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智能轮胎滚动阻力的实时估算 OPTYRE-Real Time Estimation of Rolling Resistance for Intelligent Tyres.

OPTYRE-Real Time Estimation of Rolling Resistance for Intelligent Tyres.

机构信息

Department of Mechanical and Aerospace Engineering, Sapienza University of Rome, 00184 Rome, Italy.

出版信息

Sensors (Basel). 2019 Nov 22;19(23):5119. doi: 10.3390/s19235119.

Abstract

The study of the rolling tyre is a problem framed in the general context of nonlinear elasticity. The dynamics of the related phenomena is still an open topic, even though few examples and models of tyres can be found in the technical literature. The interest in the dissipation effects associated with the rolling motion is justified by their importance in fuel-saving and in the context of an eco-friendly design. However, a general lack of knowledge characterizes the phenomenon, since not even direct experience on the rolling tyre can reveal the insights of the correlated different dissipation effects, as the friction between the rubber and the road, the contact kinematics and dynamics, the tyre hysteretic behaviour and the grip. A new technology, based on fibre Bragg grating strain sensors and conceived within the OPTYRE project, is illustrated for the specific investigation of the tyre dissipation related phenomena. The remarkable power of this wireless optical system stands in the chance of directly accessing the behaviour of the inner tyre in terms of stresses when a real-condition-rolling is experimentally observed. The ad hoc developed tyre model has allowed the identification of the instant grip conditions, of the area of the contact patch and allows the estimation of the instant dissipated power, which is the focus of this paper.

摘要

滚动轮胎的研究是一个在非线性弹性的一般背景下提出的问题。尽管技术文献中可以找到一些轮胎的例子和模型,但相关现象的动力学仍然是一个开放的课题。与滚动运动相关的耗散效应的研究兴趣是有其合理性的,因为它们在节能和环保设计方面具有重要意义。然而,由于人们对该现象缺乏全面的了解,即使是对滚动轮胎的直接经验也无法揭示相关不同耗散效应的内在关系,如橡胶与路面之间的摩擦、接触运动学和动力学、轮胎滞后行为以及抓地力。一种新的技术,基于光纤布拉格光栅应变传感器,并在 OPTYRE 项目中提出,用于特定的轮胎耗散相关现象的研究。这种无线光学系统的显著优势在于,它能够在实验观察到实际滚动条件下,直接获取轮胎内部的应力行为。专门开发的轮胎模型允许识别即时的抓地力条件、接触区域的面积,并能够估计即时耗散的功率,这是本文的重点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b27/6929126/87d167cad511/sensors-19-05119-g001a.jpg

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