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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Comparison of 5-axis finish machining of hydroforming die inserts
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Comparison of 5-axis finish machining of hydroforming die inserts

机译:液压成型模具嵌件的五轴精加工比较

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The recent growth in hydroforming technology has sparked interest in alternative methods to the current conventional die manufacturing techniques. Hydroforming dies typically have shallow forming channels and open, low curvature surfaces, making them ideally suited for 5-axis machining. To fully appreciate the benefits and to properly demonstrate the capabilities of 5-axis machining for hydroforming dies, a comparison of 5-axis and 3-axis finish machining was done. Two hydroforming die insert sets were machined on a 5-axis machine with a tilt/rotary table. The tool paths for 5-axis machining were generated using custom software based on a modified form of a tool positioning strategy called the principal axis method. The quality of generated 3-axis tool paths was verified against the machining times of a third set of die inserts, similar to those machined in 5-axis, by an independent industrial mould and die manufacturer using a 3-axis high-speed machine. A comparison of the generated 3-axis paths versus the 5-axis paths for one of the die inserts was made using total finish machining tool path lengths to eliminate differences in machines. The results show that the generated 3-axis tool paths are longer than the 5-axis paths by at least 247%. The paper discusses the different tool-path generation methods along with the geometry of cusp formation and the effect of tool selection. Methods to improve the 3-axis results are also presented.
机译:液压成形技术的最新发展引起了人们对当前常规模具制造技术的替代方法的兴趣。液压成型模具通常具有较浅的成型通道和开放的低曲率表面,因此非常适合5轴加工。为了充分理解其优点并正确演示5轴加工液压成型模具的功能,对5轴和3轴精加工进行了比较。在带有倾斜/旋转工作台的5轴机床上加工了两个液压成型模具镶件组。使用定制软件,基于称为主轴方法的刀具定位策略的改进形式,生成了用于5轴加工的刀具路径。由独立的工业模具和模具制造商使用3轴高速机床,对照第三组模具镶件的加工时间(与在5轴中加工的刀具相似),验证了生成的3轴刀具路径的质量。使用总精加工刀具路径长度来消除模具间的差异,比较其中一个模具插入件生成的3轴路径和5轴路径。结果表明,生成的3轴刀具路径比5轴路径长至少247%。本文讨论了不同的刀具路径生成方法,以及尖点形成的几何形状和刀具选择的效果。还提出了改善3轴结果的方法。

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