A sewage stamping depth processor for an ionized sponge
By designing a sewage treatment device that combines stamping box and push plate, the problem of pollutants accumulation on the surface of ionized sponges is solved, automatic flushing and efficient filtration are achieved, and the service life of the sponges is extended.
Patent Information
- Application Number
- CN202311785815.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-25
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2043-12-25
AI Technical Summary
In the existing ionized sponge sewage treatment machines, pollutants are easily accumulated on the surface of the sponge, resulting in a decrease in filtration effect and the adsorption effect cannot be fully exerted.
A sewage stamping depth processor including stamping box, cylinder, push plate, cotton frame, valve plate, floating valve and flushing pipe is designed. Through the combination of push plate and flushing pipe, automatic flushing of ionized sponges is realized, reducing the accumulation of surface contaminants and extending the use time.
Effectively prevent water splashing, precipitate particulate matter, prolong the use time of ionized sponges, and improve the filtration speed and effect.
Smart Images

Figure CN117585757B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the field of environmental equipment, and in particular relates to a sewage punching deep processor of an ionized sponge. Background Art
[0002] At present, the country has relatively high requirements for the discharge standards of water after pollution treatment, and the higher the degree of deep treatment of water, the higher the cost. Since the cost of ionized sponges is relatively low and it is relatively easy to desorb. Therefore, ionized sponges have been used more frequently in sewage treatment in recent years. The team previously designed an ionized sponge sewage deep processor (application number 202210198881.7); among them, since the ion sponge is set horizontally, more pollutants will accumulate on the sponge during the filtration process; resulting in low filtration effect of the sponge, and the filtration speed becomes slow; at the same time, the adsorption effect inside the sponge is not fully exerted. Therefore, this patent urgently needs a design that can reduce the accumulation of pollutants on the surface of the ion sponge, achieve a certain degree of automatic flushing, and exert the adsorption effect of the ion sponge. Summary of the invention
[0003] In view of the above-mentioned technical problems, the present invention designs a sewage punching depth processor of ionized sponge on the basis of the above-mentioned patent structure. The processor includes a punching box 1, a bracket 2, a cylinder 3, a push plate 4, a sponge frame 5, a valve plate 6, a float valve 7, a connecting line 8, an ionized sponge 9, and a flushing pipe 10; the punching box 1 is supported on the bracket 2, and the push plate 4 is arranged in the punching box 1; a cylinder 3 is installed on one side of the punching box 1, and the cylinder 3 is connected to the push plate 4; the valve plate 6 is fixed on the punching box 1; the valve plate 6 is connected to the float valve 7, and the front end of the float valve 7 is connected to the push plate 4 through the connecting line 8; the outlet pipe 6.5 of the valve plate 6 is connected to the flushing pipe 10, and the flushing pipe of the flushing pipe 10 is inserted on the pipe inserting rack 1.5.
[0004] The stamping box 1 is square, with side box walls 1.1 on both sides and a rear box wall 1.2 at the rear. The rear box wall 1.2 is higher than the side box walls 1.1 to form a partition board 1.3, and the partition board 1.3 is used to prevent the water in the stamping box 1 from splashing onto the cylinder 3; there are insertion tube racks 1.5 on the two side box walls 1.1; a liquid collecting box 1.4 is arranged at the front of the stamping box 1, and the liquid collecting box 1.4 communicates with the inside of the liquid collecting box 1.4 through a filter hole 1.8. A water outlet 1.15 is arranged at the bottom of the liquid collecting box 1.4; a cotton frame 5 is installed between the liquid collecting box 1.4 and the insertion tube rack 1.5, and a square ionized sponge 9 is installed in the cotton frame 5; the stamping box 1 is recessed downward near the bottom of the liquid collecting box 1.4. A sliding plate 1.7 is arranged at the bottom of the stamping box 1, and a front return hole 1.9 and a rear return hole 1.10 are respectively opened at the front and rear of the sliding plate 1.7; a downward fixing groove 1.11 is arranged between the front return hole 1.9 and the liquid collecting box 1.4 for fixing the cotton frame 5; arc-shaped guide plates 1.12 are respectively arranged at the bottoms of the front return hole 1.9 and the rear return hole 1.10; a box hopper 1.13 is arranged at the bottom of the stamping box 1; a slag discharge valve 1.14 is arranged at the bottom of the box hopper 1.13; support blocks 1.6 are arranged on the outer side of the bottom of the stamping box 1.
