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STUDY ON NON-AXISYMMETRIC 3D CURVED SURFACE TURNING BY DRIVEN-TYPE ROTARY TOOL SYNCHRONIZED WITH SPINDLE

机译:从动式旋转工具与主轴同步的非轴对称3D弯曲表面转动

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Since shifting to electric vehicles as a countermeasure against global warming is not always easy to complete, the hybrid car has been considered as another possible solution. However, based on the calculation of total CO_2 emissions, all hybrid cars which will constitute 90% of all cars are expected to be equipped with an internal combustion engine even after 2030. Therefore, further efficiency improvement of the internal combustion engine is necessary. One of the key factors is the variable valve timing and variable lift with the 3D cam mechanism. Since conventional technology uses a complicated link mechanism and servo motor control, this leads a problem to set into small cars or motorcycles because they cannot afford to install the variable valve timing and variable lift with cam mechanism. To solve this problem, a cam shape with a three-dimensional curved surface has been proposed. In order to create this shape, the machining method for non-axisymmetric curved surface turning (NACS-Turning) is required. To build the new svstem, our research group has proposed a new machining method using a driven type rotary tool and a linear motor driven moving table to enable to achieve NACS-Turning. In this new system, a new tool rotation axis (B axis) is adopted to synchronize its rotational position with the rotational position of the spindle (C axis) holding the workpiece, the X_1-, X_2-, and Z-Axis positions in total. In this paper, the new hardware configuration is proposed to overcome the present machining accuracy.
机译:由于转移到电动车辆作为反对全球变暖的对策并不总是易于完成,因此混合动力汽车被认为是另一种可能的解决方案。然而,根据总计柯尔总排放的计算,所有占所有汽车中90%的混合动力车均均应在2030年之后配备内燃机。因此,需要进一步提高内燃机。其中一个关键因素是具有3D凸轮机构的可变气门正时和可变升力。由于常规技术使用复杂的连杆机构和伺服电机控制,因此可以设置成小型汽车或摩托车的问题,因为它们不能与凸轮机构安装可变气门正时和可变升力。为了解决这个问题,已经提出了一种具有三维弯曲表面的凸轮形状。为了产生这种形状,需要用于非轴对称弯曲表面转动(NACS转动)的加工方法。为了建立新的SVStem,我们的研究组提出了一种使用驱动式旋转工具和线性电动机驱动移动台的新加工方法,以实现NACS转向。在该新系统中,采用新的刀具旋转轴(B轴)与保持工件的主轴(C轴)的旋转位置同步其旋转位置,X_1-,X_2-和Z轴位置总计。在本文中,提出了新的硬件配置来克服当前加工精度。

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