Novel steel slag pressure hot fumigation turbidity ring water tank

By introducing a suction cleaning mechanism and a blocking and scraping mechanism into the water storage tank, the sludge is automatically cleaned, solving the problem of blockage caused by sludge accumulation at the bottom of the water storage tank, and improving processing efficiency and safety.

CN118993191BActive Publication Date: 2026-02-17NANJING IRON & STEEL CO LTD
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Patent Information

Application Number
CN202411181594.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2026-02-17
Estimated Expiration
2044-08-27

AI Technical Summary

Technical Problem

In the existing process of treating the turbid circulating water of hot slag from converter steel slag, the accumulation of silt at the bottom of the water storage tank causes blockages in the water pumps and pipes, and cleaning requires manual operation, which poses safety risks and high labor intensity.

Method used

A novel pressurized heated sludge-filled ring water storage tank for steel slag is designed, employing a suction cleaning mechanism and a blocking and scraping mechanism. Through the cooperation of suction pipes and flushing nozzles, automated sludge removal is achieved, avoiding manual intervention.

Benefits of technology

It improved the treatment efficiency of the water storage tank, reduced the labor intensity and safety risks of sludge removal, and ensured the normal operation of water pumps and pipelines.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application belongs to the technical field of turbid circulating water treatment, and particularly relates to a novel steel slag pressure hot sweating turbid circulating water storage pool, which comprises a treatment pool, a standby pool arranged on one side of the treatment pool, a water inlet pipe communicated with the upper side wall of the treatment pool, and a guide rail frame horizontally arranged on the upper side wall of the treatment pool, wherein a door-shaped sliding frame is arranged on the guide rail frame, a suction cleaning mechanism is suspendedly arranged on the door-shaped sliding frame, the suction cleaning mechanism comprises a main pipeline, suction pipes and flushing nozzles, the main pipeline is arranged below the door-shaped sliding frame, a plurality of suction pipes are communicated with the outer ring surface of the main pipeline along the length direction of the main pipeline, a plurality of flushing nozzles are also circumferentially and arrayed communicated with the main pipeline, and the plurality of flushing nozzles and the plurality of suction pipes are symmetrically arranged along the axis of the main pipeline; the present application does not need to clean the sludge accumulated at the bottom of the treatment pool by manual cleaning, thereby improving the efficiency of the back-and-forth switching use of the standby pool and the treatment pool, and improving the efficient treatment of the collected backwater in the treatment pool.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of turbid circulating water treatment, in particular to a new type of steel slag pressure hot smothering turbid circulating water storage pool. BACKGROUND

[0002] The converter steel slag hot smothering turbid circulating water treatment mainly collects the backwater of the converter steel slag roller crushing water, the steel slag pressure hot smothering water and the roller pressure dust removal system water, and then removes the suspended solids, and then sends the treated water to the user for recycling.

[0003] The converter steel slag hot smothering turbid circulating water treatment mainly collects the backwater of the converter steel slag roller crushing water, the steel slag pressure hot smothering water and the roller pressure dust removal system water, and then removes the suspended solids, and then sends the treated water to the user for recycling. SUMMARY

[0004] To solve the above technical problems, the present application is realized by the following technical scheme:

[0005] The present application is a new type of steel slag pressure hot smothering turbid circulating water storage pool, which comprises a treatment pool, a standby pool arranged on one side of the treatment pool, a water inlet pipe communicated with the upper side wall of the treatment pool, and a guide rail frame horizontally fixed on the upper side wall of the treatment pool, a door-shaped sliding frame slidingly arranged on the guide rail frame, a suction cleaning mechanism suspendedly installed on the door-shaped sliding frame, the suction cleaning mechanism comprising a main pipe, a suction pipe and a flushing nozzle, the main pipe being located below the door-shaped sliding frame, a plurality of suction pipes being communicated with the outer circle surface of the main pipe along the length direction thereof, a plurality of flushing nozzles being circumferentially arrayed and communicated with the main pipe, and the plurality of flushing nozzles and the plurality of suction pipes being symmetrically installed along the axis of the main pipe.

[0006] Further, the suction cleaning mechanism further comprises a through pipe, a soft water pipe, a communication pipe and a lifting adjusting assembly, the through pipe being inserted into the main pipe, one end of the through pipe being connected with the soft water pipe after extending out of the rear end surface of the main pipe, the other end of the soft water pipe being connected with the pump body through the communication pipe, and the main pipe being suspendedly installed on the door-shaped sliding frame through the lifting adjusting assembly.

