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TOOL PATH OPTIMIZATION OF POCKET CORNER 被引量:1
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作者 赵振宇 王成勇 +1 位作者 吴世雄 周后明 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2007年第2期164-169,共6页
In milling around sharp corners, residual materials are left at sharp corners when the stepover is extremely long in the contour-parallel tool path. Milling force at the sharp corner rises momentarily due to the incre... In milling around sharp corners, residual materials are left at sharp corners when the stepover is extremely long in the contour-parallel tool path. Milling force at the sharp corner rises momentarily due to the increase of the cutter contact length, thus shortening the tool life and leading to machine chatter, even cutter breakage. Then a tool path improvement method by inserting biarc transition segments in the contour-parallel tool path is proposed for milling the pocket. Using the method, the cutter moves along the biarc transition tool path. And the corner material is removed. The improved tool path is continuous for clearing residual materials at the sharp corner. Finally, the machining experiment validates the proposed method. 展开更多
关键词 high speed milling CORNER tool path optimization
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Theoretical and Experimental Research on Error Analysis and Optimization of Tool Path in Fabricating Aspheric Compound Eyes by Precision Micro Milling 被引量:4
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作者 CHEN Mingjun XIAO Yong +2 位作者 TIAN Wenlan WU Chunya CHU Xin 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第3期558-566,共9页
Structure design and fabricating methods of three-dimensional (3D) artificial spherical compound eyes have been researched by many scholars. Micro-nano optical manufacturing is mostly used to process 3D artificial c... Structure design and fabricating methods of three-dimensional (3D) artificial spherical compound eyes have been researched by many scholars. Micro-nano optical manufacturing is mostly used to process 3D artificial compound eyes. However, spherical optical compound eyes are less at optical performance than the eyes of insects, and it is difficult to further improve the imaging quality of compound eyes by means of micro-nano optical manufacturing. In this research, nonhomogeneous aspheric compound eyes (ACEs) are designed and fabricated. The nonhomogeneous aspheric structure is applied to calibrate the spherical aberration. Micro milling with advantages in processing three-dimensional micro structures is adopted to manufacture ACEs. In order to obtain ACEs with high imaging quality, the tool paths are optimized by analyzing the influence factors consisting of interpolation allowable error, scallop height and tool path pattern. In the experiments, two kinds of ACEs are manufactured by micro-milling with different too path patterns and cutting parameter on the miniature precision five-axis milling machine tool. The experimental results indicate that the ACEs of high surface quality can be achieved by circularly milling small micro-lens individually with changeable cutting depth. A prototype of the aspheric compound eye (ACE) with surface roughness (Ra) below 0.12 p.m is obtained with good imaging performance. This research ameliorates the imaging quality of 3D artificial compound eyes, and the proposed method of micro-milling can improve surface processing quality of compound eyes. 展开更多
