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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Wheel orientation calculation for helical rake flank sharpening of broaching tools
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Wheel orientation calculation for helical rake flank sharpening of broaching tools

机译:拉削刀螺旋刀侧锐化的轮定向计算

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摘要

Helical rake flank is an important structure of helical broach tools. Its perfect sharpening is crucial to maintain the working performance of the tool and prolong the tool life, which is obtained via proper wheel orientation and suitable grinding processes. In practical, wheels with diverse profiles are adopted to satisfy the sharpening for various rake flanks. Therefore, wheel orientation identification methods with strong robustness are expected to deal with general helical rake flank sharpening tasks. Besides, proper grinding processes should be devoted to helical rake flank sharpening to improve the quality of broach tool. This study developed a wheel orientation calculation method that combing the specific process for helical rake flank sharpening with involving discrete enveloping. Firstly, a general model for grinding wheel is established, and the swivel-tilt-based orientation and positioning parameters of wheel are given. Then, through approximating the grinding motion as a serial of discrete wheels, the machined profile on the broach tool axial-section is expressed as the external enveloping profile of the intersection curves between the wheels and the tool axial-section. After distinguishing the enveloping profile by points along radial direction, the derivation of the instant contact line was provided. Furthermore, the mathematic model of the specific process about helical broach rake flank sharpen is established to enhance the wheel orientation identification algorithm. At last, both experiments and simulations are implemented to verify the effectiveness of this method and to investigate the influences of the process constrains via solution space.
机译:螺旋前刀面是螺旋拉刀的重要结构。其完美的刃磨对于保持刀具的工作性能和延长刀具寿命至关重要,这是通过正确的砂轮方向和合适的磨削工艺实现的。在实际应用中,采用了不同轮廓的车轮,以满足不同前刀面的锐化。因此,具有很强鲁棒性的车轮方向识别方法有望处理一般的螺旋前刀面锐化任务。此外,为了提高拉刀的质量,应采用适当的磨削工艺对螺旋前刀面进行刃磨。本研究开发了一种结合螺旋前刀面刃磨具体过程和离散包络的车轮定位计算方法。首先,建立了砂轮的通用模型,给出了基于旋转倾斜的砂轮定位参数。然后,通过将磨削运动近似为一系列离散砂轮,将拉刀轴向截面上的加工轮廓表示为砂轮与刀具轴向截面相交曲线的外包络轮廓。通过沿径向的点识别包络轮廓,推导了瞬时接触线。此外,还建立了螺旋拉刀前刀面刃磨具体过程的数学模型,以增强车轮方向识别算法。最后,通过实验和仿真验证了该方法的有效性,并通过解空间研究了工艺约束的影响。

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