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1)  error in position of pitch cone apex
节锥顶点的位置误差
2)  conical point
锥顶位置
1.
Deviation measurement of tooth thickness and conical point of straight bevel gear by using steel bail was studied and approached.
针对大锥角直齿圆锥齿轮和平面齿轮,设计并制作出测量仪,用测量仪调整齿轮齿槽中钢球的径向位置和轴向位置,根据钢球径向位置和轴向位置偏差,VB数据处理确定齿厚偏差和锥顶位置偏差。
3)  vertex error
顶点误差
1.
The method reconstitutes the triangles in different multi-resolution transition region and optimizes the quadtree vertex error estimation and geometry smooth transition algorithm with the scheme based on the characteristics of higher distance to ground and bigger downwards angle of visibility in flight simulation.
该方法将不同分辨率过渡区域的地形进行重新构网,并针对飞行仿真距离地面较高、下视角较大的特点对四叉树顶点误差估计和几何光滑过渡算法进行优化,在保证地形准确性的范围内提高计算机实时处理速度。
4)  pitch cone angle error
节锥角误差
5)  position error
位置误差
1.
Method for auto modification of position error of scanner;
扫描仪位置误差自动修正方法
2.
The paper analyses difficulties and characteristics in machining bearing hole of canular forked shaft and measuring its position error;and it designs equipment for machining and measuring this hole.
在叉头套加工过程中,轴承孔位置误差的测量和控制是十分重要。
3.
Measurement and compensation of volumetric position errors for NC machine tools are important approach for quality assurance and higher accuracy.
机床空间位置误差的测量和补偿是提高加工精度的重要手段。
6)  Positional error
位置误差
1.
The article establishes an optimal synthesis model based on the positional error between the practical generated paths and the desired paths, gets a synthetic result by optimization toolbox of MATLAB5.
基于连杆点实际生成的轨迹曲线与预期的理想轨迹曲线间的位置误差建立优化综合模型 ,为克服传统优化技术局限性 ,利用MATLAB中Optimization工具箱获得综合结果 ,得到一实现两平行直线轨迹的平面五连杆机构 综合实例结果表明了本方法的有效
2.
An analysis is made of the positional error of the link mechanism through the matrix theory.
利用矩阵理论对连杆机构的位置误差进行了分析,给出了有关的计算公式,并对铰链四杆机构进行了实际计算,其结果对各类连杆机构都具有普遍适用性。
3.
According to rotationplasty and move transforming characteristics of robot joints,this paper established the accurate postural and positional error model of robot,which is a homogeneous matrix.
机器人执行部件的位置误差(或精度),是反映机器人性能的一个重要指标。
补充资料:顶点
①角的两条边的交点;锥体的尖顶。②最高点;极点:比赛的激烈程度达到了~。
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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