Hybrid-Energy Cutting of Aerospace Alloys [electronic resource] / by Wenfeng Ding, Guolong Zhao, Biao Zhao, Moran Xu, Yanbin Zhang, Daohui Xiang, Ning Qian.

Por: Ding, Wenfeng [author.]Colaborador(es): Zhao, Guolong [author.] | Zhao, Biao [author.] | Xu, Moran [author.] | Zhang, Yanbin [author.] | Xiang, Daohui [author.] | Qian, Ning [author.] | SpringerLink (Online service)Tipo de material: TextoTextoEditor: Singapore : Springer Nature Singapore : Imprint: Springer, 2024Edición: 1st ed. 2024Descripción: XIV, 324 p. 223 illus., 208 illus. in color. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9789819752652Tema(s): Manufactures | Materials | Thermodynamics | Heat engineering | Heat transfer | Mass transfer | Machines, Tools, Processes | Materials Engineering | Engineering Thermodynamics, Heat and Mass TransferFormatos físicos adicionales: Printed edition:: Sin título; Printed edition:: Sin título; Printed edition:: Sin títuloClasificación CDD: 670 Clasificación LoC:TS1-2301Recursos en línea: Libro electrónicoTexto
Contenidos:
Introduction -- Laser-assisted cutting technology -- Ultrasonic vibration-assisted cutting technology -- Electrical-assisted cutting technology -- Enhanced heat transfer technology of sustainable cutting technology -- Hybrid energies-assisted cutting technology.
En: Springer Nature eBookResumen: This book pioneers the exploration of hybrid-energy cutting for aerospace alloys, summarizing cutting-edge research on laser-assisted, ultrasonic vibration-assisted, electrical-assisted, and hybrid-energies-assisted cutting. It also covers enhanced heat transfer in cutting processes, proposing novel technologies for achieving geometric precision and surface integrity at low costs. The book delves into multi-energy fields interaction mechanisms, material removal, tool wear, and cutting performance of aerospace alloys, alongside green and high-efficient cooling technologies. Targeting researchers, scientists, engineers, and professionals in aerospace, materials science, mechanical engineering, and manufacturing, this advanced-level resource assumes a solid background in engineering and materials science. It provides detailed discussions on theoretical aspects and practical applications of hybrid-energy cutting techniques. This book is a valuable reference for advanced researchers and practitioners in aerospace alloys cutting. It provides a comprehensive exploration of hybrid-energy technologies, detailed insights into mechanisms and performance, and a focus on sustainable and cost-effective cutting solutions.
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Introduction -- Laser-assisted cutting technology -- Ultrasonic vibration-assisted cutting technology -- Electrical-assisted cutting technology -- Enhanced heat transfer technology of sustainable cutting technology -- Hybrid energies-assisted cutting technology.

This book pioneers the exploration of hybrid-energy cutting for aerospace alloys, summarizing cutting-edge research on laser-assisted, ultrasonic vibration-assisted, electrical-assisted, and hybrid-energies-assisted cutting. It also covers enhanced heat transfer in cutting processes, proposing novel technologies for achieving geometric precision and surface integrity at low costs. The book delves into multi-energy fields interaction mechanisms, material removal, tool wear, and cutting performance of aerospace alloys, alongside green and high-efficient cooling technologies. Targeting researchers, scientists, engineers, and professionals in aerospace, materials science, mechanical engineering, and manufacturing, this advanced-level resource assumes a solid background in engineering and materials science. It provides detailed discussions on theoretical aspects and practical applications of hybrid-energy cutting techniques. This book is a valuable reference for advanced researchers and practitioners in aerospace alloys cutting. It provides a comprehensive exploration of hybrid-energy technologies, detailed insights into mechanisms and performance, and a focus on sustainable and cost-effective cutting solutions.

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