
BOOKS - Handbook on Smart Battery Cell Manufacturing The Power of Digitalization

Handbook on Smart Battery Cell Manufacturing The Power of Digitalization
Author: Kai Peter, Oberle, Michael
Year: 2022
Pages: 476
Format: PDF
File size: 42,8 МБ
Language: ENG

Year: 2022
Pages: 476
Format: PDF
File size: 42,8 МБ
Language: ENG

The book "Handbook on Smart Battery Cell Manufacturing: The Power of Digitalization" provides an overview of the current state of battery cell manufacturing technology and its future prospects. It explores how digitalization has transformed the industry and offers insights into the latest trends and innovations that will shape the future of battery production. The book covers topics such as materials science, electrochemistry, and engineering, as well as the impact of digitalization on the industry's development. It also discusses the challenges and opportunities presented by this technological shift and how it can be leveraged to create more efficient and sustainable batteries. The book begins with an introduction to the fundamentals of battery cell manufacturing and the role of digitalization in the industry. This section sets the stage for the rest of the book, which delves into the various aspects of battery production, including materials selection, design, and manufacturing processes. The authors highlight the importance of understanding the interplay between these factors and how they contribute to the overall performance of the battery. They also emphasize the need for a comprehensive approach to battery development, taking into account environmental and social considerations. The second chapter focuses on the evolution of battery technology, from traditional lead-acid batteries to modern lithium-ion batteries. The authors provide a detailed analysis of the strengths and weaknesses of each type of battery and how they have evolved over time. They also explore the challenges faced by the industry and how digitalization has helped address some of these issues. In Chapter 3, the authors examine the role of materials science in battery development. They discuss the properties of different materials used in battery production and their impact on performance, durability, and sustainability.
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