毕业设计 动力差速式转向机构设计,共56页,附CAD图 摘要 履带车辆的转向机构是重要的总成之一,其性能的优劣直接影响着车辆的转向机动性和生产效率。因此对性能优良的转向机构的研究一直是车辆工程领域的重要研究课题。履带式工程机械的转向机构普遍采用单功率流的转向离合器和制动器,两者相配合,使两侧履带以不同速度行驶,实现转向。这种结构非常简单,同时也易于实现转向,但是要实现小半径转向时需借助摩擦元件的打滑来实现,造成严重的功率浪费,降低摩擦元件的使用寿命。同时驾驶操作费力,还不好准确把握车辆的转向半径。 本设计为推土机设计采用的一套动力差速式转向装置。该转向机构主要包括一个转向差速机构、一个液压泵、一个液压转向马达和转向控制器,它将转向和差速和为一体,简化了机械的结构,提高了机械的使用性能。该机构具有差速的同时,还具有差速锁的效果,并具有降速增扭的功能,大大提高了履带车辆行驶通过性和转向性能。 关键词:差速式转向机构;转向离合器;转向半径;履带车辆;转向控制器 目录 摘要······························································································································Ⅰ Abstract ························································································································Ⅱ 第1 章 绪论················································································································ 1 1.1 履带车辆转向机构的选题背景目的及意义····················································· 1 1.2 履带车辆转向机构研究现状············································································· 2 1.2.1 单功率流转向机构·················································································· 2 1.2.2 双功率流转向机构·················································································· 3 1.3 履带车辆转向机构发展趋势············································································· 4 1.3.1 纯液压无级转向机构·············································································· 4 1.3.2 复合转向机构·························································································· 5 1.3.3 机械液压连接无级转向机构·································································· 5 1.4 差速式转向机构的主要构成············································································· 6 1.5 本文主要工作···································································································· 7 第2 章 动力差速式转向机构运动学分析·························································· 8 2.1 差速式转向机构的组成与工作原理································································· 8 2.2 差速式转向机构的运动学分析········································································· 9 2.2.1 转速分析································································································· 9 |
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