TECHNICAL PAPERS

Optimized Drive Axle Design for Class 8 Tractors Equipped with New Generation Wide Base Single Tires

Date Published: 2009-10-06
Paper Number: 2009-01-2861
DOI: 10.4271/2009-01-2861

Citation:

Johnson, E., Nelson, S., Marlier, F., Nicolas, S. et al., "Optimized Drive Axle Design for Class 8 Tractors Equipped with New Generation Wide Base Single Tires," SAE Technical Paper 2009-01-2861, 2009, doi:10.4271/2009-01-2861.

Author(s):


Ellis Johnson - Michelin North America
Susan Nelson - Michelin North America
Fabien Marlier - Michelin Technology Center
Serge Nicolas - Michelin Technology Center
Maxime Rolland - Michelin Technology Center

Abstract:

Manufacturers of components for heavy trucks continually seek opportunities to reduce vehicle weight and improve operating efficiency. In recent years, new generation wide-base single (NGWBS) tires, such as the Michelin XOne ® , have provided weight reductions from 70 to over 120 kg per axle and improved fuel economy when compared to standard dual tire fitments. The NGWBS tire was designed as a “bolt-on” technology that can be put directly into commercial service on existing vehicles. As an enabling technology, NGWBS tires offer even greater improvements in overall vehicle weight reduction, safety, and fuel economy by permitting adaptation of axle and suspension architecture to take advantage of the single tire geometry and operating characteristics. This paper details the development of a new heavy truck drive axle design which is specifically optimized for use with NGWBS tires. The design principles and details of component arrangement of bearings, hub, axle shaft geometry, bolt circle, and mounting rim offset are included. A physical prototype axle was constructed and installed on a 6x4 tractor for operational testing and validation. Initial results of vehicle testing with the new axle demonstrate the following:

additional weight savings;

File Size: 2857K

Product Status: In Stock

See papers presented at SAE 2009 Commercial Vehicle Engineering Congress & Exhibition, October 2009, Rosemont, IL, USA, Session: Testing and Experimental Analysis of Chassis and Suspension (Part 1 of 2)

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