CN118416562A - A water plant flushing wastewater recycling and treatment equipment - Google Patents

A water plant flushing wastewater recycling and treatment equipment Download PDF

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Publication number
CN118416562A
CN118416562A CN202410881475.XA CN202410881475A CN118416562A CN 118416562 A CN118416562 A CN 118416562A CN 202410881475 A CN202410881475 A CN 202410881475A CN 118416562 A CN118416562 A CN 118416562A
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sliding
frame
square tube
lifting
plate
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CN118416562B (en
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张朗
赵世全
左利然
张�林
孟浩
李强
程鹏
刘强
鲁雷
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Linhuan Water Affairs Co ltd
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Linhuan Water Affairs Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D29/00Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor
    • B01D29/50Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor with multiple filtering elements, characterised by their mutual disposition
    • B01D29/56Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor with multiple filtering elements, characterised by their mutual disposition in series connection
    • B01D29/58Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor with multiple filtering elements, characterised by their mutual disposition in series connection arranged concentrically or coaxially
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D29/00Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor
    • B01D29/62Regenerating the filter material in the filter
    • B01D29/66Regenerating the filter material in the filter by flushing, e.g. counter-current air-bumps
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D35/00Filtering devices having features not specifically covered by groups B01D24/00 - B01D33/00, or for applications not specifically covered by groups B01D24/00 - B01D33/00; Auxiliary devices for filtration; Filter housing constructions
    • B01D35/12Devices for taking out of action one or more units of multi- unit filters, e.g. for regeneration

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Filtration Of Liquid (AREA)

Abstract

本发明涉及废水处理技术领域,特别涉及一种水厂冲洗废水回收处理设备,包括方形管收集装置、升降装置与清洗装置,所述方形管顶壁开设有多个从左至右均匀分布的矩形通孔,所述方形管前后两侧壁内端面均开设有导向槽,收集装置设置有多个且位于方形管内,升降装置设置在所述方形管外侧,清洗装置设置在所述升降装置外侧。本发明中采用的收集装置在固体物质进行过滤收集后取出的过程中,可以对收集的固体过滤物进行隔挡,有效地防止过滤后的过滤物重新掉落至废水内,避免了过滤后的废水需要再次过滤的问题,提高了废水过滤的效率。

The present invention relates to the field of wastewater treatment technology, and in particular to a water plant flushing wastewater recovery and treatment equipment, including a square tube collection device, a lifting device and a cleaning device, the top wall of the square tube is provided with a plurality of rectangular through holes evenly distributed from left to right, the inner end faces of the front and rear side walls of the square tube are provided with guide grooves, a plurality of collection devices are provided and located inside the square tube, a lifting device is provided outside the square tube, and a cleaning device is provided outside the lifting device. The collection device used in the present invention can block the collected solid filtrate during the process of filtering and collecting solid matter and taking it out, effectively preventing the filtered filtrate from falling back into the wastewater, avoiding the problem that the filtered wastewater needs to be filtered again, and improving the efficiency of wastewater filtration.

Description

一种水厂冲洗废水回收处理设备A water plant flushing wastewater recycling and treatment equipment

技术领域Technical Field

本发明涉及废水处理技术领域,特别涉及一种水厂冲洗废水回收处理设备。The invention relates to the technical field of wastewater treatment, and in particular to a water plant flushing wastewater recovery and treatment device.

背景技术Background technique

水资源紧缺问题日益严重,水厂每年产生大量的工业废水,这些工业污水经过处理之后通常是直接排放,造成了水资源浪费;目前由于水厂工业废水中富集了大量悬浮杂质、有机物以及金属元素,水厂工业废水一般是在经过化学沉淀处理、固液过滤分离处理、生物分解处理、活性炭吸附以及消毒处理等废水处理步骤之后将水资源进行再利用,化学沉淀处理容器、固液分离过滤容器、生物分解处理容器以及消毒处理容器等废水处理容器都需要定期冲洗,这个阶段的定期冲洗目前一般是直接用可使用的清水进行清洗,造成了水资源的浪费,基于此种情况,目前提出了冲洗废水回用技术概念,将水厂工业污水经过化学沉淀处理和固液过滤分离的水资源直接对废水处理容器进行冲洗,同时将冲洗产生的废水经过废水处理步骤之后还可继续进行冲洗回收利用。The shortage of water resources is becoming increasingly serious. Water plants generate a large amount of industrial wastewater every year. These industrial wastewaters are usually discharged directly after treatment, resulting in a waste of water resources. At present, due to the enrichment of a large amount of suspended impurities, organic matter and metal elements in the industrial wastewater of water plants, the industrial wastewater of water plants is generally reused after undergoing wastewater treatment steps such as chemical precipitation treatment, solid-liquid filtration separation treatment, biological decomposition treatment, activated carbon adsorption and disinfection treatment. Wastewater treatment containers such as chemical precipitation treatment containers, solid-liquid separation filtration containers, biological decomposition treatment containers and disinfection treatment containers need to be rinsed regularly. The regular flushing at this stage is currently generally directly washed with usable clean water, resulting in a waste of water resources. Based on this situation, a concept of flushing wastewater reuse technology is currently proposed. The water resources of the water plant industrial wastewater that has been chemically precipitated and solid-liquid filtration separated are directly used to flush the wastewater treatment containers. At the same time, the wastewater generated by the flushing can continue to be flushed and recycled after the wastewater treatment steps.

固液分离处理是水厂工业废水处理过程中的重要步骤,现有水厂工业废水进行固液分离处理时,通常先将废水中体积较大的固体物质通过格栅进行筛除,随后将处理后的废水注入过滤器内,再通过过滤器排出,过滤器对废水内的固体物质进行固液分离过滤处理,然而过滤器对大量的废水进行固液分离时,过滤一段时间后便需要停止对废水的排放,然后将过滤器内的过滤桶取出并进行清理,再将清理后的过滤桶复位,或者直接更换新的过滤桶,随后再次开始废水的排放,无法连续进行过滤处理,从而影响了废水处理的效率。Solid-liquid separation treatment is an important step in the treatment of industrial wastewater in water plants. When the existing industrial wastewater in water plants is subjected to solid-liquid separation treatment, the larger solid substances in the wastewater are usually screened out through a grid, and then the treated wastewater is injected into a filter and then discharged through the filter. The filter performs solid-liquid separation and filtration treatment on the solid substances in the wastewater. However, when the filter performs solid-liquid separation on a large amount of wastewater, it is necessary to stop discharging the wastewater after filtering for a period of time, and then take out the filter barrel in the filter and clean it, and then reset the cleaned filter barrel, or directly replace it with a new filter barrel, and then start discharging the wastewater again. It is impossible to perform continuous filtration treatment, which affects the efficiency of wastewater treatment.

发明内容Summary of the invention

基于此,有必要提供一种水厂冲洗废水回收处理设备,旨在解决现有技术对水厂工业废水进行固液分离过滤时产生的问题。Based on this, it is necessary to provide a water plant flushing wastewater recovery and treatment equipment, which aims to solve the problems caused by the existing technology when performing solid-liquid separation and filtration on water plant industrial wastewater.

为了实现上述目的,本发明采用以下技术方案来实现:一种水厂冲洗废水回收处理设备,包括:方形管,所述方形管顶壁开设有多个从左至右均匀分布的矩形通孔,所述方形管前后两侧壁内端面均开设有导向槽。In order to achieve the above-mentioned purpose, the present invention adopts the following technical scheme to achieve: a water plant flushing wastewater recovery and treatment equipment, including: a square tube, the top wall of the square tube is provided with a plurality of rectangular through holes evenly distributed from left to right, and the inner end surfaces of the front and rear side walls of the square tube are provided with guide grooves.

