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凸轮轮廓的英文

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"凸轮轮廓"怎么读用"凸轮轮廓"造句

英文翻译手机手机版

  • cam contour
  • cam profile

例句与用法

  • 4 . two ways were used about the error - amending of contour curve
    4 )采用两种方法对凸轮轮廓曲线进行了修正。
  • According to the tappet displacement curve , the design of cam profile can be carried out by " reversal method " theory
    根据得到的挺柱升程曲线,利用“反转法”的原理进行凸轮轮廓曲线的设计。
  • The cam contour curves are reconstructed by nurbs , and a rapid reverse design method for spatial cam follower motion specification via motion simulation is also studied
    利用nurbs实现了凸轮轮廓曲线的重构,并给出基于运动仿真实现迅速反求空间凸轮机构从动件运动规律的方法。
  • However , in fact , cam has elastic deformation and all parts from follower to cam also have deformation . so elastic deformation of valve gear must be considered in design
    然而事实上凸轮本身是有弹性变形的,从气门到凸轮轮廓的中间环节也都是可变形的,所以在设计中必须考虑到配气机构的弹性变形,这种设计称为动态设计。
  • The paper ' s design mainly includes two parts . fist part is the tappet displacement curve ' s design , and many dynamics calculation has to be done based on the dynamic design . second part is to design cam profile curve
    本文的设计主要包括两大部分,第一部分为挺柱升程曲线的设计,按照动态设计要进行大量的动力学计算,第二部分是凸轮轮廓曲线的设计。
  • The one used the actual locomotor orderliness gained by reverse seeking to amend the contour curve of the cam . the new academic contour curve of the cam and tracks of polar and right angle coordinates of the center of reamer were presented
    第一种是根据反求得到的实际从动件运动规律,修正了开牙凸轮轮廓曲线,给出了新的凸轮理论轮廓曲线和刀具中心极坐标轨迹和直角坐标轨迹。
  • According to their respective advantages , dynamics calculation and design are carried out by use of powerful calculation function of matlab and cam profile is designed by use of the advantage of vb in the aspect of figure interface development
    各取vb与matlab所长,利用matlab强大的计算功能进行动力学设计与计算,而利用vb在图形用户界面开发方面的优势进行凸轮轮廓曲线的设计。
  • By applying the optimal control theory and using the method of multi - designing points to design the cam contour curve with both good dynamic property and strong parametric anti - disturbance force , and the feasibility of this method was verified by a living example
    摘要应用最优控制理论,提出以多设计点法来设计既有良好动态特性且抗参数扰动力强的凸轮轮廓曲线,并以实例验证了该方法的可行性。
  • While according to dynamics correction method , the valve displacement curve has to be design , which can be acquired by boundary condition and calculation method . then by dynamics analysis , the tappet displacement curve equation can be obtained based on the dynamics differential equation . thus , the design of cam profile can be carried out based on the tappet displacement curve equation
    按照动态设计的动力学修正方法进行设计时,又得先进行气门升程曲线的设计,利用一定的边界条件和计算方法得到气门确定的运动规律,再通过动力学分析,根据建立的动力学微分方程,经过计算得到挺柱的升程曲线方程,至此,就可以根据挺柱的升程曲线进行凸轮轮廓曲线的设计。
  • The dimensional globoidal indexing cam mechanism , as a result of the steady movement , accurate , the transmission ceaseless and is suitable for high speed indexing and precise indexing . now it is the most ideal high speed precision indexing mechanism in the world , and it is being widely applied on each kind of automaton and the production line , this mechanisms prospect of application is broad , arouses the people enormous interest . but the examination of the globoidal indexing cam mechanism is a quite weak link , the manufacturers don ’ t give the examination because of the difficulty of the geometry shape error examination of the cam contour
    空间弧面分度凸轮机构,由于运动平稳、准确、传动无间隙而适用于高速分度和精密分度,是当今世界上最理想的高速精密分度机构,正被广泛应用于各种自动机和生产线上,该机构应用前景广阔,引起人们极大的兴趣,而弧面分度凸轮机构的检测是一个比较薄弱的环节,一般生产厂家由于凸轮轮廓几何形状误差检测困难而不予检测,因此本试验台的研制具有极其重要的意义。
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