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Automobile Applications of Mechanically Alloyed Magnesium and Titanium Material

  • Gangadhar M. Kanaginahal,
  • M. C. Kiran,
  • Kiran Shahapurkar,
  • Rayappa Srinivas Mahale,
  • Prashant Kakkamari

摘要

This chapter intricately examines the pivotal role played by magnesium and titanium alloys in the sphere of automotive part fabrication. It meticulously dissects their distinctive attributes, spotlighting their innate lightweight composition and unparalleled robustness, attributes that fundamentally elevate vehicular performance and operational efficacy. Through an in-depth exploration of the singular merits of these alloys and the symbiotic advantages derived from their amalgamation, the chapter accentuates their formidable resistance to corrosion, thermal steadfastness, and mechanical prowess, all pivotal facets in the realm of sustainable automotive design. Furthermore, the chapter critically evaluates the impediments inherent in manufacturing these alloys and the pioneering methodologies devised to optimize their efficacy within the automotive domain. By spotlighting tangible case studies, it elucidates how these alloys seamlessly fortify vehicular structures while substantially alleviating weight burdens, thereby significantly augmenting fuel efficiency. Additionally, the chapter contemplates the economic and environmental ramifications attendant upon the deployment of these cutting-edge materials, underscored by their potential to revolutionize the industry, fostering sustainability and resource maximization. This comprehensive elucidation of magnesium and titanium alloyed materials serves as an imperatival conduit for future exploration and innovation, proffering inspiration for extensive integration within automotive frameworks, thereby steering the industry towards pioneering, efficient, and ecologically cognizant design paradigms.