还包括收集装置,所述收集装置设置有多个且位于方形管内,所述收集装置包括设置在所述矩形通孔内的两个过滤框,所述过滤框开口朝向左侧,所述过滤框底壁上滑动连接有隔挡机构,所述过滤框顶壁连接有卡接机构,过滤框前后两端均安装有位于导向槽内的滑动块,位于右侧的所述过滤框右方设置有推挤机构。It also includes a collecting device, which is provided with multiple collecting devices and is located in the square tube. The collecting device includes two filter frames arranged in the rectangular through hole, the filter frame openings face the left side, a blocking mechanism is slidably connected to the bottom wall of the filter frame, a clamping mechanism is connected to the top wall of the filter frame, sliding blocks located in the guide groove are installed at the front and rear ends of the filter frame, and a pushing mechanism is provided on the right side of the filter frame located on the right side.

还包括升降装置,所述升降装置设置在所述方形管外侧,所述升降装置包括对称设置在所述方形框前后两侧的两个第一液压推杆,第一液压推杆上端安装有升降板,升降板的相对端安装有呈U型结构的滑动架,两个所述滑动架之间共同连接有滑动机构,滑动机构上连接有多个从左至右均匀分布的提拉机构。It also includes a lifting device, which is arranged on the outside of the square tube. The lifting device includes two first hydraulic push rods symmetrically arranged on the front and rear sides of the square frame. A lifting plate is installed on the upper end of the first hydraulic push rod, and a sliding frame with a U-shaped structure is installed on the opposite end of the lifting plate. A sliding mechanism is commonly connected between the two sliding frames, and a plurality of lifting mechanisms evenly distributed from left to right are connected to the sliding mechanism.

还包括清洗装置,所述清洗装置设置在所述升降装置外侧,所述清洗装置包括对称设置在所述方形管前后两侧的两个第二液压推杆,所述第二液压推杆上端安装有条形板,两个所述条形板之间共同安装有引导框,引导框内滑动连接有清洗机构。It also includes a cleaning device, which is arranged on the outside of the lifting device. The cleaning device includes two second hydraulic push rods symmetrically arranged on the front and rear sides of the square tube. A strip plate is installed on the upper end of the second hydraulic push rod. A guide frame is installed between the two strip plates. A cleaning mechanism is slidably connected in the guide frame.

所述推挤机构包括安装在所述方形管顶壁下端的定位板,定位板上滑动穿设有弧形杆,弧形杆左端安装有旋转推板,旋转推板与定位板之间安装有连接弹簧,所述旋转推板上端铰接有铰接架,铰接架与所述方形管顶壁下端固定连接。The pushing mechanism includes a positioning plate installed at the lower end of the top wall of the square tube, an arc rod is slidably inserted into the positioning plate, a rotating push plate is installed at the left end of the arc rod, a connecting spring is installed between the rotating push plate and the positioning plate, an articulated frame is hinged at the upper end of the rotating push plate, and the articulated frame is fixedly connected to the lower end of the top wall of the square tube.

根据本发明的实施例,所述收集装置还包括开设在所述方形管内壁且与多个所述滑动块一一对应的滑动槽,所述过滤框下端右侧处转动连接有转动辊。According to an embodiment of the present invention, the collecting device further comprises a sliding groove which is opened on the inner wall of the square tube and corresponds one-to-one with the plurality of sliding blocks, and a rotating roller is rotatably connected to the right side of the lower end of the filter frame.

根据本发明的实施例,所述滑动机构包括前后对称且分别滑动连接在两个所述滑动架内的两个滑动条,滑动条的相背端安装有连接块,连接块与对应的所述升降板之间安装有第三液压推杆,两个所述滑动条之间共同安装有多个从左至右均匀分布的矩形板。According to an embodiment of the present invention, the sliding mechanism includes two sliding bars that are symmetrical front and back and are respectively slidably connected in the two sliding frames, connecting blocks are installed at the opposite ends of the sliding bars, a third hydraulic push rod is installed between the connecting block and the corresponding lifting plate, and a plurality of rectangular plates evenly distributed from left to right are installed between the two sliding bars.

根据本发明的实施例,所述提拉机构包括安装在所述矩形板下端的卡位柱,卡位柱外环面左右对称开设有两个限位沉孔,限位沉孔内滑动连接有限位块,限位块与所述限位沉孔竖直段之间安装有复位弹簧,所述限位块位于限位沉孔内部的一端固定连接有提拉绳,提拉绳远离限位块的一端依次滑动贯穿所述卡位柱和所述矩形板。According to an embodiment of the present invention, the lifting mechanism includes a positioning column installed at the lower end of the rectangular plate, and two limiting countersunk holes are symmetrically opened on the outer ring surface of the positioning column. A limiting block is slidably connected in the limiting countersunk hole, and a reset spring is installed between the limiting block and the vertical section of the limiting countersunk hole. One end of the limiting block located inside the limiting countersunk hole is fixedly connected to a lifting rope, and the end of the lifting rope away from the limiting block slides through the positioning column and the rectangular plate in turn.

根据本发明的实施例,所述清洗机构包括滑动连接在所述引导框内部的集液框,集液框左端安装有进水管,集液框下端安装有多个从左至右均匀分布的出液管,出液管外表面滑动套设有固定板,固定板的前后两端分别与对应的两个滑动条固定连接,出液管下端安装有喷水箱,喷水箱左端安装有多个均匀分布的喷水管,集液框下端与所述提拉绳端部固定连接。According to an embodiment of the present invention, the cleaning mechanism includes a liquid collecting frame slidably connected to the inside of the guide frame, a water inlet pipe is installed at the left end of the liquid collecting frame, a plurality of liquid outlet pipes evenly distributed from left to right are installed at the lower end of the liquid collecting frame, a fixed plate is provided on the sliding sleeve of the outer surface of the liquid outlet pipe, the front and rear ends of the fixed plate are respectively fixedly connected to the corresponding two sliding bars, a water spray box is installed at the lower end of the liquid outlet pipe, a plurality of evenly distributed water spray pipes are installed at the left end of the water spray box, and the lower end of the liquid collecting frame is fixedly connected to the end of the pulling rope.

根据本发明的实施例,所述卡接机构包括安装在所述过滤框上端的卡接块,所述卡接块上端开设有圆柱孔,圆柱孔的环形侧壁上开设有环形槽,过滤框顶壁上设置有吸附支链。According to an embodiment of the present invention, the clamping mechanism comprises a clamping block installed on the upper end of the filter frame, a cylindrical hole is provided on the upper end of the clamping block, an annular groove is provided on the annular side wall of the cylindrical hole, and an adsorption branch chain is provided on the top wall of the filter frame.

