CA-20地下自卸汽车驱动桥轮边减速器的设计.doc

CA-20地下自卸汽车驱动桥轮边减速器的设计.doc

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毕业设计(论文) 课题名称 CA-20地下自卸汽车驱动桥轮边减速器的设计 系  别 专 业  机械设计制造及其自动化 姓  名  学  号                  时 间 指导老师: 年  月  日 目 录 一、绪 论 ··································································1 (一)、设计的背景与意义 (二)国内外研究现状与发展趋势···········································3 (三)项目实施的主要内容、技术关键与创新点、预期标····················5 (四)应用或产业化前景与市场需求·········································6 二、驱动桥··································································9 (一)驱动桥概述····························································9 (二)地下自卸车驱动桥的组成及作用······································10 (三)地下自卸车对驱动桥的要求··········································10 三、主减速器内部参数计算·················································11          1.主减速与轮边行星减速的输入功率、转速计算····························11 2.各参数计算过程 四、轮边减速器的设计·····················································15 (一)、类型································································15 (二)、特点·······························································15 (三)、结构型式和工作原理················································22 (四)、本设计所取用的行星减速···········································23 1.空心轴强度计算······················································25 2、空心轴铰孔紧固螺栓强度计算·········································27 3、半轴的设计···························································28 (五)、行星轮轴的设计·····················································32 (六)、轮边减速器短盖、行星托架、轮毂连接螺栓强度计算················35 (七)、轮辐连接螺栓的强度计算············································36 (八)、轮边行星减速里其它构件的设计····································37 (九)、桥壳的设计··························································37 1.驱动桥壳结构方案分析···················································37 2.桥壳强度计算····························································38 参考文献································································· 45 一 、绪 论 (一)、设计的背景

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