WO2021114272A1 - 一种高效全自动污水过滤器 - Google Patents

一种高效全自动污水过滤器 Download PDF

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Publication number
WO2021114272A1
WO2021114272A1 PCT/CN2019/125334 CN2019125334W WO2021114272A1 WO 2021114272 A1 WO2021114272 A1 WO 2021114272A1 CN 2019125334 W CN2019125334 W CN 2019125334W WO 2021114272 A1 WO2021114272 A1 WO 2021114272A1
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Prior art keywords
sewage
water purification
tank
filter
box
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PCT/CN2019/125334
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English (en)
French (fr)
Inventor
曲毅
王兆选
张�林
高晓瞳
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烟台江联智能科技有限公司
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Priority to PCT/CN2019/125334 priority Critical patent/WO2021114272A1/zh
Publication of WO2021114272A1 publication Critical patent/WO2021114272A1/zh

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    • 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
    • B01D35/02Filters adapted for location in special places, e.g. pipe-lines, pumps, stop-cocks
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage

Definitions

  • the utility model relates to a high-efficiency fully automatic sewage filter, and relates to the technical field of filtering equipment.
  • Urban sewage mainly includes domestic sewage and industrial sewage, which are collected by the urban drainage pipe network and transported to the sewage treatment plant for treatment.
  • the sewage treatment plant must first filter the suspended solids in the sewage during sewage treatment.
  • Fully automatic filter is a kind of filter that directly intercepts impurities in the water, removes suspended solids and particles in the water body, reduces turbidity, purifies water quality, reduces system dirt, bacteria, algae, rust, etc., so as to purify water quality and protect other equipment in the system.
  • Working precision equipment sewage enters the fully automatic filter box through the water inlet, and is recovered after being filtered by the filter.
  • the impurities and dirt intercepted by the filter are automatically discharged.
  • the automatic filter in the prior art still has the waste discharge. Not in time, manual cleaning is required, and time-consuming and labor-intensive technical problems.
  • the utility model provides a high-efficiency full-automatic sewage filter to solve the technical problems that the sewage filtering device in the prior art does not discharge in time, requires manual cleaning, and is time-consuming and labor-intensive.
  • a high-efficiency full-automatic sewage filter including a box for filtering sewage, a leg installed at the bottom of the box, a rotating mechanism and a sewage mechanism installed on the box ,
  • the box body is provided with a top opening and an arc-shaped groove at the bottom, the right end of the box body is installed with a water inlet pipe connected to the inside of the box body, and the bottom of the box body is installed with a water purification tank connected to the inside of the box body, so
  • a water purification pipe is installed on the water purification tank, the bottom of the water purification tank is set as an inclined surface, the lowest part of the inclined surface is connected to the water purification pipe, and the inside of the tank is installed to divide the tank into upper and lower cavities.
  • a filter screen The upper side of the filter screen is a sewage chamber, and the bottom is a water purification chamber.
  • the water purification chamber is connected with the water purification tank.
  • a plurality of grid filter parts arranged in parallel and spaced are installed on the filter screen.
  • the side wall is equipped with a sewage trough, the rotating mechanism includes a motor, a reducer, a cleaning shaft, a longitudinal fixed plate, a transverse fixed plate and a plate-shaped scraper.
  • the motor is installed on the left side wall outside the box.
  • the speed reducer is connected to one end of the cleaning shaft.
  • the cleaning shaft passes through the box and is installed on the left and right side walls of the box through bearings. Two cleaning shafts are installed on the cleaning shaft.
  • a vertical fixing plate with a vertical axis of the shaft One end of the two longitudinal fixing plates is connected by a horizontal fixing plate, and the other end is connected by a plate-shaped scraper.
  • the horizontal fixing plate is detachably mounted with a grid brush.
  • the brush part is composed of several parallel grid plates. When the grid brush part rotates around the cleaning axis, it crosses and rotates relative to the grid filter part. When the plate scraper rotates around the cleaning axis, it affects the grid filter part. The dirt is scrubbed and concentrated to the sewage tank.
