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中型客车车门总成设计

乘客门是客车的重要组成部分,是乘客上下车的通道,对客车的整体造型也起着重要的协调作用。随着我国汽车技术的发展,我国汽车厂家已普遍采用了优势突出的外摆式乘客门。外摆式乘客门是一种无轨道的移出车门,门扇靠回转臂支撑,依靠转轴的转动带动门扇作近似于平行移动的运动,因而也称为平移门。 本文为中型客车的外摆式乘客门和行李舱门的设计。分析了外摆式乘客门和行李舱门的结构和工作原理,确定其各部分的尺寸及主要零部件的选型及安装。讨论了国内外汽车附件工业发展的情况比较。AUTOCAD软件是当今世界上一种主流的设计软件之一。在本设计中应用了AUTOCAD软件制作乘客门和行李舱门。

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一、论文目录

第一章 绪论························································1 1.1 乘客门类型选择················································1 1.1.1乘客门主要结构形式·········································1 1.1.2 外摆门的优点··············································2 1.2 CAD 技术在汽车开发中的应用····································2 1.2.1CAD技术的发展············································2 第二章 国内外外发展情况比较·······································3 2.1客车附件工业的特点···········································3 2.2 目前国内客车车身附件的状况及与国外发达国家之间的差距·········3 2.3发展建议·····················································6 第三章 外摆式乘客门设计···········································7 3.1 外摆式乘客门的结构···········································7 3.2乘客门泵选型··················································8 3.2.1 门泵主要技术参数··········································9 3.2.2 门泵安装与调试············································10 3.3运动机构设计及校核···········································10 3.3.1用作图法确定车门的运动轨迹·······························10 3.3.2运动校核··················································13 3.4 外摆门的密封·················································14 3.4.1几种典型外摆式乘客门密封结构·····························14 3.4.2改进型密封结构···········································16 3.4.3密封结构选定 ···········································17 3.5 外摆式乘客门的制作···········································18 3.5.1制作工艺·················································18 3.5.2预装与调试················································18 第四章 发动机舱门设计·············································18 4.1舱门结构组成·················································18 4.2零部件选型····················································18 4.2.1锁 具 的 选 择················································18 4.2.2气弹簧支撑机构·············································20 4.3铰链设计·····················································21 设计评价分析····················································23 致 谢··························································24 参考文献··························································25

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