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A computer controlled optical pin polishing machine

机译:电脑控制的光针抛光机

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摘要

A typical optical mold manufacturing process consists of turning or grinding of stainless steel molds and a manual polishing procedure to remove tool marks and other surface artifacts. This process can be time consuming and labor intensive. Recently, there are several computer controlled polishing systems being introduced to the industry for improving the polishing process such as magnetorhelogical finishing and precession polishing. However, these processes either have limitations on material selection or on cycle times. Polishing pressure is one of the most important parameters to control during a polishing process. There are designs with different mechanisms to maintain a constant polishing pressure from pressure-sensitive polishing arm to weight balance method. In this research program an innovative method was introduced to monitor and control the polishing pressure. A precision in line torque sensor is used to couple the polishing head and the motor. The primary feedback on the polishing axis is tool position. Once the polishing tool makes contact with the mold surface then the torque signal will be utilized as the primary feedback signal for minor adjustment on the polishing tool vertical position for maintaining constant pressure. A process using the pin polisher with different size diamond pastes was also developed.
机译:典型的光学模具制造过程包括对不锈钢模具进行车削或研磨以及手动抛光程序以去除工具痕迹和其他表面瑕疵。该过程可能是耗时且劳动密集的。最近,有几种计算机控制的抛光系统被引入工业,以改善抛光工艺,例如磁流变抛光和旋进抛光。但是,这些过程在材料选择或周期时间上都有局限性。抛光压力是在抛光过程中要控制的最重要参数之一。从压敏抛光臂到重量平衡方法,设计都有不同的机制来保持恒定的抛光压力。在该研究计划中,引入了一种创新方法来监视和控制抛光压力。精密在线扭矩传感器用于连接抛光头和电机。抛光轴的主要反馈是刀具位置。一旦抛光工具与模具表面接触,则扭矩信号将被用作主要反馈信号,以便在抛光工具的垂直位置上进行较小的调整以保持恒定的压力。还开发了一种使用针磨机处理不同尺寸钻石浆的工艺。

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