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Bayesian zero-failure reliability modeling and assessment method for multiple numerical control(NC) machine tools 被引量:2
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作者 阚英男 杨兆军 +3 位作者 李国发 何佳龙 王彦鹍 李洪洲 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第11期2858-2866,共9页
A new problem that classical statistical methods are incapable of solving is reliability modeling and assessment when multiple numerical control machine tools(NCMTs) reveal zero failures after a reliability test. Thus... A new problem that classical statistical methods are incapable of solving is reliability modeling and assessment when multiple numerical control machine tools(NCMTs) reveal zero failures after a reliability test. Thus, the zero-failure data form and corresponding Bayesian model are developed to solve the zero-failure problem of NCMTs, for which no previous suitable statistical model has been developed. An expert-judgment process that incorporates prior information is presented to solve the difficulty in obtaining reliable prior distributions of Weibull parameters. The equations for the posterior distribution of the parameter vector and the Markov chain Monte Carlo(MCMC) algorithm are derived to solve the difficulty of calculating high-dimensional integration and to obtain parameter estimators. The proposed method is applied to a real case; a corresponding programming code and trick are developed to implement an MCMC simulation in Win BUGS, and a mean time between failures(MTBF) of 1057.9 h is obtained. Given its ability to combine expert judgment, prior information, and data, the proposed reliability modeling and assessment method under the zero failure of NCMTs is validated. 展开更多
关键词 Weibull distribution reliability modeling BAYES zero failure numerical control(NC) machine tools Markov chain Monte Carlo(MCMC) algorithm
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Dynamic characteristic analysis of whole machine tools based on Kriging model 被引量:2
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作者 高相胜 张以都 +1 位作者 郜浩冬 张洪伟 《Journal of Central South University》 SCIE EI CAS 2013年第11期3094-3102,共9页
In order to study the variation of machine tools’dynamic characteristics in the manufacturing space,a Kriging approximate model is proposed.Finite element method(FEM)is employed on the platform of ANSYS to establish ... In order to study the variation of machine tools’dynamic characteristics in the manufacturing space,a Kriging approximate model is proposed.Finite element method(FEM)is employed on the platform of ANSYS to establish finite element(FE)model with the dynamic characteristic of combined interface for a milling machine,which is newly designed for producing aero engine blades by a certain enterprise group in China.The stiffness and damping of combined interfaces are adjusted by using adaptive simulated annealing algorithm with the optimizing software of iSIGHT in the process of FE model update according to experimental modal analysis(EMA)results.The Kriging approximate model is established according to the finite element analysis results utilizing orthogonal design samples by taking into account of the range of configuration parameters.On the basis of the Kriging approximate model,the response surfaces between key response parameter and configuration parameters are obtained.The results indicate that configuration parameters have great effects on dynamic characteristics of machine tools,and the Kriging approximate model is an effective and rapid method for estimating dynamic characteristics of machine tools in the manufacturing space. 展开更多
关键词 machine tool dynamic characteristic INTERFACE CONFIGURATION Kriging model
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Robust tracking control for micro machine tools with load uncertainties 被引量:2
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作者 FAN Shi-xun FAN Da-peng +1 位作者 HONG Hua-jie ZHANG Zhi-yong 《Journal of Central South University》 SCIE EI CAS 2012年第1期117-127,共11页
