一种切削加工工艺参数智能优化方法及系统

By acquiring machining records and sensor signals, and combining them with machine tool power limitations and temperature peak areas, a load transfer path is generated, and the cutting depth and speed are adjusted. This solves the problem of unstable cutting parameter combinations in existing technologies and achieves reliable optimization of cutting parameters.

CN122411280APending Publication Date: 2026-07-17DONGGUAN ZHIYUAN CNC EQUIP MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
DONGGUAN ZHIYUAN CNC EQUIP MFG CO LTD
Filing Date
2026-06-17
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing cutting methods fail to effectively combine machine tool power, cutting thermal state, mechanical load, and vibration feedback, resulting in heat accumulation or load peak periods in the cutting parameter combination, which affects the reliability of parameter loading during the machining process.

Method used

By acquiring machining records and sensor signals, and combining machine tool power limitations, temperature peak areas, temperature differences in the cutting zone, and thermal diffusion rates, a load transfer path is generated. When the load peak period overlaps with the temperature peak period, the cutting depth and speed are adjusted to form a mechanically balanced configuration.

Benefits of technology

It achieves cutting parameter optimization under the combined constraints of power, temperature, load, and vibration feedback, thereby improving the parameter loading reliability of the machine tool control system and the stability of the machining process.

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Abstract

本申请属于智能控制技术领域,涉及一种切削加工工艺参数智能优化方法及系统。该方法包括:获取加工记录和传感器信号,确定包括切削速度、进给率和切削深度的初始参数集合;根据机床功率限制和温度峰值区域从初始参数集合中确定候选参数组合;根据切削区温差、热扩散速率、切削液冷却效果和热积累时长确定温度受控参数子集;根据切削力波动和节点应力分布生成载荷传递路径,在载荷峰值时段与温度峰值时段重叠时调整切削深度,得到力学平衡配置;根据疲劳累积、结构变形和振动反馈调整切削速度,生成切削参数组。本申请能够使切削参数生成过程同时受功率、热状态、载荷和振动状态约束。
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