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1.
MODIFICATION OF GEOMETRY AND TECHNOLOGY OF CYLINDRICAL WORMS   总被引:1,自引:0,他引:1  
The objective of this research is to develop a new method of grinding process that can efficiently make concave profile of the worm thread smooth. The grinding is carried out using a wheel with curvature profile in the axial plane in the form of an arc of logarithmic spiral. The proposed method will provide maximum line of contact between the tool and the worm with minimum stress concentration at any point. The generating equation of the grinding tool profile and its arrangement with respect to the worm during thread grinding were determined.  相似文献   

2.
The aim of this work was to improve the accuracy of the concave profile worm thread by using a new generating surface of grinding wheel. To support the geometrical and technological optimization, the current article describes how we produced a smooth and accurately finished tool that will provide maximum line of contact between the tool and the worm with minimum stress concentration at any point. The present study proposed grinding the thread with grinding wheel having a curvature profile in the axial plane in the form of an arc of hyperbola. The generating equation of the tool profile and its arrangement with respect to the worm during grinding were determined.  相似文献   

3.
ABSTRACT

The aim of this work was to improve the accuracy of the concave profile worm thread by using a new generating surface of grinding wheel. To support the geometrical and technological optimization, the current article describes how we produced a smooth and accurately finished tool that will provide maximum line of contact between the tool and the worm with minimum stress concentration at any point. The present study proposed grinding the thread with grinding wheel having a curvature profile in the axial plane in the form of an arc of hyperbola. The generating equation of the tool profile and its arrangement with respect to the worm during grinding were determined.  相似文献   

4.
为了实现面齿轮磨齿加工,采用包络原理对面齿轮磨削蜗杆砂轮齿形进行设计,并对蜗杆砂轮的修整方法进行研究.建立了蜗杆砂轮齿面的包络坐标系;给出了蜗杆砂轮产形面方程;推导了蜗杆砂轮齿廓的曲面方程,利用Matlab软件对蜗杆砂轮齿廓进行了仿真,根据面齿轮磨削蜗杆砂轮的齿面生成原理,给出了修整工具的齿廓形状、齿宽限制以及修整工具...  相似文献   

5.
Stress analysis by a finite element method is carried out in the worm and the gear of a cylindrical worm gear drive with a concave worm profile, ground by a grinding wheel of double arc profile. A computer program, based on finite elements, is developed for the calculation of stress distributions in the worm thread and the gear tooth. By using this program, the influence of the design parameters of the worm gear drive and of the load position on stresses have been investigated. On the basis of the obtained results, by using regression analysis and interpolation functions, equations for the calculation of stresses in the worm thread and in the gear tooth have been derived.  相似文献   

6.
双导程ZN蜗杆修缘成形磨削研究   总被引:2,自引:0,他引:2  
双导程ZN蜗杆(又称法向直廓蜗杆)修缘的精密加工需要研究一种成形磨削方法。传统的蜗杆修缘磨削方法是根据加工经验对砂轮进行手工修形,加工效率低且难以实现高精度的齿形修缘磨削。为此,以ZN蜗杆修缘齿形的成形磨削为目标,在蜗杆法平面引入齿形修缘分析,建立ZN蜗杆修缘齿形的数学模型,依据空间啮合原理计算出蜗杆磨削的成形砂轮截形,并利用数控砂轮修整装置修整砂轮。为验证蜗杆修缘的成形磨削效果,选用实际生产中的某一双导程ZN蜗杆,在自主研制的数控砂轮修整系统和工厂的蜗杆磨床上进行试验,经过对成形磨削砂轮计算、修整和蜗杆磨削,结果表明,磨削蜗杆的修缘量满足预期设计要求,蜗杆齿形精度达到6级。表明该方法可用于双导程ZN蜗杆修缘的高精度成形磨削。  相似文献   