The quality of the micro-mechanical machining outcome depends significantly on the tracking performance of the miniaturized linear motor drive precision stage. The tracking behavior of a direct drive design is prone t... The quality of the micro-mechanical machining outcome depends significantly on the tracking performance of the miniaturized linear motor drive precision stage. The tracking behavior of a direct drive design is prone to uncertainties such as model parameter variations and disturbances. Robust optimal tracking controller design for this kind of precision stages with mass and damping ratio uncertainties was researched. The mass and damping ratio uncertainties were modeled as the structured parametric uncertainty model. An identification method for obtaining the parametric uncertainties was developed by using unbiased least square technique. The instantaneous frequency bandwidth of the external disturbance signals was analyzed by using short time Fourier transform technique. A two loop tracking control strategy that combines the p-synthesis and the disturbance observer (DOB) techniques was proposed. The p-synthesis technique was used to design robust optimal controllers based on structured uncertainty models. By complementing the/z controller, the DOB was applied to further improving the disturbance rejection performance. To evaluate the positioning performance of the proposed control strategy, the comparative experiments were conducted on a prototype micro milling machine among four control schemes: the proposed two-loop tracking control, the single loop μ control, the PID control and the PID with DOB control. The disturbance rejection performances, the root mean square (RMS) tracking errors and the performance robustness of different control schemes were studied. The results reveal that the proposed control scheme has the best positioning performance. It reduces the maximal errors caused by disturbance forces such as friction force by 60% and the RMS errors by 63.4% compared with the PID control. Compared to PID with DOB control, it reduces the RMS errors by 29.6%. 展开更多
关键词 micro machine tools servos parametric uncertainty model instantaneous frequency disturbance observer p-synthesis
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Numerical simulation of freezing effect and tool change of shield machine with a frozen cutterhead 被引量:6
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作者 DAI Wei XIA Yi-min +1 位作者 XU Hai-liang YANG Mei 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第4期1262-1272,共11页
A shield machine with freezing function is proposed in order to realize tool change operation at atmospheric pressure. Furthermore, the transformation project of freezing cutterhead and tool change maintenance method ... A shield machine with freezing function is proposed in order to realize tool change operation at atmospheric pressure. Furthermore, the transformation project of freezing cutterhead and tool change maintenance method are put forward. Taking the shield construction of Huanxi Power Tunnel as an example, a numerical analysis of the freezing cutter head of the project was carried out. The results show that when the brine temperature is-25 °C, after 30 d of freezing, the thickness of the frozen wall can reach 0.67 m and the average temperature drops to-9.9 °C. When the brine temperature is-30 °C, after 50 d of freezing, the thickness of the frozen wall can reach 1.01 m and the average temperature drops to-12.4 °C. If the thickness of the frozen wall is 0.5 m and the average temperature is-10 °C, as the design index of the frozen wall, the brine temperature should be lower than-28 °C to meet the excavation requirements in 30 d. Analyzing the frozen wall stress under 0.5 m thickness and-10 °C average temperature condition, the tensile safety factor and compressive safety factor are both greater than 2 at the most dangerous position, which can meet the tool change requirements for shield construction. 展开更多
关键词 shield machine CONSTRUCTION frozen cutterhead tool change maintenance finite element simulation
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A Tentative Study on Dynamics of a New Parallel NC Machine Tool with Long Travel, Large Rotating Angle and High Moving Speed
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作者 ZHOU Kai, ZHAO Jing-shan (Department of Precision Instruments, Tsinghua University, Beijing 100 084, China) 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期169-,共1页
