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1)  regenerative chatter
再生颤振
1.
The regenerative chatter is a kind of familiar phenomena in the metal machining process,which also is one of primary factors that affect the processing quality and limits the productivity enhances.
再生颤振是金属切削加工过程中的一种常见现象,也是影响零件加工质量和限制生产率提高的主要因素之一。
2.
A closed-loop control system and its transfer function models of dynamic milling process are established and studied based on regenerative chatter theory.
基于再生颤振机理,研究和建立动态铣削加工振动系统的闭环控制系统,以及其传递函数模型。
3.
In this paper, through the analysis of High-speed Lathe-milling Manu-center, and taking use of Fuzzy-neural network control the cutting force, the regenerative chatter and the tool-system's unbalance of High-speed Lathe-milling Manu-center.
文章通过对高速车铣加工中心的分析 ,利用模糊神经网络对高速车铣加工中心的切削力、再生颤振和刀具系统平衡进行控制 ,同时 ,提出了相应的学习和调整算法。
2)  regenerative chatter
再生型颤振
1.
The optimal value of the phase shift angle of the regenerative chatter signal between the two successive cuts is 270°.
文中同时提出了一套性能可靠的主轴转速寻优控制系统 ,其再生型颤振控制方法不需要对机床系统进行辨识 ,实施起来简单易行 ,故具有广阔的生产应用前景。
3)  regenerative chatter
再生型切削颤振
1.
The correlation between the cutting width limit and the rotation speed of the spindle in a regenerative chatter system was derived.
推导了机床再生型切削颤振系统极限切削宽度随主轴转速变化的计算公式。
2.
The calculating formulas about the limitedcutting width blim versus the spindle speed forregenerative chatter system are derived.
机床切削加工一般都是在有振纹的表面上进行的,由振纹再生效应引发的再生型切削颤振是机床切削颤振的主要形态。
4)  regenerative modulating chatter
再生调制型颤振
1.
According to appearances of multi frequency grinding chatter and signal modulating principle,the regenerative modulating chatter based on amplitude modulating principle in grinding process is advanced,and further theoretical analyses and experimental researches about regenerative modulating chatter are carried out.
根据对颤振多频现象的分析及信号调制原理,提出了磨削加工中基于幅值调制原理的再生调制型颤振,并对再生调制型颤振进行了理论分析和试验研究。
5)  Signal generator of vibration
颤振信号发生器
6)  regenerative chatter
再生振动
1.
Mathematical models of cutting force,cutter deflection and cutting thickness resulted from regenerative chatter of an instant milling unit are deduced by studying on dynamics charcaters of up milling process.
研究逆铣加工过程动态特性,建立其铣削微元单位瞬态切削力、刀具偏心和再生振动引起的切削厚度数学模型。
2.
By considering synthetically influence of regenerative chatter theory and cutter deflection model on dynamic milling thickness, the formula of whole energy consumed in non-linear peripheral milling process is deduced.
综合考虑了再生振动效应与刀具偏心模型对动态铣削厚度的影响,建立了非线性立铣加工过程消耗能量表达式,以此作为目标函数提出了铣削振动状态预估与控制措施;利用铣削过程虚拟仿真系统对该方法的有效性和实用性进行了验证。
3.
In which the influence of regenerative chatter and cutter deflection model on dynamic milling process is considered comprehensively.
综合考虑再生振动效应和刀具偏心模型对动态铣削加工过程的影响,改进并建立具有较高预测精度的非线性圆周铣削力数学模型和铣削加工过程闭环控制系统。
补充资料:颤凛
1.因畏惧而颤抖。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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