[0005] The bracket 2 includes bracket legs 2.1 and a bracket frame 2.2. The bracket frame 2.2 is used to support the support block 1.6 and play a supporting role for the stamping box 1.
[0006] The main body of the cylinder 3 is a cylinder block 3.1, with a pneumatic rod 3.2 installed in the middle. A rod head 3.3 is arranged at the front end of the pneumatic rod 3.2; the rod head 3.3 is connected to the push pressure plate 4; the cylinder 3 is horizontally installed on the rear box wall 1.2.
[0007] The main body of the push pressure plate 4 is a pressure plate body 4.1, and a connecting rod head 4.2 is arranged at the upper part for connecting the rod head 3.3; the connecting rod head 4.2 is further reinforced on the pressure plate body 4.1 through a plate head rib 4.3. A connecting rope button 4.4 is arranged on the pressure plate body 4.1 on one side of the plate head rib 4.3 for fixing one end of the connecting wire 8; sealing plates 4.5 are respectively arranged at the bottom of the pressure plate body 4.1, and the sealing plates 4.5 are used to block the front return hole 1.9; the sealing plates 4.5 are reinforced with the pressure plate body 4.1 through plate ribs 4.6.
[0008] The main body of the cotton frame 5 is a frame board 5.1, and board frame holes 5.2 are arranged on the frame board 5.1. The board frame holes 5.2 correspond to the filter holes 1.8; a lifting opening 5.3 is opened at the top of the frame board 5.1 to facilitate the disassembly and assembly of the cotton frame 5 in the stamping box 1; semi-circular cotton collecting sleeves 5.4 are connected to both sides of the upper part of the frame board 5.1, and the cotton collecting sleeves 5.4 are used to fix the ionized sponge 9; a bent plate hook 5.5 is arranged at the bottom of the frame board 5.1; the plate hook 5.5 is used to hook and drag the ionized sponge 9.
[0009] The valve plate member 6 includes a fixing plate 6.1, on which a screw hole is provided. The fixing plate 6.1 and the cylinder 3 are installed on the rear box wall 1.2 on both sides of the rear box wall 1.2 through screws 11; one end of the fixing plate 6.1 is provided with a valve block 6.2, and a water inlet pipe 6.4 and a water outlet pipe 6.5 are respectively provided at both ends of the valve block 6.2. A valve knob 6.3 is provided on the valve block 6.2, and the valve knob 6.3 is connected to the floating valve 7.
[0010] The main body of the floating valve 7 is a floating ball 7.1; a ball rod 7.2 is connected to the rear end of the floating ball 7.1, and a ball wire knob 7.3 is provided at the front end. The ball wire knob 7.3 is connected to the connecting wire 8; a rod knob 7.4 is provided at the other end of the ball rod 7.2; the rod knob 7.4 is connected to the valve knob 6.3 to activate the valve knob 6.3 to control the opening and closing of water.
[0011] The flushing pipe 10 includes a connecting pipe 10.1, a continuous flushing pipe 10.2, and a flushing pipe 10.3; a plurality of flushing pipes 10.3 are provided at the lower part of the continuous flushing pipe 10.2, and one side of the continuous flushing pipe 10.2 is communicated with the connecting pipe 10.1; the connecting pipe 10.1 is connected to the water outlet pipe 6.5.
[0012] The lengths of the front return hole 1.9 and the rear return hole 1.10 are less than the width of the sliding plate 1.7; the width of the sealing plate 4.5 is greater than the width of the front return hole 1.9; the width of the pressing plate body 4.1 is greater than the width of the front return hole 1.9. After the ionized sponge 9 is compressed by the pushing pressing plate 4, the sealing plate 4.5 can still block the front return hole 1.9 and will not be stuck in the front return hole 1.9 and the fixing groove 1.11.
