基于切削稳定性与表面质量约束的 铣削工艺参数优化研究
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TH113. 1 TG506. 5 TP391

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国家自然科学基金 (51705058)、中国博士后科学基金(2018M633314)、重庆市博士后科研项目(XmT2018040)、2021 重庆市研究生科研创新项目(CYS21317)资助


Optimization of milling process parameters considering the constraints of cutting stability and surface quality
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    摘要:

    铣削工艺系统的动态特性随着刀具夹持长度改变而变化,影响关联的铣削稳定性与加工表面质量,进而导致铣削加工 的工艺规划具有不确定性。 针对此问题,本文综合刀具悬伸量与传统铣削用量作为输入,分别建立极限切削深度与表面粗糙度 的反向传播神经网络模型(BPNN),并进一步以其表达铣削稳定性与加工质量约束,构建以刀具悬伸量和粗/ 精加工阶段铣削 用量为优化变量,以粗/ 精铣总加工时间为目标的铣削工艺参数优化模型,采用麻雀搜索算法( SSA)对模型进行寻优求解。 以 某型数控机床的夹具型腔铣削加工为例,采用刀具悬伸量与各阶段铣削用量的优化配置进行加工实验,总切削时间 12. 577 min 与表面粗糙度值 3. 01 μm 验证了优化模型的可行性和有效性。

    Abstract:

    The dynamic characteristics of the milling process system respond to the variation tool clamping length, which affect the related milling stability and machined surface quality. In further, they lead to the uncertainty of milling process planning. To address this issue, the tool overhang length and traditional milling parameters are combined as the inputs. Then, two back propagation neural networks (BPNNs) are introduced to predict the limiting axial cutting depth and the surface roughness, respectively. Furthermore, two BPNNs are used to express the constraints of milling stability and machining quality. Then, an optimization model is formulated to decrease the total cutting time of the rough and finish milling processes, where the tool overhang length and the milling parameters for rough and finish processes are designed as the optimization variables. The sparrow search algorithm is used to solve the optimization model. A case study is implemented on a CNC machine tool to milling the fixture cavity. The optimal configuration of tool overhang length and milling parameters are achieved. The total cutting time is 12. 577 min and the measured surface roughness is 3. 01 μm, which verify the feasibility and effectiveness of the proposed optimization model.

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邓聪颖,叶 波,禄 盛,林丽君,苗建国.基于切削稳定性与表面质量约束的 铣削工艺参数优化研究[J].仪器仪表学报,2021,(11):190-199

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  • 在线发布日期: 2023-06-28
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