[0007] Further, the lifting adjusting assembly comprises electric telescopic rods, a door-shaped mounting frame, a rotating shaft rod, a rotating pipe, a driving gear and a driven gear, rod bodies of the at least two electric telescopic rods are vertically fixed on a crossbeam of the door-shaped mounting frame, piston rods of the electric telescopic rods are connected to the crossbeam of the door-shaped mounting frame, two ends of the main pipe are rotatably connected to vertical frames of the door-shaped mounting frame through the rotating shaft rod and the rotating pipe respectively, a through pipe is rotatably inserted into the rotating pipe, a driven gear is fixedly sleeved on the rotating shaft rod, a driving gear is engaged above the driven gear, and the driving gear is connected with an output shaft of a servo motor fixed on the vertical frame of the door-shaped mounting frame.

[0008] Further, the other end of the through pipe is inserted into the main pipe and is rotatably connected to the rotating shaft rod, a filter screen is fixed on the through pipe, the filter screen is rotatably and tightly contacted with the inner wall of the main pipe through a silica gel sealing strip, a strip-shaped slot is formed in the through pipe, and the opening of the strip-shaped slot faces upward, and the filter screen is located below the strip-shaped slot.

[0009] Further, blocking and scraping mechanisms are arranged on both sides of the door-shaped mounting frame, the blocking and scraping mechanisms comprise hinged seats, hinged blocks, connecting square rods, electric telescopic swing rods, supporting shaft rods, supporting sleeves and long plates, two hinged seats are arranged on left and right side surfaces of each vertical frame of the door-shaped mounting frame, a connecting square rod is horizontally arranged on the lower hinged seat through a hinge shaft, a hinged block is hingedly arranged on the upper hinged seat through a hinge shaft, the hinged block on the upper hinged seat is connected with a cylinder body of an inclined electric telescopic swing rod, a hinged seat is also fixed on an end surface of the connecting square rod away from the vertical frame, and the hinged seat is connected with an end surface of a piston rod of the electric telescopic swing rod through a hinge shaft and a hinged block, a supporting shaft rod is rotatably arranged between the connecting square rods through a bearing, a supporting sleeve is fixedly sleeved on the supporting shaft rod, and two long plates are symmetrically fixed on the supporting sleeve, and a servo motor for driving the supporting shaft rod to rotate is fixed on an outer surface of one of the connecting square rods.

[0010] Further, annular mounting plates are fixed on outer circumferential surfaces of both ends of the main pipe, symmetrically-inserted square holes are formed in the annular mounting plate near the driven gear, and vertical notched grooves are symmetrically formed in the annular mounting plate on the other side, the symmetrically-inserted square holes and the notched grooves are located on both sides of the flushing nozzle, a connecting long plate is arranged between the symmetrically-inserted square holes and the notched grooves on the annular mounting plates, a brush strip is vertically arranged on the connecting long plate along a length direction of the connecting long plate, and the length of the brush strip is greater than the length of the flushing nozzle, and a detachable mounting assembly for fixing the connecting long plate is arranged on the annular mounting plate on the rear side.

[0011] Further, the dismounting and mounting assembly comprises a T-shaped sliding block, locking screws, a supporting strip and L-shaped clamping blocks, the T-shaped sliding block is connected to the connecting strip in the notch groove, and the horizontal block of the T-shaped sliding block is attached to the side of the annular mounting plate, the locking screws are threadedly connected between the symmetric notch grooves, the supporting strip is rotatably sleeved on the locking screws, and the two end portions of the supporting strip are connected to the outer side of the vertical block of the L-shaped clamping block, the horizontal block of the L-shaped clamping block is slidably inserted into the notch groove and in contact with the end face of the T-shaped sliding block, and the inner side of the L-shaped clamping block is attached to the outer side of the horizontal block of the T-shaped sliding block.

[0012] Further, the dismounting and mounting assembly further comprises a supporting spring, the supporting spring is sleeved on the locking screw rod, one end of the supporting spring is connected to the outer side of the annular mounting plate, and the other end of the supporting spring is in abutment with the supporting strip.

[0013] The present application has the following advantages:

[0014] The present application has the following advantages:

[0015] The present application has the following advantages:

[0016] Of course, implementing any product of the present application does not necessarily require all the advantages described above to be achieved at the same time. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed for the description of the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative effort.

[0018] Figure 1 The overall structural schematic diagram of the present application is disclosed.

[0019] Figure 2 The assembly diagram of the door-shaped slide and the door-shaped mounting frame of the present application is disclosed.

