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小型自走式播种机设计(汽油机驱动)【17张CAD图纸+WORD毕业论文】【农业机械资料】

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目录
第1章 前言··········································································1
1.1播种机的常识和技术现状·······················································1
1.2播种方式及常见播种类型·······················································3
1.2.1条播·············································································3
1.2.2穴播·············································································4
1.2.3撒播·············································································4
1.2.4精密播种·······································································4
1.2.5联合作业机和免耕播种························································5
1.3播种工作过程和机械构造·······················································5
1.3.1工作过程·······································································5
1.3.2机械构造·······································································6
1.4播种机械的发展趋势·····························································7
第2章 总体设计····································································9
2.1 概述···············································································9
2.2 设计任务········································································10
2.3 设计目的········································································10
2.4 动力方案选择···································································10
2.5 设计题目分析及设计思想·····················································12
2.6 设计主参数及机构类型确定··················································12
2.6.1工作速度······································································12
2.6.2播量的确定···································································13
2.6.3种、肥箱的容积······························································13
2.6.4机架设计······································································14
2.6.5工作幅度······································································14
2.6.6 排种、排肥机构设计·························································14
2.6.7开沟器设计····································································18
2.6.8覆土器设计···································································22
2.6.9镇压轮设计····································································23
2.6.10 地轮设计····································································23
第3章  传动设计及播种技术措施···········································25
3.1传动原理简图和动力传递路线图····································25
3.1.1传动原理简图·································································25
3.1.2动力传动路线图······························································25
3.2传动原理·········································································25
3.3技术措施·········································································26
3.3.1播种均匀性和各行排量一致性措施·········································26
3.3.2降低破种率措施······························································27
3.3.3种肥同播时,肥料的利用率··················································27
第4章 零部件设计·······························································28
4.1种箱及肥箱设计·································································28
4.2开沟器设计及校核······························································29
4.3排种器···········································································31
4.4地轮参数确定···································································32
4.4.1轮子直径和轮辋宽度的确定·················································32
4.4.2轮子滚动阻力计算····························································32
4.5汽油机的选择及链轮设计······················································33
4.5.1汽油机总功率确定····························································33
4.5.2汽油机及减速器的选择······················································34
4.5.3传动比的确定·································································35
4.5.4链轮选择及设计计算·························································36
4.6地轮轴设计······································································41
4.7键的校核·········································································47
4.8销的校核·········································································48
4.9轴承的校核······································································49
第5章 播种机使用·······························································50
5.1播种量调整······································································50
5.2实际操作说明···································································51
5.2.1播种作业前准备······························································51
5.2.2播种机的试播及作业·························································53
5.2.3播种机的保养与保管·························································54
5.2.4播种质量检查·································································54
第6章 毕业设计小结····························································57
参考文献·············································································59


摘要

随着近来温室大棚的发展以及环保发展意识的日益增强,小型机的需求就显得更为重要,尤其是微动力装置的机械。然而目前广泛应用的播种机是以内燃机及人力为动力装置。本设计电动小型播种机与传统的播种机相比.新颖之处在于播种机采用汽油机为动力装置,从而改善了人们在田间作业时的工作环境,况且更符合环保发展的观点。
本设计主要用于农户田间播种和设施种植播种.增加部分装置也可用于施肥、耙磨、除草等田间作业。详细介绍了播种机的结构组成以及各部件的形式、要求以及功用。详细介绍了汽油机驱动小型播种机动力装置及各部件要求,包括播种机的动力选择、机械传动的选择及尺寸、排种轮设计、排肥轮的设计、开沟器的设计、轴的设计、链轮的设计、其他的各部件设计以及播种机的工作要求、播种前的准备及播种机的使用等。在设计中考虑播种深度连续可调、播种行距连续可调、播种穴距可调、种子破碎率和播种均匀度符合国家标准。设计中在考虑实用的同时,兼顾经济节约,从而达到结构合理、生产成本低、能耗小、效率高,而且操作方便的目的。


