首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Construction of the finite-element models of golf balls and simulations of their collisions
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Construction of the finite-element models of golf balls and simulations of their collisions

机译:高尔夫球的有限元模型的构建及其碰撞模拟

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The purpose of this study is to construct a finite-element (FE) model of golf balls with hyperelasticity and viscoelasticity and to devise a method for construction of FE ball models by investigating the relationship between the material properties and the behaviour of the golf ball during and after impact. As for the material model of the FE ball model, the Mooney-Rivlin model and the three-element viscoelastic model were used. In the FE analysis (FEA), normal and oblique impacts with a rigid body were simulated with these models. The impact load, deformation of the ball, rebound velocity, angle, and spin rate were investigated, and their effects on the behaviour of the ball were analysed by varying the individual material constants which make up the ball models. Then, a method for the construction of an FE ball model was proposed, based on these relationships. Impact experiments were also conducted to obtain the dynamic properties of the golf ball. The solutions of the FEA of the ball model, as constructed by the proposed method, closely matched with the experimental results, and the method was verified by applying the process to other types of golf balls.
机译:这项研究的目的是构造具有超弹性和粘弹性的高尔夫球的有限元(FE)模型,并通过研究高尔夫球的材料特性和行为之间的关系,设计一种构造FE球模型的方法。和影响之后。关于有限元模型的材料模型,使用了门尼-里夫林模型和三元粘弹性模型。在FE分析(FEA)中,使用这些模型模拟了刚体的正常和倾斜冲击。研究了冲击载荷,球的变形,回弹速度,角度和旋转速度,并通过改变构成球模型的各个材料常数来分析其对球行为的影响。然后,基于这些关系,提出了一种构造有限元球模型的方法。还进行冲击实验以获得高尔夫球的动态特性。所提出的方法构造的球模型的有限元分析结果与实验结果非常吻合,并通过将该方法应用于其他类型的高尔夫球进行了验证。

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