CN205019865U - 一种基于远程控制的节能环保除尘装置 - Google Patents
一种基于远程控制的节能环保除尘装置 Download PDFInfo
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- CN205019865U CN205019865U CN201520695964.2U CN201520695964U CN205019865U CN 205019865 U CN205019865 U CN 205019865U CN 201520695964 U CN201520695964 U CN 201520695964U CN 205019865 U CN205019865 U CN 205019865U
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- 239000003500 flue dust Substances 0.000 claims abstract description 22
- 238000001914 filtration Methods 0.000 claims description 18
- 238000005086 pumping Methods 0.000 claims description 11
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- 230000000694 effects Effects 0.000 abstract description 10
- 238000001514 detection method Methods 0.000 abstract 1
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- 238000003915 air pollution Methods 0.000 description 4
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- 239000002912 waste gas Substances 0.000 description 4
- 238000003723 Smelting Methods 0.000 description 3
- VSCWAEJMTAWNJL-UHFFFAOYSA-K Aluminium chloride Chemical compound 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Cl[Al](Cl)Cl VSCWAEJMTAWNJL-UHFFFAOYSA-K 0.000 description 2
- 229910052782 aluminium Inorganic materials 0.000 description 2
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminum Chemical compound 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Abstract
本实用新型提供一种基于远程控制的节能环保除尘装置,包括旋风风道,筒体,进风口,清灰装置,锥体,控制箱,集灰斗,滤尘装置,出风管道,微尘颗粒检测装置,防雨罩,轴承和支架,所述的旋风风道设置在筒体的内壁;所述的进风口设置在筒体的外侧;所述的清灰装置通过轴承安装在锥体的内壁;所述的集灰斗安装在锥体的下部;所述的集灰斗下部设置漏灰口;所述的排灰抽板安装在集灰斗的下部。本实用新型的清灰装置、控制箱和滤尘装置设置,使得改善除尘效果,便于收集灰尘,清除积灰方便,实现了远程智能控制,提高工作效率和经济效益,便于推广和使用。
Description
技术领域
[0001] 本实用新型属于环保设备技术领域,尤其涉及一种基于远程控制的节能环保除尘
目.ο
背景技术
[0002] 在冶炼炉冶炼过程中会产生大量含有灰尘的废气,废气直接排放空气中会造成严重的空气污染,同时冶炼炉中烟尘含AL203在65%-75%之间,纳米级和微米级的AL203用途很广,洗净的铝灰可以生产碱式氯化铝;纯净的AL203粉末可为电解铝生产中废气HF的吸附剂,有着较高的应用价值,所以废气除尘既可以净化空气,也可以回收灰尘,有较高的经济价值和环保意义。