  • the beneficial effect of the utility model is that the box body is divided into upper and lower chambers by setting the filter screen to realize the filtration and separation of the sewage, and the large-volume dirt in the sewage can be intercepted by setting the grid filter part on the filter screen.
  • Filtration by setting a rotating mechanism driven by a motor, driving the grill brush and a plate-shaped scraper to concentrate the dirt intercepted on the filter screen to the sewage tank, and by setting a plate-shaped scraper to remove the large volume of dirt above the grille filter Concentrate the dirt, by setting the grid brush part to concentrate the small volume of dirt in the gap of the grid filter part, so as to clean the dirt in the box to the sewage tank in time, which is convenient, fast and thorough, and saves time and effort.
  • the present invention can also be improved as follows.
  • the sewage mechanism includes a driving gear, a driven gear, a conveyor belt, a sewage shaft, a spiral blade, and a sewage pipe installed on the cleaning shaft, the driving gear and the driven gear are connected by a conveyor belt, and the driven gear is concentrically mounted on On the sewage shaft, the sewage shaft passes through the sewage groove and is mounted on the left and right walls of the sewage groove through bearings, the screw blade is installed on the sewage shaft, and the sewage pipe is installed at the bottom of the left end of the sewage groove.
  • the bottom of the sewage tank is also provided with a water outlet, and a detachable steel wire mesh is installed at the water outlet.
  • the beneficial effect of adopting the above-mentioned further solution is that by setting the sewage mechanism, the spiral blade on the sewage shaft is driven to rotate, so that the sewage in the sewage tank is transported to the sewage pipe for centralized discharge, which saves time and effort.
  • the plate-shaped scraper is made of steel wire mesh.
  • the beneficial effect of adopting the above-mentioned further solution is that by arranging the plate-shaped scraping part as a steel wire mesh, the large-volume dirt can be concentrated while avoiding the discharge of water to the sewage tank, so that too much moisture in the dirt affects the subsequent treatment.
  • a top cover is provided on the top of the box body, a sewage cover is provided on the top of the sewage tank, and both the top cover and the sewage cover are made of transparent materials.
  • the beneficial effect of adopting the above-mentioned further solution is that by providing a transparent top cover and a sewage hood, it is possible to prevent sewage from splashing out, and to keep the surrounding environment hygienic.
  • a roller is installed at the bottom of the leg, and the roller has a locking mechanism.
  • the beneficial effect of adopting the above-mentioned further solution is that by providing rollers, it is convenient to move the box body and select a suitable working place according to needs.
  • a detachable steel wire mesh is installed between the transverse fixed plate and the plate-shaped scraper to increase the filtering effect of large-volume dirt.
  • Figure 1 is a schematic diagram of the front view of the utility model
  • Figure 2 is a schematic diagram of the three-dimensional structure of the utility model
  • Fig. 3 is a schematic sectional view of the structure at A-A in Fig. 1;
  • Figure 4 is a schematic view of the three-dimensional structure of the utility model without a top cover and a sewage hood;
  • Fig. 5 is a schematic diagram of the rotating structure.
  • a high-efficiency full-automatic sewage filter includes a box body 18 for filtering sewage, a leg 12 installed at the bottom of the box body 18, a rotating mechanism and a sewage mechanism installed on the box body 18, and the box body 18 is arranged as The top is open and the bottom is an arc-shaped groove.
  • the right end of the box body 18 is installed with a water inlet pipe 9 connected to the inside of the box body 18, and the bottom of the box body 18 is installed with a water purification tank 15 connected to the inside of the box body 18.
  • a water purification pipe 13 is installed on the water purification tank 15.
  • the bottom of the water purification tank 15 is set as an inclined surface, and the lowest part of the inclined surface is connected to the water purification pipe 13.
  • the tank body 18 is installed inside to divide the tank body 18 into upper and lower parts.
