We can't find the internet
Attempting to reconnect
Something went wrong!
Hang in there while we get back on track
Tire Wear, Tread Depth Reduction, and Service Life
AI summary Read the abstract
This study reviews tire tread wear measurement standards and how tread depth reduction serves as a proxy for estimating service life and microplastic emissions from tire abrasion. The authors compare US Uniform Tire Quality Grading and European tread depth protocols and discuss how wear rates translate to road microplastic pollution estimates.
Tires are important for the transmission of forces, good traction of the vehicle, and safety of the passengers. Tires also influence vehicle fuel consumption and cause tire and road wear pollution to the environment in the form of microplastics. In the United States, the Uniform Tire Quality Grading (UTQG) for tread wear is reported on the tire sidewall and is used as an indicator of the expected service life of a tire. In Europe, a similar approach that applies tread depth reduction measurements and projection to the minimum tread depth is under discussion. Tread depth measurements will be carried out in parallel with abrasion measurements over the recently introduced abrasion rate test in the United Nations regulation 117. Testing is carried out with an on-road convoy method accompanied by a vehicle fitted with reference tires to minimize the influence of external parameters. In this brief review, we start with a short historical overview of the methods that have been applied so far for the measurement of tire service life. Based on the limited publicly available data, we calculate the average tread depth reduction per distance driven for summer and winter tires fitted both in the front and rear axles of passenger cars (1–1.2 mm for front wheels and 0.5–0.6 mm for rear wheels per 10,000 km). We theoretically estimate the tread mass loss per mm of tread depth reduction (250 g per 1 mm tread depth reduction, depending on the tire size) and we compare the values to experimental data obtained in recent campaigns. We give estimations of the tire service life as a function of the tread wear UTQG (100 times the indicated tread wear rating). We also discuss the projected service life using tread depth reduction and mass loss.
More Papers Like This
Wear of Passenger Car C1 Tyres Under Regulatory On-Road Testing Conditions
AI summary Read the abstract
Researchers measured tire wear rates for passenger car tires under real-world driving conditions using a standardized EU testing method designed to set future abrasion limits. They tested six summer and nine winter tires and found a wide range of wear rates and estimated service life values across different tire types. The findings contribute data to support upcoming EU regulations aimed at reducing microplastic pollution from tire wear, one of the largest sources of microplastics in the environment.
Tire Wear and Pollutants: An Overview of Research
AI summary Read the abstract
This review provides an overview of tire road and wear particles as a major source of microplastic emissions, examining both experimental and mathematical approaches to measuring tire wear. The study notes that while tire wear particles are found in alarming amounts across various environments, they remain less studied than other microplastics, and calls for more accurate simulation models to predict tire wear emissions.
On-Road Vehicle Measurement of Tire Wear Particle Emissions and Approach for Emission Prediction
AI summary Read the abstract
An instrumented measurement vehicle was developed to quantify tire wear particle emissions under real-world on-road conditions, identifying key driving parameters such as speed, load, and cornering that govern emission rates. The study supports the development of emission factors and regulatory standards for non-exhaust tire-derived microplastic pollution.
Tire Abrasion as a Major Source of Microplastics in the Environment
AI summary Read the abstract
This study analyzed tire wear particles as a major source of microplastics in the environment, estimating that tire abrasion contributes a substantial fraction of total microplastic emissions globally and highlighting road runoff as a key delivery pathway to waterways.
Comprehensive approach to national tire wear emissions: Challenges and implications
AI summary Read the abstract
Researchers developed a comprehensive approach to estimate national tire wear emissions, which are a major source of microplastics in the environment. They found that increasing vehicle weight due to electrification trends and growing traffic volumes are driving higher emissions, while no regulations currently exist for tire wear. The study provides methods needed for tracking changes in tire-related microplastic pollution and supporting future environmental impact assessments.
Research digests by email
When a large batch of papers lands in the Atlas, we read through it and send a short write-up of what stood out.