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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Influence of Tire Core and Surface Temperature on Lateral Tire Characteristics
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Influence of Tire Core and Surface Temperature on Lateral Tire Characteristics

机译:轮胎芯和表面温度对轮胎侧向特性的影响

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摘要

In investigation and development of road tires within passenger car development, temperature dependency of tire characteristics is often neglected. This research however explicitly focuses on investigation and identification of temperature dependency of tire characteristics and its interaction with other inner tire states. To this extent, a novel method using a thermographic camera for measurement of both tire core and surface temperature is used. On the basis of these measurements, the dependency of cornering stiffness, relaxation length and lateral coefficient of friction on either core or surface temperature is presented. Moreover, the effect of tire core temperature on inner pressure is investigated. By choice of appropriate operating conditions, the effects of temperature and inner pressure on tire characteristics is investigated separately. A mechanical-analytical analysis forms the basis for derivation of the relationship between material attributes and tire characteristics. Material measurements of a sample taken from the tire under investigation are performed utilizing a hydropulser test rig. The aim of this analysis is identification of rubber storage and loss moduli, i.e. material master curves. The relationship of these material attributes to tire behavior is then shown for the tire characteristics under investigation. Finally, the transferability of the presented findings regarding temperature dependency from a test rig environment to real road conditions is discussed and recommendations are made for tire and vehicle measurements.
机译:在乘用车开发中的公路轮胎的研究和开发中,轮胎特性的温度依赖性通常被忽略。然而,该研究明确地集中于调查和识别轮胎特性的温度依赖性及其与其他内胎状态的相互作用。就此而言,使用了一种使用热像仪来测量轮胎芯和表面温度的新颖方法。在这些测量的基础上,介绍了转弯刚度,松弛长度和侧向摩擦系数对核心温度或表面温度的依赖性。此外,研究了轮胎芯温度对内压的影响。通过选择合适的工作条件,分别研究温度和内压对轮胎特性的影响。力学分析分析为推导材料属性和轮胎特性之间的关系奠定了基础。使用液压脉冲试验台对从所研究轮胎中采集的样品进行材料测量。该分析的目的是识别橡胶的储存和损耗模量,即材料主曲线。然后针对正在研究的轮胎特性显示这些材料属性与轮胎性能的关系。最后,讨论了与温度相关性的测试结果从试验台环境到实际路况的可转移性,并提出了轮胎和车辆测量的建议。

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