In view of the structure of traditional five-coord in ate machine tool, the work-piece and machine tool often move along their respec tive guides simultaneously on the whole. In this kind of machine structure, the tot... In view of the structure of traditional five-coord in ate machine tool, the work-piece and machine tool often move along their respec tive guides simultaneously on the whole. In this kind of machine structure, the total mass of moving parts including work-pieces, fixtures, rotating table, wor king table and so on is often very large. Besides, the elastic reform of transmi ssion and the viscous friction force of the guide can not be ignored. As a resul t, the machine tool can not move with high velocity and acceleration, and can no t meet the needs of modern fast and efficient production. The emergence of virtual-axis machine tool has provided a new approach for the solution of the above problems. The kernel of the virtual-axis machine tool is the parallel mechanism. So far, research of parallel mechanism in the world has achieved many results and various applied equipments based on parallel mecha nism have been worked out, but the research generally focuses on the working spa ce and kinematics analysis, dynamics are rarely considered. To meet the requirements of the modern fast and efficient production, reduce the cost and promote the machine tool’s acceleration character, not only should we analyze the kinematics of machine tool, but also we should study its dynamics a nd optimize the structure on the basis of analysis. In this paper, the kinem atics and dynamics of a 5-DOF (degrees of freedom) machine tool with novel para llel mechanism that has three moving DOF and one rotating DOF are studied by Rob ot-Wittenberg method. The dynamics character of the parallel robotic machine is analyzed and used to guide the structure design of machine tool. At last, the c orrectness is verified through a numerical simulation of 5-DOF. Hence, the dyna mics model can generally solve the problems existing in the parallel and hybrid machine tools. The dynamics character of the parallel robotic machine is studied and analyzed in quantity. The dynamics equation of the system can be written as This is a set of differential equations of four DOF system. Theoretically, the c losed solution of the forward and inverse problems can be gained by solving the above equations. The system equations quite suit to program at the computer. Whe n the forces are given, the state variables’ numerical solution can be gain ed through integral; and when the dynamics parameters are given, the forces can also be solved. But the multiple valued phenomena can not be avoided. We have developed simulation software based on the dynamics model presented by t his paper. The different effects of the structure parameters can be given by numerical simulation. 展开更多
关键词 5-DOF machine tool parallel mechanism R-W met hod KINEMATICS dynamics
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An Experiment to Explain Depth of Cut Notch Wear of Ceramic Tools in Ni- based Super-alloy Machining
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作者 WANG Zhi-gang 1, HE Ning 2 (1. Dept. of Mechanical Engineering, National University of Singapore, Singapore 2. Dept. of Mechanical Engineering, Nanjing University of Aero.& Astro , Nanj ing 210016, China) 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期86-87,共2页
Inconel 718, a high temperature alloy, is extensive ly used in aircraft, gas engines and nuclear-power plants. It is generally known that the life of ceramic cutting tools in machining Inconel 718 is often restric ted... Inconel 718, a high temperature alloy, is extensive ly used in aircraft, gas engines and nuclear-power plants. It is generally known that the life of ceramic cutting tools in machining Inconel 718 is often restric ted by depth-of-cut (DOC) notch wear. In view of the number of various factors involved and the variety of tool materi als and cutting conditions available, the analysis of the DOC notch wear is very difficult. According to previous work concerning the DOC notch wear of ceramics