  • a two-part-cavity filter screen 23 Above the filter screen 23 is a sewage chamber 18-2, and below the filter screen 23 is a water purification chamber 18-1.
  • the water purification chamber 18-1 is in communication with the water purification tank 15.
  • a number of grid filter parts 22 arranged in parallel and spaced apart are installed on the 23, the rear side wall of the box body 18 is installed with a sewage trough 11, the rotating mechanism includes a motor 1, a reducer 2, a cleaning shaft 8, a longitudinal fixed plate 6, a horizontal
  • the fixed plate 5 and the plate-shaped scraper 25 the motor 1 is installed on the outer left side wall of the box body 18, the motor 1 is connected with the reducer 2, and the reducer 2 is installed with one end of the cleaning shaft 8.
  • the cleaning shaft 8 passes through the box body 18 and is respectively mounted on the left and right side walls of the box body 18 through bearings.
  • the cleaning shaft 8 is equipped with two longitudinal fixing plates 6 perpendicular to the axis of the cleaning shaft 8.
  • the horizontal fixing plate 5 is detachably installed with a grid brush part 4, and the grid brush part 4 consists of several It is composed of parallel grid plates.
  • the plate-shaped scraping part 25 rotates on the grid filter part 22 when rotating around the cleaning axis 8.
  • the sewage is scrubbed and concentrated to the sewage tank 11, and the box 18 is divided into upper and lower chambers by setting a filter screen 23 to achieve filtration and separation of the sewage.
  • the grille filter part 22 on the filter screen 23 the sewage can be removed.
  • the large volume of dirt in the medium is intercepted and filtered.
  • the grill brush part 4 and the plate-shaped scraper 25 are driven to collect the dirt intercepted above the filter screen 23 to the sewage tank 11, and the set plate
  • the scraper 25 concentrates the large-volume dirt above the grid filter portion 22, and the small-volume dirt in the gap of the grid filter portion 22 is concentrated by setting the grid brush portion 4, so as to timely remove the dirt in the box 18
  • the dirt is cleaned to the drain tank 11, which is convenient, quick and thorough, saving time and effort.
  • the sewage mechanism includes a driving gear 19, a driven gear 20, a conveyor belt 17, a sewage shaft 10, a spiral blade 21, and a sewage pipe 16 mounted on the cleaning shaft 8.
  • the driving gear 19 and the driven gear 20 are connected by a conveyor belt 17.
  • the driven gear 20 is concentrically mounted on the sewage shaft 10, the sewage shaft 10 passes through the sewage groove 11 and is mounted on the left and right walls of the sewage groove 11 through bearings, and the sewage shaft 10 is installed with a screw Blade 21, the bottom of the left end of the sewage trough 11 is equipped with a sewage pipe 16.
  • the spiral blade 21 on the sewage shaft 10 is driven to rotate so that the sewage in the sewage groove 11 is transported to the sewage pipe 16 for centralized discharge. It saves time and effort.
  • the bottom of the sewage tank 11 is also provided with a water outlet, and a detachable steel wire mesh is installed at the water outlet, and the sewage carried by the dirt into the sewage tank 11 is discharged through the water outlet.
  • the plate-shaped scraping portion 25 is made of steel wire mesh. By setting the plate-shaped scraping portion 25 as a steel wire mesh, the large volume of dirt can be concentrated while avoiding the discharge of water to the sewage tank 11, so that the dirt will be mixed. Excessive moisture affects subsequent processing.
  • a top cover 3 is provided on the top of the box body 18, and a sewage cover 7 is provided on the top of the sewage tank 11.
  • the top cover 3 and the sewage cover 7 are made of transparent materials. By providing a transparent top cover 3 and a sewage cover 7, it can prevent Sewage spills, keep the surrounding environment sanitary.
  • a roller 14 is installed at the bottom of the leg 12, and the roller 14 has a locking mechanism.
  • the roller 14 is arranged to facilitate the movement of the box 18, and a suitable working place is selected and locked to prevent movement.