根据本发明的实施例,所述吸附支链包括开设在所述过滤框顶壁下端面的滑动沉孔,滑动沉孔内滑动连接有滑动磁块,滑动磁块左端与所述滑动沉孔左侧竖直孔壁之间安装有第二弹簧,所述滑动磁块右端与所述滑动沉孔右侧竖直孔壁之间安装有连接绳,连接绳上端连接有T型圆柱杆,T型圆柱杆竖直段滑动贯穿过滤框顶壁并位于圆柱孔内,T型圆柱杆上端与过滤框顶壁之间安装有第一弹簧。According to an embodiment of the present invention, the adsorption branch chain includes a sliding countersunk hole opened on the lower end surface of the top wall of the filter frame, a sliding magnetic block is slidably connected in the sliding countersunk hole, a second spring is installed between the left end of the sliding magnetic block and the left vertical hole wall of the sliding countersunk hole, a connecting rope is installed between the right end of the sliding magnetic block and the right vertical hole wall of the sliding countersunk hole, the upper end of the connecting rope is connected to a T-shaped cylindrical rod, the vertical section of the T-shaped cylindrical rod slides through the top wall of the filter frame and is located in the cylindrical hole, and a first spring is installed between the upper end of the T-shaped cylindrical rod and the top wall of the filter frame.

根据本发明的实施例,所述隔挡机构包括滑动连接在所述过滤框底壁上的过滤板,过滤板上端左侧处前后对称安装有两个支撑柱,两个所述支撑柱之间共同滑动连接有的挡板。According to an embodiment of the present invention, the baffle mechanism comprises a filter plate slidably connected to the bottom wall of the filter frame, two support columns are symmetrically installed on the left side of the upper end of the filter plate, and a baffle is slidably connected between the two support columns.

根据本发明的实施例,所述过滤框竖直框壁上开设有多个从上至下均匀分布的条形通孔,所述过滤框竖直框壁上端处安装有磁铁。According to an embodiment of the present invention, a plurality of strip-shaped through holes evenly distributed from top to bottom are formed on the vertical frame wall of the filter frame, and a magnet is installed at the upper end of the vertical frame wall of the filter frame.

综上所述,本发明包括以下有益技术效果:1.采用的多个收集装置与方形管配合,多个收集装置可以同时对废水进行过滤,有效地将水厂工业废水内的固体物质进行过滤收集,提高了废水固液过滤分离的效果。In summary, the present invention includes the following beneficial technical effects: 1. The multiple collection devices used are coordinated with the square tubes, and the multiple collection devices can filter the wastewater at the same time, effectively filtering and collecting the solid matter in the industrial wastewater of the water plant, thereby improving the effect of solid-liquid filtration and separation of the wastewater.

2.采用的收集装置在固体物质进行过滤收集后取出的过程中,可以对收集的固体过滤物进行隔挡,有效地防止过滤后的过滤物重新掉落至废水内,保证了过滤的效果,提高了废水过滤的效率。2. The collection device used can block the collected solid filtrate during the process of filtering and collecting the solid matter, effectively preventing the filtered filtrate from falling back into the wastewater, thereby ensuring the filtration effect and improving the efficiency of wastewater filtration.

3.采用的收集装置在对过滤物进行取出时无需停止废水的排放,并且不影响对废水的过滤,确保了废水过滤的连续性,减少了废水过滤所需的整体时间。3. The collection device used does not need to stop the discharge of wastewater when taking out the filtered material, and does not affect the filtration of wastewater, thereby ensuring the continuity of wastewater filtration and reducing the overall time required for wastewater filtration.

4.采用的收集装置对过滤物进行提取和对过滤框进行清理时,只需进行一次清理,并且清理后的过滤框放置在废水流动方向的后方,使得未清理的过滤框先与废水接触并对其进行过滤,有效地减少了过滤框清理的次数,降低了废水处理的成本。4. When the collection device is used to extract the filtrate and clean the filter frame, only one cleaning is required, and the cleaned filter frame is placed behind the wastewater flow direction, so that the uncleaned filter frame first contacts and filters the wastewater, effectively reducing the number of times the filter frame is cleaned and reducing the cost of wastewater treatment.

附图说明BRIEF DESCRIPTION OF THE DRAWINGS

为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据提供的附图获得其他的附图。In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without paying creative work.

图1示出了本发明的第一视角立体结构示意图。FIG. 1 shows a schematic diagram of a three-dimensional structure of the present invention from a first viewing angle.

图2示出了本发明的第二视角立体结构示意图。FIG. 2 shows a schematic diagram of a second viewing angle stereoscopic structure of the present invention.

图3示出了本发明的主视图。FIG. 3 shows a front view of the present invention.

图4示出了本发明的左视图。FIG. 4 shows a left side view of the present invention.

图5示出了图4中A-A的部分剖视图。FIG. 5 is a partial cross-sectional view taken along line A-A in FIG. 4 .

图6示出了图5中N区域的放大图。FIG. 6 shows an enlarged view of the N region in FIG. 5 .

图7示出了本发明方形管和收集装置的部分结构示意图。FIG. 7 is a schematic diagram showing a partial structure of the square tube and the collecting device of the present invention.

图8示出了本发明升降装置和清洗装置的结构示意图。FIG. 8 shows a schematic structural diagram of the lifting device and the cleaning device of the present invention.

其中,上述附图包括以下附图标记:1、方形管;11、矩形通孔;12、导向槽;2、收集装置;21、过滤框;211、条形通孔;212、磁铁;22、隔挡机构;221、过滤板;222、支撑柱;223、挡板;23、卡接机构;231、卡接块;232、圆柱孔;233、环形槽;234、吸附支链;2341、T型圆柱杆;2342、第一弹簧;2343、连接绳;2344、滑动磁块;2345、第二弹簧;2346、滑动沉孔;24、滑动块;25、推挤机构;251、定位板;252、弧形杆;253、旋转推板;254、连接弹簧;255、铰接架;26、滑动槽;27、转动辊;3、升降装置;31、第一液压推杆;32、升降板;33、滑动架;34、滑动机构;341、滑动条;342、连接块;343、第三液压推杆;344、矩形板;35、提拉机构;351、卡位柱;352、限位沉孔;353、限位块;354、复位弹簧;355、提拉绳;4、清洗装置;41、第二液压推杆;42、条形板;43、引导框;44、清洗机构;441、集液框;442、进水管;443、出液管;444、固定板;445、喷水箱;446、喷水管。The above drawings include the following reference numerals: 1, square tube; 11, rectangular through hole; 12, guide groove; 2, collecting device; 21, filter frame; 211, strip through hole; 212, magnet; 22, barrier mechanism; 221, filter plate; 222, support column; 223, baffle; 23, clamping mechanism; 231, clamping block; 232, cylindrical hole; 233, annular groove; 234, adsorption branch chain; 2341, T-shaped cylindrical rod; 2342, first spring; 2343, connecting rope; 2344, sliding magnetic block; 2345, second spring; 2346, sliding countersunk hole; 24, sliding block; 25, pushing mechanism; 251, positioning plate; 252, arc rod; 253, rotating push plate; 2 54. Connecting spring; 255. Articulated frame; 26. Sliding groove; 27. Rotating roller; 3. Lifting device; 31. First hydraulic push rod; 32. Lifting plate; 33. Sliding frame; 34. Sliding mechanism; 341. Sliding bar; 342. Connecting block; 343. Third hydraulic push rod; 344. Rectangular plate; 35. Lifting mechanism; 351. Positioning column; 352. Positioning countersunk hole; 353. Positioning block; 354. Reset spring; 355. Lifting rope; 4. Cleaning device; 41. Second hydraulic push rod; 42. Strip plate; 43. Guide frame; 44. Cleaning mechanism; 441. Liquid collecting frame; 442. Water inlet pipe; 443. Liquid outlet pipe; 444. Fixed plate; 445. Water spray box; 446. Water spray pipe.

