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Thermal Error Modeling and Compensation Method for Spindle of Five-Axis CNC Machine Tools
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作者 Dongjun He 《控制工程期刊(中英文版)》 2025年第2期1-6,共6页
Thermal errors in CNC machine tools,particularly those involving the spindle,significantly affect machining accuracy and performance.These errors,caused by temperature fluctuations in the spindle and surrounding compo... Thermal errors in CNC machine tools,particularly those involving the spindle,significantly affect machining accuracy and performance.These errors,caused by temperature fluctuations in the spindle and surrounding components,result in dimensional deviations that can lead to poor part quality and reduced precision in high-speed manufacturing processes.This paper explores thermal error modeling and compensation methods for the spindle of five-axis CNC machine tools.A detailed analysis of the heat generation,transfer mechanisms,and finite element analysis(FEA)is presented to develop accurate thermal error models.Compensation techniques,such as model-based methods,sensor-based methods,real-time compensation algorithms,and hybrid approaches,are critically reviewed.This study also discusses the challenges in real-time compensation and the integration of thermal error compensation with machine tool control systems.The objective is to provide a comprehensive understanding of thermal error phenomena and their compensation strategies,ultimately contributing to the enhancement of machining accuracy in advanced manufacturing applications. 展开更多
关键词 cnc Machine Tools Thermal Errors SPINDLE Finite Element Analysis Thermal Error Modeling Compensation Techniques Real-Time Compensation
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Design and implementation of five-axis transformation function in CNC system 被引量:6
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作者 Wang Feng Lin Hu +3 位作者 Zheng Liaomo Yang Lei Feng Jinjin Zhang Han 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2014年第2期425-437,共13页
To implement five-axis functions in CNC system, based on domestic system Lan Tian series, an improved design method for the system software structure is proposed in this paper. The numerical control kernel of CNC syst... To implement five-axis functions in CNC system, based on domestic system Lan Tian series, an improved design method for the system software structure is proposed in this paper. The numerical control kernel of CNC system is divided into the task layer and the motion layer. A five-axis transformation unit is integrated into the motion layer. After classifying five-axis machines into different types and analyzing their geometry information, the five-axis kinematic library is designed according to the abstract factory pattern. Furthermore, by taking CA spindle- tilting machine as an example, the forward and the inverse kinematic transformations are deduced. Based on the new software architecture and the five-axis kinematic library, algorithms of RTCP (rotation tool center point control) and 3D radius compensation for end-milling are designed and realized. The milling results show that, with five-axis functions based on such software struc- ture, the instructions with respect to the cutter's position and orientation can be directly carried out in the CNC system. 展开更多
关键词 3D cutter radiuscompensation cnc software structure five-axis transformationfunction Motion control Rotation tool center pointcontrol
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MODELING AND COMPENSATION TECHNIQUE FOR THE GEOMETRIC ERRORS OF FIVE-AXIS CNC MACHINE TOOLS 被引量:32
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作者 Wang ShuxinYun JintianZhang ZhifeiLiu YouwuZhang QingSchool of Mechanical Engineering,Tianjin University,Tianjin 300072, China 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2003年第2期197-201,共5页
