Lathe Machining
- 网络车削加工
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The Error Analysis and the Solving Methods of NC Lathe Machining
数控车削加工的误差分析及解决办法
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CNC Turning Lathe Machining with roughly the same , but the tool of choice , the choice of cutting parameters and workpiece clamping and other technology issues also have their own characteristics .
数控车削加工与普通车床加工大致相同,但刀具的选择、切削用量的选择以及工件的装夹等工艺问题也有各自的特点。
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Dynamic Simulation Model of Numerical Control Lathe Machining Based on Surface Modeling Technic
基于表面建模技术的数控车床动态加工仿真模型研究
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Exploitation of Numerical Control Lathe Machining Simulation System
数控车床仿真加工系统的开发
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Development of NC lathe Machining Simulation System
数控车削加工模拟系统开发
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On Key Technologies of Solid Simulation of NC Lathe Machining
实体数控车削仿真关键技术的研究
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Selection of Tool and Cutting Parameter in Heavy Lathe Machining
重型车床刀具及切削用量的选择
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An improved method for NC lathe machining simulation
数控车床加工仿真的一种改进方法
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Some Essential Algorithms in Simulation for NC Lathe Machining Object of Revolution
回转体数控车削加工仿真的算法研究
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The Research of Virtual Lathe Machining Environment
虚拟车削加工环境构建机理研究
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Lathe machining and Simulation in virtual environment
虚拟环境中车床的加工与仿真
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Process problem in heavy lathe machining
重型车床切削加工中的工艺问题
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The Research on NC Lathe Machining Simulation
数控车削加工计算机仿真技术的研究
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The Application Skills of Sole and Cycling Instructions in NC Lathe Machining
数控车削固定循环指令和单一指令的应用技巧
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Several Techniques of CNC Lathe Machining Cone and Thread
数控车床加工锥面和螺纹的几种技巧
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Irregular parts fixture design for CNC lathe machining
一种不规则零件的夹具设计
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The research on numerical control lathe machining method of automotive main decelerator arc tooth taper gear
汽车主减速器弧齿锥齿轮数控机床加工方法的研究
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The analysis and the application of tool nose radius compensation in CNC lathe machining Buying a Car
数控车刀尖R补偿的分析和应用
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Application of Advanced Programming and R-Parameter in Lathe Machining
车削编程中巧用高级编程及R参数
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Company mainly engaged in metal stamping parts , CNC lathe machining parts , machining centers and the like .
公司主要经营五金冲压件,数控车床零件加工,CNC加工中心等等。
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The3D simulation for numerical control ( NC ) lathe machining is studied in the paper according to the characteristic of lathe machining .
根据车削加工的特点,研究了数控车床加工过程的三维仿真问题。
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For speedup processing NC code , an efficient calculational method for the arc data based on the feature of the lathe machining is proposed .
为了加快处理速度,根据数控车削加工的特点,提出了一种快速计算圆孤刀轨数据算法;
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Enquiries and orders of bearing lathe machining rings and LYC bearings are warmly welcomed .
同时欢迎对本公司轴承车加工件有兴趣的厂家来人。来电联系。
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This system combine the characteristics of CNC lathe machining with the processing of the virtual CNC lathe . Determine the cutting algorithm , Meet the real-time virtual cutting .
虚拟切削方法的研究从数控车床的加工特点出发,结合对虚拟数控车床加工过程的研究,确定切削算法,满足虚拟切削的实时性。
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The 3 dimensional model of NC lathe machining is established based on analysis of its machining characteristics and its dynamic simulation process is completed on the microcomputer platform by use of OpenGL technology .
在分析数控车床加工特点的基础上,建立了其三维加工模型,并在微机上利用OpenGL技术实现了数控车床加工过程的三维动态仿真。
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For the cover of rolled stainless steel plate welded shape , cover and vacuum sealing flange at the end of the trough of large vertical lathe machining fine car molding .
内罩为不锈钢板卷制密焊成型,罩底法兰和真空密封槽由大型立车精车加工成型。
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The paper presents tool offset in the process of CNC lathe machining , and expounds computational method of tool offset when CNC lathes do not possess the function of tool-radius offset .
全面介绍了数控车床加工过程中的刀具补偿,并且对数控车床不具备刀具半径补偿功能时的刀具补偿计算方法进行了阐述。
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The dynamic simulation model of numerical control lathe machining was established based on analysis of its machining characteristics . The deficiency of ancient model was analysed and the machining surface simulation model based on helix camber was lodged .
在充分考虑数控车床加工表面特征的基础上,对以往仿真模型的不足进行了分析,提出了基于螺旋曲面的加工表面模型。
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Taking NSR_40 Roots blower as an example , the processing ways , technics and NC program of this twist tri_lobe profile on the lathe machining center is set forth in detail .
以NSR-40型罗茨鼓风机的三叶扭叶叶轮为例,详细阐述了这种叶轮型面在车削加工中心的加工方法、工艺和数控编程。
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In the article , the errors of NC lathe machining due to the tool nosearc and axial end clearance of ball screw on the NC lathe are analyzed and their solving methods are provided .
分析了数控车床使用中由于车刀刀尖圆弧和车床滚珠丝杠轴向间隙引起的加工误差;提出了减小加工误差的具体解决办法。