[0020] Figure 3 The assembly diagram of the door-shaped mounting frame and the main pipe of the present application is disclosed.

[0021] Figure 4 The structural schematic diagram of the blocking and scraping mechanism of the present application is disclosed.

[0022] Figure 5 The structural schematic diagram of the main pipe of the present application is disclosed.

[0023] Figure 6 The assembly diagram of the dismounting and mounting assembly and the connecting long strip of the present application is disclosed.

[0024] Figure 7 The sectional view of the main pipe of the present application is disclosed.

[0025] In the drawings: 1, treatment pool; 2, standby pool; 3, guide rail frame; 4, door-shaped slide; 5, suction cleaning mechanism; 51, main pipe; 52, suction pipe; 53, flushing nozzle; 54, through pipe; 541, strip-shaped notch; 55, soft water pipe; 56, communication conduit; 57, filter screen; 6, lifting adjusting assembly; 61, electric telescopic rod; 62, door-shaped mounting frame; 63, rotating shaft rod; 64, rotating pipe; 65, driving gear; 66, driven gear; 7, blocking and scraping mechanism; 71, hinged seat; 72, hinged block; 73, connecting square rod; 74, electric telescopic swing rod; 75, supporting shaft rod; 76, supporting sleeve; 77, long strip plate; 8, annular mounting plate; 81, plug-in square hole; 82, notched groove; 83, connecting long strip; 84, brush strip; 9, dismounting and mounting assembly; 91, T-shaped sliding block; 92, locking screw; 93, supporting long strip; 94, L-shaped clamping block; 95, supporting spring. DETAILED DESCRIPTION

[0026] Clearly, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0027] In the description of the present application, it should be understood that the terms "opening", "upper", "lower", "thickness", "top", "middle", "length", "inner", "periphery" and the like indicate the orientation or positional relationship, and are only used to facilitate the description of the present application and simplify the description, and do not indicate or imply that the referred components or elements must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.

[0028] Please refer to Figures 1-7 As shown in the drawings, the present application is a new type of steel slag pressure hot smelting turbidity ring water storage tank, including a treatment tank 1, a standby tank 2 placed on one side of the treatment tank 1, a water inlet pipe is communicated above the side wall of the treatment tank 1, and a guide rail frame 3 is horizontally fixed above the front and rear side walls of the treatment tank 1, a door-shaped sliding frame 4 is slidably arranged on the guide rail frame 3, a suction cleaning mechanism 5 is suspended and installed on the door-shaped sliding frame 4, the suction cleaning mechanism 5 includes a main pipe 51, a suction pipe 52 and a flushing nozzle 53, the main pipe 51 is located below the door-shaped sliding frame 4, and a plurality of suction pipes 52 are communicated along the length direction of the outer ring surface of the main pipe 51, a plurality of flushing nozzles 53 are also circumferentially arrayed and communicated to the main pipe 51, and the plurality of flushing nozzles 53 and the plurality of suction pipes 52 are symmetrically installed along the axis of the main pipe 51;

[0029] In the scheme of the embodiment, therefore, the application is provided with a standby pool 2 on one side of the treatment pool 1. When the sludge deposited in the treatment pool 1 needs to be cleaned, the door-shaped carriage 4 is pushed to slide on the guide rail frame 3 to a designated position, and then the main pipe 51 is driven to descend into the standby pool 2 by the suction cleaning mechanism 5, and the plurality of suction pipes 52 are inserted into the treated wastewater, and then the water pump installed at the standby pool 2 is controlled to work, so that the treated wastewater in the treatment pool 1 is transferred to the standby pool 2 through the main pipe 51 and the suction pipes 52 for cooling and filtering, and at the same time, the main pipe 51 drives the plurality of suction pipes 52 to descend synchronously with the wastewater level, so that the treated wastewater in the treatment pool 1 can be fully transported into the standby pool 2, and then the main pipe 51 is controlled to rotate, so that the plurality of flushing nozzles 53 are rotated downward to correspond to the bottom of the treatment pool 1, and then the treated wastewater transported in the standby pool 2 is sent into the main pipe 51 by another set of water pumps, and at this time, the electromagnetic valves on the plurality of suction pipes 52 are closed, and the electromagnetic valves on the plurality of flushing nozzles 53 are opened, so that the wastewater entering the main pipe 51 can perform high-pressure cleaning on the sludge accumulated on the bottom of the treatment pool 1 through the plurality of flushing nozzles 53, and the door-shaped carriage 4 sliding on the guide rail frame 3 can drive the plurality of flushing nozzles 53 to perform high-pressure water cleaning on different positions of the bottom of the treatment pool 1, so that the sludge accumulated on the bottom of the treatment pool 1 can be fully and quickly cleaned without manual cleaning inside the treatment pool 1, and when the treatment pool 1 is cleaned, the wastewater cooled and filtered in the standby pool 2 can continue to be transported into the main pipe 51 by the suction cleaning mechanism 5, and at this time, the pipe openings of the plurality of suction pipes 52 are rotated downward, and the electromagnetic valves are opened, and the plurality of flushing nozzles 53 are rotated upward, and the electromagnetic valves are closed, so that the treated wastewater in the main pipe 51 can return to the cleaned treatment pool 1 for use by the water pump house, and therefore, the suction cleaning mechanism 5, the plurality of suction pipes 52 and the flushing nozzles 53 symmetrically installed on the main pipe 51 can quickly transport the treated wastewater in the treatment pool 1 to the standby pool 2 for cooling and filtering, and the main pipe 51 can drive the plurality of flushing nozzles 53 downward to quickly and efficiently flush the sludge accumulated on the bottom of the treatment pool 1, and the sludge after flushing can be discharged through the waste pipe connected to the bottom of the treatment pool 1, so that it is not necessary to separately provide a water suction mechanism and a cleaning mechanism between the treatment pool 1 and the standby pool 2, and manual cleaning of the sludge accumulated on the bottom of the treatment pool 1 is not necessary, so that the efficiency of switching between the standby pool 2 and the treatment pool 1 can be improved, and the collected wastewater in the treatment pool 1 can be efficiently treated.

