SolidWorks数字仿真项目教程
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65
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库存4件
作者鲍仲辅曾德江
出版社机械工业出版社
ISBN9787111625544
出版时间2021-02
装帧平装
开本16开
定价65元
货号1202300164
上书时间2024-11-26
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内容摘要
商品简介本书重点介绍基于SolidWorks软件进行机构数字仿真分析的思路和方法,主要包括基于Motion插件的运动学、动力学仿真分析以及基于Simulation插件的结构有限元分析。本书采用项目驱动方式,以项目为载体,融合数字仿真的相关理论和技术。每个项目都包含项目说明、预备知识、项目实施和项目总结,读者可通过实践完成学习过程。全书的20个项目是围绕机械设计行业的需要,对典型任务做适当简化编写而成的,具有较好的应用示范作用。本书可作为应用型**及高职高专院校机械类专业的教材,也可作为企业技术人员的参考用书。目录项目1牛头刨床驱动机构建模与仿真···············001一、项目说明···················001二、预备知识·····················0021.运动学与动力学分析概述··············0022.运动学与动力学分析的基本概念············0023.运动学与动力学分析的主要流程············003三、项目实施···················0041.绘制牛头刨床驱动机构运动简图············0042.依据机构运动简图自顶向下建模············0043.依据运动副特点装配模型························0074.对机构进行运动学仿真分析····················0105.对机构进行动力学仿真分析····················013四、项目总结···············014项目2机械手夹持机构建模与仿真················015一、项目说明············015二、预备知识·············0151.各种马达运动规律的*用与设置····0152.接触问题·············0163.各种分析结果查询···························017三、项目实施························0171.绘制机械手夹持器机构运动简图····0172.利用自顶向下的方法建模···············0173.为机械手夹持器机构模型添加装配配合关系························0194.机械手夹持机构运动学仿真············0205.机械手夹持机构动力学仿真············022四、项目总结·················024项目3复合轮系传动机构设计与仿真················025一、项目说明·······················025二、预备知识·····················0251.常用齿轮传动类型···························0252.定轴轮系与周转轮系·······················0263.行星轮系与差动轮系·······················026三、项目实施····················0261.准备轮系所需要的所有齿轮············0262.装配外啮合圆柱齿轮·······················0293.装配内啮合圆柱齿轮·······················0304.装配行星轮系····················0335.装配锥齿轮··················0376.增加传动轴和机架···························0407.复合轮系运动分析···························041四、项目总结···············································044项目4奥氏仪表机构设计与仿真·················045一、项目说明···············································045二、预备知识···············································0451.约束映射···········································0452.机械配合的使用·······························0463.弹簧与阻尼·······································04**.**学系统与动力学系统···············047三、项目实施···············································0471.绘制奥氏仪表机构运动简图············0472.依据机构运动简图自顶向下建模····0473.依据运动副特点装配模型···············0504.对机构进行运动学仿真分析············0555.对机构进行动力学仿真分析············057四、项目总结···············································060项目5凸轮送料机构设计与仿真·························061一、项目说明···············································061二、预备知识···············································0621.利用函数编制程序定义复杂规律的运动或力·······················0622.利用轨迹跟踪设计凸轮轮廓············064三、项目实施································0641.绘制凸轮送料机构运动简图············0642.创建凸轮送料机构主要构件模型····0643.装配凸轮送料机构模型···················0674.通过运动仿真分析求出凸轮轮廓曲线·················································0715.创建凸轮模型并进行运动学分析····073四、项目总结····················074项目6槽轮机构设计与仿真·························075一、项目说明···························075二、预备知识·····························0751.常见的槽轮机构·······························0752.槽轮机构等效分析方法···················076三、项目实施·······························0761.槽轮机构建模···································0762.装配槽轮机构···································0783.槽轮机构运动学仿真·······················0794.槽轮机构动力学仿真·······················0805.基于动力学分析结果进行结构分析·····················081四、项目总结······················083项目7曲柄压力机力平衡分析与冗余处理················084一、项目说明····························084二、预备知识·············································0851.曲柄压力机静力平衡计算···············0852.冗余配合···········································086三、项目实施···············································0871.绘制曲柄压力机机构简图···············0872.曲柄压力机三维建模·······················0873.装配曲柄压力机·······························0904.曲柄压力机动力学分析···················091四、项目总结······························094项目8双摇杆自动供料设备执行机构设计··············095一、项目说明···············································095二、预备知识···············································096三、项目实施···············································0961.创建机架和工件模型·······················0962.根据工件大小建立接盘模型············0973.利用图解法设计连杆·······················0974.建立整套装配模型···························0985.装配各个构件···································1006.执行运动仿真···································102四、项目总结···············································104项目9双摇杆自动供料设备驱动机构设计················105一、项目说明·····················105二、预备知识···················105XSolidWorks数字仿真项目教程1.基于事件的运动仿真·······················1052.事件的定义·······································106三、项目实施··························1071.利用图解法计算驱动机构的尺寸····1072.驱动机构构件建模···························1073.驱动机构装配····················
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