具体实施方式Detailed ways

为使本发明的上述目的、特征和优点能够更加明显易懂,下面结合附图对本发明的具体实施方式做详细的说明。在下面的描述中阐述了很多具体细节以便于充分理解本发明。但是本发明能够以很多不同于在此描述的其它方式来实施,本领域技术人员可以在不违背本发明内涵的情况下做类似改进,因此本发明不受下面公开的具体实施例的限制。In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific embodiments of the present invention are described in detail below in conjunction with the accompanying drawings. In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without violating the connotation of the present invention, so the present invention is not limited by the specific embodiments disclosed below.

参阅图1-图5,一种水厂冲洗废水回收处理设备,包括方形管1,所述方形管1顶壁开设有多个从左至右均匀分布的矩形通孔11,所述方形管1前后两侧壁内端面均开设有导向槽12。1-5 , a water plant flushing wastewater recovery and treatment device includes a square tube 1, the top wall of the square tube 1 is provided with a plurality of rectangular through holes 11 evenly distributed from left to right, and the inner end surfaces of the front and rear side walls of the square tube 1 are provided with guide grooves 12.

具体工作时,将方形管1水平安装在回收系统的非压力管道上,并对连接处进行防水密封。During the specific operation, the square tube 1 is horizontally installed on the non-pressure pipeline of the recovery system, and the connection is waterproof and sealed.

参阅图1、图4、图5和图7,该水厂冲洗废水回收处理设备还包括收集装置2,所述收集装置2设置有多个且位于方形管1内,所述收集装置2包括设置在所述矩形通孔11内的两个过滤框21,所述过滤框21开口朝向左侧,所述过滤框21底壁上滑动连接有隔挡机构22,所述过滤框21顶壁连接有卡接机构23,过滤框21前后两端均安装有位于导向槽12内的滑动块24,位于右侧的所述过滤框21右方设置有推挤机构25。Referring to Figures 1, 4, 5 and 7, the water plant flushing wastewater recycling and treatment equipment also includes a collecting device 2, which is provided with multiple collecting devices 2 and is located in the square tube 1. The collecting device 2 includes two filter frames 21 arranged in the rectangular through hole 11, and the filter frame 21 opens to the left. A blocking mechanism 22 is slidably connected to the bottom wall of the filter frame 21, and a clamping mechanism 23 is connected to the top wall of the filter frame 21. Sliding blocks 24 located in the guide groove 12 are installed at both ends of the filter frame 21, and a pushing mechanism 25 is provided on the right side of the filter frame 21 located on the right.

参阅图1、图5和图7,所述收集装置2还包括开设在所述方形管1内壁且与多个所述滑动块24一一对应的滑动槽26,所述过滤框21下端右侧处转动连接有转动辊27。1 , 5 and 7 , the collecting device 2 further comprises a sliding groove 26 which is provided on the inner wall of the square tube 1 and corresponds one by one to the plurality of sliding blocks 24 , and a rotating roller 27 is rotatably connected to the right side of the lower end of the filter frame 21 .

具体工作时,在方形管1安装固定后,依次在多个矩形通孔11内插接两个过滤框21,过滤框21通过两个滑动块24在对应的两个滑动槽26内向下滑动并带动隔挡机构22进入方形管1内,直至过滤框21下端与矩形通孔11底壁接触,插入矩形通孔11内的两个过滤框21紧贴并将矩形通孔11填满,多个过滤框21对废水进行过滤,有效地对水厂工业废水的固体物质进行过滤收集。During specific operation, after the square tube 1 is installed and fixed, two filter frames 21 are inserted into the multiple rectangular through holes 11 in turn, and the filter frames 21 slide downward in the corresponding two sliding grooves 26 through two sliding blocks 24 and drive the blocking mechanism 22 to enter the square tube 1 until the lower end of the filter frame 21 contacts the bottom wall of the rectangular through hole 11, and the two filter frames 21 inserted into the rectangular through hole 11 are tightly attached to fill the rectangular through hole 11, and multiple filter frames 21 filter the wastewater, effectively filtering and collecting the solid matter in the industrial wastewater of the water plant.

参阅图2和图5,所述推挤机构25包括安装在所述方形管1顶壁下端的定位板251,定位板251上滑动穿设有弧形杆252,弧形杆252左端安装有旋转推板253,旋转推板253与定位板251之间安装有连接弹簧254,所述旋转推板253上端铰接有铰接架255,铰接架255与所述方形管1顶壁下端固定连接。Referring to Figures 2 and 5, the pushing mechanism 25 includes a positioning plate 251 installed at the lower end of the top wall of the square tube 1, an arc rod 252 is slidably penetrated on the positioning plate 251, a rotating push plate 253 is installed on the left end of the arc rod 252, a connecting spring 254 is installed between the rotating push plate 253 and the positioning plate 251, and an articulated frame 255 is hinged at the upper end of the rotating push plate 253, and the articulated frame 255 is fixedly connected to the lower end of the top wall of the square tube 1.

具体工作时,初始时旋转推板253处于倾斜状态,在矩形通孔11内右侧的过滤框21放置时,过滤框21带动转动辊27对旋转推板253进行推挤,旋转推板253受力带动弧形杆252移动并对连接弹簧254进行挤压,直至旋转推板253旋转至竖直状态,从而解除旋转推板253对过滤框21放置时的阻挡。During specific operation, the rotating push plate 253 is initially in a tilted state. When the filter frame 21 is placed on the right side of the rectangular through hole 11, the filter frame 21 drives the rotating roller 27 to push the rotating push plate 253. The rotating push plate 253 is driven by the force to move the arc rod 252 and squeeze the connecting spring 254 until the rotating push plate 253 rotates to a vertical state, thereby releasing the obstruction of the rotating push plate 253 to the filter frame 21 when it is placed.

参阅图5,所述过滤框21竖直框壁上开设有多个从上至下均匀分布的条形通孔211,所述过滤框21竖直框壁上端处安装有磁铁212。Referring to FIG. 5 , a plurality of strip-shaped through holes 211 evenly distributed from top to bottom are formed on the vertical frame wall of the filter frame 21 , and a magnet 212 is installed at the upper end of the vertical frame wall of the filter frame 21 .

参阅图4和图5,所述隔挡机构22包括滑动连接在所述过滤框21底壁上的过滤板221,过滤板221上端左侧处前后对称安装有两个支撑柱222,两个所述支撑柱222之间共同滑动连接有的挡板223。4 and 5 , the baffle mechanism 22 includes a filter plate 221 slidably connected to the bottom wall of the filter frame 21 , two support columns 222 are symmetrically installed at the left side of the upper end of the filter plate 221 , and a baffle 223 is slidably connected between the two support columns 222 .

参阅图5和图6,所述卡接机构23包括安装在所述过滤框21上端的卡接块231,所述卡接块231上端开设有圆柱孔232,圆柱孔232的环形侧壁上开设有环形槽233,过滤框21顶壁上设置有吸附支链234。5 and 6 , the snap-fit mechanism 23 includes a snap-fit block 231 mounted on the upper end of the filter frame 21 , a cylindrical hole 232 is formed on the upper end of the snap-fit block 231 , an annular groove 233 is formed on the annular side wall of the cylindrical hole 232 , and an adsorption branch chain 234 is provided on the top wall of the filter frame 21 .

参阅图5和图6,所述吸附支链234包括开设在所述过滤框21顶壁下端面的滑动沉孔2346,滑动沉孔2346内滑动连接有滑动磁块2344。5 and 6 , the adsorption branch chain 234 includes a sliding countersunk hole 2346 provided on the lower end surface of the top wall of the filter frame 21 , and a sliding magnetic block 2344 is slidably connected in the sliding countersunk hole 2346 .