关键词 aspheric compound eyes (ACEs) micro milling tool path optimization
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Tool path generation and optimization for freeform surface diamond turning based on an independently controlled fast tool servo
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作者 Yusuke Sato Jiwang Yan 《International Journal of Extreme Manufacturing》 SCIE EI 2022年第2期145-160,共16页
Diamond turning based on a fast tool servo(FTS)is widely used in freeform optics fabrication due to its high accuracy and machining efficiency.As a new trend,recently developed high-frequency and long-stroke FTS units... Diamond turning based on a fast tool servo(FTS)is widely used in freeform optics fabrication due to its high accuracy and machining efficiency.As a new trend,recently developed high-frequency and long-stroke FTS units are independently driven by a separate control system from the machine tool controller.However,the tool path generation strategy for the independently controlled FTS is far from complete.This study aims to establish methods for optimizing tool path for the independent control FTS to reduce form errors in a single step of machining.Different from the conventional integrated FTS control system,where control points are distributed in a spiral pattern,in this study,the tool path for the independent FTS controller is generated by the ring method and the mesh method,respectively.The machined surface profile is predicted by simulation and the parameters for the control point generation are optimized by minimizing the deviation between the predicted and the designed surfaces.To demonstrate the feasibility of the proposed tool path generation strategies,cutting tests of a two-dimensional sinewave and a micro-lens array were conducted and the results were compared.As a result,after tool path optimization,the peak-to-valley form error of the machined surface was reduced from 429 nm to 56 nm for the two-dimensional sinewave by using the ring method,and from 191 nm to 103 nm for the micro-lens array by using the mesh method,respectively. 展开更多
关键词 ultraprecision machining diamond turning fast tool servo freeform surface tool path optimization
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ENVELOPING THEORY BASED METHOD FOR THE DETERMINATION OF PATH INTERVAL AND TOOL PATH OPTIMIZATION FOR SURFACE MACHINING
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作者 Zhou Ji Zhou Yanhong Zhan Yong School of Mechanical Science & Engineering, Huazhong University of Science & Technology 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 1999年第2期33-38,共6页
An enveloping theory based method for the determination of path interval in three axis NC machining of free form surface is presented, and a practical algorithm and the measures for improving the calculating efficien... An enveloping theory based method for the determination of path interval in three axis NC machining of free form surface is presented, and a practical algorithm and the measures for improving the calculating efficiency of the algorithm are given. Not only the given algorithm can be used for ball end cutter, flat end cutter, torus cutter and drum cutter, but also the proposed method can be extended to arbitrary milling cutters. Thus, the problem how to strictly calculate path interval in the occasion of three axis NC machining of free form surfaces with non ball end cutters has been resolved effectively. On this basis, the factors that affect path interval are analyzed, and the methods for optimizing tool path are explored. 展开更多