[0030] In the embodiment, the suction cleaning mechanism 5 further comprises a guide pipe 54, a soft water pipe 55, a communication pipe 56 and a lifting adjusting assembly 6, the guide pipe 54 is inserted into the main pipe 51, one end of the guide pipe 54 is connected with the soft water pipe 55 which extends out of the end face of the main pipe 51, the other end of the soft water pipe 55 extends into the standby pool 2 through the communication pipe 56, and a pump body is connected to the communication pipe 56, the main pipe 51 is suspended and installed on the door-shaped sliding frame 4 through the lifting adjusting assembly 6;

[0031] In the design scheme of the embodiment, the water pump on the communication pipe 56 can act on the main pipe 51 through the soft water pipe 55 and the guide pipe 54, so that the plurality of suction pipes 52 can suck the treated wastewater in the treatment pool 1 into the standby pool 2, and at the same time, the treated wastewater in the standby pool 2 can be returned to the treatment pool 1 for normal use, and the lifting adjusting assembly 6 drives the main pipe 51 to rise and fall in the treatment pool 1, so that the plurality of suction pipes 52 can rise or fall synchronously with the liquid level in the treatment pool 1, so that the treated wastewater can be quickly transported or returned, and when the plurality of flushing nozzles 53 are driven downward by the main pipe 51, the lifting adjusting assembly 6 also drives the main pipe 51 to rise or fall, so that the plurality of flushing nozzles 53 can fully flush the sludge accumulated at the bottom of the treatment pool 1.

[0032] In the embodiment, the lifting adjusting assembly 6 comprises electric telescopic rods 61, a door-shaped mounting frame 62, a rotating shaft rod 63, a rotating pipe 64, a driving gear 65 and a driven gear 66, the rod bodies of the at least two electric telescopic rods 61 are vertically fixed on the cross beam of the door-shaped sliding frame 4, and the piston rods thereof are connected to the cross beam of the door-shaped mounting frame 62, the two ends of the main pipe 51 are respectively rotatably installed on the vertical frame of the door-shaped mounting frame 62 through the rotating shaft rod 63 and the rotating pipe 64, the guide pipe 54 is rotatably inserted into the rotating pipe 64, the driven gear 66 is fixedly sleeved on the rotating shaft rod 63, and the driving gear 65 is engaged above the driven gear 66, and the driving gear 65 is connected with the output shaft of the servo motor fixed on the vertical frame of the door-shaped mounting frame 62;

[0033] In the scheme of the embodiment, the piston rod of the electric telescopic rod 61 extends or retracts to drive the door-shaped mounting frame 62 to move up and down, and the through pipe 54 is communicated with the communication pipe 56 through the soft water pipe 55, so as not to interfere with the normal lifting of the main pipe 51, and the main pipe 51 is rotatably installed on the vertical frame through the rotating shaft rod 63 and the rotating pipe 64, so that the output shaft of the servo motor rotates to drive the rotating shaft rod 63 to rotate through the driving gear 65 and the driven gear 66, and then the main pipe 51 drives the suction pipe 52 or the flushing nozzle 53 to rotate downward, so as to suck and discharge the wastewater in the treatment tank 1 or to perform high-pressure flushing treatment on the sludge accumulated at the bottom of the treatment tank 1. Since the through pipe 54 is relatively rotatably inserted into the rotating pipe 64, when the main pipe 51 rotates, the rotating pipe 64 will synchronously rotate, and at this time the through pipe 54 is in a fixed state.