具体工作时,初始时挡板223位于过滤框21的顶壁下端并通过滑动磁块2344对其进行磁吸限位,同时左侧过滤框21上的磁铁212对右侧的挡板223进行磁吸,从而避免挡板223对方形管1内的废水流动造成影响。During specific operation, the baffle 223 is initially located at the lower end of the top wall of the filter frame 21 and is magnetically limited by the sliding magnetic block 2344. At the same time, the magnet 212 on the left filter frame 21 magnetically attracts the baffle 223 on the right, thereby preventing the baffle 223 from affecting the flow of wastewater in the square tube 1.

参阅图1和图8,该水厂冲洗废水回收处理设备还包括升降装置3,所述升降装置3设置在所述方形管1外侧,所述升降装置3包括对称设置在所述方形框前后两侧的两个第一液压推杆31,第一液压推杆31上端安装有升降板32,升降板32的相对端安装有呈U型结构的滑动架33,两个所述滑动架33之间共同连接有滑动机构34,滑动机构34上连接有多个从左至右均匀分布的提拉机构35。Referring to Figures 1 and 8, the water plant flushing wastewater recovery and treatment equipment also includes a lifting device 3, which is arranged on the outside of the square tube 1. The lifting device 3 includes two first hydraulic push rods 31 symmetrically arranged on the front and rear sides of the square frame. A lifting plate 32 is installed on the upper end of the first hydraulic push rod 31, and a sliding frame 33 with a U-shaped structure is installed on the opposite end of the lifting plate 32. A sliding mechanism 34 is commonly connected between the two sliding frames 33, and a plurality of lifting mechanisms 35 evenly distributed from left to right are connected to the sliding mechanism 34.

参阅图1和图8,所述滑动机构34包括前后对称且分别滑动连接在两个所述滑动架33内的两个滑动条341,两个所述滑动条341之间共同安装有多个从左至右均匀分布的矩形板344。1 and 8 , the sliding mechanism 34 includes two sliding bars 341 which are symmetrical in front and back and are respectively slidably connected to the two sliding frames 33 , and a plurality of rectangular plates 344 evenly distributed from left to right are installed between the two sliding bars 341 .

参阅图5、图6和图8,所述提拉机构35包括安装在所述矩形板344下端的卡位柱351,卡位柱351外环面左右对称开设有两个限位沉孔352,限位沉孔352内滑动连接有限位块353,限位块353与所述限位沉孔352竖直段之间安装有复位弹簧354,所述限位块353位于限位沉孔352内部的一端固定连接有提拉绳355,提拉绳355远离限位块353的一端依次滑动贯穿所述卡位柱351和所述矩形板344。Referring to Figures 5, 6 and 8, the lifting mechanism 35 includes a positioning column 351 installed at the lower end of the rectangular plate 344, and the outer ring surface of the positioning column 351 is symmetrically provided with two limiting countersunk holes 352, and a limiting block 353 is slidably connected in the limiting countersunk hole 352. A return spring 354 is installed between the limiting block 353 and the vertical section of the limiting countersunk hole 352, and one end of the limiting block 353 located inside the limiting countersunk hole 352 is fixedly connected to a lifting rope 355, and the end of the lifting rope 355 away from the limiting block 353 slides through the positioning column 351 and the rectangular plate 344 in turn.

具体工作时,过滤一段时间后,将升降装置3移动至方形管1外侧并进行固定,再将两个第一液压推杆31与现有的液压泵连接,升降装置3放置时确保多个提拉机构35位于多个对应的左侧卡接机构23的正上方,随后启动两个第一液压推杆31,两个第一液压推杆31带动两个升降板32下降,两个升降板32通过两个滑动架33带动两个滑动条341向下移动,两个滑动条341通过多个矩形板344带动多个卡位柱351向下移动并进入多个矩形通孔11左侧卡接块231上的圆柱孔232内,进入圆柱孔232内的卡位柱351带动两个限位块353移动,限位块353呈直角梯形结构且斜面朝下,限位块353的斜面先与圆柱孔232的上端接触并受力,受力的限位块353向限位沉孔352内移动并对复位弹簧354进行挤压,从而解除对卡位柱351下降的阻挡,卡位柱351继续下降并带动两个限位块353移动至环形槽233处,受挤压的复位弹簧354复位并带动限位块353复位,限位块353移动至环形槽233内,从而实现卡位柱351与卡接块231连接的功能。During specific operation, after filtering for a period of time, the lifting device 3 is moved to the outside of the square tube 1 and fixed, and then the two first hydraulic push rods 31 are connected to the existing hydraulic pump. When the lifting device 3 is placed, ensure that the multiple lifting mechanisms 35 are located directly above the multiple corresponding left-side clamping mechanisms 23, and then start the two first hydraulic push rods 31. The two first hydraulic push rods 31 drive the two lifting plates 32 to descend, and the two lifting plates 32 drive the two sliding bars 341 to move downward through the two sliding frames 33. The two sliding bars 341 drive the multiple clamping columns 351 to move downward through the multiple rectangular plates 344 and enter the cylindrical holes 232 on the left-side clamping blocks 231 of the multiple rectangular through holes 11. The locking column 351 entering the cylindrical hole 232 drives the two limit blocks 353 to move. The limit block 353 is a right-angled trapezoidal structure with an inclined surface facing downward. The inclined surface of the limit block 353 first contacts the upper end of the cylindrical hole 232 and is subjected to force. The limited block 353 subjected to force moves into the limiting counterbore 352 and squeezes the return spring 354, thereby releasing the obstruction to the descent of the locking column 351. The locking column 351 continues to descend and drives the two limit blocks 353 to move to the annular groove 233. The squeezed return spring 354 resets and drives the limit block 353 to reset. The limit block 353 moves into the annular groove 233, thereby realizing the function of connecting the locking column 351 with the clamping block 231.

参阅图6,所述滑动磁块2344左端与所述滑动沉孔2346左侧竖直孔壁之间安装有第二弹簧2345,所述滑动磁块2344右端与所述滑动沉孔2346右侧竖直孔壁之间安装有连接绳2343,连接绳2343上端连接有T型圆柱杆2341,T型圆柱杆2341竖直段滑动贯穿过滤框21顶壁并位于圆柱孔232内,T型圆柱杆2341上端与过滤框21顶壁之间安装有第一弹簧2342。Referring to Figure 6, a second spring 2345 is installed between the left end of the sliding magnet 2344 and the left vertical hole wall of the sliding countersunk hole 2346, and a connecting rope 2343 is installed between the right end of the sliding magnet 2344 and the right vertical hole wall of the sliding countersunk hole 2346. The upper end of the connecting rope 2343 is connected to a T-shaped cylindrical rod 2341. The vertical section of the T-shaped cylindrical rod 2341 slides through the top wall of the filter frame 21 and is located in the cylindrical hole 232. A first spring 2342 is installed between the upper end of the T-shaped cylindrical rod 2341 and the top wall of the filter frame 21.