One of the important trends in precision machining is the development ofreal-time error compensation technique. The error compensation for multi-axis CNC machine tools isvery difficult and attractive. The modeling for... One of the important trends in precision machining is the development ofreal-time error compensation technique. The error compensation for multi-axis CNC machine tools isvery difficult and attractive. The modeling for the geometric error of five-axis CNC machine toolsbased on multi-body systems is proposed. And the key technique of the compensation―identifyinggeometric error parameters―is developed. The simulation of cutting workpiece to verify the modelingbased on the multi-body systems is also considered. 展开更多
关键词 error compensation multi-body systems identifying multi-axis cnc machinetools
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Accuracy allocation method for five-axis machine tools based on geometric error cost sensitivity prioritizing tool direction deviation 被引量:1
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作者 Xiaojian LIU Ao JIAO +7 位作者 Yang WANG Guodong YI Xiangyu GAO Xiaochen ZHANG Yiming ZHANG Yangjian JI Shuyou ZHANG Jianrong TAN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 2025年第7期635-651,共17页
Accuracy allocation is crucial in the accuracy design of machining tools.Current accuracy allocation methods primarily focus on positional deviation,with little consideration for tool direction deviation.To address th... Accuracy allocation is crucial in the accuracy design of machining tools.Current accuracy allocation methods primarily focus on positional deviation,with little consideration for tool direction deviation.To address this issue,we propose a geometric error cost sensitivity-based accuracy allocation method for five-axis machine tools.A geometric error model consisting of 4l error components is constructed based on homogeneous transformation matrices.Volumetric points with positional and tool direction deviations are randomly sampled to evaluate the accuracy of the machine tool.The sensitivity of each error component at these sampling points is analyzed using the Sobol method.To balance the needs of geometric precision and manufacturing cost,a geometric error cost sensitivity function is developed to estimate the required cost.By allocating error components affecting tool direction deviation first and the remaining components second,this allocation scheme ensures that both deviations meet the requirements.We also perform numerical simulation of a BC-type(B-axis and C-axis type)five-axis machine tool to validate the method.The results show that the new allocation scheme reduces the total geometric error cost by 27.8%compared to a uniform allocation scheme,and yields the same positional and tool direction machining accuracies. 展开更多
关键词 five-axis machine tool Accuracy allocation Geometric error modeling Error cost sensitivity Tool direction deviation priority
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PVA/CNC/COFs复合膜的水致变色行为及化学防护性能研究
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作者 段志漩 李君美 +4 位作者 贺佩芝 沈华 阳玉球 钱彬 刘丽芳 《棉纺织技术》 2026年第2期53-59,共7页
为开发一种兼具水响应性变色与可靠化学防护性能的先进材料,构建了聚乙烯醇(PVA)/纤维素纳米晶体(CNC)/共价有机骨架材料(COFs)复合膜。系统探究了复合膜浸水前后的力学性能、光学特性、水接触角、水蒸气透过系数及化学稳定性,并用傅里... 为开发一种兼具水响应性变色与可靠化学防护性能的先进材料,构建了聚乙烯醇(PVA)/纤维素纳米晶体(CNC)/共价有机骨架材料(COFs)复合膜。系统探究了复合膜浸水前后的力学性能、光学特性、水接触角、水蒸气透过系数及化学稳定性,并用傅里叶红外光谱揭示了其水致变色的微观机制。结果表明:COFs的引入赋予了复合膜显著的水响应性变色行为,ΔE达到21.24,其机制源于水分子与COFs亚胺键的n-π相互作用及体系氢键网络重组。浸水后风干膜发生溶胀软化,浸水前其水蒸气透过系数为1.016×10^(-12) g/(cm·s·Pa),浸水后为1.187×10^(-12) g/(cm·s·Pa)。复合膜在多数有机溶剂中展现出了良好的化学稳定性,且气体阻隔性能远优于常规聚合物膜。认为:制备的复合膜具有水致变色行为,同时兼顾化学防护所需的机械强度与化学稳定性,在智能化学防护领域应用前景广阔。 展开更多
关键词 水致变色行为 PVA/cnc/COFs复合膜 聚乙烯醇 断裂伸长率 共价有机骨架材料 智能化学防护服
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An Optimization Method for Five-axis Plunge Milling Tool Path Considering SIRD
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作者 Xueqin Wang Zhaocheng Wei +2 位作者 Dong Wang Debao Zhang Minjie Wang 《Chinese Journal of Mechanical Engineering》 2025年第6期457-469,共13页