[0013] When the front surface of the pressing plate body 4.1 of the pushing pressing plate 4 is flush with the opening edge of the front return hole 1.9 on the side close to the cylinder 3, the pushing pressing plate 4 pulls the connecting wire 8 to lift the floating valve 7. At this time, the floating valve 7 does not function to open the valve knob 6.3; from the flush state to the state where the pushing pressing plate 4 compresses the ionized sponge 9, the floating valve 7 does not function to open the valve knob 6.3. When the pressing plate body 4.1 of the pushing pressing plate 4 is between the front return hole 1.9 and the rear return hole 1.10, the floating valve 7 is controlled by the liquid level height to open the valve knob 6.3.
[0014] When the floating valve 7 is in a horizontal state, the pneumatic rod 3.2 pulls back the pushing pressing plate 4 to a degree that it does not touch the floating valve 7.
[0015] The beneficial technical effects of the present invention are:
[0016] The various inventive points of the present application will be further elaborated in combination with the technical features and effects: (1) In the present invention, the flushing pipe is arranged at the upper side of the sponge, and the flushing pipe radially flushes the contaminants remaining on the sponge; this may cause the water in the flushing pipe to splash onto the pressing plate during the process of pressing the ionized sponge by the pressing plate, resulting in water splashing out of the stamping box; herein, one end of the float valve in the present invention is connected to the rear box wall, and the other end is connected to a connecting wire, and the connecting wire is connected to the pressing plate; through this design, water splashing out of the stamping box can be prevented. (2) In this study, a front return hole and a rear return hole are provided on the sliding plate. During the process of the pressing plate moving towards the ionized sponge, the liquid in the middle enters the box hopper through the front return hole, and the liquid in the box hopper enters the upper side of the sliding plate through the rear return hole; after the pressing plate retracts, the liquid between the pressing plate and the rear box wall enters the box hopper through the rear return hole, and the liquid in the box hopper enters between the pressing plate and the ionized sponge through the front return hole; at the same time, guide plates are provided at the lower parts of both the front return hole and the rear return hole, and there is a certain distance between the guide plates. During the repeated backflow process of the liquid, the particulate matter in the liquid precipitates to the bottom of the box hopper under the action of gravity, and the particulate residue can be unloaded and removed through the slag discharge valve. (3) In the present application, the surface residue of the ionized sponge is flushed in two ways, namely, through the pressing plate and the flushing pipe; both the water inlet and the process of squeezing the ionized sponge are flushed; the two do not conflict with each other, which can extend the service time of the ionized sponge and improve the filtration speed of the ionized sponge. (4) A sealing plate is provided at the bottom of the pressing plate in the present invention, and the width of the sealing plate is greater than that of the front return hole. When the pressing plate presses the ionized sponge, the sealing plate still blocks the front return hole; this prevents the pressing plate from being stuck due to the design of the front return hole and the fixed groove, enabling the device to filter smoothly. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 Perspective view of a sewage stamping depth processor for an ionized sponge;
[0018] Figure 2 Explosion diagram of a sewage stamping depth processor for an ionized sponge;
[0019] Figure 3 Oblique top view of a sewage stamping depth processor for an ionized sponge;
[0020] Figure 4 Partial cross-sectional view of a sewage stamping depth processor for an ionized sponge;
[0021] Figure 5 Oblique top view of the stamping box;
[0022] Figure 6 Partial cross-sectional view of the stamping box;
[0023] Figure 7 Oblique top view of the bracket and the cylinder;
[0024] Figure 8 It is an inclined top view of the push plate and the cotton frame;
[0025] Figure 9 It is a schematic structural diagram of the valve plate part and the floating valve;
[0026] Figure 10 It is a schematic structural diagram of the flushing pipe.