[0034] In the embodiment, the other end of the through pipe 54 is inserted into the main pipe 51 and is sealingly and rotatably connected to the rotating shaft rod 63, a filter screen 57 is fixed on the through pipe 54, the filter screen 57 is rotatably and tightly contacted with the inner wall of the main pipe 51 through a silica gel sealing strip around the sidewall of the filter screen 57, a strip-shaped slot 541 is formed in the through pipe 54, the opening of the strip-shaped slot 541 faces upward, and the filter screen 57 is located below the strip-shaped slot 541.

[0035] In the scheme of the embodiment, since the nozzle of the flushing nozzle 53 is small, and in order to prevent the particles mixed in the waste water entering the main pipe 51 from blocking the plurality of flushing nozzles 53, a filter screen 57 is installed in the main pipe 51, and the filter screen 57 is fixed on the guide pipe 54. When the plurality of suction pipes 52 need to suck and discharge the treated waste water in the treatment tank 1, at this time the guide pipe 54 will generate suction force on the main pipe 51 through the upwardly opened strip-shaped slot 541, so that the waste water in the treatment tank 1 will be sucked into the main pipe 51 through the plurality of suction pipes 52. Since the filter screen 57 is located below the strip-shaped slot 541, it will intercept the particles mixed in the waste water entering the main pipe 51 below the filter screen 57, so that the particles will not enter the space above the filter screen 57 where the flushing nozzles 53 are located, preventing the suction of the waste water mixed with particles into the space above the filter screen 57 from blocking the nozzles of the plurality of flushing nozzles 53. When the plurality of flushing nozzles 53 need to flush the sludge accumulated at the bottom of the treatment tank 1, at this time the waste water to be cleaned is first injected into the main pipe 51 through the guide pipe 54 and the strip-shaped slot. At this time, the waste water will first discharge the particles accumulated below the filter screen 57 from the main pipe 51 into the treatment tank 1 through the suction pipe 52, and then drive the main pipe 51 to rotate so that the plurality of flushing nozzles 53 are downward, and the corresponding electromagnetic valve is opened, and the plurality of suction pipes 52 are upward, and the corresponding electromagnetic valve is closed. Therefore, the particles mixed in the waste water entering the main pipe 51 through the strip-shaped slot 541 will be intercepted above the filter screen 57, and the filtered waste water will pass through the filter screen 57 to the plurality of flushing nozzles 53, so that the flushing nozzles 53 can quickly spray the filtered and intercepted waste water to the bottom of the treatment tank 1 for flushing treatment. Not only does it not need to use flushing water to flush the bottom of the treatment tank 1 separately, but also it will not cause the plurality of flushing nozzles 53 to be blocked due to the particles mixed in the waste water transported in the standby tank 2. When the treatment tank 1 is flushed, the corresponding electromagnetic valve of the flushing nozzle 53 is closed first, then the corresponding electromagnetic valve of the plurality of suction pipes 52 with the nozzle upward is opened, and then the waste water in the standby tank 2 is continuously injected into the main pipe 51 through the guide pipe 54 and the strip-shaped slot 541, so that the particles intercepted above the filter screen 57 can be discharged through the plurality of suction pipes 52, preventing the particles accumulated above the filter screen 57 from entering the flushing nozzles 53 when the flushing nozzles 53 are rotated upward, and causing the flushing nozzles 53 to be blocked when the waste water is sucked into the main pipe 51 through the suction pipe 52. The filter screen 57 is sealed and fitted with the wall of the main pipe 51 around the filter screen 57 through the silicone seal strip, so that when the main pipe 51 rotates, the particles intercepted by the filter screen 57 will not cause the phenomenon of cross flow.

