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A novel approach to vibratory finishing: Double vibro-polishing

机译:一种新的振动精加工方法:双振动抛光

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摘要

In most conventional vibratory finishing processes, the vibration flow is in the following order: vibratory motor, machine walls, and ultimately the media which impart finishing action to the components. The components are either freely floating or secured to a fixture in the bulk of media flow throughout the process. Commonly used fixtures are of the mechanical type where components are held on the fixture which is either rigidly bolted to the vibratory finishing machine or freely floating in the media. In this paper, a novel polishing method is introduced: double vibro-polishing. The polishing process deploys a vibratory fixture incorporated in a conventional vibratory finishing setup so that dual vibrations are induced on the components. Ti-6Al-4V workpieces are attached to a vibratory fixture which is immersed in a vibratory finishing trough containing plastic media. Two modes are compared to evaluate asperity changes: vibratory fixture in the silent mode which is representative of a mechanical fixture, and the active mode giving rise to dual vibro-polishing. Average surface roughness (R-a) is measured using a surface profiler every 15 min until 180 min of process time and the results are plotted. The vibratory fixture demonstrates improvement in the process times in terms of reaching the saturation R-a in a shorter period of time. Force sensors are incorporated onto the fixture to examine the reasons behind the faster finishing.
机译:在大多数传统的振动精加工过程中,振动流量是以下顺序:振动电机,机器壁,并最终赋予对部件进行整理作用的介质。组件在整个过程中自由地漂浮或固定到大部分介质流中的夹具。通常使用的夹具是机械类型,其中部件保持在固定装置上,该装置刚性地螺栓固定到振动精加工机或在介质中自由漂浮。本文介绍了一种新型抛光方法:双振动抛光。抛光过程占据常规振动精加工设置中的振动夹具部署,以便在组件上诱导双振动。 TI-6AL-4V工件连接到振动夹具,振动夹具浸入含有塑料介质的振动整理槽中。比较两种模式以评估粗糙度变化:静音模式中的振动夹具代表机械固定装置,以及产生双振动抛光的主动模式。使用表面分析仪每15分钟测量平均表面粗糙度(R-A),直至加工时间为180分钟,并绘制结果。振动夹具在较短的时间段内达到饱和R-A的方面表现出过程时间的改进。力传感器纳入夹具上,以检查更快的精加工背后的原因。

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