A sudden increase in the radial depth(SIRD)is a distinctive phenomenon in plunge milling.It is typically characterized by a sharp increase in cutting force at the end of the axial feed of the tool,accompanied by harsh... A sudden increase in the radial depth(SIRD)is a distinctive phenomenon in plunge milling.It is typically characterized by a sharp increase in cutting force at the end of the axial feed of the tool,accompanied by harsh machine vibration sounds,which can negatively impact the reliability of plunge milling.This paper proposes an optimization method to eliminate SIRD in five-axis plunge milling.Initially,a five-axis plunge milling experiment and an analysis of the spatial position relationship between the plunge tools and the workpiece revealed that the cause of SIRD is unreasonable tool path planning.Subsequently,using the cutter position and cutter axis vector as variables,an SIRD discrimination model was developed for adjacent cutter positions and extended to multiple cutter positions.Optimizing the plunge milling tool path is considered a multivariate optimization problem that involves determining the cutter point and cutter axis vector.The SIRD discrimination model was used as a constraint function to aid in solving for the variables.The simulation and experimental results indicate that with the remaining volume of material as the optimization target,the optimized plunge milling tool path results in a residual material volume that is less than 60%of the gradually decreasing plunge depth.This optimization decreases the subsequent semi-finishing time of the workpiece and enhances machining efficiency.Additionally,it does not rely on operator experience and facilitates efficient automated optimization of the tool path to exclude SIRD. 展开更多
关键词 Plunge milling five-axis machining Tool path generation Radial depth
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纸纤维增强混凝土模板的CNC智能加工与给排水工程应用探索
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作者 张全鹤 于龙超 《华东纸业》 2026年第1期22-24,共3页
本研究探讨了纸纤维增强混凝土模板结合CNC智能加工技术在给排水工程中的应用可行性。随着“双碳”战略的深入推进,建筑行业需要向绿色化、智能化转型,而传统模板材料存在资源消耗大、回收困难等问题。采用纸纤维作为混凝土的微细增强相... 本研究探讨了纸纤维增强混凝土模板结合CNC智能加工技术在给排水工程中的应用可行性。随着“双碳”战略的深入推进,建筑行业需要向绿色化、智能化转型,而传统模板材料存在资源消耗大、回收困难等问题。采用纸纤维作为混凝土的微细增强相,可有效改善混凝土的抗裂性与韧性。CNC智能加工技术则为模板生产提供了高精度、高效率的解决方案。研究结果表明,纸纤维增强混凝土模板在给排水工程中的应用,既提升了施工效率与成型质量,又实现了材料的自然降解,减轻了环境负担。所提出的模块化设计方案具有良好的适用性与经济性,为市政工程的绿色建造提供了创新思路。 展开更多
关键词 纸纤维增强混凝土 cnc智能加工 给排水工程 绿色建筑
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PLANNING METHOD OF TOOL ORIENTATION IN FIVE-AXIS NC MACHINING
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作者 姬俊锋 周来水 +1 位作者 安鲁陵 张森棠 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2009年第2期83-88,共6页
The planning method of tool orientation in the five-axis NC machining is studied. The problem of the existing method is analyzed and a new method for generating the global smoothing tool orientation is proposed by int... The planning method of tool orientation in the five-axis NC machining is studied. The problem of the existing method is analyzed and a new method for generating the global smoothing tool orientation is proposed by introducing the key frame idea in the animation-making. According to the feature of the part, several key tool orientations are set without interference between the tool and the part. Then, these key tool orientations are inter- polated by the spline function. By mapping the surface parameter to the spline parameter, the spline function value is obtained and taken as the tool orientation when generating the CL file. The machining result shows that the proposed method realizes the global smoothing of the tool orientation and the continuity of the rotational speed and the rotational acceleration. It also avoids the shake of the machine tool and improves the machining quality. 展开更多
关键词 computer aided mamufacturing NC machining TOOLS five-axis
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基于PLC电气控制智能协作机器人的CNC上下料系统设计 被引量:2
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作者 杨跃 《智能制造》 2025年第3期49-56,共8页
CNC上下料系统受环境复杂多变的影响,相机采集的图像中包含大量不相关的特征,使得边缘检测过程中产生较多伪边缘点,工件定位不准确,导致上下料抓取点位的匹配误差增大,难以满足高精度加工需求。为此,设计基于PLC电气控制智能协作机器人... CNC上下料系统受环境复杂多变的影响,相机采集的图像中包含大量不相关的特征,使得边缘检测过程中产生较多伪边缘点,工件定位不准确,导致上下料抓取点位的匹配误差增大,难以满足高精度加工需求。为此,设计基于PLC电气控制智能协作机器人的CNC上下料系统。首先,选用小型高性能的PLC作为核心控制器,设计带有自动交换视觉测头的在线视觉采集系统硬件;其次,对协作机器人视觉采集图像进行预处理后,结合图像亚像素级边缘定位技术对图像像素边缘进行划分与精确定位;最后,结合图像亚像素边缘定位结果,利用PLC程序对机器人的运动轨迹进行控制,实现上下料整个生产流程的自动化控制。测试结果表明:应用PLC电气控制智能协作机器人进行上下料抓取的过程中,针对轴承钢套5个抓取点位的匹配误差均低于0.05mm,上下料的位置误差可以始终保持在0.1mm以下,能够满足实际应用的抓取要求,使得机械臂上下料抓取更加精准,具有较好的实用性能。 展开更多