[0036] In the embodiment, the door-shaped mounting frame 62 is provided with blocking scraping mechanisms 7 on both sides, each of which comprises a hinged seat 71, a hinged block 72, a connecting square rod 73, an electric telescopic swing rod 74, a supporting shaft rod 75, a supporting sleeve 76 and a long strip plate 77. Two hinged seats 71 are mounted on the left and right sides of the two vertical frames of the door-shaped mounting frame 62. A connecting square rod 73 is horizontally mounted on the lower hinged seat 71 through a hinge shaft. A hinged block 72 is hinged to the upper hinged seat 71 through a hinge shaft. The hinged block 72 on the upper side is connected with the cylinder body of the inclined electric telescopic swing rod 74. The end surface of the piston rod of the electric telescopic swing rod 74 is also connected with the hinged seat 71 on the upper surface of the end of the connecting square rod 73 away from the vertical frame through a hinge shaft and a hinged block 72. The connecting square rods 73 are symmetrically connected with the piston rod end surface of the electric telescopic swing rod 74 through a hinge shaft and a hinged block 72. The supporting shaft rod 75 is rotatably mounted between the symmetric connecting square rods 73 through a bearing. The supporting sleeve 76 is fixedly sleeved on the supporting shaft rod 75. Two long strip plates 77 are symmetrically fixed on the supporting sleeve 76. A servo motor is fixed on the outer side of one of the connecting square rods 73 to drive the supporting shaft rod 75 to rotate.

[0037] In the scheme of the embodiment, when the plurality of suction pipes 52 are inserted into the wastewater surface of the treatment tank 1 for suction and discharge, the servo motor fixed on the side of the connecting square rod 73 can be controlled to work, so as to drive the support shaft rod 75 to rotate, and then the support sleeve 76 drives the symmetrical long strip plates 77 to rotate to the vertical state, so that the long strip plates 77 on both sides of the door-shaped mounting frame 62 in the vertical state are located on both sides of the main pipeline 51 inserted into the wastewater surface, and then the floating sundries on the wastewater surface in the treatment tank 1 can be blocked and intercepted to prevent entering the main pipeline 51 through the suction pipe 52 to cause the blockage of the filter screen 57, and at the same time, the piston rod of the electric telescopic swing rod 74 can be extended or retracted to drive the connecting square rod 73 to swing up and down, so as to increase the angle or depth of the long strip plates 77 inserted into the liquid surface, thereby improving the blocking and intercepting effect of the long strip plates 77 on the floating impurities on the liquid surface; at the same time, when the main pipeline 51 drives the plurality of washing nozzles 53 to rotate downward to scrape and clean the sludge accumulated on the bottom of the treatment tank 1, the symmetrical long strip plates 77 can be rotated to the vertical state, and the vertical width of the lowered long strip plates 77 is greater than the length of the washing nozzle 53, so that when the washing nozzle 53 washes the sludge adhered to the bottom of the treatment tank 1, the piston rod of the electric telescopic rod 61 can be extended to drive the bottom of the long strip plates 77 in the vertical state to adhere to the bottom of the treatment tank 1 through the door-shaped mounting frame 62, and then when the main pipeline 51 drives the washing nozzle 53 to slide along the length direction of the treatment tank 1, the adhered long strip plates 77 can scrape and clean the sludge adhered to the bottom of the treatment tank 1, and at the same time, cooperating with the high-pressure wastewater sprayed by the washing nozzle 53, the sludge accumulated in the treatment tank 1 can be sufficiently washed and treated, and when the long strip plates 77 are rotated to the vertical state, the distance from the side of the main pipeline 51 is greater than the length of the suction pipe 52 and the washing nozzle 53, so that it does not interfere with the normal rotation of the suction pipe 52 and the washing nozzle 53 driven by the main pipeline 51.

[0038] In the embodiment, the outer ring surface of the both ends of the main pipeline 51 is fixed with an annular mounting plate 8, the annular mounting plate 8 close to the driven gear 66 is provided with symmetrical square insertion holes 81, and the other side of the annular mounting plate 8 is provided with vertical notched grooves 82, the symmetrical notched grooves 82 and square insertion holes 81 are located on both sides of the washing nozzle 53, the connecting long strips 83 are installed between the square insertion holes 81 and notched grooves 82 corresponding to each other on the symmetrical annular mounting plates 8, the brush strips 84 are vertically installed on the connecting long strips 83 along the length direction, and the length of the brush strips 84 is greater than the length of the washing nozzle 53, and the annular mounting plate 8 on the rear side is provided with a dismounting and mounting assembly 9 for fixing the connecting long strips 83;

