Effect of CoCrMo Die and Tool Surface Nano-Texture on Micro Backward Extrusion Formability of AA6063-T6

T. Funazuka, Syunsuke Horiuchi, K. Dohda, Tomomi Shiratori
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Abstract

To manufacture micro parts used in medical and electronic devices, the machining scale must be reduced to the microscale. However, when applying existing plastic forming processes to the machining of microscale parts, the size effect caused by material properties and friction results in variations in product accuracy. To suppress the size effect, appropriate tool materials and tool surface treatments suitable for micro-scale machining must be considered. This study investigated the effects of tool surface properties such as die surface nano-texture on microextrudability such as extrusion load, product shape, and crystal structure of the product using AA6063-T6 billets as test specimens. A CoCrMO die was used as a new die material suitable for microextrusion. The extrusion load increased rapidly with the progression of the stroke for both dies. In the case of the CoCrMo die with nano-texture applied, the extrusion load was considerably lower than that of the AISI H13 die. Moreover, the extrusion length of the CoCrMo die with nano-texture applied was longer than that of the AISI H13 die. In addition, the nano-textured CoCrMo die exhibited less adhesion on the die surface. The results of material analysis using electron backscatter diffraction indicated that the nano-textured CoCrMo die improved material flowability and facilitated the application of greater strain. However, the AISI H13 die exhibited lower material flowability and non-uniform strain. Therefore, the tribology between the tool and the material was controlled by changing the surface properties of the die to improve the formability.
钴铬钼合金模具和工具表面纳米纹理对 AA6063-T6 微向后挤压成形性的影响
要制造医疗和电子设备中使用的微型零件,必须将加工尺度缩小到微米级。然而,将现有的塑料成型工艺应用于微米级零件的加工时,由于材料特性和摩擦力引起的尺寸效应会导致产品精度的变化。为了抑制尺寸效应,必须考虑适合微尺度加工的适当刀具材料和刀具表面处理。本研究以 AA6063-T6 钢坯为试样,研究了模具表面纳米纹理等模具表面特性对挤压负荷、产品形状和晶体结构等微挤压性的影响。CoCrMO 模具是一种适用于微挤压的新型模具材料。两种模具的挤压负荷都随着冲程的增加而迅速增加。应用纳米纹理的 CoCrMo 模具的挤出载荷大大低于 AISI H13 模具。此外,施加纳米纹理的 CoCrMo 模具的挤压长度也长于 AISI H13 模具。此外,纳米纹理钴铬钼模具表面的附着力较小。利用电子反向散射衍射进行的材料分析结果表明,纳米纹理钴铬钼合金模具改善了材料的流动性,有利于施加更大的应变。然而,AISI H13 模具则表现出较低的材料流动性和不均匀应变。因此,通过改变模具的表面特性来控制模具和材料之间的摩擦学,从而提高成形性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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