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MECHANICAL-ELECTRIC COUPLING DYNAMICAL CHARACTERISTICS OF AN ULTRA-HIGH SPEED GRINDING MOTORIZED SPINDLE SYSTEM 被引量:23
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作者 LUE Lang XIONG Wanli GAO Hang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2008年第5期34-40,共7页
On the basis of the traditional mechanical model of a grinding wheel rotor and the mechanical-electric coupling model with ideal sinusoidal supply, taking high-frequency converting current of inverter power switches i... On the basis of the traditional mechanical model of a grinding wheel rotor and the mechanical-electric coupling model with ideal sinusoidal supply, taking high-frequency converting current of inverter power switches into further consideration, a modified mechanical-electric coupling model is created. The created model consists of an inverter, a motorized spindle, a grinding wheel and grinding loads. Some typical non-stationary processes of the grinding system with two different supplies, including the starting, the speed rising and the break in grinding loads, are compared by making use of the created model. One supply is an ideal sinusoidal voltage source, the other is an inverter. The theoretical analysis of the high-order harmonic is also compared with the experimental result. The material strategy of suppressing high-order harmonic mechanical-electric coupling vibration by optimizing inverter operating parameters is proposed. 展开更多
关键词 Ultra-high speed grinding Motorized spindle Mechanical-electric coupling Vibration Suppression
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Simulation and Experimental Analysis of Super High-Speed Grinding of Ductile Material 被引量:3
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作者 SHIMIZU Jun EDA Hiroshi 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期302-,共1页
This study aims to reduce the work-affected layer of the machined surface by carrying out the grinding at the speed over static pr o pagation speed of plastic wave of ductile materials and also aims to clarify suc h s... This study aims to reduce the work-affected layer of the machined surface by carrying out the grinding at the speed over static pr o pagation speed of plastic wave of ductile materials and also aims to clarify suc h super high-speed machining mechanism.This paper reports on the result obtain ed through the molecular dynamics simulations and experiments on the super-spee d grinding below and beyond static propagation speed of aluminum.From the simul ation results,it is verified that the plastic deformation is reduced when the m a chining speed exceeds the material static propagation speed of plastic wave and its mechanism is completely different from that of the ordinary grinding process .Experimental results also show the improvement of the surface integrity when t he machining speed exceeds the material static propagation speed of plastic wave . 展开更多
关键词 molecular dynamics grinding propagation speed of pl astic wave work-affected layer
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Development of CAD/CAM system and profile measuring device for CNC grinding machine to obtain an optimal grinding speed 被引量:2
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作者 LIM Sang-Heon KIM Jae-Hyun LEE Choon-Man 《Journal of Central South University》 SCIE EI CAS 2011年第1期146-152,共7页
