• 只有掌握车轮轨道轮廓型面,两者相结合,才可能掌握几何接触状况铁路运营车辆运行性能产生影响。

    Only after getting the contours of wheels and rail, and combining the two together, the effect of geometric contact conditions on the running performance of operating railway cars can be obtained.

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  • 实验结果表明,分维数好地表征表面轮廓,可进一步接触分析提供合理的几何模型

    Taking rigid disk surface as an example, fractal parameters are obtained by means of power spectrum and structure function, providing a proper geometric model for further contact analysis.

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  • 轴承几何参数接触应力分析基础上,给出曲率半径系数的控制方程,并轻、中、重系列轴承的外圈沟曲率半径系数的选取进行了探讨。

    Based on the analysis of geometry parameters and contact stresses of the deep groove ball bearings, the control equation of groove curvature radius has been drawn out.

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  • 同时明显降低两个堆叠体量之间接触面,加强长方体几何性质

    This also apparently reduces the contact surface between the two stacked volumes and reinforces the oblong nature of their geometrical form.

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  • 明显降低两个堆叠体量之间接触加强它们的长方形几何特质。

    This also apparently reduces the contact surface between the two stacked volumes and reinforces the oblong nature of their geometrical form.

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  • 这种模型中,接触单元的几何静力约束条件作为补充方程包含刚度方程中。

    The geometric and static constraint conditions on contact surfaces are treated as additional conditions and are included in stiffness equations.

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  • 基础上给出几何非线性问题元单元接触非线性问题元胞单元法较详细计算步骤

    On the basis of it, the detailed calculation processes are given about the geometric nonlinearity cellular element method and contact nonlinearity cellular element method.

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  • 研究结果表明接触应力、上扭矩螺纹啮合几何约束齿面扣的力学要点

    The research result states that the contacting stress, thread torque and thread joggle geometry restriction are mechanical points of the sticky thread.

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  • 针对以上难题,利用有限元研究井底二重非线性(几何非线性和接触非线性)问题。

    Thus the finite element method is used to study the duplex nonlinearity (geometric nonlinearity and contact nonlinearity) of the drill string at the well bottom.

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  • 不同车轮踏面形状同一钢轨匹配具有不同轮轨接触几何关系影响车辆动力学性能

    The wheel-rail contact geometry relationship is different when different wheel tread shape matches the same rail, which will influence the dynamic performance of the vehicle.

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  • 参考资料来源于rcs减缩、无线电波段接触几何典型威胁系统附录a。

    Reference data for RCS scales, radio-frequency bands, engagement geometries, and representative threat systems are summarised in Annex a.

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  • 多层圆柱结构接触问题,涉及到几何非线性材料非线性以及接触面上摩擦力的影响

    The contact pretension between the layers of cylindrical structure concerns the non-linearity of geometry and material, as well as the influence of interface friction.

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  • 将CCD应用几何测量中,可以满足高精度测量、在线动态检测接触测量等的工程实际要求。

    Advantages of CCD in geometrical quantity measurement are high accuracy, on-line dynamic detection and non-contact measurement.

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  • 分析砂轮磨损对准平面二次包络环面蜗杆传动蜗杆几何尺寸以及接触运动精度影响

    It analyzes the influence of the grinding wheel wear on geometric size and teeth contact of worm gear, kinematics precision of the quasi-plane double enveloped hourglass one.

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  • 利用微分几何啮合原理推导出该机构啮合的诱导曲率方程,给出接触大小的计算公式。

    With the differential geometry and engagement theories, induced curvature formulas of point engagement were deduced, and the formula of the local contact areas was given.

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  • 由于计算存在着材料非线性几何非线性以及接触非线性问题,为了提高计算收敛性能采用时间计算长。

    Because of material nonlinear, geometry nonlinear and contacting nonlinear, the small time step is adopted to improve convergence of the calculation.

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  • 本文利用几何关系表示运动学的关系,得出接触方程使求解过程变得简单

    The paper expresses the kinematic relationship by the geometric relationship between the tool and flute and obtains the contact equation, so that the solving process become simply.

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  • 通过对三维数值模拟实施过程几何建模接触网格自适应划分等关键技术问题的处理,顺利完成传统方案改进方案的模拟。

    To continue the numerical simulations of the conventional and improved schemes, some key technologies, including geometric model, contact, mesh adapting and remeshing, are solved.

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  • 系统完成SGMSFMSGTSFTHGMHFMHGTHFT切齿齿几何参数、切齿调整参数、轮齿接触分析齿调整参数检验计算

    The system can perform the computations such as blank dimensions, cutting and grinding settings, tooth contact analysis and under cut check of SGM, SFM, SGT, SFT, HGM, HFM, HGT, HFT cutting methods.

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  • 因此几何变化失败接触应力过度磨损或许可以避免的。

    Thus, geometric changes or failure due to high contact stresses and excessive wear may be prevented.

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  • 第4主要解决齿面的参数化微分几何结构分析问题实现接触分析理论基础

    Chapter 4 mainly solved the problems of tooth flank parameterization and the analysis of differential geometric structure, which is the theoretical basis to implement the third order contact analysis.

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  • 移量变化极大地影响接触几何参数力学参数

    The variation of lateral displacement affects extremely the geometry and mechanics parameters in contact zone.

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  • 给出一种基于接触几何接触问题解法

    A solution for contact problem based on contact surface geometry is presented.

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  • 本文依据齿轮啮合原理,利用产线形成共轭啮合原理,采用共轭齿接触线刀刃构形切齿刀具,这样构形的切齿刀具都非常简单,并且容易采用合理的几何角度。

    This paper USES cutting tool with the contact line of conjugate tooth profile based on the principle of the gear engage and generating shape line forming conjugate engage.

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  • 本文针对滚动轴承几何结构特点建立接触力学模型力学特性进行分析得出一般性结论

    In this paper, we built the contact mechanics model in view of the rolling bearing characteristics, made analysis on the mechanical characteristics and to draw general conclusions.

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  • 轮轨接触几何参数匹配优劣直接影响着轮轨接触应力大小。

    Rail-wheel contact stress depends to a large extent on the matching of rail-wheel geometry parameters.

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  • 讨论撞击速度壳体几何参数以及接触位置对浅球非线性动力响应影响

    In the numerical calculation, the effects of striking object's initial velocity, and the shells 'geometrical parameters and the point of contact on the dynamic response of shells are discussed.

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  • 针对齿链链几何参数圆度提出基于CCD图像测量方法系统实现了尺寸形状的接触测量。

    A new kind of measurement method on geometrical parameters and roundness of tooth shape chain by CCD image technology is put forward, and non-contact measurement in one system is realized.

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  • 工程制图课程学习中几何元素线面的投影问题学习形体投影基础也是初学者刚开始接触制图知识,学习容易感觉困难的部分。

    In engineering drawing courses, the projection of point, line and surface is the basis of learning physical projection, which is often difficult for beginners to learn.

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  • 工程制图课程学习中几何元素线面的投影问题学习形体投影基础也是初学者刚开始接触制图知识,学习容易感觉困难的部分。

    In engineering drawing courses, the projection of point, line and surface is the basis of learning physical projection, which is often difficult for beginners to learn.

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