关键词 THREE AXIS Surface machining path interval Enveloping theory tool path optimization
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OPTIMAL ALGORITHM FOR NO TOOl-RETRACTIONS CONTOUR-PARALLEL OFFSET TOOL-PATH LINKING 被引量:8
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作者 HAO Yongtao JIANG Lili 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2007年第2期21-25,共5页
A contour-parallel offset (CPO) tool-path linking algorithm is derived without toolretractions and with the largest practicability. The concept of "tool-path loop tree" (TPL-tree) providing the information on th... A contour-parallel offset (CPO) tool-path linking algorithm is derived without toolretractions and with the largest practicability. The concept of "tool-path loop tree" (TPL-tree) providing the information on the parent/child relationships among the tool-path loops (TPLs) is presented. The direction, tool-path loop, leaf/branch, layer number, and the corresponding points of the TPL-tree are introduced. By defining TPL as a vector, and by traveling throughout the tree, a CPO tool-path without tool-retractions can be derived. 展开更多
关键词 Contour-parallel offset machining tool-path loops tool-path loop tree optimal algorithm
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Designing and Optimization of an Off-line Programming System for Robotic Belt Grinding Process 被引量:11
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作者 WANG Wei YUN Chao +1 位作者 ZHANG Ling GAO Zhihui 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2011年第4期647-655,共9页
Off-line programming (OLP) system becomes one of the most important programming modules for the robotic belt grinding process, however there lacks research on increasing the grinding dexterous space depending on the... Off-line programming (OLP) system becomes one of the most important programming modules for the robotic belt grinding process, however there lacks research on increasing the grinding dexterous space depending on the OLP system. A new type of grinding robot and a novel robotic belt grinding workcell are forwarded, and their features are briefly introduced. An open and object-oriented off-line programming system is developed for this robotic belt grinding system. The parameters of the trimmed surface are read from the initial graphics exchange specification (IGES) file of the CAD model of the workpiece. The deBoor-Cox basis function is used to sample the grinding target with local contact frame on the workpiece. The numerical formula of inverse kinematics is set up based on Newton's iterative procedure, to calculate the grinding robot configurations corresponding to the grinding targets. After the grinding path is obtained, the OLP system turns to be more effective than the teach-by-showing system. In order to improve the grinding workspace, an optimization algorithm for