[0027] In the figure, 1 - stamping box, 2 - bracket, 3 - cylinder, 4 - push plate, 5 - cotton frame, 6 - valve plate part, 7 - floating valve, 8 - connecting wire, 9 - ionized sponge, 10 - flushing pipe, 11 - screw; 1.1 - side box wall, 1.2 - rear box wall, 1.3 - partition board, 1.4 - liquid collecting box, 1.5 - inserting pipe rack, 1.6 - support block, 1.7 - sliding plate, 1.8 - filter hole, 1.9 - front return hole, 1.10 - rear return hole, 1.11 - fixing groove, 1.12 - guide plate, 1.13 - box hopper, 1.14 - slag discharge valve, 1.15 - water outlet, 2.1 - bracket leg, 2.2 - bracket frame, 3.1 - cylinder body, 3.2 - pneumatic rod, 3.3 - rod head, 4.1 - press plate body, 4.2 - connecting rod head, 4.3 - plate head rib, 4.4 - connecting rope button, 4.5 - sealing plate, 4.6 - plate rib, 5.1 - frame plate, 5.2 - plate frame hole, 5.3 - lifting opening, 5.4 - cotton receiving sleeve, 5.5 - plate hook, 6.1 - fixing plate, 6.2 - valve block, 6.3 - valve button, 6.4 - water inlet pipe, 6.5 - water outlet pipe, 7.1 - floating ball, 7.2 - ball rod, 7.3 - ball wire button, 7.4 - rod button, 10.1 - connecting pipe, 10.2 - continuous flushing pipe, 10.3 - flushing pipe. Specific embodiments
[0028] The following further describes the specific structure of the present invention in conjunction with the appended Figures 1-9 and embodiments: The processor includes a stamping box 1, a bracket 2, a cylinder 3, a push plate 4, a cotton frame 5, a valve plate part 6, a floating valve 7, a connecting wire 8, an ionized sponge 9, and a flushing pipe 10; The stamping box 1 is supported on the bracket 2, and the push plate 4 is arranged in the stamping box 1; A cylinder 3 is installed on one side of the stamping box 1, and the cylinder 3 is connected to the push plate 4; The valve plate part 6 is fixed on the stamping box 1; The valve plate part 6 is connected with a floating valve 7, and the front end of the floating valve 7 is connected to the push plate 4 through a connecting wire 8; The water outlet pipe 6.5 of the valve plate part 6 is connected to the flushing pipe 10, and the flushing pipe 10.3 of the flushing pipe 10 is inserted on the inserting pipe rack 1.5.
[0029] The stamping box 1 is square, with side box walls 1.1 on both sides and a rear box wall 1.2 at the rear. The rear box wall 1.2 is higher than the side box walls 1.1 to form a partition board 1.3, and the partition board 1.3 is used to prevent the water in the stamping box 1 from splashing onto the cylinder 3; there are insertion tube racks 1.5 on the two side box walls 1.1; a liquid collection box 1.4 is arranged at the front of the stamping box 1, and the liquid collection box 1.4 communicates with the inside of the liquid collection box 1.4 through a filter hole 1.8. A water outlet 1.15 is arranged at the bottom of the liquid collection box 1.4; a cotton frame 5 is installed between the liquid collection box 1.4 and the insertion tube rack 1.5, and a square ionized sponge 9 is installed in the cotton frame 5; the stamping box 1 is recessed downward near the bottom of the liquid collection box 1.4. A sliding plate 1.7 is arranged at the bottom of the stamping box 1, and a front return hole 1.9 and a rear return hole 1.10 are respectively opened at the front and rear of the sliding plate 1.7; a downward fixing groove 1.11 is arranged between the front return hole 1.9 and the liquid collection box 1.4 for fixing the cotton frame 5; arc-shaped guide plates 1.12 are respectively arranged at the bottoms of the front return hole 1.9 and the rear return hole 1.10; a box hopper 1.13 is arranged at the bottom of the stamping box 1; a slag discharge valve 1.14 is arranged at the bottom of the box hopper 1.13; a support block 1.6 is arranged on the outer side of the bottom of the stamping box 1.
[0030] The bracket 2 includes bracket legs 2.1 and a bracket frame 2.2. The bracket frame 2.2 is used to support the support block 1.6 and plays a supporting role for the stamping box 1.
[0031] The main body of the cylinder 3 is a cylinder block 3.1, with a pneumatic rod 3.2 installed in the middle. A rod head 3.3 is arranged at the front end of the pneumatic rod 3.2; the rod head 3.3 is connected to the push pressing plate 4; the cylinder 3 is horizontally installed on the rear box wall 1.2.
[0032] The main body of the push pressing plate 4 is a pressing plate body 4.1, and a connecting rod head 4.2 is arranged on its upper part for connecting the rod head 3.3; the connecting rod head 4.2 is further reinforced on the pressing plate body 4.1 through a plate head rib 4.3. A connecting rope button 4.4 is arranged on the pressing plate body 4.1 on one side of the plate head rib 4.3 for fixing one end of the connecting wire 8; sealing plates 4.5 are respectively arranged at the bottom of the pressing plate body 4.1, and the sealing plates 4.5 are used to block the front return hole 1.9; the sealing plates 4.5 are reinforced with the pressing plate body 4.1 through plate ribs 4.6.