关键词 PLC 智能协作机器人 cnc上下料系统 电气控制 模态振型分析 机器视觉
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硅烷改性CNC掺杂聚丙烯酸Fenton催化纤维的制备及其性能
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作者 徐乃库 张佳涵 《天津工业大学学报》 北大核心 2025年第6期9-14,共6页
为有效提升聚丙烯酸(PAA)Fenton催化纤维的力学性能、活性铁物种自握持特性以及Fe^(3+)自还原能力,利用硅烷偶联剂对纤维素纳米晶(CNC)进行改性,以优化CNC的分散性,随后制备分散有CNC的PAA纺丝溶液,采用湿法纺丝技术制备硅烷改性CNC掺杂... 为有效提升聚丙烯酸(PAA)Fenton催化纤维的力学性能、活性铁物种自握持特性以及Fe^(3+)自还原能力,利用硅烷偶联剂对纤维素纳米晶(CNC)进行改性,以优化CNC的分散性,随后制备分散有CNC的PAA纺丝溶液,采用湿法纺丝技术制备硅烷改性CNC掺杂PAA基Fenton催化纤维;探究硅烷偶联剂用量与种类对改性CNC掺杂PAA纤维力学性能和催化活性的影响,同时研究KH560改性CNC在改善PAA纤维活性铁物种自握持特性以及Fe^(3+)自还原能力方面的作用。结果表明:当改性体系中硅烷偶联剂用量为0.070 mol时,纤维拥有最佳的力学性能;与其他硅烷偶联剂相比,KH560改性CNC掺杂PAA纤维具有更突出的力学性能,其抗拉强度达107.3 MPa,与未改性CNC掺杂PAA纤维相比提高了105.6%;KH560改性CNC可协助PAA锚定铁离子,致使KH560改性CNC掺杂纤维M2-P的平均铁离子浸出质量浓度仅为0.74 mg/L,不足PAA纤维的6.0%;KH560改性CNC还可作为还原剂促进Fe^(3+)的还原,使M2-P中Fe^(2+)、Fe^(3+)的原子数目比达69.7/30.3,远高于PAA纤维的13.5/86.5,Fe^(2+)含量高以及铁离子滤出低的特性使KH560改性CNC掺杂纤维M2-P循环使用42次脱色90%以上MB时所需总时间仅为270 min,远低于其他纤维,体现出优异的催化活性。 展开更多
关键词 纤维素纳米晶(cnc) 硅烷改性 聚丙烯酸(PAA) Fenton催化纤维
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Five-axis flank milling tool path generation with curvature continuity and smooth cutting force for pockets 被引量:5
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作者 Changqing LIU Yingguang LI +1 位作者 Xin JIANG Wenyao SHAO 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2020年第2期730-739,共10页
In order to ensure machining stability,curvature continuity and smooth cutting force are very important so as to meet the constraints of both cutting force and kinematics of machine tools.For five-axis flank milling,i... In order to ensure machining stability,curvature continuity and smooth cutting force are very important so as to meet the constraints of both cutting force and kinematics of machine tools.For five-axis flank milling,it is difficult to meet both of the constraints because tool path points and tool axis vectors interact with each other.In this paper,multiple relationships between tool path points and tool axis vectors with cutting force and kinematics of machine tools are established,and the strategies of corner-looping milling and clothoidal spirals are combined so as to find feasible solutions under both of the constraints.Tool path parameters are iterated by considering the maximum cutting force and the feasible range of the tool axis vector,and eventually a curvature continuity five-axis flank milling tool path with smooth cutting force is generated.Machining experimental results show that the conditions of cutting force are satisfied,vibration during the process of machining is reduced,and the machining quality of the surface is improved. 展开更多
关键词 CURVATURE CONTINUITY Cutting force five-axis FLANK MILLING Machining Tool path generation
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Spindle Thermal Error Optimization Modeling of a Five-axis Machine Tool 被引量:8
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作者 Qianjian GUO Shuo FAN +3 位作者 Rufeng XU Xiang CHENG Guoyong ZHAO Jianguo YANG 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2017年第3期746-753,共8页
Aiming at the problem of low machining accu- racy and uncontrollable thermal errors of NC machine tools, spindle thermal error measurement, modeling and compensation of a two turntable five-axis machine tool are resea... Aiming at the problem of low machining accu- racy and uncontrollable thermal errors of NC machine tools, spindle thermal error measurement, modeling and compensation of a two turntable five-axis machine tool are researched. Measurement experiment of heat sources and thermal errors are carried out, and GRA(grey relational analysis) method is introduced into the selection of tem- perature variables used for thermal error modeling. In order to analyze the influence of different heat sources on spindle thermal errors, an ANN (artificial neural network) model is presented, and ABC(artificial bee colony) algorithm is introduced to train the link weights of ANN, a new ABC- NN(Artificial bee colony-based neural network) modeling method is proposed and used in the prediction of spindle thermal errors. In order to test the prediction performance of ABC-NN model, an experiment system is developed, the prediction results of LSR (least squares regression), ANN and ABC-NN are compared with the measurement results of spindle thermal errors. Experiment results show that the prediction accuracy of ABC-NN model is higher than LSR and ANN, and the residual error is smaller than 3 pm, the new modeling method is feasible. The proposed research provides instruction to compensate thermal errors and improve machining accuracy of NC machine tools. 展开更多