tools, some Al 2O 3 - and Si 3N 4 -based ceramics tools have show n that the degree of tool notching depends on the thermal shock resistance of a tool material and thermal gradients (interrupted cutting, use of flood coolants) . Other observations suggest that there are chemical interactions between the to ol material and the work-piece. At the same time, an analytical technique based on thermodynamic properties for estimating cutting tool wear was proposed. Howe ver, so far, there is no concrete and convincing explanation for the DOC notch w ear. In all previous studies on the DOC notch wear, it is often assumed that notch we ar happened in the contacting region of the cutting tool and the work-piece, wh ile the exact position of notch wear is always neglected. In his article, He Ning measured the distance l n between tool nose and the center of DOC notch wear, and calculated the theoretical working length l d ― the ideal distance between the DOC notch center and the intersection of th e theoretical depth of cut line and the cutting edge. He found that l n is always greater than l d. It means that the position of the DOC notch is not at the depth of cut line, but out of the theoretical cutting area. He supposed that the saw-tooth shaped burrs and fin-shaped chip edges cause the DOC no tch wear, because only the saw-tooth shaped burrs and fin-shaped chip edges ha ve effect on the tools at the region of notch wear. Although He described the reason of notch wear and did some theoretical analysis of it, he has not done some experiments to verify it. In this paper, an experim ent was done to verify He’s assumption about DOC notch wear. In the present exp eriment, which has been done with the ceramic inserts (LT55), Working conditions at the region of DOC notch wear were analyzed. By using a KISTLER 9265B dyn amometer, the dynamic cutting force signals in three directions were pick up. By comparison between the theoretical frequency, with which the saw-shaped burr a nd fin-shaped chip edge impact on the region of notch wear, and the experimenta l results, it can be seen that the high frequency components of dynamic cutting forces mainly result from the impact effects of the saw-shaped burr and fin-sh aped chip edge. In high speed machining of nickel based alloys, DOC notch wear of ceramic tools is mainly because the impact effect of the burr and fin-shaped chip edge causes tools to be of fatigue damage, and the adherence between tool material and work piece material changes the direction of pressure stress and makes the micro-cra ck to appear and extend quickly. 展开更多
关键词 notch wear ceramic tool high speed machining
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Characterization of shear stresses in nickel-based superalloy Mar-M247 when orthogonal machining with coated carbide tools
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作者 CHEN Shao-hsien SU Sen-chieh JEHNG Wern-dare 《Journal of Central South University》 SCIE EI CAS 2014年第3期862-869,共8页
Mar-M247 is a nickel-based alloy which is well known as difficult-to-machine material due to its characteristics of high strength, poor thermal diffusion and work hardening. Calculation of shear stress by an analytica... Mar-M247 is a nickel-based alloy which is well known as difficult-to-machine material due to its characteristics of high strength, poor thermal diffusion and work hardening. Calculation of shear stress by an analytical force model to indicate the effect of coating material, cutting speed, feed rate on tool life and surface roughness was conducted experimentally. Cutting tests were performed using round inserts, with cutting speeds ranging from 50 to 300 rn/min, and feed rates from 0.1 to 0.4 mm/tooth, without using cooling liquids. The behavior of the TiN and TiCN layers using various cutting conditions was analyzed with orthogonal machining force model. Cutting results indicate that different coated tools, together with cutting variables, play a significant role in determining the machinability when milling Mar-M247. 展开更多
关键词 Mar-M247 tool wear orthogonal machining shear stress
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The Fuzzy Cluster Analysis in Identification of Key Temperatures in Machine Tool