[0003]目前采用的环保除尘集灰装置以旋风分离装置为主,虽然旋风分离装置取得很大的发展,但是仍然有不足,需要进一步改进,中国专利公开号为CN 103223381 Α,发明创造的名称为旋风除尘器,该申请案包括除尘器本体,其特征在于:所述除尘器本体外壁上环设有加热装置,所述除尘器本体外壁或内壁上还设置有震打装置,通过加热装置可以防止物料吸水,降低物料的粘附性,通过震打装置可以将粘附在除尘器内壁上的物料清除掉。现有旋风除尘装置存在着除尘效果差,空气净化度较低,锥体内积尘难以清理,自动化程度低;另外由于除尘装置一般设置在厂房的楼顶,不便于工人的观察与操作,工人操作费时费力的问题。
[0004] 因此,发明一种基于远程控制的节能环保除尘装置显得非常必要。
实用新型内容
[0005] 为了解决上述技术问题,本实用新型提供一种基于远程控制的节能环保除尘装置,以解决现有旋风除尘装置存在着除尘效果差,空气净化度较低,烟管内积尘难以清理,自动化控制水平低,工人操作费时费力的问题。一种基于远程控制的节能环保除尘装置,包括旋风风道,筒体,进风口,清灰装置,锥体,控制箱,集灰斗,排灰抽板,滤尘装置,出风管道,微尘颗粒检测装置,防雨罩,轴承和支架,所述的旋风风道设置在筒体的内壁;所述的进风口设置在筒体的外侧;所述的清灰装置通过轴承安装在锥体的内壁;所述的集灰斗安装在锥体的下部;所述的集灰斗下部设置漏灰口 ;所述的排灰抽板安装在集灰斗的下部;所述的滤尘装置安装在出风管道的上部;所述的微尘颗粒检测装置安装在滤尘装置的内侧;所述的防雨罩固定在滤尘装置的外部;所述的控制箱固定在锥体的外部;所述的支架焊接在筒体和锥体的外部。
[0006] 优选地,所述的清灰装置包括滑轮,清灰管,喷水孔,刮板,固定圈,旋转盘和旋转手柄,所述的滑轮安装在清灰管的上端;所述的喷水孔设置在清灰管侧面;所述的刮板固定在清灰管的下部;所述的清灰管具体采用两个;所述的固定圈焊接在清灰管的上端;所述的旋转盘安装在清灰管的下部;所述的旋转手柄安装旋转盘的外部。
[0007] 优选地,所述的清灰管具体采用长度为2.5米,外径为3厘米的钢管,所述的清灰管平行安装在锥体的内壁,有利于通过刮板对积尘清理,结构简单,操作方便,清灰效果较好。
[0008] 优选地,所述的排灰抽板包括板体,滑道和拉手,所述的板体通过滑道安装在集灰斗的漏灰口上部;所述的拉手设置在板体的外端。
[0009] 优选地,所述的控制箱包括工作指示灯,PLC控制器,急停按钮,远程控制器,所述的工作指示灯设置在控制箱的上部;所述的PLC控制器设置在工作指示灯的下部;所述的PLC控制器和远程控制器设置在控制箱的内部。
[0010] 优选地,所述的PLC控制器具体采用三菱FX2n型整体控制器,使得智能化水平进一步提尚。
[0011] 优选地,所述的远程控制器具体采用TD-SB2001型控制器,实现了远程智能控制和查询除尘装置的工作状态,降低了工人的劳动强度。
[0012] 优选地,所述的滤尘装置包括滤尘袋,支柱,壳体和冷却管,所述的滤尘袋安装在支柱的外侧;所述的冷却管镶嵌在壳体的内侧。
[0013] 优选地,所述的滤尘袋具体采用PTFE材料制成,所述的滤尘袋具体采用螺旋结构安装在支柱的上部,便于收集微尘颗粒,具有较高的过滤效率和良好的清灰性能,有利于进一步净化空气,提高空气净化度,减少空气污染。
[0014] 与现有技术相比,本实用新型具有如下有益效果:由于本实用新型的一种基于远程控制的节能环保除尘装置广泛应用于环保设备技术领域。同时,本实用新型的有益效果为:
[0015] 1、本实用新型的清灰装置的设置,有利于通过刮板对积尘清理,结构简单,操作方便,清灰效果较好。
[0016] 2、本实用新型的排灰抽板的设置,有利于及时清除集灰斗内的积尘,减少占地面积,提高经济效率。
[0017] 3、本实用新型的控制箱的设置,实现了远程智能控制和查询除尘装置的工作状态,降低了工人劳动强度。
[0018] 4、本实用新型的滤尘装置的设置,便于收集微尘颗粒,有利于进一步净化空气,提高空气净化度,减少空气污染。
附图说明
[0019] 图1是本实用新型的结构示意图。
[0020] 图2是本实用新型的清灰装置结构示意图。
[0021] 图3是本实用新型的排灰抽板结构示意图。
[0022] 图4是本实用新型的滤尘装置结构示意图。
具体实施方式
[0023] 以下结合附图对本实用新型做进一步描述:
[0024] 图中:
