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Constrained bending and straightening-a proposed method for severe plastic deformation of metals

机译:约束弯曲和矫直 - 一种用于金属严重塑性变形的提出方法

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The use of severe plastic deformation (SPD) technology to process ultra-fine/nano grains metals with enhanced desired properties for structural and biomedical applications have shown good results. However, SPD technology is still limited to discrete processes, small size samples with inhomogeneous strain. This paper proposes a new method for severe plastic deformation of metals known as constrained bending and straightening (CBS). The method is aimed to provide continuous production of ultra-fine/nano grains metals with improved strain homogeneity. The CBS process analytical model and its working principle are presented, a constitutive relation of feed length, bend roller diameter, effective strain and tensile strength is established. Results show that the magnitude and homogeneity of induced effective strain and tensile strength increase with the decrease of both feed length and bending roller diameter. Effective strain increased by 200% from 6mm to 2mm feed lengths. At 2mm feed length, tensile stress increased from 1223.8 MPa at 1 pass to 1302.5 MPa at 4 pass. Results from this study promise that CBS technique is potential to be adapted for continuous SPD of bulky length metal sheets with enhanced homogeneous properties.
机译:使用严重的塑性变形(SPD)技术来处理具有增强的结构和生物医学应用的所需性能的超细/纳米晶体金属,表现出良好的效果。然而,SPD技术仍然限于离散的方法,小尺寸样本具有不均匀的菌株。本文提出了一种新的塑性变形,称为受约束弯曲和矫直(CBS)的金属的严重塑性变形。该方法旨在提供具有改善的应变均匀性的超细/纳米谷物金属的连续生产。提出了CBS处理分析模型及其工作原理,建立了进料长度,弯曲辊直径,有效应变和拉伸强度的本构关系。结果表明,诱导有效应变的幅度和均匀性和抗拉强度随着进料长度和弯曲辊直径的降低而增加。有效应变从6mm到2mm饲料长度增加200%。在2mm进料长度下,在4次通过时,拉伸应力从1223.8MPa增加到1302.5MPa。本研究的结果承诺,CBS技术是适于具有增强均质性质的体积长金属片的连续SPD的可能性。

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