Cam mechanics is one of the most popular devices for generating irregular motions and is widely used in automatic equipment,such as textile machines,internal combustion engines,and other automatic devices.In order to ... Cam mechanics is one of the most popular devices for generating irregular motions and is widely used in automatic equipment,such as textile machines,internal combustion engines,and other automatic devices.In order to obtain a positive motion from the follower using a rotating cam,its shape should be correctly designed and manufactured.The development of an adequate CAD/CAM system for a cam profile CNC grinding machine is necessary to manufacture high-precision cams.The purpose of this study is the development of a CAD/CAM system and profile measuring device for a CNC grinding machine to obtain an optimal grinding speed with a constant surface roughness.Three types of disk cams were manufactured using the proposed algorithm and procedures to verify effectiveness of the developed CAD/CAM system. 展开更多
关键词 CAM CAD/CAM system CNC grinding machine optimal grinding speed
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Dechlorination of pentachlorophenol by grinding at low rotation speed in short time 被引量:2
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作者 许芝 张晓宇 费庆志 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第3期578-582,共5页
In order to apply grinding method for degradation of pentachlorophenol(PCP) to an industrial scale,the proportion of different materials[CaO,SiO_2 and CO(NH_2)_2]and the size of grinding balls were examined.For saving... In order to apply grinding method for degradation of pentachlorophenol(PCP) to an industrial scale,the proportion of different materials[CaO,SiO_2 and CO(NH_2)_2]and the size of grinding balls were examined.For saving energy and increasing dechlorination efficiency,the rotation speed and grinding time were maintained at relatively low values.At a mass ratio of grinding balls to materials(40:1),PCP was added into a big steel jar(300 ml) with other materials to grind at 300 r ·min^(-1)for 5 h.The results indicated that when PCP was mixed with CaO and SiO_2in a molar ratio of 1:60:60,the best dechlorination of 58.4%was achieved.CO(NH_2)_2 could not be used as hydrogen donor in the dehalogenation by mechanochemical reaction,since it restrained the dechlorination process.The size of grinding balls has significant effect on the reaction.The experiment with 5 mm steel balls indicates that the weight is too light to provide appropriate energy for the reaction,while steel balls of 10 and 15 mm could give better dechlorination reaction.It indicates that dechlorination depends on the mass of balls and fill rate. 展开更多
关键词 Dechlorination Pentachlorophenol Rotation speed grinding time
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Characterization and Analysis of Inconel 718 Alloy Ground at Different Speeds
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作者 Hao Liu Huili Han +2 位作者 Qinghong Jiang Minglin He Bi Zhang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2024年第2期137-149,共13页
Inconel 718(IN718)alloy is widely applied to fabricate high temperature resistant or corrosion resistant parts due to its excellent mechanical performance.However,the machining of IN718 alloy is difficult as it may ca... Inconel 718(IN718)alloy is widely applied to fabricate high temperature resistant or corrosion resistant parts due to its excellent mechanical performance.However,the machining of IN718 alloy is difficult as it may cause serious tool wear and poor surface quality(SQ)of the workpiece.In this work,grinding experiments on IN718 alloy at different speeds were conducted by using a CBN grinding wheel.The relationship between grinding