  • a detachable steel wire mesh is installed between the lateral fixed plate 5 and the plate-shaped scraper 25 to increase the filtering effect of large-volume dirt.
  • the motor 1 rotates to drive the cleaning shaft 8 to rotate, thereby driving the grill brush part 4 and the plate-shaped scraping part 25 rotates, when the plate-shaped scraper 25 rotates, the large volume of dirt above the grid filter portion 22 can be cleaned, and the plate-shaped scraper 25 can clean the small volume of dirt between the gaps of the grid filter portion 22 to
  • the drain groove 11 realizes the drain operation in the box 18; the driving gear 19 rotates while the cleaning shaft 8 rotates, so that the drain shaft 10 connected with the driven gear 20 is driven to rotate through the belt drive, so that the spiral blade on the drain shaft 10 21 rotates to transport the dirt in the sewage tank 11 to the sewage pipe 16 for discharge.

Abstract

一种高效全自动污水过滤器,涉及过滤设备技术领域,包括用以过滤污水的箱体(18)、安装在箱体(18)底部的支腿(12)、安装在箱体(18)上的旋转机构和排污机构,所述箱体(18)设置为顶部开口且底部为圆弧状的凹槽,所述箱体(18)的右端安装连通箱体(18)内部的进水管(9),所述箱体(18)底部安装连通箱体(18)内部的净水箱(15),所述净水箱(15)上安装净水管(13),所述箱体(18)内部安装将箱体(18)分为上下两部分空腔的过滤网(23),所述过滤网(23)上方为污水腔(18-2),下方为净水腔(18-1),所述净水腔(18-1)与净水箱(15)连通,所述过滤网(23)上安装若干个平行间隔排列的格栅过滤部(22),所述箱体(18)后侧壁安装排污槽(11),用以解决现有技术中的全自动过滤器存在污物排放不及时,需要人工清洗,费时费力的技术问题。

Description

一种高效全自动污水过滤器 技术领域
本实用新型涉及一种高效全自动污水过滤器,涉及过滤设备技术领域。
背景技术
城市污水主要包括生活污水和工业污水,由城市排水管网汇集并输送到污水处理厂进行处理,污水处理厂在进行污水处理时首先要对污水中的悬浮物进行过滤。全自动过滤器是一种利用滤网直接拦截水中的杂质,去除水体悬浮物、颗粒物,降低浊度,净化水质,减少系统污垢、菌藻、锈蚀等产生,以净化水质及保护系统其他设备正常工作的精密设备,污水由进水口进入全自动过滤箱体,经过滤网过滤后回收,经过滤网拦截的杂质污物进行自动排放,但是现有技术中的全自动过滤器仍然存在污物排放不及时,需要人工清洗,费时费力的技术问题。