[0033] The main body of the cotton frame 5 is a frame board 5.1, and plate frame holes 5.2 are arranged on the frame board 5.1. The plate frame holes 5.2 correspond to the filter holes 1.8; a lifting opening 5.3 is opened at the top of the frame board 5.1 to facilitate the disassembly and assembly of the cotton frame 5 in the stamping box 1; semi-circular cotton receiving sleeves 5.4 are connected to both sides of the upper part of the frame board 5.1, and the cotton receiving sleeves 5.4 are used to fix the ionized sponge 9; a bent plate hook 5.5 is arranged at the bottom of the frame board 5.1; the plate hook 5.5 is used to hook and drag the ionized sponge 9.
[0034] The valve plate member 6 includes a fixing plate 6.1, on which a screw hole is provided. The fixing plate 6.1 and the cylinder 3 are installed on the rear box wall 1.2 on both sides of the rear box wall 1.2 through screws 11; one end of the fixing plate 6.1 is provided with a valve block 6.2, and a water inlet pipe 6.4 and a water outlet pipe 6.5 are respectively arranged at both ends of the valve block 6.2. A valve knob 6.3 is arranged on the valve block 6.2, and the valve knob 6.3 is connected to the floating valve 7.
[0035] The main body of the floating valve 7 is a floating ball 7.1; a ball rod 7.2 is connected to the rear end of the floating ball 7.1, and a ball wire knob 7.3 is arranged at the front end. The ball wire knob 7.3 is connected to the connecting wire 8; a rod knob 7.4 is arranged at the other end of the ball rod 7.2; the rod knob 7.4 is connected to the valve knob 6.3 to start the valve knob 6.3 to control the opening and closing of water.
[0036] The flushing pipe 10 includes a connecting pipe 10.1, a continuous flushing pipe 10.2, and a flushing pipe 10.3; a plurality of flushing pipes 10.3 are arranged at the lower part of the continuous flushing pipe 10.2, and one side of the continuous flushing pipe 10.2 is communicated with the connecting pipe 10.1; the connecting pipe 10.1 is connected to the water outlet pipe 6.5.
[0037] The lengths of the front return hole 1.9 and the rear return hole 1.10 are less than the width of the slide plate 1.7; the width of the sealing plate 4.5 is greater than the width of the front return hole 1.9; the width of the pressing plate body 4.1 is greater than the width of the front return hole 1.9. After the ionized sponge 9 is compressed by the push pressing plate 4, the sealing plate 4.5 can still block the front return hole 1.9 and will not get stuck in the front return hole 1.9 and the fixing groove 1.11.
[0038] When the front surface of the pressing plate body 4.1 of the push pressing plate 4 is flush with the opening edge of the front return hole 1.9 on the side close to the cylinder 3, the push pressing plate 4 pulls the connecting wire 8 to lift the floating valve 7. At this time, the floating valve 7 does not have the function of opening the valve knob 6.3; from the flush state to the push pressing plate 4 compressing the ionized sponge 9, the floating valve 7 does not have the function of opening the valve knob 6.3. When the pressing plate body 4.1 of the push pressing plate 4 is between the front return hole 1.9 and the rear return hole 1.10, the floating valve 7 is controlled by the liquid level height to open the valve knob 6.3.
[0039] When the floating valve 7 is in a horizontal state, the pneumatic rod 3.2 pulls back the push pressing plate 4 to the extent that it does not touch the floating valve 7.