speed,SQ and subsurface damage(SSD)was well studied.With increasing grinding speed,surface roughness decreased,and SQ was greatly improved.Meanwhile,the microhardness of the grinding surface declined as the grinding speed increased.The SSD depth was almost unchanged when the grinding speed was lower than 15 m/s,then it decreased with higher grinding speeds.It was attributed to the mechanical-thermal synergistic effect in the grinding process.The results indicated that increasing grinding speed can effectively improve the SQ and reduce the SSD of IN718 alloy.The conclusion in the work may also provide insight into processing other hard-to-machining materials. 展开更多
关键词 Surface integrity grinding speed IN718 alloy Precision machining CBN grinding wheel
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Development and Prospectives of Ultra-High-Speed Grinding Technology
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作者 傅玉灿 杨路 +2 位作者 徐九华 田霖 赵家延 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2014年第4期345-361,共17页
Ultra-high-speed grinding(UHSG)is a significant and powerful machining method in view of the enhanced productivity and precision demands.Previous researches regarding formation mechanisms and crucial technologies are ... Ultra-high-speed grinding(UHSG)is a significant and powerful machining method in view of the enhanced productivity and precision demands.Previous researches regarding formation mechanisms and crucial technologies are comprehensively and thoroughly summarized to highlight state-of-art technology of UHSG.On the basis of the interdependence between process and machine innovations,theoretically,grinding mechanisms in strain hardening,strain rate strengthening,thermal softening,size effect and process characteristics need more in-depth studies to clarify the dominance of UHSG.Technically,CFRP wheel integrating with the brazed bonding has a prominent advantage in bonding strength and grit′s configuration over vitrified bonding,which would be superior in UHSG.Furthermore,external high pressure cooling combining with inner jet cooling methods,accompanied by scraper plates to alleviate the effect of air boundary,are crucial and practical measures for realizing effective cooling in UHSG.Grinding processes,especially those being related to grinding parameters and precise in-process measuring approaches,are also prerequisite for fitting and investigation of UHSG. 展开更多
关键词 ultra-high-speed grinding(UHSG) grinding mechanism crucial technologies
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Investigation of Creep Feed Grinding Parameters and Heat treatment Effects on the Nickel-base Superalloys 被引量:1
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作者 HasanJamshidi SayedAliSadoughVanini AlirezaAttari 《材料热处理学报》 EI CAS CSCD 北大核心 2004年第5期92-96,共5页
The Nickel base Superalloys are the most famous complicated and useable of Superalloys to make hot zone components of the gas turbines. The complicated dimensional tolerances, specially at the root of the blade show i... The Nickel base Superalloys are the most famous complicated and useable of Superalloys to make hot zone components of the gas turbines. The complicated dimensional tolerances, specially at the root of the blade show importance of grinding processes at the production of blades root. The prediction of the effect of machining parameters on the soundness of component surface strengthening for reaching to a suitable surface finishing and avoiding from crack formation at the work part during machining operation often is not easy and