• 本文重心采用有限元分析软件ANSYS8.0加载系统结构进行态分析模态分析,以验证其设计的合理性。

    The thesis is mainly devoted to prove the validity of the design by analyzing the structure of the loading system, via FEA analysis software ANSYS8.0.

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  • ANSYS软件一种大型通用有限元分析软件可以准确进行机床静力响应以及动力学有限元分析

    Besides, ANSYS is a large general-purpose software, which can be used to analyze static, dynamic, harmonic response and transient dynamic analysis of the machine tool.

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  • 本文应用有限元法在I - DEAS软件平台MWM395柴油机机体进行模态分析

    In this paper, the mode character of MWM395 engine block is analyzed with the finite element analysis on the platform of I DEAS.

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  • 使用有限元分析软件ANSYS对结构,并进行和谐响应分析

    The modal and harmonic response analysis of the structure were implemented using the finite element analysis method with ANSYS software.

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  • 对基体开缝并填充阻尼材料圆锯片进行有限元模态分析

    The saw blades with slit filling damp material is Analyzed by the mode analysis.

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  • 利用模态分析方法悬挂装置进行有限元动力分析得到了悬挂装置的特性

    Using the method of mode analysis, the author analyses the hookup on the way of finite element, and gives the dynamic characteristic of hookup.

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  • 模态分析基础上采用几何非线性有限元分析方法悬索式管桥进行横向共振分析

    On the basis of the modal analysis, the nonlinear finite element is used to analyze the dynamic response of suspension pipe bridge to cross wind excitation.

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  • 超越离合器关键传动建立有限元进行模态分析强度分析

    Build finite element models for key transmission parts of overrunning clutch and analyze their mode and strength.

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  • 某全承载式大客车进行结构有限元分析研究了该客车结构强度振动模态频率质量等多个性能目标优化设计问题。

    Structural FE analysis on an integral bus is performed, in which optimal design of multiple performance objectives of structural strength, vibration modal frequency and mass is researched.

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  • 新型运动型多功能休闲摩托车车架研究对象采用有限元分析方法,对车架振动模态进行分析

    The frame of a new style motorcycle named Sport Recreation Vehicle (SRV) was researched. Using the finite element mode analysis method, the vibration mode of motorcycle frame was analyzed.

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  • 针对7ypj型农用三轮汽车齿轮箱体结构特点应用分析理论进行约束模态有限元分析

    Finite element analysis for constraint model was conducted on the gear box casing of 7ypj agricultural tricar using modal analytic theory according to its structural characteristics.

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  • 利用有限元方法摩托车车架特性进行分析计算通过实验方法进行了相应的实验验证获得了车架模态参数

    It is analyse and calculation about the dynamic characteristic of motorcycle frame by FEM model, carry on validation through experimental modal method, Get back frame modal parameter and shake type.

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  • 运用非线性有限元分析技术,对多层正交各向异性复合材料组成某型空气弹簧进行应力态分析

    The Nonlinear Finite Element Analysis was applied to study the stress and modal of an air spring, which is composed of composites with multiple orthotropic materials.

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  • 基于有限元方法,对Y7125型磨齿砂轮主轴进行分析得出振动频率数据进行处理。

    This paper analyzes the modal of Y7125 gear grinder spindle, gets out the main four stages of spindle vibration frequency and deals with the data.

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  • 针对某125摩托车局部振动比较严重,采用有限元分析软件ANSYS,该款车架进行结构模态分析得到车架固有频率型。

    In view of the locally severe vibration of a 125 motorcycle, the paper makes a structure modal analysis with ANSYS to get the natural frequency and the vibration mode of the frame.

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  • 建立运动休闲车(SRV)白车身有限元进行模态分析,得到了SRV白车身的固有频率

    The finite element model of body-in-white of a SRV is established. The implicit frequency and vibration types are obtained by modal analysis.

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  • 利用现代CAD技术建立有效有限元分析此基础上对进行有限元模态分析

    The finite element modal analysis of an effective model has been done after building up its analytic model by applying modern CAD techniques.

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  • 作者利用ANSYS有限元分析软件一个平面桁架进行模态分析并用APDL语言编制程序计算该结构的柔度值曲率

    ANSYS is used to make the modal analysis of a plane truss structure model, then APDL is used to compile procedures to calculate flexibility difference curvature.

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  • 使用ANSYS有限元软件、实验分析技术F320石油井架特性进行数值试验分析

    We had made numerical and modal analysis on the dynamic feature of F320 model derrick with ANSYS software and modal analysis technique.

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  • 通过有限元进行模态分析机电耦合分析,探讨定子换能器固有频率和定子结构尺寸以及两者之间的关系。

    Through simulative analysis of finite element model and mechanical-electric coupled, the natural frequency of stator energy converter and stator's dimensions and their relation were discussed.

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  • 对箱体有限元进行和静应力分析箱体质量优化目标进行优化设计,得到最优化参数改良了原有设计

    Based on the modal analysis and static stress analysis of the spindle box, it makes the mass of the spindle box optimization, the optimum parameters are attained and the design gets improved.

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  • 利用ANSYS有限元软件动力分析中的谱分析模态分析功能,对拱坝进行地震动应力分析

    Make use of table analysis, modal analysis of ANSYS finite element software motive force to analyze shake stress analysis of the arch dam.

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  • 首先第二种约束方式下,利用有限元分析方法几种不同板机架进行分析得到了机架变形、应力各阶振型频率

    First, using second constrain, the static state and dynamic analysis applied to the frame of a few thickness plates with FEM modal analysis, distortion, stress, vibration and frequency were gained.

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  • 进而将齿轮参数导入通用有限元分析软件ANSYS模态进行计算分析

    And import the model into the finite element analysis software of ANSYS for modal calculation and analysis.

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  • 通过有限元进行强度刚度动力学分析,并以此进行优化设计

    By FEM analysis for its intensity, rigidity and kinetics model, it has been optimized, practice shows that it is a successful design.

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  • 采用有限元方法对印制电路板进行分析,依据有效模态质量模态振型分析了振动环境下配制电路板薄弱环节

    The modal parameters of the printed circuit board (PCB) were calculated using finite element method, and the weaknesses of PCB were found using effective modal masses and mode shapes.

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  • 在结合声学试验分析和该车顶棚、前风挡有限元模态分析基础上,进行针对降低车内噪声改进设计

    Together with the FEM modal analysis of the car's roof panel and windscreen, an improved design is achieved to reduce the interior noise.

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  • 通过柱状薄膜压电微电机致动机理的研究,运用有限元进行模态分析

    Through the researches on kind of cylindrical piezoelectric thin film micromotor mechanisms, finite element simulation and modal analysis are carried out in this paper.

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  • 应用有限元变幅杆进行分析得到共振频率位移节点重要参数

    Normal modes in the pole and important characteristic parameters such as resonance frequency and position of the displacement node are obtained using the finite element method.

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  • 应用有限元变幅杆进行分析得到共振频率位移节点重要参数

    Normal modes in the pole and important characteristic parameters such as resonance frequency and position of the displacement node are obtained using the finite element method.

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