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CJK6150数控车床设计-主轴箱和尾座部件设计【通过答辩毕业论文+CAD图纸】.rar

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CJK6150数控车床设计-主轴箱和尾座部件设计【通过答辩毕业论文+CAD图纸】.rar

上传人:做机械197216396 2017/1/23 文件大小:16 MB

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车床主轴箱装配图.dwg [696 KB] 查看图纸
车床主轴箱装配图.dwg [696 KB] 查看图纸
开题报告.doc [267 KB]
开题报告.doc [267 KB]
目录及摘要.doc [103.50 KB]
目录及摘要.doc [103.50 KB]
任务书.doc [29.34 KB]
任务书.doc [29.34 KB]
数控车床尾座装配图.dwg [575.31 KB] 查看图纸
数控车床尾座装配图.dwg [575.31 KB] 查看图纸
图纸大集合.dwg [936 KB] 查看图纸
图纸大集合.dwg [936 KB] 查看图纸
原版.rar [5.80 MB]
原版.rar [5.80 MB]
主轴零件图.dwg [531.03 KB] 查看图纸
主轴零件图.dwg [531.03 KB] 查看图纸
主轴箱剖面图.dwg [563.41 KB] 查看图纸
主轴箱剖面图.dwg [563.41 KB] 查看图纸
转速图.dwg [522.84 KB] 查看图纸
转速图.dwg [522.84 KB] 查看图纸
总装图.dwg [589.63 KB] 查看图纸
总装图.dwg [589.63 KB] 查看图纸
毕业设计说明书.doc [3.66 MB]
毕业设计说明书.doc [3.66 MB]
CJK6150数控车床设计-主轴箱和尾座部件设计.doc [4.39 MB]
CJK6150数控车床设计-主轴箱和尾座部件设计.doc [4.39 MB]

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文档介绍:分类号密级宁宁波大红鹰学院毕业设计( 论文) CJK6150 数控车床设计-主轴箱和尾座部件所在学院专业班级姓名学号指导老师年月日诚信承诺我谨在此承诺: 本人所写的毕业设计( 论文)《 CJK6150 数控车床设计-主轴箱和尾座部件》均系本人独立完成,没有抄袭行为,凡涉及其他作者的观点和材料,均作了注释,若有不实,后果由本人承担。承诺人(签名): 年月日摘要随着当今工业设备对精密程度的要求越来越高,加工设备的机械加工设备的加工的精密程度也要求越来越高。在搜索、查阅研究大量有关资料的基础上,对机床自动化技术进行了深入的研究和分析,并描述了机床控制系统的设计。整个过程主要对车床主传动进行设计。车床主传动设计,主要包括三方面的设计,即:根据设计题目所给定的机床用途、规格、主轴极限转速、转速数列公比或级数,确定其他有关运动参数,选定主轴各级转速值;通过分析比较,选择传动方案;拟定结构式或结构网,拟定转速图;确定齿轮齿数及带轮直径;绘制传动系统图。其次,根据机床类型和电动机功率,确定主轴及各传动件的计算转速,初定传动轴直径、齿轮模数,确定传动带型号及根数,摩擦片尺寸及数目;装配草图完成后要验算传动件(传动轴、主轴、齿轮、滚动轴承)的刚度、强度或寿命。最后,完成运动设计和动力设计后,要将主传动方案“结构化”,设计主轴变速箱装配图及零件图,侧重进行传动轴组件、主轴组件、变速机构、箱体、润滑与密封、传动轴及滑移齿轮零件的设计。关键词: 车床;数控;传动系统 Abstract With the industrial equipment for precision degree of the increasingly high demand, the degree of precision machining processing equipment of machining equipment also to request more and more high. In the search, a lotof related data access research of machine tool automation technology, in-depth research and analysis, and describes the design of machine tool control system. The whole process is mainly carries on the design to the main drive lathe. CNC lathe main drive design, including the design, three aspects: according to the design of machine tool use, the given specifications, spindle speed limit, speed ratio determined sequence or series, other relevant motion parameters, selected at speed of the main shaft; through analysis parison, select the transmission scheme; develop structure or structure, develop speed diagram; to determine the number of gear teeth and belt pulley diameter; drawing drive system diagram. Secondly, based on the machine type and motor power, determining the spindle and the transmission of putation speed, initial drive shaft diameter, the gear modulus, determine the transmission belt type and number of roots, friction plate size and number of assembly drawing; after checking transmission parts (gear, shaft, shaft, bearing stiffness,) strength or fatigue life. Finally, plete the exercise design and dynamic desig