dynamic tool frame is proposed and performed on the special robotic belt grinding system. The initial tool frame and the interval of neighboring tool frames are defined as the preparation of the algorithm. An optimized tool local frame can be selected to grind the complex surface for a maximum dexterity index of the robot. Under the optimization algorithm, a simulation of grinding a vane is included and comparison of grinding workspace is done before and after the tool frame optimization. By the algorithm, the grinding workspace can be enlarged. Moreover the dynamic tool frame can be considered to add one degree-of-freedom to the grinding kinematical chain, which provides the theoretical support for the improvement of robotic dexterity for the complex surface grinding. 展开更多
关键词 off-line programming robotic belt grinding path generation tool optimization
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基于OR-Tools的某市高校蔬菜配送路径优化
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作者 陈卿诗 邱文倩 莫立佳 《价值工程》 2024年第5期62-65,共4页
车辆路径优化问题是运营研究中的一个重要领域,其目的是降低配送成本、提高配送效率。本文以某市高校蔬菜配送车辆路径优化问题为案例,研究如何使用OR-Tools开源软件库来解决这个问题。首先,本文分析了某市高校蔬菜配送车辆的现实需求,... 车辆路径优化问题是运营研究中的一个重要领域,其目的是降低配送成本、提高配送效率。本文以某市高校蔬菜配送车辆路径优化问题为案例,研究如何使用OR-Tools开源软件库来解决这个问题。首先,本文分析了某市高校蔬菜配送车辆的现实需求,包括行驶距离、需求量、车辆容量、数量等参数。在此基础上,建立了一个车辆路径优化模型,旨在最小化车辆总行驶距离或成本,同时满足车辆容量、配送高校顺序等约束条件。其次,使用Python3.8编写代码,借助OR-Tools以及matplotlib分析求解此模型;在求解模型过程中,本文针对某市高校蔬菜配送数据集进行测试。结果表明,其方法能够有效地减少配送车辆的行驶距离和降低配送成本。由此,本文利用OR-Tools软件库成功地研究某市高校蔬菜配送车辆路径优化问题,为实际物流配送提供了有效的决策支持。 展开更多
关键词 车辆路径优化 OR-tools 配送成本
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数控机床复杂曲面零件的加工路径优化与误差补偿技术研究 被引量:2
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作者 刘志旭 何丽娟 《模具制造》 2025年第1期154-156,共3页
通过直线段逼近法、样条曲线法以及Voronoi图与Delaunay三角形法等路径规划算法,对加工轨迹进行优化,以适应复杂曲面的高精度加工需求。采用遗传算法、蚁群算法和粒子群优化算法等智能优化算法,实现加工路径的优化。针对数控机床在加工... 通过直线段逼近法、样条曲线法以及Voronoi图与Delaunay三角形法等路径规划算法,对加工轨迹进行优化,以适应复杂曲面的高精度加工需求。采用遗传算法、蚁群算法和粒子群优化算法等智能优化算法,实现加工路径的优化。针对数控机床在加工过程中的几何、热和动态误差,提出了一套适用于复杂曲面零件加工的综合误差补偿技术。 展开更多
关键词 数控机床 复杂曲面加工 路径优化 误差补偿
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基于PSO-ACO的刀具路径优化在加工长工件热变形控制中的研究
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作者 任重义 刘继宁 《机床与液压》 北大核心 2025年第18期97-103,共7页
在超长工作台数控机床加工横梁过程中,切削热累积导致的长工件热变形显著影响加工精度。针对该问题,提出一种基于PSO-ACO混合算法的刀具路径优化方法,以降低加工过程中的热输入与控制热误差。对比所提方法与传统方法、蚁群优化方法、粒... 在超长工作台数控机床加工横梁过程中,切削热累积导致的长工件热变形显著影响加工精度。针对该问题,提出一种基于PSO-ACO混合算法的刀具路径优化方法,以降低加工过程中的热输入与控制热误差。对比所提方法与传统方法、蚁群优化方法、粒子群优化方法、遗传优化方法的刀具路径,结果表明:PSO-ACO方法优化路径的波动小,显著优于其他优化方法;与传统刀具加工路径相比,经PSO-ACO方法优化后总加工路径长度和平均加工时间均缩短25%。基于此,建立传统加工路径和PSO-ACO方法优化路径对工件温度的影响模型,采用有限元仿真对比二者对长工件热变形的影响。结果表明:与传统刀具加工路径相比,经PSO-ACO方法优化后,工件总体温升降低约100℃,工件变形从1.660 mm降低至0.907 mm,且最大应力降低至屈服强度以下。最后通过加工实验验证了PSO-ACO优化刀具路径在维持刀具稳定性的同时,显著降低了加工过程中的几何误差,证明了所提方法的有效性与可行性。 展开更多
关键词 超长工作台 切削热累积 刀具路径优化 热变形
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基于VERICUT外花键仿真加工优化研究
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作者 杨柳 冯锟 雒钰花 《模具制造》 2025年第10期13-15,共3页
对空芯阶梯轴零件的结构和加工难点进行了分析,制定了合理的加工工艺,设计了专用夹具,并基于UG和VERICUT软件实现了数控加工程序的编制,完成了刀路的仿真验证及优化,避免实际加工过程中出现刀具碰撞或与夹具干涉的情况发生,缩短加工时间... 对空芯阶梯轴零件的结构和加工难点进行了分析,制定了合理的加工工艺,设计了专用夹具,并基于UG和VERICUT软件实现了数控加工程序的编制,完成了刀路的仿真验证及优化,避免实际加工过程中出现刀具碰撞或与夹具干涉的情况发生,缩短加工时间,最后采用FANUC4轴立式加工中心进行了铣削加工。结果表明,该方法提高了零件的加工效率,为空芯阶梯轴外花键的实际加工提供参考。 展开更多
关键词 外花键 仿真 刀路轨迹 优化控制