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作者 ZHAO Da-quan 1, ZHENG Li 1, XIANG Wei-hong 1, LI Kang 1, LIU Da-cheng 1, ZHANG Bo-peng 2 (1. Department of Industrial Engineering, Tsinghua University, 2. Department of Precision Instruments and Mechanology, Tsinghua University, B eijing 100084, China) 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期88-89,共2页
The thermal-induced error is a very important sour ce of machining errors of machine tools. To compensate the thermal-induced machin ing errors, a relationship model between the thermal field and deformations was need... The thermal-induced error is a very important sour ce of machining errors of machine tools. To compensate the thermal-induced machin ing errors, a relationship model between the thermal field and deformations was needed. The relationship can be deduced by virtual of FEM (Finite Element Method ), ANN (Artificial Neural Network) or MRA (Multiple Regression Analysis). MR A is on the basis of a total understanding of the temperature distribution of th e machine tool. Although the more the temperatures measured are, the more accura te the MRA is, too more temperatures will hinder the analysis calculation. So it is necessary to identify the key temperatures of the machine tool. The selectio n of key temperatures decides the efficiency and precision of MRA. Because of th e complexities and multi-input and multi-output structure of the relationships , the exact quantitative portions as well as the unclear portions must be taken into consideration together to improve the identification of key temperatures. I n this paper, a fuzzy cluster analysis was used to select the key temperatures. The substance of identifying the key temperatures is to group all temperatures b y their relativity, and then to select a temperature from each group as the repr esentation. A fuzzy cluster analysis can uncover the relationships between t he thermal field and deformations more truly and thoroughly. A fuzzy cluster ana lysis is the cluster analysis based on fuzzy sets. Given U={u i|i=0,...,N}, in which u i is the temperature measured, a fuzzy matrix R can be obta ined. The transfer close package t(R) can be deduced from R. A fuzzy clu ster of U then conducts on the basis of t(R). Based on the fuzzy cluster analysis discussed above, this paper identified the k ey temperatures of a horizontal machining center. The number of the temperatures measured was reduced to 4 from 32, and then the multiple regression relationshi p models between the 4 temperatures and the thermal deformations of the spindle were drawn. The remnant errors between the regression models and measured deform ations reached a satisfying low level. At the same time, the decreasing of tempe rature variable number improved the efficiency of measure and analysis greatly. 展开更多
关键词 The Fuzzy Cluster Analysis in Identification of Key Temperatures in machine tool
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基于Virtools并联机床虚拟装配系统的研究 被引量:10
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作者 文怀兴 黄正祥 《制造技术与机床》 北大核心 2017年第9期91-94,共4页
并联机床,机构简单而数学复杂,是一种知识密集型机构。它的出现积极响应了现代制造业对高速、高精度制造装配的需求,同时也带来了全新的机遇和挑战。为了弥补学校及企业在并联机床教学及培训方面的不足,提高学生及工人对并联机床工作机... 并联机床,机构简单而数学复杂,是一种知识密集型机构。它的出现积极响应了现代制造业对高速、高精度制造装配的需求,同时也带来了全新的机遇和挑战。为了弥补学校及企业在并联机床教学及培训方面的不足,提高学生及工人对并联机床工作机理及产品装配的掌握,设计了基于Virtools的并联机床的虚拟装配系统。通过UG建立并联机床的三维模型,通过3d Max渲染及制作运动仿真动画,在此基础上利用Virtools平台设计了交互式的并联机床的虚拟装配系统。该系统界面友好、交互性强,不仅节省开发时间和成本,而且大大减少对资源的利用,能够满足高校及企业的教学与培训需求。 展开更多
关键词 VIRtools 3d MAX 并联机床 虚拟装配
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Improvement of Electrochemical Machining Accuracy by Using Dual Pole Tool 被引量:11
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作者 ZHU Di, XU Hui-yu (Department of Mechanical Engineering, Nanjing University of Aeronaut ics & Astronautics, Nanjing 210016, China) 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期118-,共1页