实用新型内容
本实用新型针对现有技术存在的不足,提供一种高效全自动污水过滤器,用以解决现有技术中的污水过滤装置污物排放不及时,需要人工清洗,费时费力的技术问题。
本实用新型解决上述技术问题的技术方案如下:一种高效全自动污水过滤器,包括用以过滤污水的箱体、安装在箱体底部的支腿、安装在箱体上的旋转机构和排污机构,所述箱体设置为顶部开口且底部为圆弧状的凹槽,所述箱体的右端安装连通箱体内部的进水管,所述箱体底部安装连通箱体内部的净水箱,所述净水箱上安装净水管,所述净水箱的底部设置为倾斜面,倾斜面的最低处与净水管连通,所述箱体内部安装将箱体分为上下两部分空腔的过滤网,所述过滤网上方为污水腔,下方为净水腔,所述净水腔与净水箱连通,所述过滤网上安装若干个平行间隔排列的格栅过滤部,所述箱体后侧壁安装排污槽,所述旋转机构包括电机、减速器、清洗轴、纵向固定板、横向固定板和板状刮部,所述电机安装在箱体外部左侧壁上,所述电机与减速器连接,所述减速器与清洗轴的一端安装,所述清洗轴穿过箱体且通过轴承分别安装在箱体的左侧壁和右侧壁上,所述清洗轴上安装两个与清洗轴的轴线垂直的纵向固定板,两个纵向固定板的一端通过横向固定板连接,另一端通过板状刮部连接,所述横向固定板上可拆卸地安装格栅刷部,所述格栅刷部由若干个平行的格栅板组成,所述格栅刷部绕清洗轴旋转时与格栅过滤部交叉相对转动,所述板状刮部绕清洗轴旋转时对格栅过滤部上的污物进行刷洗集中至排污槽。
本实用新型的有益效果是:通过设置过滤网将箱体分为上下两个腔,实现对污水的 过滤分离,通过在过滤网上设置格栅过滤部,能够对污水中的大体积污物进行拦截过滤,通过设置电机驱动的旋转机构,驱动格栅刷部和板状刮部对过滤网上方拦截的污物进行集中至排污槽,通过设置板状刮部对格栅过滤部上方的大体积污物进行集中,通过设置格栅刷部对格栅过滤部缝隙中的小体积污物进行集中,从而及时将箱体内的污物清理至排污槽,清理方便快捷彻底,省时省力。
在上述技术方案的基础上,本实用新型还可以做如下改进。
进一步,所述排污机构包括安装在清洗轴上的主动齿轮、被动齿轮、传送带、排污轴、螺旋叶片和排污管,所述主动齿轮和被动齿轮之间通过传送带连接,所述被动齿轮同心安装在排污轴上,所述排污轴穿过排污槽且通过轴承安装在排污槽的左侧壁和右侧壁上,所述排污轴上安装螺旋叶片,所述排污槽的左端底部安装排污管,所述排污槽的底部还设置出水口,所述出水口处安装可拆卸的钢丝网。
采用上述进一步方案的有益效果是,通过设置排污机构,驱动排污轴上的螺旋叶片旋转从而将排污槽内的污物输送至排污管进行集中排放,省时省力。
进一步,所述板状刮部采用钢丝网制成。
采用上述进一步方案的有益效果是,通过将板状刮部设置为钢丝网,能够将大体积污物进行集中的同时避免将水排至排污槽,从而污物中夹杂过多水分影响后续处理。
进一步,所述箱体顶部设置顶盖,所述排污槽顶部设置排污罩,所述顶盖和排污罩均采用透明材质。
采用上述进一步方案的有益效果是,通过设置透明的顶盖和排污罩,能够防止污水溅出,保持周围的环境卫生。
进一步,所述支腿底部安装滚轮,所述滚轮具有锁死机构。
采用上述进一步方案的有益效果是,通过设置滚轮,便于移动箱体,根据需要选择合适的工作地点。
进一步,所述横向固定板和板状刮部之间安装可拆卸的钢丝网,增加对大体积污物的过滤效果。
附图说明
图1为本实用新型的主视结构示意图;
图2为本实用新型的立体结构示意图;
图3为图1中A-A处的剖视结构示意图;
图4为本实用新型无顶盖和排污罩的立体结构示意图;
图5为旋转结构的示意图。
