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块状材料的严重塑性变形技术的变形行为及性能:综述

Deformation behavior and properties of severe plastic deformation techniques for bulk materials: A review.

作者信息

Zayed Eman M, Shazly Mostafa, El-Sabbagh A, El-Mahallawy Nahed A

机构信息

Department of Design and Production Engineering, Faculty of Engineering, Ain-Shams University, Abaseia, Cairo, Egypt.

Mechanical Engineering Department, Faculty of Engineering, The British University in Egypt (BUE), Egypt.

出版信息

Heliyon. 2023 May 26;9(6):e16700. doi: 10.1016/j.heliyon.2023.e16700. eCollection 2023 Jun.

Abstract

This paper presents a comprehensive review of the successful application of Severe Plastic Deformation (SPD) in producing ultra-fine grained (UFG) and nano-structured crystalline bulk materials. SPD achieves outstanding grain refinement without significantly altering the original dimensions of the workpiece, making it particularly useful for ductile materials that can withstand large strains under high hydrostatic pressure before failure. The study explores the grain refining mechanism during severe plastic deformation and its impact on the microstructure of metals. It also examines the use of SPD in hard to deform brittle materials like tungsten oxide, BO glasses, and amorphous materials. The paper discusses the advantages and disadvantages of each technique, along with their applications and potential for combining more than one technique. The review is significant because it emphasizes recent progress in process development, which could potentially enable the industrialization of certain SPD techniques for specific applications. This paper fills the gap in the literature by addressing this issue. Overall, the review demonstrates the potential of SPD in metalworking and its application in the development of new UFG materials with improved mechanical properties.

摘要

本文全面综述了剧烈塑性变形(SPD)在制备超细晶粒(UFG)和纳米结构晶体块状材料方面的成功应用。SPD能实现显著的晶粒细化,而不会显著改变工件的原始尺寸,这使其对于那些在失效前能在高静水压力下承受大应变的韧性材料尤为有用。该研究探讨了剧烈塑性变形过程中的晶粒细化机制及其对金属微观结构的影响。它还研究了SPD在诸如氧化钨、硼酸盐玻璃和非晶材料等难以变形的脆性材料中的应用。本文讨论了每种技术的优缺点,以及它们的应用和多种技术结合的潜力。该综述具有重要意义,因为它强调了工艺开发方面的最新进展,这可能使某些SPD技术针对特定应用实现工业化。本文通过解决这一问题填补了文献中的空白。总体而言,该综述展示了SPD在金属加工中的潜力及其在开发具有改进机械性能的新型UFG材料中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d09c/10279799/0c80590403bd/gr1.jpg

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