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drive ratio meaning in English

传动比
驱动比

Examples

  1. The paper points out that the reasons for displacement efficiency improving of pressure coring well are as follows : firstly , extra - high injection multiples ; secondly , extra - low critical drive ratio ; thirdly , high velocity fluid ' s big differential pressure drive during the process of coring
    得出导致矿场密闭取心井驱油效率高的原囚:一是特高的注水倍数,二是特低的临界驱动比,三是取心过程中高黏度流体的大压差驱动。
  2. On the basis of the engage efficiency and lubricious conditions , theoretical transmission efficiency with the different drive ratios ( 1 / 50 and 6 / 31 ) of involute cylinder worm gears is analyzed . at the same time , the change trend of engage efficiency and transmission efficiency with different design parameters is discussed . the experimental investigation on transmission efficiency
    从渐开线蜗轮蜗杆传动的啮合效率和润滑条件两个方面对不同传动比的渐开线圆柱蜗杆的传动效率进行理论分析,并通过传动比分别为1 / 50和6 / 31的渐开线圆柱蜗杆设计参数得到蜗杆润滑条件的理论分析结果和蜗杆啮合效率、传动效率的变化趋势,同时利用电测法对蜗杆传动的传动效率、润滑油平衡温度进行测试,将测试数据与理论计算结果进行对比分析,得出理论分析结果的正确性。
  3. On the condition of “ many - head ” and “ small drive ratio ” , the plane double enveloping hourglass worm can not settle the problem of undercutting and sharpening simultaneously . it has devoted to a new type hourglass worm _ sphere double enveloping hourglass worm . the coordinate system is established according to the frock . the meshing equation and the tooth equation of worm and gear have been developed and the distribution of contact line on gear tooth is analyzed . to evaluate the meshing quality , four meshing quality indexes and five original parameters are put forward . through mass programming computing , the relations between meshing quality and original parameters are derived and depicted by graphs
    考虑到平面二次包络环面蜗杆传动在多头小传动比条件下根切与齿顶变尖的矛盾很难同时解决且啮合性能较差,介绍了一种新型环面蜗杆传动? ?球面二次包络环面蜗杆传动.在研究过程中,根据工装建立了坐标系,根据一二包过程的运动关系推得了啮合方程和蜗杆与蜗轮的齿面方程,分析了蜗轮齿面上的接触线分布.为了评价啮合性能,提出了4项性能指标和5项原始参数,通过大量编程计算得到了啮合性能指标与原始参数之间的关系,并以图表直观的表示
  4. In this paper , the relation between differential driven ratio accuracy and the common normal length error of cylindrical bevel wheel has been found by experimental method , which provides a efficient way for cylindrical bevel wheel manufacturer to control the common normal length error of the wheel
    摘要通过实验研究,寻找出差动传动比的精度与斜齿圆柱齿轮的公法线长度误差的关系,从而为斜齿圆柱齿轮的加工提供一个可以控制斜齿圆柱齿轮公发线长度误差的有效方法。
  5. Established the system of coordinates of roll testing , getting the parameters of equation of tooth face by solving the non - linear equations set ; according to the differential geometry and meshing principle , deduce the curvature parameters of tooth face and tooth profile , and get the parameters of instantaneous contact ellipse . emulate the contact trace and contact area of the working tooth face , and drawing the instantaneous drive ratio error curve
    建立了克林贝格摆线齿锥齿轮啮合分析的对滚模型,通过对非线性方程组的迭代求解,得到齿面方程的各个参数;由微分几何和切齿啮合原理推导了齿面上齿廓和齿线方向的曲率参数,得到了瞬时接触椭圆的参数。根据设计参数和机床调整参数绘制了工作齿面的接触轨迹和接触区图形,并求得了瞬时传动比的误差曲线。
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Related Words

  1. drive pulse
  2. drive pulse generator
  3. drive reduction
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