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高精度齿轮传动基座加工工艺优化方案研究
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作者 夏颖怡 汤田 《模具制造》 2025年第3期162-164,共3页
齿轮传动基座普遍存在尺寸跨度大,形状复杂多变,多特征关联性强,尺寸精度要求高,加工难度大,加工工艺复杂等特点,以典型齿轮传动基座为例,利用现有的车铣复合加工中心设计并优化零件的加工工艺、加工刀路,解决刀路不连续的问题。通过研... 齿轮传动基座普遍存在尺寸跨度大,形状复杂多变,多特征关联性强,尺寸精度要求高,加工难度大,加工工艺复杂等特点,以典型齿轮传动基座为例,利用现有的车铣复合加工中心设计并优化零件的加工工艺、加工刀路,解决刀路不连续的问题。通过研究实验数据表明,经过优化刀路及加工工艺后,切削效率显著提升,工件表面粗糙度得到明显降低。 展开更多
关键词 高精度 刀路优化 切削效率 质量
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基于刀具许用载荷的复杂型腔多刀具优化铣削方法 被引量:1
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作者 韩飞燕 赵一鹏 +4 位作者 李洪阳 张浩 王彻 彭先龙 张传伟 《中国机械工程》 北大核心 2025年第5期986-994,共9页
对于2.5D复杂型腔数控铣削粗加工,现有刀具组合优选方法未充分考虑刀具的实际许用载荷,且采用环切刀轨加工时切削载荷会突变,易导致崩刃、断刀,影响铣削粗加工的安全性和效率,为此,提出了一种基于刀具许用载荷的复杂型腔多刀具优化铣削... 对于2.5D复杂型腔数控铣削粗加工,现有刀具组合优选方法未充分考虑刀具的实际许用载荷,且采用环切刀轨加工时切削载荷会突变,易导致崩刃、断刀,影响铣削粗加工的安全性和效率,为此,提出了一种基于刀具许用载荷的复杂型腔多刀具优化铣削方法。建立了以刀具许用载荷为约束的铣削加工效率优化模型,并基于遗传算法从可用刀具集中选取最优刀具组合;根据所选刀具组合,给出了复杂型腔自适应加工区域划分方法及多刀具加工摆线-环切混合刀轨生成方法;以某2.5D复杂型腔零件铣削粗加工为对象进行算例分析,在刀具许用载荷约束下选取了最优刀具组合并生成了摆线-环切混合刀轨;最后与NX软件的摆线铣削方法进行加工对比验证,结果表明,所提方法的加工效率提高了25.9%,加工过程中机床负载变化平稳,验证了所提多刀具优化铣削方法可行且有效。 展开更多
关键词 数控铣削 复杂型腔 刀具许用载荷 刀具组合优选 摆线-环切混合刀轨
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轮毂毛刺机器人打磨刀路规划与工具姿态优化 被引量:1
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作者 郭万金 孙浩 +3 位作者 利乾辉 田玉祥 曹雏清 赵立军 《中国机械工程》 北大核心 2025年第6期1222-1237,共16页
为解决机器人在打磨去除轮毂窗口边缘毛刺时存在刀位点稀疏或冗余与分布不均、作业工具姿态获取困难和变化剧烈等问题,提出一种含有刀位点规划和工具姿态获取与优化的轮毂窗口毛刺机器人打磨路径规划方法。采用NURBS曲线形态特征参数描... 为解决机器人在打磨去除轮毂窗口边缘毛刺时存在刀位点稀疏或冗余与分布不均、作业工具姿态获取困难和变化剧烈等问题,提出一种含有刀位点规划和工具姿态获取与优化的轮毂窗口毛刺机器人打磨路径规划方法。采用NURBS曲线形态特征参数描述轮毂窗口边缘曲线,开展轮毂窗口边缘机器人刀位点规划;提出一种考虑轮毂点云和窗口表面特征的轮毂窗口内侧面法向量获取方法,并建立刀位点处局部坐标系,描述机器人工具姿态;建立机器人末端工具姿态优化模型并优化求解,获得连续平滑的轮毂窗口机器人末端工具姿态;开展轮毂窗口边缘毛刺机器人打磨实验,验证所提轮毂窗口毛刺机器人打磨路径规划方法的有效性。结果表明,在轮毂窗口毛刺打磨去除过程中,机器人关节角曲线较平滑,机器人可以精准到达所规划的刀位点且其末端工具较好地接触窗口边缘并保持适宜的加工姿态;经毛刺打磨后的不同轮毂窗口边缘倒角最大不超过1.50 mm,多处不同位置倒角测量的最大平均值为0.64 mm,均在工艺规范规定范围内。 展开更多
关键词 机器人打磨 刀路规划 刀位点规划 工具姿态优化 轮毂窗口
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基于UG的泵体零件五轴编程及加工工艺
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作者 张浩 张帅帅 +1 位作者 赖新建 罗军 《机电工程技术》 2025年第18期154-159,共6页
为解决泵体零件因复杂曲面、镂空特征及多向加工需求带来的加工难题,以泵体零件为研究对象,分析其结构特点与技术要求后,提出五轴数控加工工艺方案。通过建立系统装夹方案、安排工艺步骤、设计毛坯、选用刀具尺寸及切削参数,优化定位与... 为解决泵体零件因复杂曲面、镂空特征及多向加工需求带来的加工难题,以泵体零件为研究对象,分析其结构特点与技术要求后,提出五轴数控加工工艺方案。通过建立系统装夹方案、安排工艺步骤、设计毛坯、选用刀具尺寸及切削参数,优化定位与装夹方案。深入探讨基于UG软件的五轴数控编程方法,利用UG CAM模块生成刀具路径,重点研究工艺流程优化、关键编程技巧、曲面加工策略及刀路参数算法,结合加工仿真验证工艺合理性,通过反复仿真校验,再经实际加工验证,结果显示,零件加工效率与精度质量显著提升,与传统加工方式对比,加工精度误差降低30%,加工效率提升40%。验证表明,该方法有效提升泵体零件加工精度与效率,为复杂零件五轴加工提供完整技术参考。 展开更多
关键词 五轴加工 泵体零件 UG编程 加工工艺 数控编程 刀路优化
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核压力容器堆芯段筒体锻件高效加工技术
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作者 张泰铭 段军刚 +1 位作者 李松 吴子乾 《一重技术》 2025年第4期41-43,共3页
针对核压力容器堆芯段筒体锻件加工,提出高效数控加工编程技术。通过合理划分加工区域,构建毛坯模型,优化刀具轨迹,再用仿真对比制定加工工艺方案,实际验证可提升效率、降低成本。
关键词 核压力容器 数控加工 刀轨优化
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铝合金精密铸造中数控加工工艺参数优化研究 被引量:1
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作者 崔业农 《现代制造技术与装备》 2025年第6期121-123,共3页
在铝合金精密铸造领域,如果数控加工工艺参数选择不当,会导致加工精度难以保证、表面质量欠佳,还会降低生产效率,增加制造成本。针对这一难题,从刀具路径拓扑优化、切削参数调优、模糊逻辑异常情况控制3个方面提出数控加工工艺参数优化... 在铝合金精密铸造领域,如果数控加工工艺参数选择不当,会导致加工精度难以保证、表面质量欠佳,还会降低生产效率,增加制造成本。针对这一难题,从刀具路径拓扑优化、切削参数调优、模糊逻辑异常情况控制3个方面提出数控加工工艺参数优化方案。实验结果表明,优化后的工艺参数在各项测试指标上均表现出显著优势,不仅大幅提高铝合金精密铸造的加工精度与效率,而且降低刀具磨损率,能够为实际生产提供有力的技术支持。 展开更多
