An experimental research on centerless grinding with a hard grinding wheel proves some viewpoints of the article. 我们对如何使用硬砂轮进行无心磨削的试验研究,很好地验证了本文提出的观点。
Centerless cylindrical grinding machine with wide grinding wheel 偏心轮与摇杆传动装置宽砂轮无心外圆磨床
Outer circle centerless grinding is a non centering grinding. It's orientated by outer circle of workpiece itself and grinded by support of a supporting plate. 外圆无心磨削是不定心的磨削,由托板支承靠工件自身外圆定位进行磨削。
Process Parameter Optimization of Centerless Grinding based on MATLAB 基于MATLAB的无心磨削参数工艺优化
Grinder, millstone-type, for solid mineral materials high accuracy through feed centerless grinding machine 磨石式固体矿物研磨机高精度通磨无心磨床
High accuracy through feed centerless grinding machine 高精度通磨无心磨床
Dynamic Analysis on Centerless Grinding of Shafts with Large Slender Ratio 特细长轴无心磨削动力分析
The Product Quality Monitoring System for Centerless Grinding in Manufacturing Process 用于无心磨削加工过程产品质量控制的监测系统
Motion Characteristics of Centerless Grinding 锆英石质研磨体的研制无心磨削的运动特性
Study on abrasive belt centerless grinding and polishing of rustless steel pipe 砂带无心磨抛不锈钢管的工艺试验研究
Angle Election of Screw Wheel in Centerless Grinding Tapered Roller Bearing 圆锥滚子无心磨削螺旋轮角度的确定
Research on Stability of Supported Centerless Grinding 支承式无心磨削稳定性研究
The workpiece shape accuracy could not certainly be improved after the centerless grinding. 无心磨削后并不都能将工件的形状精度进一步改善,故要得到较高的工件形状精度就要合理地选择磨削参数。
Analysis on the factors affecting workpiece shape accuracy in centerless grinding 无心磨削中影响工件形状精度的因素分析
A Microcomputer Measuring& Controlling System for Centerless Grinding Machines 无心磨削加工精度的微机测控系统
In this paper, an experimental research was presented for solving the quality of soft iron core surface applying finish cutting method instead of centerless grinding. 本文对应用精加工代替无心磨削进行了试验研究,解决了软铁芯表面质量问题。
Quality Control and Forecast in Cylindrical Centerless Grinding 无心外圆磨削的质量控制和预报
Some problems of improving the grinding accuracy on plain centerless grinding machines 普通无心磨床提高磨削精度的几个问题
This thesis expounds the quasi-dynamic control principle of the work-surface harmonic in centerless grinding and gives out the computer control block diagram. 论述无心磨削中工件表面谐波的准动力学控制原理,给出计算机控制框图。
Mechanica Application of Workpiece in Centerless Grinding 无心磨床磨削工件的力学应用
An Analysis of Geometric Errors of the Regulating Wheel in Centerless Grinding and its Improved Truing Method 无心磨导轮几何形状误差的分析及其新的修整方法
The Grey Forecasting of Quality contral in cylindrical Centerless Grinding 外圆无心磨削质量控制的灰色预测模型
Machining Accuracy Control for Centerless Grinding 无心内圆磨削加工尺寸精度控制
Applied Research on Centerless Grinding for Bearing Rings Used Ceramic Supporting 轴承无心磨削中陶瓷支承件的应用研究
Test of the influence of grinding working step frequency of centerless grinding machine on prismatic roundness showed that increasing number of times of rough grinding may improve prismatic roundness of outer diameter to a greater degree; 无心磨床磨削工步次数对棱面度影响的试验表明,增加粗磨遍数,可较好地改善外圆表面棱面度;
This paper start from the analysis of the stress in the centerless grinding process, deducing the stable grinding conditions of the workpiece in different circumstances, and then the stable grinding area chart are drawn. 论文首先分析了无心磨削过程中工件的受力情况,推导出工件在各种情况下的稳定磨削条件,并绘制了稳定磨削区域图。
The dynamic and thermal characteristic in centerless grinding systems will affect the machining precision of the workpiece largely, so it is very pivotal to study the dynamic and thermal characteristic of mechanisms thoroughly to improve machining performances. 无心磨削系统中的动态特性和热特性对工件加工精度均有很大影响,所以深入研究结构的动态特性和热特性是提高加工性能的关键。
The parameters of centerless grinding are always determined by grinding tests, which cost much time and money. 在实际应用中无心磨削的加工参数往往由磨削试验决定,成本高且要花费大量的时间。
Centerless grinding is a high productivity method of precision machining and the workpiece can get a good surface quality and high machining accuracy, as well as its high processing efficiency and lower processing costs, which are widely used. 无心磨削是一种高生产效率的精密加工方法,可以使工件获得良好的表面质量、较高的加工精度以及较高的加工效率,并且加工成本较低,因而应用广泛。
Base on the research of centerless grinding, this paper build the simulation model of the workpiece forming process step by step, providing the theoretic foundation for the simulation system. 随后根据对无心磨削加工研究,逐步建立了工件成圆过程的仿真模型,为仿真系统的开发提供了理论基础。