feasible so needs to more industrial investigation. This research is about frame 5 blade designed by GE and made from Superalloy IN738LC has been investigated. The formation of a plastically deformed and heat affected zone during grinding of Superalloy IN738LC with a high depth of cut but slow work speed (creep feed grinding) was investigated. Parameters such as work speed, depth of cut and radial dressing speed have been considered as variables and their effects have been studied. During experimental performed, the voltage and current of motor measured and power and special energy calculated. Some samples heat-treated (of the 1176°C for 1 hr under neutral argon gas and cooling rate of 15°C /min up to 537°C and then air cooling) to study grains recrystallization. Other samples have been created from the roots of blades and then coated by Nickel to measure boundary layer micro-hardness. The results show that increasing work speed leads to increasing the use power. Increasing the depth of cut, by increasing material removal rate, and the radial dressing speed, by decreasing power, lead to decreasing special energy. The temperature created by grinding lead to decreasing plastic deformation and boundary layer formation. When the radial dressing speed changes from 1 to 0.6 u,m/rev and other parameters are kept unchanged the roughness of surface increases and the special energy decreases. Sufficient dressing is very essential in limiting the width of the molten zone to few micrometers. As a result, it was found that local melting at contact spots to be a rather common mechanism during grinding of superalloys, lead to so-called white layers which can easily be observed on metallographic cross sections. 展开更多
关键词 徐变送进磨制 深度切割 工件速度 再结晶 灼烧 热处理 镍超级合金
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Theoretical Study on Non-transmission High Efficient Parallel Camber Grinding Machine
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作者 LI Yu-peng (Department of Mechanical Engineering, Yanshan University, Qinhuangdao 066004, China) 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期36-,共1页
Be directed against the development trend of modern CNC grinding machine towards high precision and high efficiency, some general weaknesses of existing camber grinding machine are analyzed in detail. In order to deve... Be directed against the development trend of modern CNC grinding machine towards high precision and high efficiency, some general weaknesses of existing camber grinding machine are analyzed in detail. In order to develop new type CNC camber grinding machine that can grind complex die, and genuinely achieved accurate feed and high efficient grinding, a new type camber grinding machine is put forward, called non-transmission virtual-shaft CNC camber grinding machine. Its feed system is a parallel mechanism that is directly driven by linear step motor. Therefore, traditional transmission types, such as the ball lead-screw mechanisms, the gears, the hydraulic transmission system, etc. are cancelled, and the feed system of new type CNC camber grinding machine can truly possess non-creep, good accuracy retentiveness a wide range of feed-speed change, high kinematical accuracy and positioning precision, etc. In order to realize that the cutting motion is provided with high grinding speed, step-less speed variation, high rotational accuracy, good dynamic performance, and non-transmission, the driving technology of hollow rotor motor is applied to drive the spindle of new type grinding machine,thus leading to the elimination of the transmission parts of cutting motion. The principle structure model of new type camber grinding machine is advanced. The selection, control gist and driving circuit line of the linear step motor are expounded. The main technology characteristics and application advantages of non-transmission virtual-shaft CNC camber grinding machine are introduced. 展开更多
