• It has three functions, such as vibrate-isolation performance analysis, bearing parameters sensibility analysis, principal inertia axis analysis.

    软件包含有三大功能模块:系统性能分析模块、支承参数灵敏度分析模块和惯性分析模块。

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  • We have the sensibility analysis curve and the optimum angular by using bearing parameters sensibility analysis module and principal inertia axis analysis module which in the VEHMA software.

    利用VEHMA软件中的灵敏度分析模块惯性分析模块,得到灵敏度分析曲线最佳安装角度

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  • For the moment of inertia, we want the square of a distance to the axis of rotation.

    至于转动惯量要求其实是旋转轴距离平方

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  • If we have a solid cylinder, then the moment of inertia about this axis Q through the center of mass, which I've called Q, equals 1/2 MR squared.

    假如一个实心圆柱体轴心时间惯量,通过这个物质中心等于1/2,MR平方

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  • 1/2I So this can also be written as one-half I, C I put a C there you will see shortly why, because the moment of inertia depends upon which axis of rotation I choose times omega squared.

    可以写成这里写上,你们马上发现原因就是转动惯量,取决于选择转动,乘以ω平方

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  • OK, so moment of inertia about the z axis so, what's the distance to the z axis?

    关于z转动惯量,z轴的距离多少?

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  • But it's completely different, the moment of inertia, if you rotated it about this axis.

    完全不同,转动惯量如果其绕这轴旋转。

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  • I am using fancy words today. And the moment of inertia — the difference with a mass is that the moment of inertia is defined about some axis.You choose an axis.

    今天措辞别致,转动惯量就是——,质量不同,转动惯量定义旋转轴有关选定一个旋转轴。

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  • What is the moment of inertia for rotation of a rod about this axis?

    关于这个,旋转动动量多少?

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  • It is slightly strange but I have y in inertia about the x-axis.

    有点奇怪关于x轴的转动惯量y有关。

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  • For example, the moment of inertia about the z-axis is dV the triple integral of x squared plus y squared density dV.

    例如关于z轴转动惯量,∫∫∫δ

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  • The angle of the least inertia moment axis of grey scale image is an important shape feature in digital image analysis.

    惯性主轴方向数字图象分析重要形状特征之一

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  • Conservation of angular momentum, moment of inertia, parallel axis theorem.

    角动量守恒惯量平行原理

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  • A new measuring instrument of rotational inertia has been devised by the fixed - axis rotation principle and parallel axis theorem of compound pendulum.

    利用复摆转动原理刚体平行定理设计一种新型转动惯量测定仪。

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  • Use of rotational inertia of the definition of calculated rigid oval ring around the ring with the vertical plane through the central axis and the moment of inertia.

    运用转动惯量定义式直接计算出椭圆刚体垂直平面通过中心转动惯量。

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  • In the electric driving automatic control system, the total value of moment of inertia converted onto the motor axis is one of the main parameters for the system design.

    电力拖动自动控制系统中,折算电动机轴上转动惯量数值系统设计主要参数之一

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  • Moment of inertia: turning around its axis of symmetry, object has the character keeping speed and the direction of the axis of rotation not changing.

    转动惯性物体在绕着自己对称轴转动时具有保持转速转动方向不变性质

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  • Based on studying the way of polar moment of inertia, a new method of major and minor axis detecting by DDA was provided.

    特征提取葡萄干等级检测基础,该文研究惯性计算长短方法的基础上,提出一种利用数值微分法进行长短轴检测的方法

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  • Because of its oblate shape, the moment of inertia of the earth is a maximum about the polar axis and minimum about an axis in the equatorial plane.

    由于地球球体,绕惯量最大赤道面内惯量矩最。

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  • With summaration of the design of a double-axis inertia vibrating shake-out machine, its application has been introduced with brief description of its structure and characteristics.

    振动落砂设计和使用作小结,介绍双轴惯性落砂机的使用状况,并简要描述落砂机的结构形式和特点。

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  • The Inertia and dynamics coupling of the three axis turn table of the physical simulation test facility are analyzed, and mathematical models are established.

    在对对接全物理仿真试验台维转动装置惯量耦合动力学耦合进行分析基础上,建立了相关数学公式。

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  • The rotary inertia of an ellipsoid rotating around the symmetry axis is calculated by use of the divided calculation and the extensive spherical coordinate transformation.

    用分步计算广义球面坐标变换种方法椭球体对称轴旋转转动惯量进行了计算,计算表明,后一种方法简单、实用,在工程实际中有应用价值。

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  • The rotary inertia of an ellipsoid rotating around the symmetry axis is calculated by use of the divided calculation and the extensive spherical coordinate transformation.

    用分步计算广义球面坐标变换种方法椭球体对称轴旋转转动惯量进行了计算,计算表明,后一种方法简单、实用,在工程实际中有应用价值。

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