图中1.电机,2.减速器,3.顶盖,4.格栅刷部,5.横向固定板,6.纵向固定板,7.排污罩,8.清洗轴,9.进水管,10.排污轴,11.排污槽,12.支腿,13.净水管,14.滚轮,15.净水箱,16.排污管,17.传送带,18.箱体,19.主动齿轮,20.被动齿轮,21.螺旋叶片,22.格栅过滤部,23.过滤网,25.板状刮部,18-1.净水腔,18-2.污水腔。
具体实施方式
以下结合附图对本实用新型的原理和特征进行描述,所举实例只用于解释本实用新型,并非用于限定本实用新型的范围。
一种高效全自动污水过滤器,包括用以过滤污水的箱体18、安装在箱体18底部的支腿12、安装在箱体18上的旋转机构和排污机构,所述箱体18设置为顶部开口且底部为圆弧状的凹槽,所述箱体18的右端安装连通箱体18内部的进水管9,所述箱体18底部安装连通箱体18内部的净水箱15,所述净水箱15上安装净水管13,所述净水箱15的底部设置为倾斜面,倾斜面的最低处与净水管13连通,所述箱体18内部安装将箱体18分为上下两部分空腔的过滤网23,所述过滤网23上方为污水腔18-2,下方为净水腔18-1,所述净水腔18-1与净水箱15连通,所述过滤网23上安装若干个平行间隔排列的格栅过滤部22,所述箱体18后侧壁安装排污槽11,所述旋转机构包括电机1、减速器2、清洗轴8、纵向固定板6、横向固定板5和板状刮部25,所述电机1安装在箱体18外部左侧壁上,所述电机1与减速器2连接,所述减速器2与清洗轴8的一端安装,所述清洗轴8穿过箱体18且通过轴承分别安装在箱体18的左侧壁和右侧壁上,所述清洗轴8上安装两个与清洗轴8的轴线垂直的纵向固定板6,两个纵向固定板6的一端通过横向固定板5连接,另一端通过板状刮部25连接,所述横向固定板5上可拆卸安装格栅刷部4,所述格栅刷部4由若干个平行的格栅板组成,所述格栅刷部4绕清洗轴8旋转时与格栅过滤部22交叉相对转动,所述板状刮部25绕清洗轴8旋转时对格栅过滤部22上的污物进行刷洗集中至排污槽11,通过设置过滤网23将箱体18分为上下两个腔,实现对污水的过滤分离,通过在过滤网23上设置格栅过滤部22,能够对污水中的大体积污物进行拦截过滤,通过设置电机1驱动的旋转机构,驱动格栅刷部4和板状刮部25对过滤网23上方拦截的污物进行集中至排污槽11,通过设置板状刮部25对格栅过滤部22上方的大体积污物进行集中,通过设置格栅刷部4对格栅过滤部22缝隙中的小体积污物进行集中,从而及时将箱体18内的污物清理至排污槽11,清理方便快 捷彻底,省时省力。
所述排污机构包括安装在清洗轴8上的主动齿轮19、被动齿轮20、传送带17、排污轴10、螺旋叶片21和排污管16,所述主动齿轮19和被动齿轮20之间通过传送带17连接,所述被动齿轮20同心安装在排污轴10上,所述排污轴10穿过排污槽11且通过轴承安装在排污槽11的左侧壁和右侧壁上,所述排污轴10上安装螺旋叶片21,所述排污槽11的左端底部安装排污管16,通过设置排污机构,驱动排污轴10上的螺旋叶片21旋转从而将排污槽11内的污物输送至排污管16进行集中排放,省时省力,所述排污槽11的底部还设置出水口,所述出水口处安装可拆卸的钢丝网,通过出水口将由污物携带至排污槽11内的污水排出。
所述板状刮部25采用钢丝网制成,通过将板状刮部25设置为钢丝网,能够将大体积污物进行集中的同时避免将水排至排污槽11,从而污物中夹杂过多水分影响后续处理。
所述箱体18顶部设置顶盖3,所述排污槽11顶部设置排污罩7,所述顶盖3和排污罩7均采用透明材质,通过设置透明的顶盖3和排污罩7,能够防止污水溅出,保持周围的环境卫生。
所述支腿12底部安装滚轮14,,所述滚轮14具有锁死机构,通过设置滚轮14,便于移动箱体18,根据需要选择合适的工作地点并进行锁死,防止发生移动。
所述横向固定板5和板状刮部25之间安装可拆卸的钢丝网,增加对大体积污物的过滤效果。