关键词 camber grinding machine non-transmission precision feed high speed grinding
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Separate critical condition for ultrasonic vibration assisted grinding
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作者 张洪丽 张建华 《Journal of Shanghai University(English Edition)》 2009年第5期391-395,共5页
Separate characteristic of the tangential ultrasonic vibration assisted grinding (TUAG) machining is analyzed based on TUAG process, and a critical speed formula is given to correctly set the machining parameters to i... Separate characteristic of the tangential ultrasonic vibration assisted grinding (TUAG) machining is analyzed based on TUAG process, and a critical speed formula is given to correctly set the machining parameters to insure the separate characteristics of TUAG process. The critical speed is not only related to the ultrasonic vibration amplitude and frequency, but also to the grinding wheel velocity and the cutting point space, and the grinding force can be decreased during the TUAG process with separability. Grinding force experiments are conducted, and the experimental results are in good agreement with the theoretical results. 展开更多
关键词 tangential ultrasonic vibration assisted grinding (TUAG) critical speed separate characteristic
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Applications of High-Efficiency Abrasive Process with CBN Grinding Wheel
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作者 Yali Hou Changhe Li Yan Zhou 《Engineering(科研)》 2010年第3期184-189,共6页
High-efficiency abrasive process with CBN grinding wheel is one of the important techniques of advanced manufacture. Combined with raw and finishing machining, it can attain high material removal rate like turning, mi... High-efficiency abrasive process with CBN grinding wheel is one of the important techniques of advanced manufacture. Combined with raw and finishing machining, it can attain high material removal rate like turning, milling and planning. The difficult-to-grinding materials can also be ground by means of this method with high performance. In the present paper, development status and latest progresses on high-efficiency abrasive machining technologies with CBN grinding wheel relate to high speed and super-high speed grinding, quick point-grinding, high efficiency deep-cut grinding, creep feed deep grinding, heavy-duty snagging and abrasive belt grinding were summarized. The efficiency and parameters range of these abrasive machining processes were compared. The key technologies of high efficiency abrasive machining, including grinding wheel, spindle and bearing, grinder, coolant supplying, installation and orientation of wheel and workpiece and safety defended, as well as intelligent monitor and NC grinding were investigated. It is concluded that high efficiency abrasive machining is a promising technology in the future. 展开更多
关键词 CBN grinding super-high speed grinding HIGH Efficiency DEEP-CUT grinding Quick-Point grinding
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德钢4号高炉烟气自循环制粉系统设计
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作者 林祥海 吴波 +4 位作者 相威 罗彬 陈伟 闫大波 胡跃文 《四川冶金》 CAS 2024年第2期47-51,共5页