关键词 five-axis machine tool Artificial bee colony Thermal error modeling Artificial neural network
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Elliptical model for surface topography prediction in five-axis flank milling 被引量:3
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作者 Liping WANG Shuyi GE +3 位作者 Hao SIa Liwen GUAN Feiyu DUAN Yuzhe LIU 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2020年第4期1361-1374,共14页
In five-axis flank milling operations,the intersecting surfaces of different cutting edges create roughness on the milled surfaces that cannot be ignored in situations with strict requirements,especially in aeronautic... In five-axis flank milling operations,the intersecting surfaces of different cutting edges create roughness on the milled surfaces that cannot be ignored in situations with strict requirements,especially in aeronautical manufacturing.To focus on motion problems in milling operations,this paper presents a new model that utilizes elliptical paths as cutting edge trajectories on 3D surface topography machined by peripheral milling.First,the cutter parallel axis offset and location angle are considered,which change the location of the ellipse center and intersection point of the cutting edges.Then,through the proposed model,the predicted surface topography is obtained,and the factors that affect the development tendency of roughness are analyzed.Next,the effects of the cutter location position(CLP)geometric parameters,cutter parallel axis offset and curvature on the roughness are evaluated by a numerical simulation.Finally,machining tests are carried out to validate the model predictions,and the results show that the surface topography predictions correspond well with the experimental results. 展开更多
关键词 Cutter runout Elliptical paths five-axis flank milling Surface topography Workpiece curvature
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Identification of Kinematic Errors of Five-axis Machine Tool Trunnion Axis from Finished Test Piece 被引量:3
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作者 ZHANG Ya FU Jianzhong CHEN Zichen 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第5期999-1007,共9页
Compared with the traditional non-cutting measurement,machining tests can more accurately reflect the kinematic errors of five-axis machine tools in the actual machining process for the users.However,measurement and c... Compared with the traditional non-cutting measurement,machining tests can more accurately reflect the kinematic errors of five-axis machine tools in the actual machining process for the users.However,measurement and calculation of the machining tests in the literature are quite difficult and time-consuming.A new method of the machining tests for the trunnion axis of five-axis machine tool is proposed.Firstly,a simple mathematical model of the cradle-type five-axis machine tool was established by optimizing the coordinate system settings based on robot kinematics.Then,the machining tests based on error-sensitive directions were proposed to identify the kinematic errors of the trunnion axis of cradle-type five-axis machine tool.By adopting the error-sensitive vectors in the matrix calculation,the functional relationship equations between the machining errors of the test piece in the error-sensitive directions and the kinematic errors of C-axis and A-axis of five-axis machine tool rotary table was established based on the model of the kinematic errors.According to our previous work,the kinematic errors of C-axis can be treated as the known quantities,and the kinematic errors of A-axis can be obtained from the equations.This method was tested in Mikron UCP600 vertical machining center.The machining errors in the error-sensitive directions can be obtained by CMM inspection from the finished test piece to identify the kinematic errors of five-axis machine tool trunnion axis.Experimental results demonstrated that the proposed method can reduce the complexity,cost,and the time consumed substantially,and has a wider applicability.This paper proposes a new method of the machining tests for the trunnion axis of five-axis machine tool. 展开更多