具体工作时,卡位柱351进入圆柱孔232内时对T型圆柱杆2341进行下压,T型圆柱杆2341向下移动并对第一弹簧2342进行挤压,同时T型圆柱杆2341下端对连接绳2343进行推挤,连接绳2343带动滑动磁块2344滑动并从挡板223的上端移开,同时滑动磁块2344对第二弹簧2345进行拉伸,从而解除对挡板223的磁吸,挡板223通过自身的重力沿着两个支撑柱222向下移动,直至挡板223的下端与过滤板221接触,从而对过滤板221上的过滤物进行阻挡,避免在过滤框21上升的过程中,过滤板221上的过滤物掉落,随后启动两个第一液压推杆31,两个第一液压推杆31带动两个升降板32上升,两个升降板32通过两个滑动架33带动两个滑动条341上升,两个滑动条341通过多个矩形板344带动多个卡位柱351上升,多个卡位柱351通过多个卡接块231带动多个矩形通孔11左侧的过滤框21上升并移出方形管1,矩形通孔11右侧的过滤框21继续对废水进行固液分离过滤处理,无需停止废水排放,确保了废水固液分离的连续性。During specific operation, when the positioning column 351 enters the cylindrical hole 232, it presses down the T-shaped cylindrical rod 2341, and the T-shaped cylindrical rod 2341 moves downward and squeezes the first spring 2342. At the same time, the lower end of the T-shaped cylindrical rod 2341 pushes the connecting rope 2343, and the connecting rope 2343 drives the sliding magnetic block 2344 to slide and move away from the upper end of the baffle 223. At the same time, the sliding magnetic block 2344 stretches the second spring 2345, thereby releasing the magnetic attraction of the baffle 223. The baffle 223 moves downward along the two support columns 222 by its own gravity until the lower end of the baffle 223 contacts the filter plate 221, thereby blocking the filtered matter on the filter plate 221. , to prevent the filtered material on the filter plate 221 from falling off during the rising process of the filter frame 21, and then start the two first hydraulic push rods 31, the two first hydraulic push rods 31 drive the two lifting plates 32 to rise, the two lifting plates 32 drive the two sliding bars 341 to rise through the two sliding frames 33, the two sliding bars 341 drive the multiple positioning columns 351 to rise through the multiple rectangular plates 344, the multiple positioning columns 351 drive the filter frames 21 on the left side of the multiple rectangular through holes 11 to rise and move out of the square tube 1 through the multiple clamping blocks 231, the filter frame 21 on the right side of the rectangular through hole 11 continues to perform solid-liquid separation and filtration treatment on the wastewater, there is no need to stop the discharge of wastewater, and the continuity of solid-liquid separation of the wastewater is ensured.

由于左侧的过滤框21先与废水接触并对大量的过滤物进行收集,右侧过滤框21过滤收集的过滤物少,因此只需将左侧的过滤框21抽出清理,但右侧的过滤框21内过滤有少量的过滤物,当矩形通孔11左侧的过滤框21移出方形管1后,受挤压的连接弹簧254复位带动旋转推板253移动,旋转推板253对矩形通孔11内右侧的过滤框21进行推挤,右侧的过滤框21通过两个滑动块24在两个导向槽12内滑动至矩形通孔11的左侧,含有少量过滤物的过滤框21先与废水接触并对过滤物进行过滤,从而逐渐增加过滤物的量,直至所需清理时再对其进行清理,无需同时清理矩形通孔11内的两个过滤框21,从而减少了过滤框21提取清理的次数,降低了废水内水厂工业废水处理的成本。Since the filter frame 21 on the left side contacts with the wastewater first and collects a large amount of filtered matter, and the filter frame 21 on the right side filters and collects less filtered matter, it is only necessary to pull out the filter frame 21 on the left side for cleaning. However, there is a small amount of filtered matter filtered in the filter frame 21 on the right side. When the filter frame 21 on the left side of the rectangular through hole 11 is moved out of the square tube 1, the squeezed connecting spring 254 is reset to drive the rotating push plate 253 to move. The rotating push plate 253 pushes the filter frame 21 on the right side in the rectangular through hole 11. The filter frame 21 on the right side slides to the left side of the rectangular through hole 11 in the two guide grooves 12 through the two sliding blocks 24. The filter frame 21 containing a small amount of filtered matter first contacts with the wastewater and filters the filtered matter, thereby gradually increasing the amount of filtered matter until it is cleaned when it is needed. There is no need to clean the two filter frames 21 in the rectangular through hole 11 at the same time, thereby reducing the number of times the filter frames 21 are extracted and cleaned, and reducing the cost of industrial wastewater treatment in wastewater plants.

参阅图1和图8,该水厂冲洗废水回收处理设备还包括清洗装置4,所述清洗装置4设置在所述升降装置3外侧,所述清洗装置4包括对称设置在所述方形管1前后两侧的两个第二液压推杆41,所述第二液压推杆41上端安装有条形板42,两个所述条形板42之间共同安装有引导框43,引导框43内滑动连接有清洗机构44。Referring to Figures 1 and 8, the water plant flushing wastewater recovery and treatment equipment also includes a cleaning device 4, which is arranged on the outside of the lifting device 3. The cleaning device 4 includes two second hydraulic push rods 41 symmetrically arranged on the front and rear sides of the square tube 1. A strip plate 42 is installed on the upper end of the second hydraulic push rod 41, and a guide frame 43 is installed between the two strip plates 42. A cleaning mechanism 44 is slidably connected in the guide frame 43.

参阅图1、图5和图8,所述清洗机构44包括滑动连接在所述引导框43内部的集液框441,集液框441左端安装有进水管442,集液框441下端安装有多个从左至右均匀分布的出液管443,出液管443外表面滑动套设有固定板444,固定板444的前后两端分别与对应的两个滑动条341固定连接,出液管443下端安装有喷水箱445,喷水箱445左端安装有多个均匀分布的喷水管446,集液框441下端与所述提拉绳355端部固定连接。Referring to Figures 1, 5 and 8, the cleaning mechanism 44 includes a liquid collecting frame 441 slidably connected to the inside of the guide frame 43, a water inlet pipe 442 is installed at the left end of the liquid collecting frame 441, a plurality of liquid outlet pipes 443 evenly distributed from left to right are installed at the lower end of the liquid collecting frame 441, a fixed plate 444 is slidably sleeved on the outer surface of the liquid outlet pipe 443, the front and rear ends of the fixed plate 444 are respectively fixedly connected to the corresponding two sliding bars 341, a water spray box 445 is installed at the lower end of the liquid outlet pipe 443, a plurality of evenly distributed water spray pipes 446 are installed at the left end of the water spray box 445, and the lower end of the liquid collecting frame 441 is fixedly connected to the end of the pulling rope 355.