对四川德胜集团钒钛有限公司应用不带脱水装置的烟气自循环制粉工艺进行了介绍和总结,该制粉工艺的烟气炉采用全烧高炉煤气、中速磨煤机制粉、一级大布袋收粉,磨制的烟煤挥发分为25%,在稳定生产期间系统末端氧含量控制在12%以内,粉尘排... 对四川德胜集团钒钛有限公司应用不带脱水装置的烟气自循环制粉工艺进行了介绍和总结,该制粉工艺的烟气炉采用全烧高炉煤气、中速磨煤机制粉、一级大布袋收粉,磨制的烟煤挥发分为25%,在稳定生产期间系统末端氧含量控制在12%以内,粉尘排放浓度<10 mg/Nm^(3)。生产实践表明:不带脱水装置全烧高炉煤气的烟气自循环制粉工艺安全可靠,满足生产要求。 展开更多
关键词 高炉喷煤 烟气自循环 脱水装置 中速磨
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风电轴承大尺寸钢球光球加工技术
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作者 袁浩 刘疆 +2 位作者 胡伟平 孙永杰 胡瑾 《轴承》 北大核心 2024年第9期63-67,共5页
针对国内现有风电轴承大尺寸钢球光球机加工精度低,加工效率低的问题,对钢球在光球机动、静磨盘沟道内的运动规律、受力特点和磨削机理进行分析,光球时钢球受到的磨削力与动、静磨盘沟道深度比有关,并基于ADAMS仿真得到最佳动、静磨盘... 针对国内现有风电轴承大尺寸钢球光球机加工精度低,加工效率低的问题,对钢球在光球机动、静磨盘沟道内的运动规律、受力特点和磨削机理进行分析,光球时钢球受到的磨削力与动、静磨盘沟道深度比有关,并基于ADAMS仿真得到最佳动、静磨盘沟道深度比为7∶3,去两极和环带、成形、走圆工序最佳动磨盘转速分别为90,120,90 r/min。样机试验结果表明,改进后光球机的光球效率提高了30%,球形误差至少提高了0.2 mm,表面粗糙度Ra值至少减小了0.03 mm。 展开更多
关键词 滚动轴承 风电轴承 钢球 仿真 磨削 转速 加工精度
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轴承内圆轴向超声高速磨削理论建模与试验研究
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作者 吴金津 王旭 +3 位作者 袁巨龙 苑泽伟 王安静 陈聪 《表面技术》 EI CAS CSCD 北大核心 2024年第8期119-132,共14页
目的以GCr15材料的6309型轴承内圆为研究对象,探究高转速超声磨削过程中超声辅助振动对磨粒运动轨迹、磨削后表面粗糙度、圆度以及微观形貌的影响规律。方法基于超声内圆磨削磨粒切削轨迹及超声振幅与砂轮转速对轨迹影响的理论仿真,构... 目的以GCr15材料的6309型轴承内圆为研究对象,探究高转速超声磨削过程中超声辅助振动对磨粒运动轨迹、磨削后表面粗糙度、圆度以及微观形貌的影响规律。方法基于超声内圆磨削磨粒切削轨迹及超声振幅与砂轮转速对轨迹影响的理论仿真,构建磨削去除量与磨削表面粗糙度的理论模型,通过对轴承内圆进行超声磨削试验,研究高转速(16000~22000 r/min)下各工艺参数对内圆表面质量的影响并验证理论粗糙度评价模型。结果超声振幅的增大使磨粒与内圆接触轨迹变长,但随砂轮转速的提高,磨粒切削轨迹的密集程度也有所下降。振幅和砂轮转速的增大可使切削去除量增大、粗糙度降低,铬刚玉粒度100#陶瓷结合剂砂轮磨削GCr15轴承内圆后,其表面质量更有优势,单因素下表面质量变化趋势与理论分析结果相一致。结论在相同磨削参数下,1.5μm振幅超声磨削可使内圆圆度降至0.92μm,粗糙度降至130.5 nm,与传统磨削相比,粗糙度最高减小了41.5%,圆度最高减小了52.6%。在高转速下,各因素按砂轮对磨削后表面质量的影响由大到小的顺序依次为砂轮转速、超声振幅、进给速度,当磨粒线速度超过41.8 m/s、进给速度超过600 mm/min、振幅超过1.5μm时,表面质量呈下降趋势。 展开更多
关键词 轴向超声内圆磨削 高速 去除量 磨粒轨迹 表面质量
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CFRP砂轮高速外圆磨削稳定性分析
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作者 秦鹏 冯伟 +4 位作者 刘斐 张霖 杨淮文 曹乐 张国建 《航空制造技术》 CSCD 北大核心 2024年第8期76-84,共9页
为分析不同影响因素对CFRP砂轮高速外圆磨削稳定性的影响,采用铁木辛柯梁理论对具有阶梯特征的工件进行动力学分析,结合锤击试验测得砂轮动态特性,对高速磨削过程中的砂轮-工件两自由度系统进行了磨削稳定性分析。在对阶梯工件进行动力... 为分析不同影响因素对CFRP砂轮高速外圆磨削稳定性的影响,采用铁木辛柯梁理论对具有阶梯特征的工件进行动力学分析,结合锤击试验测得砂轮动态特性,对高速磨削过程中的砂轮-工件两自由度系统进行了磨削稳定性分析。在对阶梯工件进行动力学分析的过程中,发现阶梯特征对于动态特性的影响较小,误差小于2%。在稳定性分析中发现,不同的砂轮转速和不同的工件磨削位置均会影响磨削稳定性。磨削位置越靠近工件中心,工件刚度越弱,磨削稳定性降低易诱发颤振;而在靠近顶尖支撑的位置,由于工件刚度增强,该位置的磨削稳定性将同时受到工件和砂轮的动力学性能的影响。通过磨削试验验证了分析方法的有效性,试验结果表明,工件磨削位置的刚度差异将会影响加工表面质量,由磨削失稳导致的粗糙度增幅可达51.6%。 展开更多
关键词 CFRP砂轮 高速磨削 阶梯工件 铁木辛柯梁理论 磨削稳定性分析
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体育器材SAE1008低碳钢高速磨削砂轮工艺优化
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作者 张楠 李强 《机械设计与制造》 北大核心 2024年第8期223-226,231,共5页
利用CBN砂轮高速磨削处理技术,对体育器材用SAE1008钢开展单因素测试,对比了不同磨削工艺下表层残余应力变化特征,并分析了相关影响因素。研究结果表明:当砂轮线速度到达60m/s时,获得了较大切向力,残余压应力相对其它工艺条件明显减小... 利用CBN砂轮高速磨削处理技术,对体育器材用SAE1008钢开展单因素测试,对比了不同磨削工艺下表层残余应力变化特征,并分析了相关影响因素。研究结果表明:当砂轮线速度到达60m/s时,获得了较大切向力,残余压应力相对其它工艺条件明显减小。当砂轮进给速增大后,形成线性降低的残余压应力,获得了更大比磨削能和更小残余压应力。位于(0.5~0.6)mm/min范围内呈现拉应力状态,应力作用造成的层深介于(100~150)μm,形成了更高磨削温度。230/270砂轮相对其它砂轮在磨削阶段形成更小表面残余应力,沿深度方向也产生了残余拉应力。该研究为设计减小残余拉应力以及改善钢材工件表面组织结构完整性的高速磨削技术提供了一定的参考价值。 展开更多
关键词 高速磨削 残余应力 工艺参数 单因素测试 SAE1008钢
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Thermal and mechanical behavior of casting copper alloy wheel during wheel and belt continuous casting process
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作者 Kun Gao Yan Peng 《China Foundry》 SCIE EI CAS CSCD 2024年第1期82-90,共9页