关键词 five-axis machine tool kinematic errors trunnion axis test piece error-sensitive directions
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Efficiently constructing collision-free regions of tool orientations for holder in five-axis machining of blisk 被引量:2
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作者 Zhiwei WANG Xiaojun LIN Yaoyao SHI 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2020年第10期2743-2756,共14页
Blisks with the integral structure are key parts used in new jet engines to promote the performance of aircrafts,which also increases the complexity of tool orientation planning in the five-axis machining.It is an ess... Blisks with the integral structure are key parts used in new jet engines to promote the performance of aircrafts,which also increases the complexity of tool orientation planning in the five-axis machining.It is an essential task to find the collision-free tool orientation when the tool holder is pushed deep into the channel of blisk to increase rigidity and reduce vibration.Since the radius of the holder varies with the height,the line-visibility is no longer applicable when constructing collision-free regions of tool orientation.In this paper,a method of constructing collisionfree regions without interference checking is proposed.The work of finding collision-free regions resorts to solving the local contact curves on the checking surfaces of blisk.And it further transforms into searching the locally tangent points(named critical points)between the holder and surface.Then a tracking-based algorithm is proposed to search the sample critical points on these local contact curves.And the corresponding critical vectors are also calculated synchronously.Besides,the safety allowance,discrete precision and acceptable deviation are introduced in the algorithm to ensure accuracy by controlling the angle between two adjacent critical vectors properly.After that,the searched critical vectors are mapped orderly to two-dimensional space and the collisionfree regions are constructed.This method is finally verified and compared with a referenced method.The results show that the proposed method can efficiently construct collision-free regions for holder under the given accuracy. 展开更多
关键词 BLISK Collision-free region five-axis Interference detection Machining Tool holder
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Design and development of a five-axis machine tool with high accuracy,stiffness and efficiency for aero-engine casing manufacturing 被引量:4
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作者 Yutian WANG Dong WANG +3 位作者 Shizhen ZHANG Zihan TANG Liping WANG Yanmin LIU 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2022年第4期485-496,共12页
In order to satisfy the machining requirements of aero-engine casing in modern aviation industry, this paper investigates three main issues during the design and development process of a five-axis machine tool with hi... In order to satisfy the machining requirements of aero-engine casing in modern aviation industry, this paper investigates three main issues during the design and development process of a five-axis machine tool with high accuracy, stiffness and efficiency, including whole structure design,key components design, and supporting stiffness design. First, an appropriate structure of five-axis machine tool is determined considering the processing characteristics of aero-engine casing. Then, a dual drive swing head and a compact motorized spindle are designed with enough drive capability and stiffness, and related structure, assembly method, cooling technology, and