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Effective corner machining via a constant feed rate looping tool path

机译:通过恒定进给率循环刀具路径进行有效的角加工

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In the finish machining of a pocket corner, varying radial depth of cut is generally encountered by the end milling tool during the entry into and exit from the corner. This leads to substantial variability of the machining process. This paper presents the generation and application of a multiple looping tool path for corner machining with the objective to reduce the machining variability and improve the machining efficiency. Material removal rate is selected as the measure for the machining variability. To reduce the material removal rate for a straightforward corner machining tool path, feed rate needs to be decreased as the end mill approaches the corner apex and increased as it exits the corner. Instantaneous changes of feed rate are not possible in practice due to practical limitations on the servo drive system of common machine tools. A tool path of constant feed rate is thus preferred for effective corner machining. The looping tool path proposed in this work is composed of a series of smoothly connected linear and circular segments to ensure its applicability for all machine tools. For a given corner geometry, a single-cutter as well as a double-cutter strategy have been introduced to maximise the machining efficiency. Various case studies were carried out to examine the resulting material removal rate and total machining time for different machining operations.
机译:在腔角的精加工中,端铣刀在进入和离开角时通常会遇到变化的径向切削深度。这导致加工过程的实质性变化。本文介绍了一种用于角加工的多循环刀具路径的生成和应用,目的是减少加工变化并提高加工效率。选择材料去除率作为加工可变性的量度。为了降低直角加工刀具路径的材料去除率,需要在立铣刀接近拐角顶点时降低进给速率,并在离开拐角处时提高进给速率。由于对普通机床伺服驱动系统的实际限制,实际上不可能瞬时改变进给速度。因此,对于有效的角加工,首选恒定进给率的刀具路径。这项工作中提出的循环刀具路径由一系列平滑连接的线性和圆形部分组成,以确保其适用于所有机床。对于给定的转角几何形状,已经引入了单刀和双刀策略,以最大程度地提高加工效率。进行了各种案例研究,以检查不同加工操作的最终材料去除率和总加工时间。

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