7.
基于磨削啮合原理建立ZC1蜗杆磨削过程的数学模型。根据空间坐标转换与啮合原理推导出砂轮轴向截形方程,借助MATLAB软件计算砂轮截形,生成其离散点数据,并在SolidWorks平台下建立砂轮与磨削机床几何模型。在VERICUT平台中编制数控程序进行仿真磨削加工,提取蜗杆截形,并测量虚拟误差,分析了磨削过程中当交错角变化时蜗杆截形的误差变化趋势,为ZC1蜗杆的精密磨削加工提供新思路。  相似文献   

8.
An analysis of possibilities for the selection of gear and tool geometry parameters is presented to reduce tooth profile errors during the grinding of gears by double tapered wheel (Hofler or Niles method), double wheel generating (Maag method) and by worm wheel techniques (Reishauer method). The selection of gear and tool geometry parameters is based on the analysis of the grid diagram of a gear and a rack. Formulas and graphs are presented for the selection of the pressure angle, module, and addendum of the rack-tool. The experimental results of the grinding of gears confirm the theoretical analysis.  相似文献   

9.
ABSTRACT

An analysis of possibilities for the selection of gear and tool geometry parameters is presented to reduce tooth profile errors during the grinding of gears by double tapered wheel (Hofler or Niles method), double wheel generating (Maag method) and by worm wheel techniques (Reishauer method). The selection of gear and tool geometry parameters is based on the analysis of the grid diagram of a gear and a rack. Formulas and graphs are presented for the selection of the pressure angle, module, and addendum of the rack-tool. The experimental results of the grinding of gears confirm the theoretical analysis.  相似文献   

10.
A mathematical model of the grinding process for an inner step thread with an abrasive wheel without tilt of the tool spindle is described. The problem of calculation of a shape of a curvilinear part of the profile of the grinding wheel and simulation of thread processing is solved for the evaluation of a possibility of cutting this thread with the required accuracy using a tool of a certain diameter. Examples of calculation of the process parameters for grinding various types of inner thread are shown.  相似文献   

11.
Displacements in worm gears with ground concave worm profile   总被引:1,自引:0,他引:1  
A computer program based on finite elements has been used for the calculation of displacements in the worm and the gear of a cylindrical worm gear drive with concave worm profile, ground by a grinding wheel of double arc profile. The influence of the design parameters of the worm gear drive and of the load position on displacements has been investigated. On the basis of the obtained results, by using regression analysis and interpolation functions, equations for an easy calculation of displacements in the worm thread and in the gear tooth have been derived.  相似文献   

12.
首次建立了包含砂轮修整参数的ZK蜗杆数学模型,分析了当砂轮半径发生变化时,m、z_1、d_1对蜗杆齿形误差的影响规律,给出了计算ZK蜗杆齿形误差的经验公式。提出了ZK蜗杆磨削过程中砂轮的智能化修整原理,实现了根据砂轮半径的变化对砂轮廓形的自动修整。  相似文献   

13.
In the case of generation grinding of the higher order modification gear surface, there are main problems such as difficulty in solving the 3D meshing equations and complexity of expressing the profile of grinding worm. In this study, an indirect generating method is proposed to calculate the profile of grinding worm by applying a virtual rack-cutter (VRC) between the grinding worm and the work gear. The grinding worm dressing experiments were processed by using a ball-nose diamond wheel. According to the results of tooth profile deviation measurement, the tooth profile modification curve is coincident with the predesigned modification curve. Compared with the gear without modification, vibration experiments show that the basic frequency, double frequency, and triple frequency decreased simultaneously, which verified the correctness of calculation and effectiveness of dressing for the profile curve of the grinding worm.  相似文献   

14.
Thread milling is becoming more and more employed as a technique for producing thread due to its advantages for industrial manufacturing sectors, such as the aeronautics, aerospace, and energy industries. The thread milling operation is atypical and several aspects have to be taken into account to perform it in good conditions. As for milling or grinding worms, grooves, thread, or other sculptured surfaces, in thread milling, there exists a geometrical interference between the tool and the nominal surface which would be obtained. Thread mills have quite complex geometry and their profile has an effect on the machined thread. The present study details geometrical aspects of the thread milling process. This article deals with the link between thread mill geometry and nominal thread profile. An approach is proposed to analyze the thread profile generated by the thread mill envelope. It is deduced that thread milling produces interferences, i.e., the machined thread profile is affected by an overcut. A method is proposed to correct this geometrical error in order to produce accurate thread.  相似文献   