[0025] 1-旋风风道,2-筒体,3-进风口,4-清灰装置,41-滑轮,42-清灰管,43-喷水孔,44-刮板,45-固定圈,46-旋转盘,47-旋转手柄,5-锥体,6-控制箱,61-工作指示灯,62-PLC控制器,63-急停按钮,64-远程控制器,7-集灰斗,71-漏灰口,8-排灰抽板,81-板体,82-滑道,83-拉手,9-滤尘装置,91-滤尘袋,92-支柱,93-壳体,94-冷却管,10-出风管道,11-微尘颗粒检测装置,12-防雨罩,13-轴承,14-支架。
[0026] 实施例:
[0027] 如附图1至附图4所示
[0028] 本实用新型提供一种基于远程控制的节能环保除尘装置,包括旋风风道1,筒体2,进风口 3,清灰装置4,锥体5,控制箱6,集灰斗7,排灰抽板8,滤尘装置9,出风管道10,微尘颗粒检测装置11,防雨罩12,轴承13和支架14,所述的旋风风道1设置在筒体2的内壁;所述的进风口 3设置在筒体2的外侧;所述的清灰装置4通过轴承13安装在锥体5的内壁;所述的集灰斗7安装在锥体5的下部;所述的集灰斗7下部设置漏灰口 71 ;所述的排灰抽板8安装在集灰斗7的下部;所述的滤尘装置9安装在出风管道10的上部;所述的微尘颗粒检测装置11安装在滤尘装置9的内侧;所述的防雨罩12固定在滤尘装置9的外部;所述的控制箱6固定在锥体5的外部;所述的支架14焊接在筒体2和锥体5的外部。
[0029] 所述的清灰装置4包括滑轮41,清灰管42,喷水孔43,刮板44,固定圈45,旋转盘46和旋转手柄47,所述的滑轮41安装在清灰管42的上端;所述的喷水孔43设置在清灰管42侧面;所述的刮板44固定在清灰管42的下部;所述的清灰管42具体采用两个;所述的固定圈45焊接在清灰管42的上端;所述的旋转盘46安装在清灰管42的下部;所述的旋转手柄47安装旋转盘46的外部。
[0030] 所述的清灰管42具体采用长度为2.5米,外径为3厘米的钢管,所述的清灰管42平行安装在锥体5的内壁,有利于通过刮板44对积尘清理,结构简单,操作方便,清灰效果较好。
[0031 ] 所述的排灰抽板8包括板体81,滑道82和拉手83,所述的板体81通过滑道82安装在集灰斗7的漏灰口 71上部;所述的拉手83设置在板体81的外端。
[0032] 优选地,所述的控制箱6包括工作指示灯61,PLC控制器62,急停按钮63,远程控制器64,所述的工作指示灯61设置在控制箱6的上部;所述的PLC控制器62设置在工作指示灯61的下部;所述的PLC控制器62和远程控制器64设置在控制箱6的内部。
[0033] 优选地,所述的PLC控制器62具体采用三菱FX2n型整体控制器,使得智能化水平进一步提尚。
[0034] 优选地,所述的远程控制器64具体采用TD-SB2001型控制器,实现了远程智能控制和查询除尘装置的工作状态,降低了工人的劳动强度。
[0035] 优选地,所述的滤尘装置9包括滤尘袋91,支柱92,壳体93和冷却管94,所述的滤尘袋91安装在支柱92的外侧;所述的冷却管94镶嵌在壳体93的内侧。
[0036] 优选地,优选地,所述的滤尘袋91具体采用PTFE材料制成,所述的滤尘袋91具体采用螺旋结构安装在支柱92的上部,便于收集微尘颗粒,具有较高的过滤效率和良好的清灰性能,有利于进一步净化空气,提高空气净化度,减少空气污染。
[0037] 工作原理
[0038] 本实用新型通过控制箱6,实现了远程智能控制和查询除尘装置的工作状态。当积尘较多时,可以提醒工人前去处理;处理时用手旋转旋转手柄47,从而带动清灰管42及其下部的刮板44对积尘的清理,同时喷水孔43喷水改善清理效果,结构简单,提高效率,省时省力。
[0039] 利用本实用新型所述的技术方案,或本领域的技术人员在本实用新型技术方案的启发下,设计出类似的技术方案,而达到上述技术效果的,均是落入本实用新型的保护范围。
Claims (9)
1.一种基于远程控制的节能环保除尘装置,包括旋风风道(1),筒体(2),进风口(3),清灰装置(4),锥体(5),控制箱(6),集灰斗(7),排灰抽板(8),滤尘装置(9),出风管道(10),微尘颗粒检测装置(11),防雨罩(12),轴承(13)和支架(14),所述的旋风风道(1)设置在筒体(2)的内壁;所述的进风口(3)设置在筒体(2)的外侧;所述的清灰装置(4)通过轴承(13)安装在锥体(5)的内壁;所述的集灰斗(7)安装在锥体(5)的下部;所述的集灰斗(7)下部设置漏灰口(71);所述的排灰抽板(8)安装在集灰斗(7)的下部;所述的滤尘装置(9)安装在出风管道(10)的上部;所述的微尘颗粒检测装置(11)安装在滤尘装置(9)的内侧;所述的防雨罩(12)固定在滤尘装置(9)的外部;所述的控制箱(6)固定在锥体(5)的外部;所述的支架(14)焊接在筒体(2)和锥体(5)的外部。
