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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Machining Strategy to Adapt Cutting Conditions under Digital Copy Milling Concept
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Machining Strategy to Adapt Cutting Conditions under Digital Copy Milling Concept

机译:数字复制铣削概念下适应切削条件的加工策略

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Most machining tools are controlled by numerical control (NC) programs in order to achieve unmanned machining operations with high precision and improved productivity. However, all the movements of the machining tool are predetermined, and all instructions coded in the NC program are performed sequentially. Therefore, since the cutting process is not adaptable during unmanned machining, the cutting conditions should be set conservatively to avoid cutting difficulties. In this study, machining strategies for adapting the cutting process during a milling operation to avoid tool breakage and to stabilize cutting load have been integrated into an autonomous NC machining tool developed under the Digital Copy Milling (DCM) concept for generating a tool path in real time. In machining strategies, feed speed, radial and axial depths of cut are adapted according to cutting load detected from load cells in the machining table. Successful endmilling experiments verified the effectiveness of the developed machining strategy.
机译:大多数加工工具都由数控(NC)程序控制,以实现高精度的无人加工操作并提高生产率。但是,加工工具的所有运动都是预定的,并且在NC程序中编码的所有指令都是顺序执行的。因此,由于切削过程在无人加工过程中不适应,因此切削条件应保守设置以避免切削困难。在这项研究中,已经在数字复制铣削(DCM)概念下开发的用于自动生成刀具路径的自主NC加工刀具中集成了用于在铣削操作过程中适应切削过程以避免刀具损坏和稳定切削负荷的加工策略。时间。在加工策略中,进给速度,切削的径向和轴向深度会根据从加工台中测力传感器检测到的切削负荷进行调整。成功的立铣刀实验验证了开发的加工策略的有效性。

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