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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Patterns of Regenerative Milling Chatter Under Joint Influences of Cutting Parameters, Tool Geometries, and Runout
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Patterns of Regenerative Milling Chatter Under Joint Influences of Cutting Parameters, Tool Geometries, and Runout

机译:联合影响切割参数,工具几何形状和跳动下的再生铣削聊天的图案

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The regenerative milling chatter is usually regarded as some kind of bifurcation or chaos behaviors of the machining system. Although several chatter patterns such as the secondary Hopf, the period doubling, and the cyclic fold bifurcations were once reported, their relationships with cutting conditions remain undiscovered. This paper aims to uncover the dynamic mechanism of distinct chatter behaviors in general milling scenarios. First, two complementary methods, i.e., the generalized Runge-Kutta method and the time-domain simulation technique, are presented to jointly study the distribution rule of chatter patterns in stability lobe diagrams for milling processes with general flute-spacing tools considering runout. The theoretical predictions are validated by one published example and two cutting experiments under three different cutting conditions. Furthermore, the cutting signal characteristics and cutting surface topography of distinct chatter patterns are analyzed and compared in detail. On this basis, this paper studies the joint influences of cutting parameters, tool geometries, and runout on regenerative chatter behaviors with the proposed methods.
机译:再生铣削聊天通常被认为是加工系统的某种分叉或混沌行为。虽然诸如次级HOPF的几种颤动模式,但是曾经报道过次级跳跃和循环折叠分叉的循环折叠分叉等,但它们与切割条件的关系仍未被发现。本文旨在在一般铣削情景中揭示不同的喋喋不休行为的动态机制。首先,提出了两个互补方法,即广义跑步-Kutta方法和时域仿真技术,共同研究了考虑跳动的一般笛子间距工具的稳定性叶片图中的颤振图中的颤振图的分布规则。理论预测由一个公开的例子和两个在三种不同的切割条件下的切割实验验证。此外,分析并详细比较了不同的颤型图案的切割信号特性和切割表面形貌。在此基础上,本文研究了切割参数,工具几何形状和跳动对再生喋喋不休行为的关节影响。

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