[0039] In the scheme of the embodiment, when the nozzles 53 need to be rotated downward to flush the sludge accumulated on the bottom of the treatment tank 1, the main pipe 51 drives the nozzles 53 upward, and then one end of the connecting strip 83 installed on the brush strip 84 is inserted into the vertical notch slot 82, and the connecting strip 83 is continuously pushed until the inserted end is inserted into the insertion hole 81 of the other annular mounting plate 8, and the other end of the connecting strip 83 is flush with the outer side of the other annular mounting plate 8, and then the other connecting strip 83 is installed in the same way between the two annular mounting plates 8, and the two brush strips 84 are located on both sides of the nozzles 53, and then the two connecting strips 83 are locked and fixed synchronously by disassembling the mounting assembly 9, and the main pipe 51 is rotated to make the nozzles 53 downward, and the symmetrical brush strips 84 contact the accumulated sludge, and the high-pressure water sprayed by the nozzles 53 flushes the accumulated sludge, and the small-angle reciprocating rotation of the main pipe 51 drives the brush strips 84 to quickly scrape and clean the accumulated sludge on the bottom of the treatment tank 1, thereby further improving the cleaning effect of the sludge on the bottom of the treatment tank 1.

[0040] In the embodiment, the disassembling and mounting assembly 9 includes a T-shaped sliding block 91, a locking screw 92, a supporting strip 93, and an L-shaped clamping block 94. The T-shaped sliding block 91 is connected to the connecting strip 83 in the notch slot 82, and the horizontal block of the T-shaped sliding block 91 is attached to the side of the annular mounting plate 8. The locking screw 92 is threadedly connected between the symmetrical notch slots 82, and the supporting strip 93 is rotatably sleeved on the locking screw 92. The two ends of the supporting strip 93 are connected to the vertical blocks of the L-shaped clamping block 94. The horizontal block of the L-shaped clamping block 94 is slidably inserted into the notch slot 82 and in contact with the end surface of the T-shaped sliding block 91. The inner side of the L-shaped clamping block 94 is attached to the outer side of the horizontal block of the T-shaped sliding block 91.

[0041] In the scheme of the embodiment, when the two connecting strips 83 are respectively inserted into the gap groove 82 and the insertion hole 81, the horizontal block of the T-shaped slider 91 at the end of the connecting strip 83 is attached to the outer side of the annular mounting plate 8, and then the locking screw 92 is turned to press the supporting strip 93 to move close to the side of the annular mounting plate 8, and then the horizontal block of the L-shaped clamping block 94 is inserted into the gap groove 82 and contacts the horizontal block of the T-shaped slider 91, and the vertical block of the L-shaped clamping block 94 is attached to the horizontal block, and then the symmetric L-shaped clamping block 94 and the supporting strip 93 can be combined to abut and fix the connecting strip 83 in the gap groove 82, so that the symmetric brush strips 84 can be fixed and installed on both sides of the washing nozzle 53 to realize the washing and scraping cleaning of the sludge accumulated on the bottom of the treatment tank 1. When the brush strips 84 used for a long time need to be replaced, the plurality of washing nozzles 53 are turned upward by the main pipe 51, and then the locking screw 92 is twisted in the opposite direction to drive the L-shaped clamping block 94 to separate from the attachment and limiting of the gap groove 82 and the T-shaped slider 91 through the supporting strip 93, and since the supporting strip 93 is rotatably installed on the locking screw 92, the supporting strip 93 can be rotated to make the symmetric L-shaped clamping block 94 rotate to a vertical state, so that it does not interfere with the normal extraction and replacement of the connecting strip 83.

[0042] In the embodiment, the dismounting and mounting assembly 9 further comprises a supporting spring 95 sleeved on the locking screw, one end of the supporting spring 95 is connected to the outer side of the annular mounting plate 8, and the other end thereof is in contact with the supporting strip 93. In the scheme of the embodiment, when the locking screw 92 pushes the supporting strip 93 to move close to the side of the annular mounting plate 8, the supporting strip 93 will press the supporting spring 95 to compress it. When the locking screw 92 is loosened, the elastic restoring force of the supporting spring 95 will push the supporting strip 93 to move away from the side of the annular mounting plate 8, so that the L-shaped clamping block 94 can be quickly separated from the gap groove 82, and the connecting strip 83 and the brush strip 84 can be quickly dismounted and replaced.

[0043] In the description of this specification, the description of the terms "one embodiment", "example", "specific example" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the application. In this specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0044] The preferred embodiments of the application disclosed above are only to facilitate the elucidation of the application. The preferred embodiments do not describe all the details of the application and limit the application to the specific embodiments described. Obviously, many modifications and variations can be made in light of the teachings above. The description is chosen and described in order to best explain the principles of the application and its practical application to thereby enable others skilled in the art to best utilize the application and get the best results from the application. The application is only limited by the claims and their full scope and equivalents.

