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首页> 外文期刊>Mechanical systems and signal processing >An analytical model of dissipated viscous and hysteretic energy due to interaction forces in a pneumatic tire: Theory and experiments
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An analytical model of dissipated viscous and hysteretic energy due to interaction forces in a pneumatic tire: Theory and experiments

机译:充气轮胎中的相互作用力引起的耗散粘性和滞后能量的解析模型:理论与实验

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摘要

When in use, a tire dissipates energy according to various mechanisms: rolling resistance, viscosity, hysteresis, friction energy, etc. This dissipation of energy contributes to influencing tire temperature, contact conditions and the resulting friction coefficient. This research project deals with viscoelastic and hysteretic mechanisms, and presents an explicit expression of the energy dissipated by tire-road interactions caused by these mechanisms. It is based on the Dahl model with regard to the hysteretic force together with a spring and a frequency variable damping coefficient with regard to the viscoelastic one. The energy expression found in this way can be used in tire thermal models to determine one of the heat flows needed to estimate the contact temperature and to find out the actual friction coefficient to be used in real time tire-road interaction models. Experimental tests were carried out, for longitudinal interaction only, in order to evaluate the effectiveness of the proposed expression by identifying the parameters and validating the results.
机译:在使用时,轮胎会根据各种机制耗散能量:滚动阻力,粘度,磁滞,摩擦能等。这种能量耗散会影响轮胎温度,接触条件以及产生的摩擦系数。该研究项目涉及粘弹性和滞后机理,并提出了由这些机理引起的轮胎-道路相互作用所耗散的能量的明确表达。它基于关于滞后力的Dahl模型,以及关于粘弹性的滞后力以及弹簧和频率可变阻尼系数。以这种方式找到的能量表达式可以用于轮胎热模型,以确定估计接触温度所需的热流之一,并找出要在实时轮胎-道路相互作用模型中使用的实际摩擦系数。进行实验测试(仅纵向交互),以通过识别参数和验证结果来评估所提出表达式的有效性。

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