Electrochemical machining (ECM) is one of the best al ternatives for producing complex shapes in advanced materials used in aircraft a nd aerospace industries. However, the reduction of the stray material removal co n... Electrochemical machining (ECM) is one of the best al ternatives for producing complex shapes in advanced materials used in aircraft a nd aerospace industries. However, the reduction of the stray material removal co ntinues to be major challenges for industries in addressing accuracy improvement . This study presents a method of improving machining accuracy in ECM by using a dual pole tool with a metallic bush outside the insulated coating of a cathode tool. The bush is connected with anode and so the electric field at the side gap area is substantially weakened. The modeling and simulation indicate that the p ositive bush brings down the current density at the side gap area of the machine d hole and hence reduces the stray material removal there. It has been experimen tally observed that the machining accuracy and the process stability are signifi cantly improved. 展开更多
关键词 electrochemical machining dual pole tool accura cy
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Development of tool-path generation module for 5-axis control machining of impellers 被引量:4
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作者 JUNG Hyoun-chul SON Hwang-jin JUNG Yoon-gyo 《Journal of Central South University》 SCIE EI CAS 2012年第12期3424-3429,共6页
An impeller is difficult to machine because of severe collision due to the complex shape,overlapping and twisted shape of the impeller blades.So,most computer aided manufacturing(CAM)software companies have developed ... An impeller is difficult to machine because of severe collision due to the complex shape,overlapping and twisted shape of the impeller blades.So,most computer aided manufacturing(CAM)software companies have developed CAM module for manufacturing impeller according to their CAM software.But these dedicated modules are difficult to use for inexperienced users.The purpose of this work is to develop a tool-path generation module for impellers.For this purpose,it is based on Visual Basic language and used CATIA graphical environment.The result of simulation for generated tool-path by the module is satisfactory.And it has slow processing speed compared to other commercial modules,but it is easy to use. 展开更多
关键词 IMPELLER computer aided manufacturing 5-axis control machining tool path MODULE
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Effects of automatic variable preload device on performance of spindle 被引量:1
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作者 KIM Dong-Hyeon LEE Choon-Man 《Journal of Central South University》 SCIE EI CAS 2012年第1期150-154,共5页
To increase the machine accuracy by improving the stiffness of bearings,a preload was applied to bearings.A variable preload technology was necessary to perform machining processes in both low and high speed regions.A... To increase the machine accuracy by improving the stiffness of bearings,a preload was applied to bearings.A variable preload technology was necessary to perform machining processes in both low and high speed regions.An automatic variable preload device was fabricated using an eccentric mass.By installing the fabricated device on a spindle,the effect of the automatic variable preload device on the performance of the spindle was analyzed.In the results of the vibration measurement of the spindle,the vibration is increased by 20%-37% according to measurement points at the maximum rotation speed of 5 000 r/min.And,in the results of the noise measurement of the spindle,the spindle rotation speed is increased by about 1.9% and 1.5% at the front and side of the spindle,respectively.Based on the results of this analysis,an improved method that reduces such effects on the performance of the spindle is proposed. 展开更多
关键词 machine tool spindle automatic variable preload device VIBRATION noise
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Wear Patterns and Mechanisms of Cutting Tools in High Speed Face Milling
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作者 LIU Zhan-qiang, AI Xing, ZHANG Hui, WANG Zun-tong, WAN Yi (School of Mechanical Engineering, Shandong University, Jinan 250061, China) 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期58-,共1页
