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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Tool orientation optimization and location determination for four-axis plunge milling of open blisks
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Tool orientation optimization and location determination for four-axis plunge milling of open blisks

机译:刀具优化和定位确定开放式大叶刀的四轴切入

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摘要

Plunge milling has been widely adopted in the manufacturing industry to rough machine open blisks, and its objective is to remove stock material with high efficiency and machining stability. A current technique challenge is to calculate the tool orientation and locations (called plunger paths) in four-axis rough plunging of open blisks, so that the residual raw material left on the blades after roughing is close to the specified value. To address this challenge, a novel approach is proposed to optimize tool orientation and determine tool locations for four-axis plunge milling of open blisks. First, tool locations are determined with two principles without interfering the blades and hub. Second, tool orientation is optimized according to a new evaluation criterion. Then, considering the impact of previous tool paths, an in-process model of a blisk is used to calculate residual material. Finally, an experiment is conducted to verify this new approach. This approach can promote four-axis plunge milling in the open blisk manufacturing.
机译:柱塞铣削已在制造业中广泛用于粗加工机加工过的大圆盘,其目的是高效,高效地去除坯料。当前的技术挑战是在开孔的大四轴粗加工中计算刀具的方向和位置(称为柱塞路径),以使粗加工后留在叶片上的残留原料接近规定值。为了解决这一挑战,提出了一种新颖的方法来优化刀具方向并确定用于开放式叶盘的四轴切入铣削的刀具位置。首先,在不干扰刀片和轮毂的情况下,根据两个原则确定工具位置。其次,根据新的评估标准优化工具方向。然后,考虑到先前刀具路径的影响,将使用大刀在线过程模型来计算残留材料。最后,进行了实验以验证这种新方法。这种方法可以在开放式叶盘制造中促进四轴切入铣削。

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