关键词:汽油机 小型 播种机



Abstract
With the development of the greenhouse and the consiousness of protecting our ervironment ,boosting up ,the apply of the powy machine becomes more important ,especially the machine with electric power .but at the present time the seeding-machine which is adopted abroadly is drived ba gad engine or man power .this kind of minitype seeding-machine knows from the conventional seeding-machine .Its novel aspect is its drive set which are drived by electric power completly ,so they will improve the work condition ,and accord with euthenics .
   This design is applied mostly with the farms of the farmers ,they can also used to fertilize、abrade、get rid of grass and so on ,when we incress some equipment .My design introduce the structure of the seeding-machine and the types of many parts 、some request an fuction .My design introduce the drive equipment of the machine and the types of many parts 、request and fuction .My design also introduce the drive equipment of the machine and the request of the parts which consist of the selecting of the power 、the size 、the design of the axial 、chain wheel 、some other parts and so on .We must consider suiting well of the depth 、the row spacing 、the distance of scoop and the rate of seeds breaking up when seeding .In my design ,while thinking over applied ,I give attention to saving econmy ,consequently achieve structure in reason 、the cost of produce lowness 、the cost of power lowness 、the effidiency highness and convenient when operating .  


KEY  WORDS gasoline engine   minitype  seeding-machine  


内容简介:
河北建筑工程学院毕业实习报告系 别 机械工程系 专 业 机械设计制造及其自动化 班 级 机083 姓 名 王晓良 学 号 2008307335 指导教师 孙有亮 实习成绩 毕业实习报告一、实习目的毕业实习是工科本科学生的一个很重要的实践性教学环节。其任务是根据机械设计及其自动化专业的培养目标,组织学生参观相关的机械企业或部门,培养学生重视实践、增强理论联系实际的观念,深入调查研究、拓宽视野、增强面向人才市场、服务于社会的观念。我们这半学期的主要任务就是进行毕业设计,把我们大学四年所学到的机械知识理论联系现实生产需求进行综合应用。这样即可以进一步巩固所学的理论知识,又对即将走向的工作岗位作一次实战性的演习。因此这次毕业设计对于我们这些即将走向工作岗位的大四的毕业生来说是很重要的。为了给毕业设计做一个良好的铺垫,毕业实习是一个不可缺少的环节。二、实习内容及进度最初是为期两周的与机械相关的英文资料的翻译,期间我们查阅了大量与设计相关的资料,其后就进入了毕业实习阶段。在孙老师的带领下,我们首先来到了张家口宣化农机公司参观实习。宣化农机主营各种玉米,土豆播种和收获机械,因此地特殊的地域和气候环境我们见到的是中小型农机,没见到大型农机,不过见一事之真如,则见事事之真如。不同的厂家不同的产品,使我们开拓了眼界,了解了一个好的设计不一定是复杂的,虽然很简单,但你会说我怎么没想到,这就是创新和发散思维。