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The microstructural alterations occurring in the heat affected zone of precipitation hardenable aluminum alloys was investigated using transmission electron microscop. The nature and scope of these metallurgical changes are influenced by several factors which include the type of alloy being welded, the initial (preweld) heat treatment the welding conditions, the postweld heat treatment (if any), and the location of the particular point being evaluated relative to the path of the heat source. Samples of two alloys, 2219 (Al-Cu) and 6061 (Al-Mg-Si-Cu), were heat treated to known conditions and then welded. Subsequent examination revealed a difference in the sponses of the strengthening precipitates of the two alloys.
It is always hard to set manufacturing systems to produce large quantities of standardized parts. Controlling these mass production lines needs deep knowledge, hard experience, and the required related tools as well. The use of modern methods and techniques to produce a large quantity of products within productive manufacturing processes provides improvements in manufacturing costs and product quality. In order to serve these purposes, this book aims to reflect on the advanced manufacturing systems of different alloys in production with related components and automation technologies. Additionally, it focuses on mass production processes designed according to Industry 4.0 considering different kinds of quality and improvement works in mass production systems for high productive and sustainable manufacturing. This book may be interesting to researchers, industrial employees, or any other partners who work for better quality manufacturing at any stage of the mass production processes.
This practical reference provides thorough and systematic coverage on both basic metallurgy and the practical engineering aspects of metallic material selection and application.