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采用等离子渗碳SKD11模具对纯钛进行大厚度减薄的自由锻造。

Free-Forging of Pure Titanium with High Reduction of Thickness by Plasma-Carburized SKD11 Dies.

作者信息

Aizawa Tatsuhiko, Yoshino Tomoaki, Suzuki Yohei, Shiratori Tomomi

机构信息

Surface Engineering Design Laboratory, Shibaura Institute of Technology, Tokyo 144-0045, Japan.

Komatsu-Seiki Kosakusho, Co., Ltd., Suwa 392-0012, Japan.

出版信息

Materials (Basel). 2021 May 13;14(10):2536. doi: 10.3390/ma14102536.

Abstract

A tool steel type SKD11 punch was plasma carburized at 673 K for 14.4 ks at 70 Pa to make carbon supersaturation. This carburized SKD11 punch was employed for upsetting the pure titanium wire with the diameter of 1.00 mm up to the reduction of thickness by 70% in a single shot. Its contact interface to titanium work was analyzed to describe the anti-galling behavior in this forging. Little trace of titanium proved that the galling process was suppressed by the in situ solid lubrication. The isolated free carbon agglomerates are wrought as a solid lubricant to sustain the galling-free forging process. This anti-galling upsetting reduced the residual strains in the forged wires. A long titanium wire with a length of 45 mm was incrementally upset to yield the titanium ribbon with a thickness of 0.3 mm, the width of 2.3 mm, and the length of 50 mm. The grain size of original pure titanium was much reduced to 2 μm on average. A micro-pillared microtexture was imprinted onto this forged titanium ribbon.

摘要

一种SKD11型工具钢冲头在673 K、70 Pa条件下进行14.4 ks的等离子渗碳处理以实现碳的过饱和。将这种渗碳后的SKD11冲头用于镦粗直径为1.00 mm的纯钛丝,单次镦粗使其厚度减小70%。分析了其与钛工件的接触界面,以描述该锻造过程中的抗咬合行为。几乎没有钛的痕迹,这表明原位固体润滑抑制了咬合过程。孤立的游离碳团聚体作为固体润滑剂,以维持无咬合锻造过程。这种抗咬合镦粗减少了锻造丝材中的残余应变。将一根长度为45 mm的长钛丝进行增量镦粗,以得到厚度为0.3 mm、宽度为2.3 mm、长度为50 mm的钛带。原始纯钛的晶粒尺寸平均大幅减小至2μm。在这种锻造的钛带上压印了微柱微织构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86bf/8153341/ed4e2a7ea488/materials-14-02536-g001.jpg

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