[0040] The specific operation of the device is as follows:
[0041] The sewage that needs deep treatment is connected to the water inlet pipe 6.4 through a water pipe, and the float valve 7 controls the switch of the valve button 6.3 through the water level; the pneumatic rod 3.2 of the cylinder 3 pushes the push plate 4 to slide in the direction of the ionized sponge 9; the push plate 4 pulls up the float valve 7 through the connecting line 8, at this time, the liquid between the push plate 4 and the ionized sponge 9 will wash the residue on the surface of the ionized sponge 9; when the front end surface of the pressure plate body 4.1 reaches the edge of the front return hole 1.9, the float valve 7 can no longer open the valve button 6.3 by the liquid level, and the valve button 6.3 is in a closed state, the flushing pipe 10 does not enter water, and the ionized sponge 9 is not flushed; the pneumatic rod 3.2 further pushes the push plate 4, first blocking the front return hole 1.9; the push plate 4 contacts the ionized sea When the front return hole 1.9 is completely blocked, the push plate 4 further squeezes the ionized sponge 9, and the water inside the ionized sponge 9 enters the liquid collecting box 1.4 through the plate frame hole 5.2 and the filter hole 1.8; the liquid in the liquid collecting box 1.4 flows out through the water outlet 1.15; the pneumatic rod 3.2 pulls the push plate 4 to slide backward; when the sealing plate 4.5 cannot cover the front return hole 1.9, the liquid will enter between the push plate 4 and the ionized sponge 9 through the front return hole 1.9; the ionized sponge 9 begins to absorb water; when the sealing plate 4.5 is staggered from the front return hole 1.9, the float valve 7 begins to be controlled by the liquid level, and the valve button 6.3 is opened or closed. When it is opened, the flushing pipe 10 begins to take in water and flushes the ionized sponge. The push plate 4 moves back to a certain distance and then enters the next punching and filtering process.
[0042] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. For example, the connection method can adopt a method other than a connection column. Any changes or substitutions that can be easily thought of by a person skilled in the art within the technical scope disclosed by the present invention should be included in the protection scope of the present invention. Therefore, the protection scope of the present invention should be based on the protection scope of the claims.
Claims
1. A sewage stamping depth processor for an ionized sponge, characterized in that, The processor includes a stamping box (1), a bracket (2), a cylinder (3), a push plate (4), a cotton frame (5), a valve plate member (6), a floating valve (7), a connecting wire (8), an ionized sponge (9), and a flushing pipe (10); the stamping box (1) is supported on the bracket (2), and the push plate (4) is arranged inside the stamping box (1); a cylinder (3) is installed on one side of the stamping box (1), and the cylinder (3) is connected to the push plate (4); the valve plate member (6) is fixed on the stamping box (1); the valve plate member (6) is connected with a floating valve (7), and the front end of the floating valve (7) is connected to the push plate (4) through a connecting wire (8); the water outlet pipe (6.5) of the valve plate member (6) is connected to the flushing pipe (10), and the flushing pipe of the flushing pipe (10) is inserted on the inserting pipe rack (1.5); The stamping box (1) is square, with side box walls (1.1) on both sides and a rear box wall (1.2) at the rear. The rear box wall (1.2) is higher than the side box walls (1.1) to form a partition plate (1.3), and the partition plate (1.3) is used to prevent the water in the stamping box (1) from splashing onto the cylinder (3); inserting pipe racks (1.5) are arranged on the two side box walls (1.1); a liquid collecting box (1.4) is arranged at the front of the stamping box (1), and the liquid collecting box (1.4) is communicated with the inner side of the stamping box (1) through a filter hole (1.8). A water outlet (1.15) is arranged at the bottom of the liquid collecting box (1.4); a cotton frame (5) is installed between the liquid collecting box (1.4) and the inserting pipe rack (1.5), and a square ionized sponge (9) is installed inside the cotton frame (5); the stamping box (1) is recessed downward near the bottom of the liquid collecting box (1.4); a sliding plate (1.7) is arranged at the bottom of the stamping box (1), and a front return hole (1.9) and a rear return hole (1.10) are respectively arranged at the front and rear of the sliding plate (1.7); a downward fixing groove (1.11) is arranged between the front return hole (1.9) and the liquid collecting box (1.4) for fixing the cotton frame (5); arc-shaped guide plates (1.12) are respectively arranged at the bottoms of the front return hole (1.9) and the rear return hole (1.10); a box hopper (1.13) is arranged at the bottom of the stamping box (1); a slag discharge valve (1.14) is arranged at the bottom of the box hopper (1.13); a support block (1.6) is arranged on the outer side of the bottom of the stamping box (1); The main body of the push plate (4) is a pressing plate body (4.1), and a sealing plate (4.5) is arranged at the bottom of the pressing plate body (4.1), and the sealing plate (4.5) is used to block the front return hole (1.9); During the movement of the push plate (4) towards the ionized sponge (9), the liquid in the middle will enter the box hopper (1.13) through the front return hole (1.9), and the liquid in the box hopper (1.13) will enter the upper side of the sliding plate (1.7) through the rear return hole (1.10); after the push plate (4) retracts, the liquid between the push plate (4) and the rear box wall will enter the box hopper (1.13) through the rear return hole (1.10), and the liquid in the box hopper (1.13) will enter between the push plate (4) and the ionized sponge (9) through the front return hole (1.9).
