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Machining of Light Alloys: Aluminum, Titanium, and Magnesium

Machining of Light Alloys: Aluminum, Titanium, and Magnesium

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  • More about Machining of Light Alloys: Aluminum, Titanium, and Magnesium

Aluminum, magnesium, and titanium alloys are of special interest for engineering applications in sectors such as aeronautics, automotive, and medical due to their low density and mechanical properties. This book provides a comprehensive state-of-the-art reference source on machining of light alloys, including conventional and non-conventional machining processes, sustainable machining, and applications for Industry 4.0 environments. It aims to help researchers and practitioners face machining challenges and facilitate the development of new industrial applications for light alloys.

Format: Paperback / softback
Length: 240 pages
Publication date: 31 March 2021
Publisher: Taylor & Francis Ltd


Aluminum, magnesium, and titanium alloys hold immense significance for engineering applications across various sectors, including aeronautics, automotive, and medical. Their remarkable properties, such as low density and excellent mechanical strength, make them highly suitable for transportation applications, leading to reduced weight, increased fuel efficiency, and lower emissions to the atmosphere.

In the realm of manufacturing, machining remains a crucial process, not only for metal components but also for specialized hybrid parts designed for demanding new applications. Researchers have dedicated substantial efforts to studying the machining of conventional engineering materials. However, when it comes to light alloys and hybrid materials incorporating these alloys, new challenges arise. Specifically, it is essential to evaluate the appropriateness of machining these alloys in the context of Industry 4.0, with a focus on developing cost-effective and sustainable processes.

This book serves as a comprehensive resource on the machining of light alloys, encompassing a collection of both experimental and review studies. Organized into eight chapters, the work is presented by a team of international scholars who examine the primary challenges associated with machining these alloys from diverse perspectives.

Key Features:

Comprehensive State-of-the-Art Reference Source: This book provides a comprehensive overview of the machining of light alloys, serving as a valuable reference for researchers, engineers, and students in the field.

Research on Conventional and Non-Conventional Machining Processes: The book explores both conventional and non-conventional machining techniques, offering insights into the latest advancements and innovations in the field.

Current Research Topics on Sustainable Machining: The book addresses emerging research topics related to sustainable machining, emphasizing the development of eco-friendly and resource-efficient machining processes.

Research on Machining of Hybrid Materials Using Light Alloys: The book delves into the machining of hybrid materials, combining light alloys with other materials to enhance their properties and performance.

Applications for Industry 4.0 Environments: The book showcases the applications of light alloys in Industry 4.0 environments, emphasizing their suitability for smart manufacturing, automation, and data-driven decision-making.

Machining of Light Alloys: Aluminum, Titanium, and Magnesium

Aluminum alloys, including aluminum-based alloys such as 6061 and 7075, are widely used in the automotive industry due to their lightweight and excellent corrosion resistance. They are also utilized in aerospace applications, where their low density and high strength contribute to reduced fuel consumption and increased aircraft performance.

Magnesium alloys, such as AZ91D and ZE41, offer high strength-to-weight ratios and excellent thermal conductivity. They are commonly used in the automotive industry for engine components and lightweight structural parts. Magnesium alloys are also used in medical implants, such as hip replacements, due to their biocompatibility and low density.

Titanium alloys, including Ti6Al4V and Ti6Al4V ELI, possess excellent corrosion resistance, high strength, and low density. They are widely used in the aerospace industry for aircraft components, such as engine brackets and landing gear, as well as in medical implants, such as dental implants and surgical instruments.

In conclusion, aluminum, magnesium, and titanium alloys are of exceptional interest for engineering applications due to their unique properties and wide range of applications. Their low density, combined with excellent mechanical strength, makes them highly suitable for transportation, aerospace, and medical sectors. While machining of conventional engineering materials has been extensively studied, light alloys and hybrid materials present new challenges that require innovative approaches. This book serves as a valuable resource for researchers, engineers, and students seeking to advance their knowledge and expertise in the machining of light alloys. By exploring conventional and non-conventional machining techniques, current research topics on sustainable machining, and applications for Industry 4.0 environments, the book provides a comprehensive understanding of the machining of these valuable materials.

Weight: 472g
Dimension: 234 x 156 (mm)
ISBN-13: 9780367780999

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