2.如权利要求1所述的一种基于远程控制的节能环保除尘装置,其特征在于,所述的清灰装置(4)包括滑轮(41),清灰管(42),喷水孔(43),刮板(44),固定圈(45),旋转盘(46)和旋转手柄(47),所述的滑轮(41)安装在清灰管(42)的上端;所述的喷水孔(43)设置在清灰管(42)侧面;所述的刮板(44)固定在清灰管(42)的下部;所述的清灰管(42)具体采用两个;所述的固定圈(45)焊接在清灰管(42)的上端;所述的旋转盘(46)安装在清灰管(42)的下部;所述的旋转手柄(47)安装旋转盘(46)的外部。
3.如权利要求2所述的一种基于远程控制的节能环保除尘装置,其特征在于,所述的清灰管(42)具体采用长度为2.5米,外径为3厘米的钢管,所述的清灰管(42)平行安装在锥体(5)的内壁。
4.如权利要求1所述的一种基于远程控制的节能环保除尘装置,其特征在于,所述的排灰抽板(8 )包括板体(81),滑道(82 )和拉手(83 ),所述的板体(81)通过滑道(82 )安装在集灰斗(7)的漏灰口(71)上部;所述的拉手(83)设置在板体(81)的外端。
5.如权利要求1所述的一种基于远程控制的节能环保除尘装置,其特征在于,所述的控制箱(6 )包括工作指示灯(61),PLC控制器(62 ),急停按钮(63 ),远程控制器(64),所述的工作指示灯(61)设置在控制箱(6)的上部;所述的PLC控制器(62)设置在工作指示灯(61)的下部;所述的PLC控制器(62)和远程控制器(64)设置在控制箱(6)的内部。
6.如权利要求5所述的一种基于远程控制的节能环保除尘装置,其特征在于,所述的PLC控制器具体采用三菱FX2n型整体控制器。
7.如权利要求5所述的一种基于远程控制的节能环保除尘装置,其特征在于,所述的远程控制器(64)具体采用TD-SB2001型控制器。
8.如权利要求1所述的一种基于远程控制的节能环保除尘装置,其特征在于,所述的滤尘装置(9)包括滤尘袋(91),支柱(92),壳体(93)和冷却管(94),所述的滤尘袋(91)安装在支柱(92)的外侧;所述的冷却管(94)镶嵌在壳体(93)的内侧。
9.如权利要求5所述的一种基于远程控制的节能环保除尘装置,其特征在于,所述的滤尘袋(91)具体采用PTFE材料制成,所述的滤尘袋(91)具体采用螺旋结构安装在支柱(92)的上部。
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CN106000666A (zh) * | 2016-07-23 | 2016-10-12 | 肇东市西八里康盛米业有限公司 | 一种旋风分离盒子 |
CN108744828A (zh) * | 2018-07-13 | 2018-11-06 | 芜湖若科自动化科技有限公司 | 一种高效旋风除尘设备 |
CN109673148A (zh) * | 2016-08-19 | 2019-04-23 | 三星电子株式会社 | 空气净化器 |
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CN106000666A (zh) * | 2016-07-23 | 2016-10-12 | 肇东市西八里康盛米业有限公司 | 一种旋风分离盒子 |
CN109673148A (zh) * | 2016-08-19 | 2019-04-23 | 三星电子株式会社 | 空气净化器 |
CN109673148B (zh) * | 2016-08-19 | 2022-02-18 | 三星电子株式会社 | 空气净化器 |
CN109900032A (zh) * | 2017-12-08 | 2019-06-18 | 重庆市永川区晓春铝制品有限公司 | 一种铝制品生产用冷却装置 |
CN109900032B (zh) * | 2017-12-08 | 2020-11-27 | 淮北知创风信息科技有限公司 | 一种铝制品生产用冷却装置 |
CN108744828A (zh) * | 2018-07-13 | 2018-11-06 | 芜湖若科自动化科技有限公司 | 一种高效旋风除尘设备 |
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