2. The sewage stamping depth processor of an ionized sponge according to claim 1, characterized in that The bracket (2) includes bracket legs (2.1) and a bracket frame (2.2). The bracket frame (2.2) is used to mount a support block (1.6) to support the stamping box (1).
3. The sewage stamping depth processor of an ionized sponge according to claim 1, characterized in that The main body of the cylinder (3) is a cylinder block (3.1), in which a pneumatic rod (3.2) is installed. A rod head (3.3) is provided at the front end of the pneumatic rod (3.2); the rod head (3.3) is connected to the push plate (4); the cylinder (3) is horizontally installed on the rear box wall (1.2).
4. The sewage stamping depth processor of an ionized sponge according to claim 1, characterized in that, A connecting rod head (4.2) is provided on the upper part of the push plate (4) for connecting the rod head (3.3); the connecting rod head (4.2) is further reinforced on the pressure plate body (4.1) through a plate head rib (4.3). A connecting rope button (4.4) is provided on the pressure plate body (4.1) on one side of the plate head rib (4.3) for fixing one end of the connecting wire (8); the sealing plate (4.5) is reinforced with the pressure plate body (4.1) through a plate rib (4.6).
5. The sewage stamping depth processor of an ionized sponge according to claim 1, characterized in that, The main body of the cotton frame (5) is a frame plate (5.1). Plate frame holes (5.2) are provided on the frame plate (5.1), and the plate frame holes (5.2) correspond to the filter holes (1.8); a lifting opening (5.3) is provided at the top of the frame plate (5.1) to facilitate the disassembly and assembly of the cotton frame (5) in the stamping box (1); semi-circular cotton receiving sleeves (5.4) are connected to both sides of the upper part of the frame plate (5.1), and the cotton receiving sleeves (5.4) are used to fix the ionized sponge (9); a bent plate hook (5.5) is provided at the bottom of the frame plate (5.1); the plate hook (5.5) is used to hook and drag the ionized sponge (9).
6. The sewage stamping depth processor of an ionized sponge according to claim 1, characterized in that, The valve plate member (6) includes a fixing plate (6.1). A screw hole is provided on the fixing plate (6.1). The fixing plate (6.1) and the cylinder (3) are installed on the rear box wall (1.2) on both sides of the rear box wall (1.2) through screws (11). One end of the fixing plate (6.1) is provided with a valve block (6.2). A water inlet pipe (6.4) and a water outlet pipe (6.5) are respectively provided at both ends of the valve block (6.2). A valve button (6.3) is provided on the valve block (6.2), and the valve button (6.3) is connected to the floating valve (7).
7. An ionized sponge sewage stamping depth processor according to claim 6, characterized in that, The main body of the floating valve (7) is a floating ball (7.1); a ball rod (7.2) is connected to the rear end of the floating ball (7.1), and a ball wire button (7.3) is provided at the front end. The ball wire button (7.3) is connected to the connecting wire (8); a rod button (7.4) is provided at the other end of the ball rod (7.2); the rod button (7.4) is connected to the valve button (6.3) to activate the valve button (6.3) to control the opening and closing of the water.
8. The sewage stamping depth processor of an ionized sponge according to claim 1, characterized in that, The flushing pipe (10) includes a connecting pipe (10.1), a continuous flushing pipe (10.2), and a flushing pipe (10.3); a plurality of flushing pipes (10.3) are provided below the continuous flushing pipe (10.2), and one side of the continuous flushing pipe (10.2) is communicated with the connecting pipe (10.1); the connecting pipe (10.1) is connected to the water outlet pipe (6.5).
Citation Information
Patent Citations
Wastewater treating device
CN107243182A
Advanced sewage treatment device of ionized sponge
CN114560526A