15.
磨削TI蜗杆的砂轮廓形   总被引:3,自引:1,他引:3  
TI蜗杆由渐开线斜齿轮包络形成,与斜齿轮组成一种环面蜗杆传动.TI蜗杆传动推广应用的关键制造技术是解决蜗杆齿面的精确磨削问题,即确定出与磨削方法相对应的砂轮廓形.分析TI蜗杆传动运动关系和TI蜗杆产形面特点,将对TI蜗杆的磨削转化为成形砂轮磨削渐开线螺旋面的问题.依据齿轮啮合理论,推导出砂轮磨削渐开线螺旋面的啮合方程,依此得到精确磨削TI蜗杆的砂轮轴断面廓形.  相似文献   

16.
A method for gothic-arc ball-nut grinding is presented. The gothic-arc is a combined curve of two arcs with the same radius and shifted centers. Generally, gothic-arcs are manufactured by form grinding; the grinding wheel is formed into the gothic-arc and is tilted at the lead angle of the thread. In ball-nut grinding, which is internal grinding, interference between quill (wheel shaft) and internal surface of a workpiece limits the length of the ball-nut. In the presented method, the quill is tilted independently of the lead angle so as not to contact the internal surface of the workpiece. Instead, the wheel is formed into an optimum profile with which the nut obtains a gothic-arc profile. The procedure of finding the optimum wheel profile is presented. Grinding simulation showed that the gothic-arc thread is obtained accurately by the method, though a part of the thread surface is not a perfect gothic-arc. This method allows the use of large-diameter wheels to manufacture high-lead ball-nuts.  相似文献   

17.
金刚石修磨轮修形环面蜗杆砂轮的理论分析及试验   总被引:2,自引:0,他引:2  
环面蜗杆砂轮磨齿工艺是硬齿面齿轮精加工的重要方法,技术难点之一是用齿轮式的金刚石修整滚轮对蜗杆砂轮进行修形,本文探讨了齿轮式金刚石修形轮的制作方法,应用空间啮合理论对蜗杆砂轮磨齿修形及加工的啮合状况进行了分析,并用自制的金刚石修形轮在NZA蜗杆砂轮磨齿机上进行了修形及加工试验,试验证明,自制的金刚石修整轮精度完全符合使用要求。  相似文献   

18.
为了提高刀具的齿形精度,采用包络法计算刀具刃口齿形。根据二次包络环面蜗杆成型原理,提出了用包络法建立蜗轮齿面数学模型的方法,推导了蜗轮在中间平面齿形方程,即刀具刃口齿形方程,并利用MATLAB软件绘制出刀具刃口齿形。基于逆向工程的思想,用Pro/E软件建立了蜗杆三维模型。结果表明:蜗杆齿槽在轴向截面齿形与包络法计算得到的刀具刃口齿形一致。  相似文献   

19.
蜗杆、蜗轮传动副共轭齿面精密磨削加工在工程中一直是一个难题,本文根据齿面产形线构形原理,对蜗杆传动精密磨削加工进行了分析研究,提出双侧锥形蜗杆砂轮磨齿的新方法,为蜗杆传动创造形成新的传动副、切齿方法、切齿刀具及机床提供了条件。  相似文献   

20.
球开蜗杆砂轮的磨齿原理及其球基螺旋面参数   总被引:1,自引:1,他引:1  
提出用球开蜗杆砂轮连续分度展成磨削内齿轮的概念,阐述了其磨齿原理.建立了砂轮的球基渐开螺旋面议程和分度球面螺旋线方程,给出螺旋运动参数,螺旋线导程,螺旋升角的定义及计算式.  相似文献   

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