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International Journal of Automotive Technology. 2007;8(6):723-730.

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Development of a semi-empirical friction model in automotive driveshaft joints
International Journal of Automotive Technology. 2008;9(3):317-322   Crossref logo
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Evaluation and failure analysis of a composite material automotive driveshaft by using FEMA
Materials Today: Proceedings. 2021;37:3317-3319   Crossref logo
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Characterization of microstructure, toughness, and chemical composition of friction-welded joints of UNS S32205 duplex stainless steel
Friction. 2014;2(1):82-91   Crossref logo
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Predictive Modeling for Soft Measurement of Loader Driveshaft Torque Based on Large-Scale Distributed Data
Measurement. 2023;112566   Crossref logo
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Corrosion Behaviour of Friction Stir Welded AZ31 Joints for Automotive Applications
Magnesium Technology 2014. 2014;357-362   Crossref logo

Mechanical and microstructural characterization of friction stir welded AA6061-T6 joints reinforced with nano-sized particles
Materials Characterization. 2020;159:110047   Crossref logo
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Characterization of disk brake noise behavior via measurement of friction forces
PAMM. 2009;9(1):59-62   Crossref logo
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Measurement of the friction parameters of a belt transmission under heavy load
The Archives of Automotive Engineering – Archiwum Motoryzacji. 2022;95(1):18-31   Crossref logo
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Measurement and Characterization of “Resonance Friction” at High Sliding Speeds in a Model Automotive Wet Clutch
Tribology Letters. 2011;43(2):185-195   Crossref logo
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Stability of a multi-body driveshaft system excited through U-joints
Meccanica. 2017;53(4-5):1167-1183   Crossref logo
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This metadata service is kindly provided by CrossRef from May 29, 2014. Int J Automot Technol has participated in CrossRef Text and Data Mining service since March 1, 2015.