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基于压敏薄膜技术的轮胎-路面接触特性研究

A Study on the Contact Characteristics of Tires-Roads Based on Pressure-Sensitive Film Technology.

作者信息

Chen Bo, Ding Pengbo, Wei Guojie, Xiong Chunlong, Wang Fangli, Yu Jinfeng, Yu Huayang, Zou Yuxun

机构信息

School of Transportation and Civil Engineering and Architecture, Foshan University, Foshan 528000, China.

Guangdong Expressway Co., Ltd., Guangzhou 510623, China.

出版信息

Materials (Basel). 2023 Sep 21;16(18):6323. doi: 10.3390/ma16186323.

Abstract

Tire-road characteristics are a critical focus of research in the automotive and transportation industries. On the one hand, the research can help optimize tires' structural design; on the other hand, it can analyze the mechanical response of the pavement structure under the vehicle load. In addition, the non-uniformity distribution of the tire ground stress will also have a direct impact on the skid resistance, which determines the driving safety. Due to the limitation of testing technology, the measurement of tire ground pressure was mainly carried out on a flat test platform, ignoring the roughness of the actual pavement surface texture. The tire-road contact characteristics research on the macro-texture and micro-texture of asphalt pavement needs to be broken through. A high-precision pressure-sensitive film measurement system is utilized to examine the actual contact characteristics between two types of automobile tires and three types of asphalt pavement in this paper. The influence law of pavement texture and patterned tires on the contact area and stress was explored, and the concentration effect of tire-road contact stress was evaluated. The results indicate that the contact area of grounding tires exhibits a nearly linear relationship with tire inflation pressure and load. Notably, the change in load has a more significant influence on the contact area than tire inflation pressure. On asphalt pavement, the contact reduction rate decreases by approximately 5-10% for block pattern tires and 10-15% for longitudinal pattern tires. Furthermore, as the texture depth of the pavement increases, the contact area between tires and the pavement texture decreases. The actual tire-road interface experiences significant stress concentration due to the embedding and meshing effects between the tire and road surface. Even on a flat steel surface, the peak stress at the edge of the tread block exceeds the 0.7 MPa design load, which is about 2.5-3 times higher than the design uniform load. The peak stress between the tire and asphalt pavement reaches 4-10 times the design uniform load, with a rising trend as the pavement texture depth increases. This study can provide relevant experimental technical support for tire design and functional design of asphalt pavement.

摘要

轮胎-路面特性是汽车和交通运输行业研究的关键重点。一方面,该研究有助于优化轮胎的结构设计;另一方面,它能分析车辆荷载作用下路面结构的力学响应。此外,轮胎接地应力的非均匀分布也会直接影响防滑性能,进而决定行车安全。由于测试技术的限制,轮胎接地压力的测量主要在平坦的试验平台上进行,忽略了实际路面表面纹理的粗糙度。沥青路面宏观纹理和微观纹理的轮胎-路面接触特性研究有待突破。本文利用高精度压敏膜测量系统,研究了两种汽车轮胎与三种沥青路面之间的实际接触特性。探讨了路面纹理和花纹轮胎对接触面积和应力的影响规律,评估了轮胎-路面接触应力的集中效应。结果表明,接地轮胎的接触面积与轮胎充气压力和荷载呈现近似线性关系。值得注意的是,荷载变化对接触面积的影响比轮胎充气压力更为显著。在沥青路面上,块状花纹轮胎的接触减少率降低约5-10%,纵向花纹轮胎降低10-15%。此外,随着路面纹理深度的增加,轮胎与路面纹理之间的接触面积减小。由于轮胎与路面之间的嵌入和啮合效应,实际的轮胎-路面界面会出现显著的应力集中。即使在平坦的钢表面上,胎面花纹块边缘的峰值应力也超过了0.7MPa的设计荷载,约为设计均匀荷载的2.5-3倍。轮胎与沥青路面之间的峰值应力达到设计均匀荷载的4-10倍,且随着路面纹理深度的增加呈上升趋势。本研究可为轮胎设计和沥青路面功能设计提供相关的实验技术支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5668/10532792/bfefe2a90d3b/materials-16-06323-g001.jpg

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