Study on the Surface Enhancement of Thin-Walled Metallic Materials Using a Novel Double-Side Burnishing Tool

IF 0.9 Q4 AUTOMATION & CONTROL SYSTEMS
Hibiki Yamazaki, Jiang Zhu, Tomohisa Tanaka
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引用次数: 0

Abstract

Burnishing is a surface finishing process to produce a smooth surface. Since it can improve the mechanical properties of the material, such as surface hardness, wear resistance, and fatigue strength, in one process, it has been widely used in industry to enhance the surface quality of mechanical parts. However, due to the high burnishing force, it is difficult to use the process of thin materials, because such materials can easily be deformed in the process. In this research, a novel double-sided burnishing (DSB) tool that can process the thin plate material from both sides is designed and fabricated. The developed DSB tool symmetrically moves the burnishing tips on both sides with a single output to facilitate position control. The burnishing forces from the two sides cancel each other, and the moment that causes bending deformation is suppressed during the processing. Different thin plate metallic materials are processed using the developed tool, it is confirmed that deformation during burnishing is suppressed. By investigating the surface properties of the processed specimen, it is found that surface roughness, surface hardness, tensile strength, and fatigue strength can be improved by using the developed DSB tool. This makes it possible to process complicated, thin-walled parts, such as engine and turbine blades, which are supposed to have great potential applications in the automobile and aerospace industries.
一种新型双面抛光工具对薄壁金属材料表面强化的研究
抛光是一种表面处理过程,以产生光滑的表面。由于它可以在一个工序中提高材料的机械性能,如表面硬度、耐磨性、疲劳强度等,因此在工业上被广泛应用于提高机械零件的表面质量。但是,由于抛光力高,很难使用薄材料的加工,因为这种材料在加工过程中容易变形。本研究设计并制造了一种新型的双面抛光工具,该工具可以对薄板材料进行双面抛光。开发的DSB工具通过单个输出对称地移动两侧的抛光尖端,以方便位置控制。两侧的抛光力相互抵消,加工过程中引起弯曲变形的力矩被抑制。利用所开发的工具加工不同的薄板金属材料,证实了抛光过程中的变形受到抑制。通过对加工试样表面性能的研究,发现使用DSB刀具可以提高表面粗糙度、表面硬度、抗拉强度和疲劳强度。这使得加工复杂的薄壁部件成为可能,例如发动机和涡轮叶片,这些部件在汽车和航空航天工业中具有巨大的应用潜力。
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来源期刊
International Journal of Automation Technology
International Journal of Automation Technology AUTOMATION & CONTROL SYSTEMS-
CiteScore
2.10
自引率
36.40%
发文量
96
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