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废膜分离造粒机结构设计+SolidWorks三维模型

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废膜分离造粒机结构设计+SolidWorks三维模型

废膜造粒机二维

摘要
在我国经济快速发展的今天,回收用废膜分离造粒机的发展也得到了前所未有的发展,在近几年的发展中,不同种类的废膜分离造粒机层出不穷,给农业的回收带来了便捷式的发展。在目前的回收用设备的生产和制造上,不断的机械化的生产的背景下,在传统的使用手动的方式进行变位大的形势,回收的效率是比较低的、而且在操作上存在的困难,使得买废膜分离造粒机的经济划算的存在,还在变位上节省时间。本次设计的的废膜分离造粒机,适用于在回收废膜和工厂需求,以及在维修上使用,在现有的市场上废膜分离造粒机的设计和发展受到了农业在回收上的追捧,因此在本次的设计中,主要针对的回收废膜废膜分离造粒机的结构的设计,完成本次课题相关的设计内容。
在本次的废膜分离造粒机的设计中,在机构的构思上参考了市场上的大型的废膜分离造粒机的结构设计的方案,对一般的回收废膜使用的废膜分离造粒机的结构进行构思和设计研究,废膜分离造粒机的整体结构上设计而言,在设计中重点对废膜分离造粒机上的联轴器的回收造粒机构、传动部件、直流减速系统的设计等方进行了重点的结构分析和设计。使得设计的步骤首先在明确本次设计的废膜分离造粒机的设计任务,在设计的要求上以及设计的背景的情况下,广泛的查找相关的设计的资塑料,深入明确废膜分离造粒机的结构设计的纲领,并通过绘制三维的设计,对其中废膜分离造粒机的重要部件做了一些相关的建模,完成废膜分离造粒机的装配结构设计[2],并不断的实现部件的优化性的设计,最后对废膜分离造粒机的绘制CAD结构图纸,完成了三维的总装图和相应的部件图。

关键词:废膜分离造粒机、联轴器、减速系统

Abstract
With the rapid development of China's economy, the development ofwaste membrane separation granulator for recycling has also been unprecedented. In recentyears, different types ofwaste membrane separation granulator emerge in endlessly,which brings convenient development to the recovery of agriculture. In the current production and manufacturing of recycling equipment, under the background of continuous mechanized production, in the traditional use of manualway to carry out the situation of large displacement, the recovery efficiency is relatively low, and there are difficulties in operation,which makes the cost-effective existence of buyingwaste membrane separation granulator, and also saves time in displacement. The designedwaste membrane separation granulator is applicable to the recovery ofwaste membrane and plant demand, aswell as the use in maintenance. In the existing market, the design and development ofwaste membrane separation granulator are sought after by agriculture in the recovery. Therefore, in this design, the main purpose is to design the structure of the recovery ofwaste membrane separation granulator, and complete the relevant design content of this project。
In the graduation design of thewaste membrane separation granulator, the structural design scheme of the large-scalewaste membrane separation granulator on the market is referred to in the concept of the mechanism, and the structure of thewaste membrane separation granulator used for general recycling ofwaste membrane is conceived and designed. In terms of the overall structure design of thewaste membrane separation granulator, the focus of the design is on the structure of thewaste membrane separation granulator The key structure analysis and design of the recovery granulation mechanism, transmission parts and DC deceleration system of the coupling are carried out. So that the design steps first in the clear design of thewaste membrane separation granulator design task, in the design requirements and the design background, extensive search for relevant design materials, in-depth understanding of thewaste membrane separation granulator structure design program, and through the drawing of three-dimensional design, thewaste membrane separation granulator important parts do some related Modeling, complete the assembly structure design of thewaste membrane separation granulator [2], and constantly realize the optimization design of the components. Finally, draw the CAD structure drawing of thewaste membrane separation granulator, and complete the three-dimensional general assembly drawing and the corresponding component drawing.

Keywords:waste membrane separation granulator, coupling, deceleration system

目录
第一章绪论7
1设计任务及设计要求7
1.1设计任务7
1.2可行性分析7
1.3本次设计的主要解决的设计思路9
1.4废膜分离造粒机构设计的任务内容9
第二章废膜分离造粒机的总体方案设计10
2.1设计方案的提出10
2.2联轴器的方案设计11
2.3废膜分离造粒机的回收原理11
2.4废膜分离造粒机的优势分析11
第三章废膜分离造粒机结构部件的设计13
3.1造粒机构的设计说明13
3.1.1基本结构13
3.1.2.影响造粒机传动的主要因素分析13
3.2联轴器体回收效率计算16
第四章废膜分离造粒机传动部件的设计17
4.1直流减速马达的选择17
4.2直流减速马达的计算17
4.2.1确定计算功率17
4.2.2传动系统的选择18
4.2.3求作用在废膜分离造粒机轮绞龙轴上的变速器19
4.2.4传动联轴器转动的计算19
4.3废膜分离造粒机变速联轴器的设计20
4.3.1选择传动联轴器的精度等级20
4.3.2按接触强度进行初步计算20
4.3.3按弯曲强度设计22
4.3.4确定带数23
4.3.5确定废膜分离造粒机几何尺寸23
第五章废膜分离造粒机绞龙轴的设计24
5.1绞龙轴结构的设计25
5.2绞龙轴的设计计算26
总结28
参考文献29

造粒机

造粒机

进料斗

进料斗

废膜造粒机

废膜造粒机

前法兰盖

前法兰盖

轴承盖

轴承盖

轴套

轴套

内部结构

内部结构

大带轮

大带轮

绞龙

绞龙

填料压盖

填料压盖

小带轮

小带轮

压盖

压盖

传动结构

传动结构

装配

装配

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