工作原理:该装置用于过滤污水时,污水由进水管9进入箱体内的污水腔18-2,污水通过格栅过滤部22和过滤网23的过滤和拦截作用被净化后进入箱体18的净水腔18-1,净水腔18-1的水进入净水箱15由净水管13排出;同时电机1转动,驱动清洗轴8旋转,从而带动格栅刷部4和板状刮部25旋转,通过板状刮部25旋转时可对格栅过滤部22上方的大体积污物进行清理,通过板状刮部25可对格栅过滤部22缝隙间的小体积污物进行清理至排污槽11,从而实现箱体18内的排污操作;清洗轴8旋转的同时主动齿轮19也旋转,从而通过带传动驱动与被动齿轮20连接的排污轴10旋转,从而排污轴10上的螺旋叶片21旋转将排污槽11内的污物输送至排污管16进行排出。
由附图1和附图3可知晓该设备的前、后、左、右方位。
以上所述仅为本实用新型的较佳实施例,并不用以限制本实用新型,凡在本实用新型的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本实用新型的 保护范围之内。

Claims (10)

  1. 一种高效全自动污水过滤器,其特征在于:包括用以过滤污水的箱体、安装在箱体底部的支腿、安装在箱体上的旋转机构和排污机构,所述箱体设置为顶部开口且底部为圆弧状的凹槽,所述箱体的右端安装连通箱体内部的进水管,所述箱体底部安装连通箱体内部的净水箱,所述净水箱上安装净水管,所述箱体内部安装将箱体分为上下两部分空腔的过滤网,所述过滤网上方为污水腔,下方为净水腔,所述净水腔与净水箱连通,所述过滤网上安装若干个平行间隔排列的格栅过滤部,所述箱体后侧壁安装排污槽,所述旋转机构包括电机、减速器、清洗轴、纵向固定板、横向固定板和板状刮部,所述电机安装在箱体外部左侧壁上,所述电机与减速器连接,所述减速器与清洗轴的一端安装,所述清洗轴穿过箱体且通过轴承分别安装在箱体的左侧壁和右侧壁上,所述清洗轴上安装两个与清洗轴的轴线垂直的纵向固定板,两个纵向固定板的一端通过横向固定板连接,另一端通过板状刮部连接。
  2. 根据权利要求1所述的一种高效全自动污水过滤器,其特征在于:所述排污机构包括安装在清洗轴上的主动齿轮、被动齿轮、传送带、排污轴、螺旋叶片和排污管,所述主动齿轮和被动齿轮之间通过传送带连接,所述被动齿轮同心安装在排污轴上,所述排污轴穿过排污槽且通过轴承安装在排污槽的左侧壁和右侧壁上,所述排污轴上安装螺旋叶片,所述排污槽的左端底部安装排污管。
  3. 根据权利要求2所述的一种高效全自动污水过滤器,其特征在于:所述横向固定板上安装格栅刷部,所述格栅刷部由若干个平行的格栅板组成,所述格栅刷部绕清洗轴旋转时与格栅过滤部交叉相对转动,所述板状刮部绕清洗轴旋转时对格栅过滤部上的污物进行刷洗集中至排污槽。
  4. 根据权利要求3所述的一种高效全自动污水过滤器,其特征在于:所述格栅刷部为可拆卸安装在横向固定板上。
  5. 根据权利要求1所述的一种高效全自动污水过滤器,其特征在于:所述板状刮部采用钢丝网制成。
  6. 根据权利要求1所述的一种高效全自动污水过滤器,其特征在于:所述箱体顶部设置顶盖,所述排污槽顶部设置排污罩,所述顶盖和排污罩均采用透明材质。
  7. 根据权利要求1所述的一种高效全自动污水过滤器,其特征在于:所述支腿底部安装滚轮,所述滚轮具有锁死机构。
  8. 根据权利要求3所述的一种高效全自动污水过滤器,其特征在于:所述横向固定板和板状刮部之间安装可拆卸的钢丝网。
  9. 根据权利要求1所述的一种高效全自动污水过滤器,其特征在于:所述净水箱的底部设置为倾斜面,倾斜面的最低处与净水管连通。
  10. 根据权利要求2所述的一种高效全自动污水过滤器,其特征在于:所述排污槽的底部还设置出水口,所述出水口处安装可拆卸的钢丝网。
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