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Development of a two-dimensional model of a compliant non-pneumatic tire

机译:顺应性非充气轮胎的二维模型的开发

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An analytical model for a compliant non-pneumatic tire on frictionless, rigid ground is presented. The tire model consists of a thin flexible annular band and spokes that connect the band to a rigid hub. The annular band is modeled using curved beam theory that takes into account deformations due to bending, shearing and circumferential extension. The effect of the spokes, which are distributed continuously in the model and act as linear springs, is accounted for only in tension, which introduces a nonlinear response. The quasi-static, two-dimensional analysis focuses on how the contact patch, vertical tire stiffness and rolling resistance are affected by the stiffness properties of the band and the spokes. A Fourier series representation of the shear strain in the annular band and the complex modulus of the material were used to predict rolling resistance due to steady state rolling. From the analysis point of view, when the wheel is loaded at its hub, the following three distinct regions develop: (1) a support region where the hub hangs by the spokes from the upper part of the flexible band, (2) a free surface region where the spokes buckle and have no effect, and (3) a contact region where the flexible band is supported by the ground without the effect of the spokes. The angular bounds of these three regions are determined by the spoke angle and the contact angle, which are respectively the angle at which the spokes start to engage in tension and the angle that defines the edge of contact. Closed-form expressions of contact stress, stress-resultants and displacements at the centroids of the cross-sections of the flexible band are expressed in terms of these angles, which must be determined numerically. A thorough parametric analysis of quantities of interest for the tire is presented, which can be used to help support the optimal and rational design of compliant non-pneumatic tires. The model was validated by comparison with two computational models using the commercial finite element software ABAQUS and by experimental rolling resistance data.
机译:提出了在无摩擦,刚性地面上的顺应性非充气轮胎的分析模型。轮胎模型包括一个薄的柔性环形带和将辐条连接到刚性轮毂的辐条。环形带使用弯曲梁理论建模,该模型考虑了由于弯曲,剪切和周向延伸而引起的变形。辐条的影响在模型中连续分布并充当线性弹簧,仅在拉力中得到考虑,拉力会引入非线性响应。准静态二维分析的重点是带和轮辐的刚度特性如何影响接触斑块,垂直轮胎刚度和滚动阻力。环形带中的剪切应变和材料的复数的傅立叶级数表示用于预测由于稳态轧制引起的轧制阻力。从分析的角度来看,当车轮安装在其轮毂上时,会形成以下三个不同的区域:(1)轮毂悬挂在轮毂上的支撑区域,轮辐从柔性带的上部悬挂,(2)一个自由区域。辐条弯曲并没有影响的表面区域;(3)柔性带由地面支撑而不受辐条影响的接触区域。这三个区域的角度范围由轮辐角和接触角确定,它们分别是轮辐开始张紧的角度和确定接触边缘的角度。挠性带横截面的质心处的接触应力,应力结果和位移的闭合形式表示法是根据这些角度来确定的,这些角度必须通过数值确定。介绍了轮胎感兴趣的数量的详尽参数分析,可用于帮助支持合规非充气轮胎的优化和合理设计。通过使用商业有限元软件ABAQUS与两个计算模型进行比较并通过实验滚动阻力数据对模型进行了验证。

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