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A Modular Race Tire Model Concerning Thermal and Transient Behavior using a Simple Contact Patch Description

机译:使用简单接触面描述的关于热和瞬态行为的模块化竞赛轮胎模型

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The potential of a race tire strongly depends on its thermal condition, the load distribution in its contact patch, and the variation of wheel load. The approach described in this paper uses a modular structure consisting of elementary blocks for thermodynamics, transient excitation, and load distribution in the contact patch. The model provides conclusive tire characteristics by adopting the fundamental parameters of a simple mathematical force description. This then allows an isolated parameterization and examination of each block in order to subsequently analyze particular influences on the full model. For the characterization of the load distribution in the contact patch depending on inflation pressure, camber, and the present force state, a mathematical description of measured pressure distribution is used. This affects the tire's grip as well as the heat input to its surface and its casing. In order to determine the thermal condition, one-dimensional partial differential equations at discrete rings over the tire width solve the balance of energy. The resulting surface and rubber temperatures are used to determine the friction coefficient and stiffness of the rubber. The tire's transient behavior is modeled by a state selective filtering, which distinguishes between the dynamics of wheel load and slip. Simulation results for the range of occurring states at dry conditions show a sufficient correlation between the tire model's output and measured tire forces while requiring only a simplified and descriptive set of parameters.
机译:赛车轮胎的潜力在很大程度上取决于其热状况,其接触面的载荷分布以及车轮载荷的变化。本文中描述的方法使用模块化结构,该结构由用于热力学,瞬态激励和接触贴片中负载分布的基本块组成。该模型通过采用简单的数学力描述的基本参数来提供确定的轮胎特性。然后,这允许隔离参数化和检查每个块,以便随后分析对整个模型的特定影响。为了表征取决于充气压力,外倾角和当前力状态的接触贴片中的载荷分布,使用了测量压力分布的数学描述。这会影响轮胎的抓地力以及对轮胎表面和胎体的热量输入。为了确定热条件,在整个轮胎宽度上的离散环上的一维偏微分方程解决了能量平衡问题。所得的表面温度和橡胶温度用于确定橡胶的摩擦系数和硬度。轮胎的瞬态行为通过状态选择性过滤来建模,状态过滤可以区分车轮载荷和打滑的动力学。在干燥条件下发生状态范围的仿真结果表明,轮胎模型的输出与测得的轮胎力之间具有足够的相关性,而只需要一组简化且具有描述性的参数。

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