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    200米钻机设计说明书毕业论文.doc

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    200米钻机设计说明书毕业论文.doc

    黑龙江科技学院毕业设计(论文)任务书姓名:任务下达日期:年月日设计(论文)开始日期:年月日设计(论文)完成日期:年月日一、设计(论文)题目:200米钻机回转器设计二、专题题目:齿轮的工艺规程三、设计的目的和意义:地质勘探是利用钻探设备来探明地下地质构造、寻找地下油气矿藏的一种有效的地球物理勘探方法。为有效进行探采,改进原有不足,对新型200米钻机进行设计。设计的成功将有效改观现有的钻探设备,提高效率和改进钻探工艺。四、设计(论文)主要内容:(1)200米液压钻机的总体设计包括个技术指标的确定;(2)回转器的详细设计包括个零件的设计强度较核;(3)进给油缸的设计计算;(4)液压系统的设计计算五、设计目标:利用所学专业知识,熟悉掌握钻机的结构及工作原理,创新、改进传统已有的钻机,使其结构组成达到最优化、操作更加便捷、应用更加广泛。得到预定的设计目标,具有强大的市场力。六、进度计划:(1)1-3周毕业实习初步了解设计题目,上网、看书查找资料,收索相关资料,记录要注意的细节。(2)4-6周钻机整体传统系统的计算;各轴的输出输入的设计计算;回转器传动计算;各齿轮立轴的设计较核计算。(3)7-12周图的绘制包括液压卡盘总装配图;回转器总装图;本体零件图;钻机总装图等。(4)13-14周轴的工艺编制;外文资料的翻译。(5)15周CAD图输出、准备答辩七、参考文献资料:1甘永宁主编几何量公差与测量上海:上海科学技术出版社20012李喜桥主编加工工艺学北京:北京航空航天出版社20033孙德音主编机械加工工艺基础北京:机械工艺出版社20014孙明主编机械工程基础(上中下)黑龙江:黑龙江人民出版社20005濮良贵纪名刚主编机械设计北京:高等教育出版社20016夏延栋主编液压传动的密封与密封装置北京:机械工业出版社19827徐博滋陈铁鸣韩永春编带传动北京:化学工业出版社19808洛阳轴承研究所编滚动轴承产品样本北京:机械工业出版社20009地质局岩心钻探知识编写组岩心钻探知识北京:地质出版社197310齿轮国家标准汇编北京:中国标准出版社199211仙波正庄著齿轮强度计算姜永等译北京:化学工业出版社198512吴宗泽主编机械零件习题集北京:高等教育出版社198713陈隆德主编互换性与测量技术基础大连理工大学出版社198814龚桂义编机械设计课程设计指导书(2版)北京:高等教育出版社199015李继庆主编机械设计北京:高等教育出版社198916邱宣怀主编机械设计北京:高等教育出版社1988指导教师:院(系)主管领导:年月日目录摘要······································································错误!未定义书签。Abstract······························································································2第1章绪论·····················································································31.1选题的意义············································································31.2设计内容···············································································31.3设计方法···············································································41.4预期目标···············································································4第2章钻机概述················································································52.1钻机的功用············································································52.2对钻机的要求·········································································52.3钻机的组成············································································52.4钻机的分类和名称··································································62.4.1分类···············································································62.4.2名称···············································································7第3章钻机的总体设计······································································83.1本设计钻机的应用场合····························································83.2设计方案的确定········································································83.2.1本设计钻机的特点·························································83.2.2总体设计方案的确定······················································83.3钻机的技术特性和要求····························································9第4章动力机的确定···············································错误!未定义书签。4.1输出功率计算··············································错误!未定义书签。4.2回转钻进及破碎岩石、土层所需功率······································114.3给进油缸所需功率的计算······················································134.3.1给进油缸的基本参数····················································134.3.2油缸工作压力的计算····················································134.3.3油泵最大工作流量计算················································144.3.4给进油缸功率计算·······················································144.4动力机功率的确定······························································14第5章机械传动系统设计·································································155.1主要参数的选择···································································17

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