具体工作时,固定的升降装置3同时固定清洗装置4,将两个第二液压推杆41与现有的液压泵连接,再将进水管442与现有的水泵连接,在左侧的过滤框21从方形管1内移出后,过滤框21的下端与喷水箱445齐平,随后启动水泵,水泵将水通过进水管442注入集液框441内,集液框441内的水通过多个出液管443进入多个喷水箱445内,多个喷水箱445内的水通过多个喷水管446喷出并对过滤框21的竖直段进行清理,随后启动两个第二液压推杆41,两个第二液压推杆41通过两个条形板42带动引导框43上升,引导框43带动集液框441上升,集液框441带动多个出液管443在固定板444内滑动并带动喷水箱445上升,上升的喷水箱445带动多个喷水管446向上移动并对过滤框21竖直段的多个条形通孔211进行清理,将条形通孔211内残留的过滤物冲至过滤板221上,在过滤框21竖直段清理完成后,两个第二液压推杆41通过两个条形板42带动引导框43下降,引导框43通过集液框441带动多个出液管443在固定板444内滑动并带动喷水箱445下降,下降的喷水箱445带动多个喷水管446再次对多个条形通孔211清理,然后关闭水泵,将过滤板221从过滤框21底壁上抽出并对过滤板221上的过滤物进行集中收集,随后再将过滤板221安装复位。During specific operation, the fixed lifting device 3 simultaneously fixes the cleaning device 4, connects the two second hydraulic push rods 41 to the existing hydraulic pump, and then connects the water inlet pipe 442 to the existing water pump. After the filter frame 21 on the left is moved out of the square tube 1, the lower end of the filter frame 21 is flush with the water spray box 445, and then the water pump is started. The water pump injects water into the liquid collecting frame 441 through the water inlet pipe 442. The water in the liquid collecting frame 441 enters the multiple water spray boxes 445 through multiple liquid outlet pipes 443. The water in the multiple water spray boxes 445 is sprayed out through multiple water spray pipes 446 and cleans the vertical section of the filter frame 21. Then the two second hydraulic push rods 41 are started. The two second hydraulic push rods 41 drive the guide frame 43 to rise through the two strip plates 42. The guide frame 43 drives the liquid collecting frame 441 to rise. The liquid collecting frame 441 drives the multiple liquid outlet pipes 443 to move upward in the fixed The fixed plate 444 slides and drives the water spray box 445 to rise. The rising water spray box 445 drives multiple water spray pipes 446 to move upward and clean the multiple strip through holes 211 of the vertical section of the filter frame 21, and flush the residual filtered materials in the strip through holes 211 to the filter plate 221. After the vertical section of the filter frame 21 is cleaned, the two second hydraulic push rods 41 drive the guide frame 43 to descend through the two strip plates 42. The guide frame 43 drives the multiple liquid outlet pipes 443 to slide in the fixed plate 444 through the liquid collecting frame 441 and drives the water spray box 445 to descend. The descending water spray box 445 drives multiple water spray pipes 446 to clean the multiple strip through holes 211 again, and then the water pump is turned off, the filter plate 221 is pulled out from the bottom wall of the filter frame 21 and the filtered materials on the filter plate 221 are collected, and then the filter plate 221 is installed and reset.

参阅图8,所述滑动条341的相背端安装有连接块342,连接块342与对应的所述升降板32之间安装有第三液压推杆343。Referring to FIG. 8 , a connecting block 342 is installed at the opposite end of the sliding bar 341 , and a third hydraulic push rod 343 is installed between the connecting block 342 and the corresponding lifting plate 32 .

具体工作时,将两个第三液压推杆343与现有的液压泵连接,在过滤框21清理结束后,启动两个第三液压推杆343,两个第三液压推杆343通过两个连接块342带动两个滑动条341水平移动,两个滑动条341通过多个矩形板344和多个卡位柱351带动多个清理后的过滤框21移动至多个对应的矩形通孔11的右侧上方,随后停止第三液压推杆343,并启动两个第一液压推杆31,两个第一液压推杆31带动两个升降板32下降,两个升降板32通过两个滑动架33带动两个滑动条341向下移动,两个滑动条341通过多个矩形板344带动多个卡位柱351向下移动,多个卡位柱351通过多个卡接块231带动多个过滤框21向下移动并进入对应矩形通孔11的右侧,过滤框21重复对推挤机构25挤压的步骤,过滤框21下降的过程中,挡板223与左侧的过滤框21竖直段的磁铁212接触,磁铁212对挡板223进行磁吸,使其在两个支撑柱222上滑动,随着过滤框21的下降,挡板223逐渐移动至过滤框21的顶壁下端,随后再次启动两个第二液压推杆41,两个第二液压推杆41通过两个条形板42带动引导框43上升,引导框43带动集液框441上升,集液框441带动多个提拉绳355上升,提拉绳355带动限位块353移动至限位沉孔352内,从而解除卡位柱351与卡接块231的连接,随后第二液压推杆41和两个第一液压推杆31同时工作并将卡位柱351移出圆柱孔232,受挤压的第一弹簧2342复位并带动T型圆柱杆2341上升,拉伸状态的第二弹簧2345复位并带动滑动磁块2344移动至挡板223上端,从而重新对挡板223进行磁吸限位,多个过滤框21继续对废水进行过滤,直至废水全部过滤回收完成。During specific operation, the two third hydraulic push rods 343 are connected to the existing hydraulic pump. After the filter frame 21 is cleaned, the two third hydraulic push rods 343 are started. The two third hydraulic push rods 343 drive the two sliding bars 341 to move horizontally through the two connecting blocks 342. The two sliding bars 341 drive the cleaned filter frames 21 to move to the upper right side of the corresponding rectangular through holes 11 through the multiple rectangular plates 344 and the multiple positioning columns 351. Then, the third hydraulic push rods 343 are stopped, and the two first hydraulic push rods 31 are started. The two first hydraulic push rods 31 drive the two lifting plates 32 to descend, and the two lifting plates 32 drive the two sliding bars 341 to move downward through the two sliding frames 33. The two sliding bars 341 drive the multiple positioning columns 351 to move downward through the multiple rectangular plates 344. The multiple positioning columns 351 drive the multiple filter frames 21 to move downward through the multiple clamping blocks 231 and enter the right side of the corresponding rectangular through hole 11. The filter frame 21 repeats the step of squeezing the pushing mechanism 25. During the descent of the filter frame 21, the baffle 223 and the filter frame 21 on the left side are vertically connected. The magnet 212 of the straight section contacts the baffle 223, and the magnet 212 magnetically attracts the baffle 223, so that it slides on the two support columns 222. As the filter frame 21 descends, the baffle 223 gradually moves to the lower end of the top wall of the filter frame 21, and then the two second hydraulic push rods 41 are started again. The two second hydraulic push rods 41 drive the guide frame 43 to rise through the two strip plates 42, and the guide frame 43 drives the liquid collecting frame 441 to rise. The liquid collecting frame 441 drives multiple pulling ropes 355 to rise, and the pulling ropes 355 drive the limit block 353 to move to the limit countersunk hole 35 2, thereby releasing the connection between the locking column 351 and the locking block 231, and then the second hydraulic push rod 41 and the two first hydraulic push rods 31 work simultaneously to move the locking column 351 out of the cylindrical hole 232, the squeezed first spring 2342 resets and drives the T-shaped cylindrical rod 2341 to rise, the stretched second spring 2345 resets and drives the sliding magnetic block 2344 to move to the upper end of the baffle 223, so as to magnetically limit the baffle 223 again, and the multiple filter frames 21 continue to filter the wastewater until all the wastewater is filtered and recovered.

在本发明实施例的描述中,需要说明的是,术语“纵向”、“水平”、“上”、“下”、“前”、“后”、“左”、“右”、“顶”、“底”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明实施例和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明实施例的限制。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性。此外,在本发明的描述中,除非另有说明,“多个”的含义是两个或两个以上。In the description of the embodiments of the present invention, it should be noted that the terms "longitudinal", "horizontal", "upper", "lower", "front", "back", "left", "right", "top", "bottom", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the embodiments of the present invention and simplifying the description, rather than indicating or implying that the devices or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limitations on the embodiments of the present invention. In addition, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance. In addition, in the description of the present invention, unless otherwise specified, "multiple" means two or more.

在本发明的描述中,还需要说明的是,除非另有明确的规定和限定,术语“设置”、“安装”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。In the description of the present invention, it is also necessary to explain that, unless otherwise clearly specified and limited, the terms "setting", "installation" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be an indirect connection through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

本具体实施方式的实施例均为本发明的较佳实施例,并非依此限制本发明的保护范围,故凡依本发明的结构、形状、原理所做的等效变化,均应涵盖于本发明的保护范围之内。The embodiments of this specific implementation method are all preferred embodiments of the present invention, and are not intended to limit the protection scope of the present invention. Therefore, all equivalent changes made according to the structure, shape, and principle of the present invention should be included in the protection scope of the present invention.