关键词 数控加工 工艺参数优化 刀具路径 切削参数 铝合金精密铸造
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基于PowerMill汽车外覆盖件模具精加工刀路的优化及应用
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作者 何智力 叶艺海 李浩杰 《模具制造》 2025年第8期13-15,共3页
针对汽车外覆盖件模具精加工中传统刀路策略的局限性,基于PowerMill软件平台提出了一种综合优化方案。通过分析单一投影往复策略与平行精加工策略的缺陷,结合多种策略的优势进行参数优化及区域划分,显著提升了A级曲面质量与整体加工效率。
关键词 POWERMILL 汽车外覆盖件 刀路优化 A级曲面
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发动机缸体加工过程中多轴联动刀具轨迹优化
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作者 马成立 《内燃机与配件》 2025年第19期58-60,共3页
发动机缸体是汽车发动机的关键部件,具有复杂的自由曲面结构,需要采用五轴联动加工中心完成精密加工。然而,传统的刀具路径规划方法难以满足加工效率、加工质量和工具寿命等多目标需求。本文研究针对发动机缸体自由曲面特征,提出发动机... 发动机缸体是汽车发动机的关键部件,具有复杂的自由曲面结构,需要采用五轴联动加工中心完成精密加工。然而,传统的刀具路径规划方法难以满足加工效率、加工质量和工具寿命等多目标需求。本文研究针对发动机缸体自由曲面特征,提出发动机缸体加工过程中多轴联动刀具轨迹优化路径,如采用基于机器学习的刀具轨迹智能生成方法、基于多目标建模的轨迹优化及求解策略,为提升发动机缸体加工质量和效率提供新途径。 展开更多
关键词 发动机缸体加工 多轴联动加工 刀具轨迹优化
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基于五轴数控技术的复杂模具零件加工路径优化研究
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作者 孙丽娟 杜奇 张英明 《现代制造技术与装备》 2025年第7期156-161,共6页
随着制造业对复杂模具零件精度要求的提升,传统加工方法难以满足复杂几何形状零件的加工需求。基于五轴数控技术,提出一种新的刀具路径优化方法,即引入精确的接触路径和几何偏差最小化策略,结合刀具包络面与齿面相切的条件,优化螺旋锥... 随着制造业对复杂模具零件精度要求的提升,传统加工方法难以满足复杂几何形状零件的加工需求。基于五轴数控技术,提出一种新的刀具路径优化方法,即引入精确的接触路径和几何偏差最小化策略,结合刀具包络面与齿面相切的条件,优化螺旋锥齿轮零件的加工路径,旨在克服加工过程中路径规划与精度控制的挑战。仿真与实际实验结果表明,所提方法能够有效提高加工效率与精度,确保零件具有较好的接触性能和较低的加工误差。该研究为复杂模具零件的数控加工提供了理论支持和优化方案。 展开更多
关键词 复杂模具零件 五轴数控技术 螺旋锥齿轮 刀具路径优化
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Global optimization of tool path for five-axis flank milling with a cylindrical cutter 被引量:23
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作者 DING Han1 & ZHU LiMin2 1 State Key Laboratory of Digital Manufacturing Equipment and Technology, Huazhong University of Science and Technology, Wuhan 430074, China 2 School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China 《Science China(Technological Sciences)》 SCIE EI CAS 2009年第8期2449-2459,共11页
In this paper, optimum positioning of cylindrical cutter for five-axis flank milling of non-developable ruled surface is addressed from the perspective of surface approximation. Based on the developed interchangeabili... In this paper, optimum positioning of cylindrical cutter for five-axis flank milling of non-developable ruled surface is addressed from the perspective of surface approximation. Based on the developed interchangeability principle, global optimization of the five-axis tool path is modeled as approximation of the tool envelope surface to the data points on the design surface following the minimum zone criterion recommended by ANSI and ISO standards for tolerance evaluation. By using the signed point-to-surface distance function, tool path plannings for semi-finish and finish millings are formulated as two constrained optimization problems in a unified framework. Based on the second order Taylor approximation of the distance function, a sequential approximation algorithm along with a hierarchical algorithmic structure is developed for the optimization. Numerical examples are presented to confirm the validity of the proposed approach. 展开更多
关键词 FIVE-AXIS FLANK milling tool path optimization tool axis trajectory SURFACE SURFACE approximation distance function MINIMAX optimization
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