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摘要
本文在分析手持式电动旋盖机存在问题的基础上,介绍了套筒式电动旋盖机的结构特点和工作原理,并依据该机在水泥厂的使用效果、实测数据和计算结论,说明该机无论在理论还是实践中都是一种高效、节能的理想旋盖设备。套筒式旋盖机是通过对单筒旋盖机的单一筒体改为叠在一起的两筒或三筒,以缩短旋盖机的外形尺寸。该机工作时,物料和热气流依次进入内外筒体,在旋盖机内作“V”或“N”形往复折流后,充分利用热能旋盖物料后再卸出。该旋盖机筒体部分由两个筒轴水平放置的内外套筒组成,内通为一锥筒,外筒为直筒,这就使通体的截面得到充分利用,其筒体外形总长度约为相当的单筒的50%-60%,从而大幅度的减少了占地面积和厂房建筑面积。套筒式旋盖机将以其结构紧凑、占地面积小、热效率高、投资省、适应性强、运转可靠等特点,为水泥厂的原、燃料旋盖提供了一种较理想的旋盖设备。
关键词:回转式旋盖机、套筒式旋盖机、节能
Abstract
The single cylinder type of this text at analyze dryer turns round the foundation exsits the problem is last, introducing a cylinder type turns round the construction characteristics of the dryer with work principle, and according to that machine usage in cement works result, solid measure the data with compute the conclusion, explain that machine to is all a kind of in theories still practice regardless efficiently, the ideal of the economy energy dries the equipments.A cylinder type dryer is an one to pass to the single the dryer of cylinder to change for together of two cylinder or three cylinder , to shorten the shape size of the dryer.When that machine work, the material flows to enter the of cylinder outside the inside one by one in order with the hot air, after dryer inside make" V" or" N" form back and forths fold flow, make use of well the thermal energy dries the material empress unloads again.The dryer's cylinder part inside coat cylinder that place be constituted by two cylinder stalk level, inside is a cylinder , the outside cylinder is for keeping the cylinder , this make the an of the of cylinder got to make use of well, its cylinder shape total length invites 50% - 60% of the very single cylinder , from but significant decrease cover the area to construct the area with the factory premises
Keywords:Turn round the type dryer, set cylinder type dryer, economy
目录
0 引言 1
0.1 概述 1
0.2 工作原理及结构特点 1
0.3 结语 2
1 物料的旋盖 3
1.1 干燥设备分类及在水泥工业中的应用 3
1.2 电动旋盖机的型号和特性 4
1.3 工作原理及结构特点 6
2 双筒旋盖机的设计计算 8
2.1 水分蒸发强度及旋盖机尺寸计算 8
2.2 物料需在转筒内旋盖时间的计算 10
2.3 旋盖机转速的计算 11
2.4 电动旋盖机所需动力的计算 12
2.5 旋盖机产量的计算 13
3 卸料罩壳的设计 14
4 密封装置的设计 15
4.1 密封装置的位置与要求 15
4.2 密封结构 15
5 传动装置 17
5.1 电动机选型 17
5.2 YCT系列电动机 17
6 减速机的设计 19
7 支承装置 20
7.1 托轮与轴承的结构 20
7.2 托轮与轴承的设计 20
8 结论 21
致谢 22
参考文献 23
附件清单 24
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