Claims (9)

1. The utility model provides a water plant washes waste water recovery processing equipment, includes square tube (1), its characterized in that: the top wall of the square tube (1) is provided with a plurality of rectangular through holes (11) which are uniformly distributed from left to right, and the inner end surfaces of the front side wall and the rear side wall of the square tube (1) are provided with guide grooves (12);
The collecting device (2) is provided with a plurality of filtering frames (21) which are arranged in the rectangular through holes (11), the openings of the filtering frames (21) face to the left, the bottom wall of the filtering frames (21) is connected with a blocking mechanism (22) in a sliding manner, the top wall of the filtering frames (21) is connected with a clamping mechanism (23), sliding blocks (24) which are arranged in the guide grooves (12) are arranged at the front end and the rear end of the filtering frames (21), and a pushing mechanism (25) is arranged at the right of the filtering frames (21) which are positioned at the right side;
The lifting device (3) is arranged on the outer side of the square pipe (1), the lifting device (3) comprises two first hydraulic push rods (31) symmetrically arranged on the front side and the rear side of the square frame, lifting plates (32) are arranged at the upper ends of the first hydraulic push rods (31), sliding frames (33) with U-shaped structures are arranged at the opposite ends of the lifting plates (32), sliding mechanisms (34) are commonly connected between the two sliding frames (33), and a plurality of lifting mechanisms (35) which are uniformly distributed from left to right are connected on the sliding mechanisms (34);
The cleaning device (4) is arranged outside the lifting device (3), the cleaning device (4) comprises two second hydraulic push rods (41) symmetrically arranged on the front side and the rear side of the square pipe (1), a strip-shaped plate (42) is arranged at the upper end of each second hydraulic push rod (41), a guide frame (43) is jointly arranged between the two strip-shaped plates (42), and a cleaning mechanism (44) is connected in a sliding mode in the guide frame (43);
The pushing mechanism (25) comprises a locating plate (251) arranged at the lower end of the top wall of the square tube (1), an arc-shaped rod (252) is arranged on the locating plate (251) in a sliding mode, a rotary pushing plate (253) is arranged at the left end of the arc-shaped rod (252), a connecting spring (254) is arranged between the rotary pushing plate (253) and the locating plate (251), an articulated frame (255) is hinged to the upper end of the rotary pushing plate (253), and the articulated frame (255) is fixedly connected with the lower end of the top wall of the square tube (1).
2. The water mill flushing wastewater recovery treatment device according to claim 1, wherein: the collecting device (2) further comprises sliding grooves (26) which are formed in the inner wall of the square tube (1) and correspond to the sliding blocks (24) one by one, and a rotating roller (27) is rotatably connected to the right side of the lower end of the filtering frame (21).
3. The water mill flushing wastewater recovery treatment device according to claim 1, wherein: the sliding mechanism (34) comprises two sliding strips (341) which are symmetrical front and back and are respectively connected in the sliding frames (33) in a sliding mode, connecting blocks (342) are arranged at the opposite ends of the sliding strips (341), third hydraulic pushing rods (343) are arranged between the connecting blocks (342) and the corresponding lifting plates (32), and a plurality of rectangular plates (344) which are uniformly distributed from left to right are commonly arranged between the two sliding strips (341).
4. A water mill flushing wastewater recovery treatment device according to claim 3, wherein: the lifting mechanism (35) comprises a clamping column (351) arranged at the lower end of a rectangular plate (344), two limiting counter bores (352) are symmetrically formed in the left-right direction of the outer ring surface of the clamping column (351), limiting blocks (353) are connected in a sliding mode in the limiting counter bores (352), reset springs (354) are arranged between the limiting blocks (353) and the vertical sections of the limiting counter bores (352), lifting ropes (355) are fixedly connected to one ends of the limiting blocks (353) located inside the limiting counter bores (352), and one ends, far away from the limiting blocks (353), of the lifting ropes (355) sequentially slide to penetrate through the clamping column (351) and the rectangular plate (344).
5. The water mill flushing wastewater recovery processing apparatus according to claim 4, wherein: the cleaning mechanism (44) comprises a liquid collecting frame (441) which is slidably connected inside the guide frame (43), a water inlet pipe (442) is arranged at the left end of the liquid collecting frame (441), a plurality of liquid outlet pipes (443) which are uniformly distributed from left to right are arranged at the lower end of the liquid collecting frame (441), a fixing plate (444) is sleeved on the outer surface of the liquid outlet pipe (443) in a sliding manner, the front end and the rear end of the fixing plate (444) are respectively fixedly connected with two corresponding sliding strips (341), a water spraying tank (445) is arranged at the lower end of the liquid outlet pipe (443), a plurality of water spraying pipes (446) which are uniformly distributed are arranged at the left end of the water spraying tank (445), and the lower end of the liquid collecting frame (441) is fixedly connected with the end part of the lifting rope (355).
6. The water mill flushing wastewater recovery treatment device according to claim 1, wherein: the clamping mechanism (23) comprises a clamping block (231) arranged at the upper end of the filter frame (21), a cylindrical hole (232) is formed in the upper end of the clamping block (231), an annular groove (233) is formed in the annular side wall of the cylindrical hole (232), and an adsorption branched chain (234) is arranged on the top wall of the filter frame (21).
7. The water mill flushing wastewater recovery processing apparatus of claim 6, wherein: the adsorption branched chain (234) is including seting up slip counter bore (2346) of terminal surface under filter frame (21) roof, slip counter bore (2346) sliding connection has slip magnetic path (2344), slip magnetic path (2344) left end with install second spring (2345) between the vertical pore wall in slip counter bore (2346) left side, slip magnetic path (2344) right-hand member with install connecting rope (2343) between the vertical pore wall in slip counter bore (2346) right side, connecting rope (2343) upper end is connected with T type cylinder pole (2341), and the vertical section slip of T type cylinder pole (2341) is passed filter frame (21) roof and is located cylinder hole (232), installs first spring (2342) between T type cylinder pole (2341) upper end and filter frame (21) roof.
8. The water mill flushing wastewater recovery treatment device according to claim 1, wherein: the baffle mechanism (22) comprises a filter plate (221) which is connected to the bottom wall of the filter frame (21) in a sliding mode, two support columns (222) are symmetrically arranged on the left side of the upper end of the filter plate (221) front and back, and two baffle plates (223) are connected between the support columns (222) in a sliding mode.
9. The water mill flushing wastewater recovery treatment device according to claim 1, wherein: a plurality of strip-shaped through holes (211) which are uniformly distributed from top to bottom are formed in the vertical frame wall of the filter frame (21), and magnets (212) are arranged at the upper end of the vertical frame wall of the filter frame (21).
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118954801A (en) * 2024-10-16 2024-11-15 三亚绿万园景观园林工程有限公司 Wastewater treatment system and wastewater treatment method
CN121005457A (en) * 2025-10-27 2025-11-25 南通万事成精密机械有限公司 A flange pickling tank wastewater recovery device

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CN118954801A (en) * 2024-10-16 2024-11-15 三亚绿万园景观园林工程有限公司 Wastewater treatment system and wastewater treatment method
CN121005457A (en) * 2025-10-27 2025-11-25 南通万事成精密机械有限公司 A flange pickling tank wastewater recovery device

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