performance simulation are given in detail. Next, a design method of supporting stiffness of guide is proposed through the deformation prediction of the spindle end. Based on above work, a prototype of machine tool is developed, and some experiments are carried out, including performance tests of swing head and motorized spindle, and machining of a simulated workpiece of aero-engine casing. All experimental results show that the machine tool has satisfactory accuracy, stiffness and efficiency, which meets the machining requirements of aero-engine casing. The main work can be used as references for engineers and technicians, which are meaningful in practice. 展开更多
关键词 Aero-engine casing manufacturing Compact motorized spindle Dual drive swing head five-axis machine tool Supporting stiffness
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Continuity control method of cutter posture vector for efficient five-axis machining 被引量:1
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作者 HWANG Jong-dae KIM Sang-myung +1 位作者 JUNG Hyun-chul JUNG Yoon-gyo 《Journal of Central South University》 SCIE EI CAS 2011年第6期1969-1975,共7页
During five-axis machining of impeller, the excessive local interference avoidance leads to inconsistency of cutter posture, low quality of machined surface and increase of processing time. Therefore, in order to impr... During five-axis machining of impeller, the excessive local interference avoidance leads to inconsistency of cutter posture, low quality of machined surface and increase of processing time. Therefore, in order to improve the efficiency of five-axis machining of impellers, it is necessary to minimize the cutter posture changes and create a continuous tool path while avoiding interference. By using an MC-space algorithm for interference avoidance, an MB-spline algorithm for continuous control was intended to create a five-axis machining tool path with excellent surface quality and economic feasibility. A five-axis cutting experiment was performed to verify the effectiveness of the continuity control. The result shows that the surface shape with continuous method is greatly improved, and the surface roughness is generally favorable. Consequently, the effectiveness of the suggested method is verified by identifying the improvement of efficiency of five-axis machining of an impeller in aspects of surface quality and machining time. 展开更多
关键词 five-axis control machining CONFIGURATION-SPACE B-SPLINE continuity control method IMPELLER interference
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Five-Axis Interpolation of Continuous Short Linear Trajectories for 3[PP]S-XY Hybrid Mechanism by Dual Bezier Blending 被引量:1
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作者 石璟 毕庆贞 王宇晗 《Journal of Shanghai Jiaotong university(Science)》 EI 2016年第1期90-102,共13页
A novel five-axis real-time interpolation algorithm for 3[PP]S-XY hybrid mechanism is proposed in this paper. In the algorithm, the five-axis tool path for controlling this hybrid mechanism is separated into two sub-p... A novel five-axis real-time interpolation algorithm for 3[PP]S-XY hybrid mechanism is proposed in this paper. In the algorithm, the five-axis tool path for controlling this hybrid mechanism is separated into two sub-paths. One sub-path describes the movement of 3[PP]S parallel kinematic mechanism module, and the other one describes the movement of XY platform. A pair of cubic Bezier curves is employed to smooth the corners in those two sub-paths. Based on the homogenous Jacobian matrix of 3[PP]S mechanism, a relationship between the position errors of every driving joint in hybrid mechanism and the position deviation of the tool tip center point at the moving platform is established. This relationship is used to estimate the approximation error for the corners smoothing according to the accuracy requirement of tool tip center in interpolation. Due to the high computational efficiency of this corner smoothing method, it is integrated into the look-ahead module of computer numerical control(CNC) system to perform online tool path smoothing. By performing the speed planning based on a floating