High speed machining has received an important interest because it leads to an increase of productivity and a better workpiece surface quality. However, at high cutting speeds, the tool wear increases dramatically due... High speed machining has received an important interest because it leads to an increase of productivity and a better workpiece surface quality. However, at high cutting speeds, the tool wear increases dramatically due to the high temperature at the tool-workpiece interface. Tool wear impairs the surface finish and hence the tool life is reduced. That is why an important objective of metal cutting research has been the assessment of tool wear patterns and mechanisms. In this paper, wear performances of PCBN tool, ceramic tool, coated carbide tool and fine-grained carbide tool in high speed face milling were presented when cutting cast iron, 45# tempered carbon steel and 45# hardened carbon steel. Tool wear patterns were examined through a tool-making microscope. The research results showed that tool wear types differed in various matching of materials between cutting tool and workpiece. The dominant wear patterns observed were rake face wear, flank wear, chipping, fracture and breakage. The main wear mechanisms were mechanical friction, adhesion, diffusion and chemical wear promoted by cutting forces and high cutting temperature. Hence, the important considerations of high speed cutting tool materials are high heat-resistance and wear-resistance, chemical stability as well as resistance to failure of coatings. The research results will be great benefit to the design and the selection of tool materials and control of tool wear in high-speed machining processes. 展开更多
关键词 cutting tool WEAR high speed machining face milling
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A Tool Path Re-generation Algorithm for Die & Mold Machining
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作者 L P Zhang J Y H Fuh A Y C Nee 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期101-102,共2页
Facing the challenges of a shorter product design a nd manufacturing lead-time, many mold companies are using 3-D CAD/CAM software s ystems in design and manufacturing. A new product file is often issued to the mo ld ... Facing the challenges of a shorter product design a nd manufacturing lead-time, many mold companies are using 3-D CAD/CAM software s ystems in design and manufacturing. A new product file is often issued to the mo ld design department before it is completely finalized and the design may have t o be iterated many times during the mold design and making processes. In practic e, if a mold has been modified, all the tool paths that cover the modified regio n must be re-generated, no matter how small the modified region may be. With th e available tool path generation systems, if a tool path needs to be re-generat ed, all the cutter location (CL) points must be re-calculated, and none of the original CL points can be re-used. It would require as much time to re-gen erate the modified tool path as in the original case. On the other hand, the mod ified region is usually quite small compared with the entire mold. The complete re-generation process is therefore highly unproductive and time-consuming. This paper proposes an efficient tool path re-generation approach for 3-axis d ie and mold machining. It is assumed in this research that a gouge-free too l path has been generated for the original mold and the same ball end-mill is to be used to generate the tool path for the modified mold. It is shown in th is work that if the boundary of the modified region is interference-free, the a ffected CL points are enclosed by a set of CL points which correspond to the poi nts on the boundary of the modified region. An efficient tool path re-generatio n algorithm was developed in this research. With this algorithm, a closed CL cur ve is first generated from the boundary of the affected region. The CL points fo r the original mold are then analyzed by comparing the x and y values with the b oundary of the affected CL points. If the CL points are not affected by the modi fication, they are output to the new CL file directly. Otherwise, they are remov ed and replaced by the new CL points. The algorithm has been tested using severa l industrial parts, and results show that it is efficient, robust, and the re-g enerated tool path is gouge-free and smooth. 展开更多