比如保定一家公司的滚筒式播种机的设计就只用一个弹簧和九十度折角的小杠杆,就能做到只在接地时排种,虽简单却是专利产品。第二阶段我们在孙老师的带领下去唐山一家农机生产工厂。首先对我们进行安全教育。老师给我们看安全生产记录还有事故案例,一些注意事项加血淋淋的案例,尽管我很害怕,不敢听不敢看,但我不能,我必须听还要看,还要做笔记,这些血淋淋的案件给人们敲响了警钟。老师给我们提了好多要求,我们都必须做到,毕竟事故发生了谁也负担不起。生命是无价的,一旦有严重损伤是无法恢复的。安全规范如下:不允许穿凉鞋进厂;进厂必须穿长裤; 禁止在厂里吸烟,被发现者罚款;进厂后衣服不准敞开,外套不准乱挂在身上,不得背背包进厂; 人在厂里不要成堆,不要站在主干道上 注重自身和学校形象;不准乱按按扭、开关。再老师的带领下我们了学习了从了解需求到设计,工艺制定,生产装配及测试的流程。老师告诫我们产品设计是个综合信息处理的复杂过程,它最终的结果是把线条、符号、数字绘制成合理的设计图样,设计人员应从以下几个方面综合考虑; (l)简化每个零件的形状,使机器结构简单; (2)合并零件的功能,减少零件的种类或数量; (3)应用新结构、新工艺、新材料、新原理来简化产品结构,提高产品的可*性; (4)分解部件,研究其装配、组装的最简单的结构; (5)对相似零件进行分组; (6)对相似产品按标准数序列进行产品系列化分析; (7)实现产品零件的通用化和标准化。 产品设计人员提高设计质量的关键在于自觉、主动地学习与生产加工过程和加工工艺方面有关的知识,熟练掌握设计技巧。好的设计如果没有好的工艺是会大打折扣的,工艺没有最好只有更好,工艺的改进是无止境的。改进工艺方案: (l)避免没有必要的切削加工,特别是没必要的装夹基准面的切削加工。焊接件准备用自动化程度较高的焊接机器人进行焊接时,应考虑组成零件的焊前加工,保证焊接件各组成零件之间的相互位置尺寸,否则误差太大,机器人将无法自动跟踪焊接。(2)在保证零部件可*、合理使用的前提下,降低尺寸公差、表面粗糙度、形位公差等加工精度等级要求。 (3)减少零件的弯曲形状和复杂程度,降低废品率和生产制造成本。 (4)型钢在进行长度下料时,尽量把火焰切割改为型钢剪切下料;一般板料的火焰切割改为用剪板机剪切下料;长方形条状工件从四边剪切改为用条钢,仅仅是长度上的剪切下料。通过对农机的生产过程参观,对生产过程的细节问题有了更深的认识,纸上的来终觉浅。如配合和公差以前以为机械是粗糙的活,现在才发现自己是有偏见的,机械是粗中有细。轴承配合误差不能超过俩道(一百道一毫米)。机架要平行且上面的空要定位精确才能保证安装省时省力,提高效率。通过互联网我们了解了国外的先进设备和制造工艺,我们的差距还很大。三、实习结果通过这次的毕业实习加上老师在实习过程中的现场指导,使我对其他同学的课题有了进一步的认识。更了解了自己的不足生产实习是教学计划中一个重要的实践性教学环节,虽然时间不长,但在实习的过程中,都学到了很多东西。在实习的过程中,我对于各种加工机床有了更加直观的了解,通过现场观看各种零件在机床上的加工过程,我对机械制造技术基础上所讲的夹具、定位方法、加工工序、工步等概念有了更加深入的认识;我了解到大多数零件生产工序大致有两种,一种是最原始的手摇手柄定位加工,精确性不高,要求工人有很强的操作能力;另一种是数控控制,由设备自动控制完成的,操作者只是装卸辅助,但这个前提是操作者会操作机器。实习中,我认识到书本理论知识与现实操作的差距,比如,在课堂上时说到自由度、刀具什么的都头头是道,可真正到了工厂里一问这个限定了几个自由度就蒙了,更别说辨认刀具了。但是,这也并不是说书本知识与实际生产完全脱节,在实习参观过程中,有好多知识都得到了体现。比如,我们在机械制造技术基础中所学的编制零件加工工序卡片,我在好多零件加工旁都看到了类似的卡片,听到和见到给人的印象是不一样的。在这短短的一个月的实习中,孙老师带领和教导下以及自已的努力参与学习,对机械专业的各个方面有了深刻的理解和认识,并且巩固了书本上的知识,将理论运用到实际中去,从实际施工中丰富自已的理论知识,学会运用辩证法去处理机械生产中遇到的各种问题,我坚信能过这一段时间的实习,所获得的实践经验对我终身受益,在我毕业后的实际工作中将不断的得到验证。 四、实习总结生产实习是我们机械专业知识结构中不可缺少的组成部分,其目的在于通过实习使学生获得基本生产的感性认识,理论联系实际,扩大我们的知识面;同时又是锻炼和培养学生业务能力及素质的重要渠道,培养当代大学生具有吃苦耐劳的精神,也是学生接触社会、了解企业的一个绝好的机会。我们的实习达到了我们所希望的效果,相信通过此次毕业实习,会使我们每一位同学将理论与实际结合的更紧密,更能够使我们掌握工程机械设计的基本流程、各种参数的选取、各种影响因素产生的特点;使我们从容的面对以后的设计和即将踏入的工
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本文标题:小型自走式播种机设计(汽油机驱动)【17张CAD图纸+WORD毕业论文】【农业机械资料】
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