window scheme, a jerk limited S-shape speed profile can be generated efficiently. On this basis, a realtime look-ahead scheme, which is comprised of path-smoothing and feedrate scheduling, is developed to acquire a speed profile with smooth acceleration. A monotonic cubic spline is employed for synchronization between those two smoothed sub-paths in tool path interpolation. This interpolation algorithm has been integrated into our own developed CNC system to control a 3PRS-XY experimental instrument(P, R and S standing for prismatic,revolute and spherical, respectively). A club shaped trajectory is adopted to verify the smoothness and efficiency of the five-axis interpolator for hybrid mechanism control. 展开更多
关键词 five-axis interpolation hybrid mechanism dual Bezier blending LOOK-AHEAD smoothing speed planning
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A Generic Kinematic Model for Three Main Types of Five-axis Machine Tools 被引量:1
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作者 YU Yang WEI Sheng-min +1 位作者 LIU Ping AO Zhi-qiang 《International Journal of Plant Engineering and Management》 2009年第4期243-249,共7页
Material removal is one of the most used processes in manufacturing. Five-axis CNC machines are believed to be the best tools in sculptured surface machining. In this study, a generic and unified kinematic model was d... Material removal is one of the most used processes in manufacturing. Five-axis CNC machines are believed to be the best tools in sculptured surface machining. In this study, a generic and unified kinematic model was developed as a viable alternative to the particular solutions that are only applicable to individual machine configurations. This versatile model is then used to verify the feasibility of the two rotational joints within the kinematic chain of three main types of a five-axis machine-tool. This versatile model is very useful applied to the design of five-axis machine tools. 展开更多
关键词 cnc machining of sculptured surfaces five-axis machine tool configuration kinematic model transformation matrix
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Fault monitoring and diagnosis of motorized spindle in five-axis Machining Center based on CNN-SVM-PSO 被引量:1
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作者 Shuo WANG Zhenliang YU +1 位作者 Xu LIU Zhipeng LYU 《Mechanical Engineering Science》 2022年第2期21-29,I0005,共10页
A spindle fault diagnosis method based on CNN-SVM optimized by particle swarm algorithm(PSO)is proposed to address the problems of high failure rate of electric spindles of high precision CNC machine tools,while manua... A spindle fault diagnosis method based on CNN-SVM optimized by particle swarm algorithm(PSO)is proposed to address the problems of high failure rate of electric spindles of high precision CNC machine tools,while manual fault diagnosis is a tedious task and low efficiency.The model uses a convolutional neural network(CNN)model as a deep feature miner and a support vector machine(SVM)as a fault state classifier.Taking the electric spindle of a five-axis machining centre as the experimental research object,the model classifies and predicts four labelled states:normal state of the electric spindle,loose state of the rotating shaft and coupling,eccentric state of the motor air gap and damaged state of the bearing and rolling body,while introducing a particle swarm algorithm(PSO)is introduced to optimize the hyperparameters in the model to improve the prediction effect.The results show that the proposed hybrid PSO-CNN-SVM model is able to monitor and diagnose the electric spindle failure of a 5-axis machining centre with an accuracy of 99.33%.In comparison with the BP model,SVM model,CNN model and CNN-SVM model,the accuracy of the model increased by 10%,6%,4%and 2%respectively,which shows that the fault diagnosis model proposed in the paper can monitor the operation status of the electric spindle more effectively and diagnose the type of electric spindle fault,so as to improve the maintenance strategy. 展开更多
关键词 five-axis machining centres CNN-SVM spindle vibration fault diagnosis
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