关键词 A tool Path Re-generation Algorithm for Die Mold machining
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新工科背景下MATLAB GUI在数控机床故障强度函数实验教学中的应用 被引量:1
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作者 何佳龙 何秀麟 +2 位作者 安阳 王昕 罗巍 《机械设计》 北大核心 2025年第3期157-162,共6页
随着新一代科技革命和产业革命的不断深入,传统的工程教育已经无法满足新时代对工科人才的需求,因此,高校如何作出教育应答,如何加快推进工科教育的改革、加快新工科拔尖人才的培养,成为我国高等教育发展的必然需求。面向新工科背景,突... 随着新一代科技革命和产业革命的不断深入,传统的工程教育已经无法满足新时代对工科人才的需求,因此,高校如何作出教育应答,如何加快推进工科教育的改革、加快新工科拔尖人才的培养,成为我国高等教育发展的必然需求。面向新工科背景,突破传统教育的局限,优化学科专业新结构,以及创新教育教学新模式具有重要意义。文中围绕数控机床故障强度函数实验教学,查找当前课程建设的不足,积极探索新工科实验教学新手段,基于MATLAB GUI平台进行数控机床故障强度函数建模仿真试验平台的建设,对辅助课堂教学、开展实验项目,加深学生对理论知识的理解及对工程实践能力的培养具有积极的意义。 展开更多
关键词 新工科 数控机床 虚拟仿真 可靠性 故障强度函数
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“政产学用”如何驱动“卡脖子”技术的双核创新——基于华中数控的纵向案例研究 被引量:2
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作者 贺远琼 刘路明 +1 位作者 田志龙 陈吉红 《南开管理评论》 北大核心 2025年第2期16-29,共14页
数控机床作为“工业母机”,是现代制造业的核心基础产业。我国在数控机床核心零部件和高端数控系统方面面临严峻的技术封锁。如何攻克“卡脖子”技术、提升国产数控机床竞争力,成为学术界和企业界的重点议题。本文以武汉华中数控股份有... 数控机床作为“工业母机”,是现代制造业的核心基础产业。我国在数控机床核心零部件和高端数控系统方面面临严峻的技术封锁。如何攻克“卡脖子”技术、提升国产数控机床竞争力,成为学术界和企业界的重点议题。本文以武汉华中数控股份有限公司(以下简称华中数控)为典型案例,构建了“政产学用”合作主体驱动技术与市场双核创新的机制模型。研究发现,案例企业的“卡脖子”技术突破包括技术与市场的双核创新,技术创新经历“基础技术积累→基础技术升级→技术集成化→技术生态化”四个阶段,市场创新经历“市场储备→侧翼进攻→正面竞争→多点竞争”的演变过程。在双核创新过程中,“政产学用”各主体发挥着重要的驱动作用,呈现出“学→产→政→用”的关键作用主体演变路径。研究丰富了“政产学用”协同创新模式和技术与市场创新的学术成果,为我国“卡脖子”技术攻关提供了重要启示。 展开更多
关键词 数控机床 “卡脖子”技术 “政产学用”合作主体 技术创新 市场创新
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基于交互刚度的导轨螺栓残余预紧力研究及装配工艺优化
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作者 程强 蔡少鹏 +2 位作者 张涛 杨聪彬 刘志峰 《北京工业大学学报》 北大核心 2025年第10期1129-1136,共8页
导轨装配的质量直接影响数控机床的直线轴几何精度,为了提升导轨螺栓装配残余预紧力的均匀性,在虑及螺栓交互刚度的基础上,提出了一种残余预紧力变化分析模型及装配工艺优化方法。首先,基于导轨压应力锥形分布假设,构建了不同间距下的... 导轨装配的质量直接影响数控机床的直线轴几何精度,为了提升导轨螺栓装配残余预紧力的均匀性,在虑及螺栓交互刚度的基础上,提出了一种残余预紧力变化分析模型及装配工艺优化方法。首先,基于导轨压应力锥形分布假设,构建了不同间距下的导轨螺栓交互刚度函数模型。建立螺栓连接结构的刚度模型,推导出螺栓预紧力变化量与交互刚度值间的映射关系,理论分析得到已预紧螺栓的预紧力变化量与后续螺栓装配间距呈负相关关系。其次,建立某立式加工中心横梁的有限元模型,通过多载荷步仿真分析验证了理论分析结果。最后,对横梁导轨螺栓的装配工艺进行了优化,采用标准偏差与均值的综合评价方法,新工艺下的螺栓残余预紧力离散性降低,一致性提高。 展开更多
关键词 机床 交互刚度 残余预紧力 导轨 螺栓 预紧力
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基于对数线性过程的数控机床不完全预防性维修策略研究 被引量:1
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作者 任丽娜 王子倩 《现代制造工程》 北大核心 2025年第1期121-127,共7页
针对数控机床维修时产生较高维修成本和未能充分利用系统剩余寿命的问题,提出了一种基于对数线性过程的数控机床非等周期不完全预防性维修方法。建立对数线性过程下机床不完全预防性维修的混合故障强度模型,根据经验取值法给出役龄递减... 针对数控机床维修时产生较高维修成本和未能充分利用系统剩余寿命的问题,提出了一种基于对数线性过程的数控机床非等周期不完全预防性维修方法。建立对数线性过程下机床不完全预防性维修的混合故障强度模型,根据经验取值法给出役龄递减因子和故障强度递增因子的表达式,以可靠度为约束,推导出不同预防性维修阈值和更换阈值下的动态维修间隔期。在此基础上,以平均维修费用最小为目标给出设备维修周期内的最佳预防维修次数。以数控机床主轴系统为例对所提方法进行验证,通过分别与未考虑更换阈值的维修模型以及混合故障强度因子服从均匀分布的维修模型进行对比分析,结果表明该方法可有效降低维修成本且能充分利用设备的剩余寿命。研究结果为制定合理的数控机床预防性维修策略提供了一个新方法。 展开更多
关键词 可靠性 数控机床 对数线性过程 不完全预防性维修 混合故障强度
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面向串并联镜像加工装备的线激光安装位姿高精度标定方法
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作者 刘海波 李文杰 +5 位作者 丁悦 王鹏飞 梁润 薄其乐 谢福贵 肖世宏 《航空制造技术》 北大核心 2025年第11期14-20,共7页
针对现有串并联机床线激光传感器测量位姿准确标定难题,提出一种适用于串并联机床的线激光安装位姿标定方法。基于标准球特性,求取球心坐标后利用标准球球心不变性建立等式,提出求取旋转矩阵的目标函数;通过扫描标准球表面,获取其点云... 针对现有串并联机床线激光传感器测量位姿准确标定难题,提出一种适用于串并联机床的线激光安装位姿标定方法。基于标准球特性,求取球心坐标后利用标准球球心不变性建立等式,提出求取旋转矩阵的目标函数;通过扫描标准球表面,获取其点云数据并拟合出球心,与球心坐标真值比较并建立平移矩阵的求取模型。与传统手眼标定方法相比,所提方法沿X、Y、Z 3个方向的标定误差分别降低了88.9%、83.6%、82.1%。所提方法无须改变串并联机构的姿态,有效避免了串并联机床定位误差对测量位姿标定的影响,提高了标定精度。 展开更多
关键词 串并联机床 标准球 线激光传感器 位姿标定 测量加工一体化
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内置式纺锤形滚柱套管塑性整形工具设计及应用分析
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作者 李明飞 王乐康 +5 位作者 宋显民 曹欣 米红学 张文哲 景志明 崔健 《塑性工程学报》 北大核心 2025年第7期135-143,共9页
设计了一套内置式纺锤形滚柱套管整形工具,其采用纺锤形滚柱代替滚珠,用均匀面接触代替非均匀点接触,使整形段套管发生塑性变形,可以完全消除凸痕的致命缺陷;通过内外管结合通槽结构实现滚柱内置,克服了套管整形工具滚珠掉落的缺陷;通... 设计了一套内置式纺锤形滚柱套管整形工具,其采用纺锤形滚柱代替滚珠,用均匀面接触代替非均匀点接触,使整形段套管发生塑性变形,可以完全消除凸痕的致命缺陷;通过内外管结合通槽结构实现滚柱内置,克服了套管整形工具滚珠掉落的缺陷;通过滚珠行程槽内置深度的改变,上提整形工具时,纺锤形滚柱缩回到滚柱安装通槽内,避免对整形后套管形成剐蹭的二次伤害。设计的整形工具还具有易加工、易安装的优点。应用ANSYS软件,建立了完整的内置式纺锤形滚柱套管整形工具有限元模型,施加套管整形典型工况下的载荷,分析了中心管轴肩抗压、连接螺纹抗拉的强度,安全系数均在3.0以上,满足强度要求。同时,建立整形工具与缩径变形、椭圆变形、弯曲变形、局部凹陷4种常见套管变形配合整形的仿真模型,用ABAQUS动力学显式模块,仿真分析整形过程,结果表明,整形工具各部件无塑性变形、可重复使用、滚柱未掉落;整形后的套管通径达标、无凸痕、上提无伤害,整形效果理想。该整形工具在大庆油田的宁8井、岔81井、华北油田的强2-4X井等30多口井投入使用,整形效果显著,克服了现有整形工具的缺陷,具有很好的实用性。 展开更多
关键词 套管整形 整形工具 纺锤形滚柱 凸痕处理 防止掉落
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