To investigate the thermal and mechanical behavior of casting wheel,a two-dimensional thermoelastic-plastic finite element model was used to predict the temperature,stress and distortion distribution of the casting wh... To investigate the thermal and mechanical behavior of casting wheel,a two-dimensional thermoelastic-plastic finite element model was used to predict the temperature,stress and distortion distribution of the casting wheel during the wheel and belt continuous casting process.The effects of grinding thickness and casting speed on the thermal and mechanical behaviors of the center of the hot face of the casting wheel were discussed in detail.In each rotation,the casting wheel passes through four different spray zones.The results show that the temperature distribution of the casting wheel in different spray zones is similar,the temperature of the hot face is the highest and the temperature reaches the peak in the spray zoneⅢ.The stress and distortion depend on the temperature distribution,and the maximum stress and distortion of the hot face are 358.2 MPa and 1.82 mm,respectively.The temperature at the center of the hot face decreases with increasing grinding thickness and increases with increasing casting speed. 展开更多
关键词 casting wheel finite element model grinding thickness casting speed hot face spray zones
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高速机械粉磨对油基钻屑灰渣活性的影响
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作者 张显河 文华 +4 位作者 郑召 包志涛 余伟豪 雷旭 范伟 《混凝土与水泥制品》 2024年第2期88-92,共5页
对油基钻屑灰渣进行了高速机械粉磨处理,研究了粉磨时间(0~7 min)对灰渣粒径分布和比表面积的影响,分析了掺灰渣胶砂试件的力学性能,并进行了XRD、SEM、FTIR微观分析。结果表明:与未粉磨处理的灰渣相比,粉磨3 min灰渣的粒径分布范围缩小... 对油基钻屑灰渣进行了高速机械粉磨处理,研究了粉磨时间(0~7 min)对灰渣粒径分布和比表面积的影响,分析了掺灰渣胶砂试件的力学性能,并进行了XRD、SEM、FTIR微观分析。结果表明:与未粉磨处理的灰渣相比,粉磨3 min灰渣的粒径分布范围缩小至1.220~40.100μm,D50降低了60.9%,比表面积增大了27.6%;与其他粉磨时间的灰渣相比,用粉磨3 min的灰渣等质量取代30%水泥所制备的胶砂试件的28 d抗压强度最高,28 d抗折强度也较高;适宜的粉磨时间能够促进灰渣中的活性Si O2、Al2O3等与水泥水化产物Ca(OH)2发生二次水化反应,生成C-S-H凝胶和AFt,提高胶砂结构的密实度。 展开更多
关键词 高速机械粉磨 油基钻屑灰渣 活性激发 胶砂 性能
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基于五轴平台的枞树型轮槽铣刀加工工艺分析
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作者 张晨阳 唐清春 +3 位作者 周乐安 魏巍 潘英广 王太子 《工具技术》 北大核心 2024年第1期74-81,共8页
轮槽成型铣刀是加工汽轮机轮毂槽的重要工具,其结构复杂且加工困难。为提高加工效率和精度,以某型高速钢轮槽铣刀为例,提出基于五轴平台的加工工艺方法。使用UG软件基于五轴车铣复合机床规划粗加工刀具路径,并采用专用后置处理器生成数... 轮槽成型铣刀是加工汽轮机轮毂槽的重要工具,其结构复杂且加工困难。为提高加工效率和精度,以某型高速钢轮槽铣刀为例,提出基于五轴平台的加工工艺方法。使用UG软件基于五轴车铣复合机床规划粗加工刀具路径,并采用专用后置处理器生成数控加工程序,通过虚拟机床进行仿真验证;采用NUMROTO软件规划精加工路径,获得磨削NC代码并进行虚拟加工验证;进行实际切削验证,通过DOOSAN PUMA SMX2600ST车铣复合加工中心对刀具进行粗加工后,在SAACKE UWIF五轴工具磨床上完成刀具的精加工。实验结果证明,该工艺方法不仅能保证产品质量符合工艺设计要求,而且制造效率提高了20%。 展开更多
关键词 轮槽铣刀 五轴联动机床 虚拟仿真 高速钢 磨削
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轴承内圈沟道磨削热应力场有限元仿真分析 被引量:1
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作者 张莹 王德祥 +1 位作者 郭峰 栗心明 《轴承》 北大核心 2024年第6期31-37,共7页
针对轴承套圈滚道磨削加工时过大的热应力会导致滚道表层产生热损伤的问题,联合ABAQUS及Hyper-Mesh建立B7008C角接触球轴承内圈沟道磨削热应力场有限元模型,开发DFLUX子程序减少模型分析步的数量,克服了网格数量庞大导致磨削热源无法沿... 针对轴承套圈滚道磨削加工时过大的热应力会导致滚道表层产生热损伤的问题,联合ABAQUS及Hyper-Mesh建立B7008C角接触球轴承内圈沟道磨削热应力场有限元模型,开发DFLUX子程序减少模型分析步的数量,克服了网格数量庞大导致磨削热源无法沿沟道整周移动的问题,揭示了内圈沟道磨削热应力场的形成机制与演化规律,得到了内圈沟道表层产生残余拉应力的临界温度,并分析了工艺参数对内圈沟道残余拉应力分布的影响,结果表明:只有当磨削热应力超过材料的屈服强度时,内圈沟道表层才会产生残余拉应力,产生残余拉应力的临界温度约为420℃;随着热流密度的增大及工件转速的减小,内圈沟道表层的残余拉应力和分布深度增大。 展开更多
关键词 滚动轴承 角接触球轴承 滚道 磨削 热应力 残余应力 热流密度 转速
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宽幅高速精密挠性辊筒磨削工艺和动平衡方法的研究
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作者 王苏黔 刘云亮 汪旭栋 《林业机械与木工设备》 2024年第7期52-56,63,共6页
随着人造板装备技术的成熟,客户对人造板的板面要求逐渐提高,砂磨机作为板面加工的最后一段工序,对板面的质量影响至关重要,而砂磨机运行的质量主要靠砂架辊筒的加工精度来保证,如何提高辊筒的加工质量,数控轧辊磨和挠性动平衡机是不可... 随着人造板装备技术的成熟,客户对人造板的板面要求逐渐提高,砂磨机作为板面加工的最后一段工序,对板面的质量影响至关重要,而砂磨机运行的质量主要靠砂架辊筒的加工精度来保证,如何提高辊筒的加工质量,数控轧辊磨和挠性动平衡机是不可缺少的两种重要生产设备,磨削和动平衡工艺同等重要。 展开更多
关键词 砂架系统 宽幅高速 挠性辊筒 精密磨削 特殊标定动平衡
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