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Accumulative channel-die compression bonding (ACCB): A new severe plastic deformation process to produce bulk nanostructured metals

机译:累积通道-模头压缩键合(ACCB):一种新的严重塑性变形工艺,可生产块状纳米结构金属

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This paper introduces a new severe plastic deformation process to produce bulk nanostructured metals: accumulative channel-die compression bonding (ACCB). In the ACCB process, which can be applied to thick billets, the procedure of cutting, stacking and compression bonding in a channel-die is repeated to provide an ultrahigh plastic strain. This process was trialed with high purity aluminum. A fully recrystallized aluminum sample was deformed by ACCB at room temperature for up to 10 cycles, corresponding to an equivalent strain of 8.0. The initially coarse grains were subdivided by deformation-induced high-angle boundaries, and the fraction of such high-angle boundaries increased with increasing strain. Several cycles of ACCB led to a quite uniform ultrafine structure dominated by high-angle grain boundaries. The average boundary spacing of the 10-cycles ACCB sample was as small as 690 nm. The maximum ultimate tensile strength of the ACCB samples was 130 MPa after 5 cycles. Further ACCB cycles, however, led to a slight decrease in strength due to enhanced recovery and boundary migration during the deformation process. It has been demonstrated that the ACCB process can be used to produce bulk nanostructured metals of relatively large dimensions. The results suggest that the ACCB process is equivalent to conventional rolling deformation at high strains.
机译:本文介绍了一种新的严重塑性变形工艺,该工艺可生产块状纳米结构金属:累积通道-模头压缩键合(ACCB)。在可应用于厚坯料的ACCB工艺中,重复进行通道模头中的切割,堆叠和压接过程,以提供超高塑性应变。此过程使用高纯度铝进行了试验。完全重结晶的铝样品在室温下通过ACCB变形最多10个循环,相当于8.0的等效应变。最初的粗晶粒被变形引起的高角度边界细分,并且这种高角度边界的分数随应变的增加而增加。 ACCB的几个循环导致了由高角度晶界主导的相当均匀的超细结构。 10个周期的ACCB样品的平均边界间距小至690 nm。 5个循环后,ACCB样品的最大极限抗拉强度为130 MPa。然而,由于在变形过程中增强的恢复能力和边界迁移,进一步的ACCB循环导致强度略有下降。已经证明,ACCCB工艺可用于生产较大尺寸的块状纳米结构金属。结果表明,ACCB工艺等效于高应变下的常规轧制变形。

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