些参数对轮胎耐久性和操作特性的影响。元素轮胎模型。类似地,获得了最佳的补胎高度,并为轮胎设计目的提供了预测信息。此外,从实验和预测中都观察到,对于Formula Student(FS)赛车的要求,垂直刚度相当高。为了降低轮胎的垂直刚度并提高轮胎的耐久性,提出了一种基于原始设计但具有单个胎体帘布层的改进轮胎。比较了原始轮胎和改进设计轮胎在轮胎耐久性和操作特性方面的FEA结果。 FEA预测表明,改进的设计模型能够提供所需的轮胎特性以及改进的轮胎耐久性。因此,建议在未来的轮胎设计中,可以将使用有限元分析的预测技术用于优化轮胎补胎翻边效果。

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