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A Systematic Review of Factors Affecting the Process Parameters and Various Measurement Techniques in Forging Processes

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STEEL RESEARCH INTERNATIONAL
卷 94, 期 5, 页码 -

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WILEY-V C H VERLAG GMBH
DOI: 10.1002/srin.202200529

关键词

cold forging; die geometry; forging process monitoring; forging processes; hot forging; tool design; tool life

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This article provides a detailed review of various aspects of the forging process, discussing the optimization of factors such as preform design, forging conditions, workpiece dimensions, die design, lubricant properties, and thermal treatment parameters to enhance tool life and forging quality. Methods for selecting die-forging tool material and improving surface quality of forged products are also reviewed. The article also presents measurement methods for forging quality, tool life, machine effectiveness, forging image acquisition, and forging parameters, reducing the risk of error in the forging process. This review serves as a reference for researchers to increase production rate, enhance measurement system effectiveness, and improve the quality of forged products.
Forging is a primary manufacturing process used in several manufacturing industries. Aircraft and automobile industries are manufacturing products with high-dimensional accuracy and quality that are highly precise or near the required shape. Customers require products that are free of cracks and fulfill their functional requirements. This leads to the advancement of the forging process due to its ability to form complicated and intricate shapes. Herein, a detailed review of the aspects of forging is given in which the optimization of factors like preform design, forging conditions, workpiece dimensions, die design, lubricant properties, and thermal treatment parameters are discussed, enhancing the tool life and forging quality of the product. The selection of die-forging tool material and methods for enhancing the surface quality of forged products are also reviewed. The article also presents methods for measurement of forging quality, tool life, machine effectiveness, forging image acquisition, and forging parameters, which can significantly reduce the risk of error at every step of the forging process. This review serves as a reference for researchers to increase production rate, enhance the effectiveness of measurement system, and improve the quality of forged products with technological advancement.

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