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1)  vibration locus
振动轨迹
1.
The theories and methods for analysing of vibration type and selecting vibrational parameters of control such as operating frequency,dynamic response,amplitude and vibration locus of mill tube during designing the type of WGM 3 superfine wave grinding mill are mainly introduce
主要介绍在WGM-3 型超细振动磨机设计中振型分析和选择工作频率、动力响应和振幅控制、磨机振动轨迹等振动参数控制的理论和方
2)  amplitude locus
振幅轨迹
3)  formant trajectory 
共振峰轨迹
4)  moving track
运动轨迹
1.
Scraper moving track and analysis in air dense medium dry separator;
空气重介干法分选机刮板运动轨迹及分析
2.
This passage will introduce a numerical value recursion method,by which can make the academic analyses and researches of the moving tracks of materials in spin-vibrating screen.
提出一种数值递推法,对物料在旋振筛面上的运动轨迹进行理论分析和研究:物料在旋振筛筛面上存在8种不同的运动轨迹,其中2种最适合筛分。
3.
The article introduces the structure and principle of inner pneumatic swinging door,draws the moving track,and analyzes the influence of moving mechanism control point position to the passageway and step size.
介绍气动内摆门的构造、原理,绘制出运动轨迹,分析运动机构控制点的位置对通道、踏步尺寸的影响。
5)  movement track
运动轨迹
1.
Research on movement track of orthogonal turn-milling;
正交车铣运动轨迹的研究
2.
The movement track of upper guide roller and lower guide roller is derived according to the geometry and technology information of the workpiece, the cutting track of abnormity is controlled exactly.
由G代码提供的零件表面几何信息及工艺信息 (丝半径和放电间隙 ) ,推导出低速走丝电火花线切割机上下导丝嘴的运动轨迹 ,实现上下异型切割运动轨迹的精确控制。
3.
This paper introduced the original data expansion of vane surface in the case of electrochemical contour evolution machining, and gave the computation method of evolution movement track.
介绍了采用四轴联动方式展成电解加工整体叶轮叶片型面时 ,对叶片型面原始数据所做的数据变换及数据扩展 ,并给出了展成运动轨迹的计算方法。
6)  motion track
运动轨迹
1.
The study to improve the method of drawing the atlas of connecting rod motion track;
计算机绘制连杆运动轨迹图谱的方法
2.
Improvement on the experiment of describingthe motion track of simple harmonic;
描述简谐运动轨迹实验的改进方案
3.
Research on the motion track of the aspheric optical parts processing based on the tangent rotary method
切线回转法加工非球面光学零件运动轨迹研究
补充资料:点振子振动和点电极振子振动
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性质:又称点振子振动和点电极振子振动。振动能量绝大部分集中在点电极范围内,形成“能量封闭”的振动模式。振子电极面远小于压电陶瓷片的总面积,且与厚度有适宜的匹配关系。在交变电场作用下,沿厚度方向产生振动,其振幅随着至电极中心距离的增加,呈指数式衰减。谐振频率与压电陶瓷片的厚度有关。为提高频率通常将压电陶瓷片磨得很薄,有时考虑到压电陶瓷自身强度太低,可用特制的陶瓷片作垫片来防止压电陶瓷片损坏。常用于高频场合。

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