首页> 外文会议>ASME international mechanical engineering congress and exposition >RPM-SYNCHRONOUS GRINDING - CONTROL CONCEPTS TO IMPROVE SURFACE QUALITIES FOR A HIGHLY EFFICIENT NON-CIRCULAR GRINDING APPROACH
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RPM-SYNCHRONOUS GRINDING - CONTROL CONCEPTS TO IMPROVE SURFACE QUALITIES FOR A HIGHLY EFFICIENT NON-CIRCULAR GRINDING APPROACH

机译:RPM同步磨削控制概念可提高表面质量,从而实现高效的非圆形磨削方法

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The RPM-Synchronous Grinding process offers new possibilities to generate defined macro- and micro-geometries on workpieces. With present technology, various macroscopic non-circular geometries must be grinded subsequently in an oscillating process where the X-axis is coupled with the rotary workpiece-spindle axis. Such workpieces can be machined in an ordinary plunge grinding process by implementing the approach of RPM-Synchronous Non-Circular Grinding. Therefore, the workpiece and the grinding wheel rotational rates are in a fixed ratio. A non-circular grinding wheel is used to transfer its geometry onto the workpiece. The authors use a unique machine tool for basic research and control concept development for RPM-Synchronous Grinding (RSG). The machine was especially designed for this RSG technology. Highest revolution rates on the workpiece spindle are mandatory for its success. The grinding approach is performed in a two-step process. For roughing, a highly porous vitrified bonded grinding wheel with medium grain size is used. It ensures high specific material removal rates for producing the non-circular geometry on the workpiece efficiently. A control algorithm adapts this process step, which uses acquired data from a piezoelectric three-component force sensor fixed at the tailstock-side of the grinding machine. For finishing, a grinding wheel with fine grain size is suited. This process step is tuned by a digital process adaption strategy. Roughing and finishing are performed consecutively among the same clamping of the workpiece with two locally separated grinding spindles. With the presented control and adaption concepts for RPM-Synchronous Grinding, a significant increase in surface quality on the workpiece is attained. The minimization of grinding wheel wear results concurrently. Especially the automotive industry shows big interest in RPM-Synchronous Non-Circular Grinding. This emerging trend in finishing machining opens up various fields of application.
机译:RPM同步磨削工艺为在工件上生成定义的宏观和微观几何形状提供了新的可能性。使用当前技术,随后必须在X轴与旋转工件主轴的轴耦合的振荡过程中研磨各种宏观的非圆形几何形状。通过实施RPM同步非圆磨削的方法,可以在普通的切入磨削过程中加工此类工件。因此,工件和砂轮的旋转速度是固定的比率。使用非圆形砂轮将其几何形状转移到工件上。作者将独特的机床用于RPM同步磨削(RSG)的基础研究和控制概念开发。该机器是专门为此RSG技术设计的。工件主轴的最高转速是其成功的必要条件。研磨方法分两步进行。为了进行粗加工,使用了具有中等粒度的高度多孔的玻璃化粘结砂轮。它可确保较高的特定材料去除率,以有效地在工件上产生非圆形几何形状。一种控制算法适用于该处理步骤,该步骤使用从固定在研磨机尾座侧的压电三分量力传感器获取的数据。为了进行精加工,适合使用细晶粒的砂轮。该过程步骤通过数字过程适应策略进行调整。用两个局部分开的磨削主轴在相同的工件夹紧过程中连续执行粗加工和精加工。通过提出的用于RPM同步磨削的控制和适应概念,可以显着提高工件的表面质量。同时实现了砂轮磨损的最小化。特别是汽车行业对RPM同步非圆磨削表现出了极大的兴趣。精加工的新兴趋势开辟了各种应用领域。

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