Claims

1. A new type of steel slag hot and pressure sweating turbidity ring water tank under pressure, characterized in that, The utility model provides a kind of water treatment device, including processing pool, spare pool placed in one side of processing pool, the side wall of the processing pool is connected with inlet pipe above, and the front and rear side wall of processing pool is fixed with guide rail frame above, door type carriage is slidably arranged on the guide rail frame, suction cleaning mechanism is suspended and installed on the door type carriage, and the suction cleaning mechanism includes main pipe, suction pipe and flushing nozzle, the main pipe is below the door type carriage, and the outer circle surface of main pipe is connected with multiple suction pipes along its length direction, multiple flushing nozzles are also circumferentially arrayed and connected to main pipe, and multiple flushing nozzles and multiple suction pipes are installed along the axis of main pipe symmetrically; The suction cleaning mechanism further includes a through pipe, a soft water pipe, a communication conduit and a lifting adjustment assembly, the through pipe is inserted into the main pipe, one end of the through pipe is connected with the soft water pipe, the other end of the soft water pipe is inserted into the spare pool through the communication conduit, and the communication conduit is connected with a pump body, the main pipe is suspended and installed on the door type carriage through the lifting adjustment assembly; The lifting adjustment assembly includes an electric telescopic rod, a door type mounting frame, a rotating shaft, a rotating pipe, a driving gear and a driven gear, the rod body of at least two electric telescopic rods is vertically fixed on the crossbeam of the door type carriage, and the piston rod thereof is connected to the crossbeam of the door type mounting frame, the two ends of the main pipe are rotatably installed on the vertical frame of the door type mounting frame through the rotating shaft and the rotating pipe respectively, the through pipe is rotatably inserted into the rotating pipe, the driven gear is fixedly sleeved on the rotating shaft, and the driving gear is engaged above the driven gear, and the output shaft of the servo motor fixedly installed on the vertical frame of the door type mounting frame is connected to the driving gear. The other end of the through pipe is inserted into the main pipe and is sealingly rotatably connected to the rotating shaft, the through pipe is fixedly provided with a filter screen, the filter screen is rotatably in contact with the inner wall of the main pipe through a silica gel sealing strip, a strip-shaped notch is formed in the through pipe, and the opening of the strip-shaped notch faces upward, and the filter screen is located below the strip-shaped notch. The door type mounting frame is provided with a blocking and scraping mechanism on both sides, the blocking and scraping mechanism includes a hinged seat, a hinged block, a connecting square rod, an electric telescopic swing rod, a supporting shaft, a supporting sleeve and a long strip plate, two hinged seats are installed on the left and right side faces of the two vertical frames of the door type mounting frame, the connecting square rod is horizontally installed on the lower hinged seat through a hinge shaft, the hinged block is hingedly connected to the upper hinged seat through a hinge shaft, the hinged block on the upper side is connected to the cylinder body of the inclined electric telescopic swing rod, the end surface of the piston rod of the electric telescopic swing rod is connected to the hinged seat on the upper side of the connecting square rod through a hinge shaft and a hinged block, the supporting shaft is rotatably installed between the symmetric connecting square rods through a bearing, the supporting sleeve is fixedly sleeved on the supporting shaft, two long strip plates are symmetrically fixed on the supporting sleeve, and the servo motor for driving the rotation of the supporting shaft is fixed to the outer side face of one of the connecting square rods.

2. A new type of steel slag pressure hot depolarization turbid ring water tank according to claim 1, characterized in that, The outer circumferential surface of both ends of the main pipeline is fixed with annular mounting plates, symmetrically threaded holes are opened on the annular mounting plate near the driven gear side, and vertical notched grooves are symmetrically opened on the other side of the annular mounting plate, the symmetric notched grooves and the threaded holes are located on both sides of the flushing nozzle, a connecting strip is installed between the symmetric annular mounting plates corresponding to the threaded holes and the notched grooves, a brush strip is vertically installed on the connecting strip along the length direction, the length of the brush strip is greater than the length of the flushing nozzle, and a dismounting and mounting assembly for fixing the connecting strip is arranged on the rear annular mounting plate.

3. A new type of steel slag pressure hot depolarization turbid ring water tank according to claim 2, characterized in that, The dismounting and mounting assembly comprises a T-shaped sliding block, a locking screw, a supporting strip and an L-shaped clamping block, the T-shaped sliding block is connected to the connecting strip in the notched groove, the horizontal block of the T-shaped sliding block is attached to the side surface of the annular mounting plate, the locking screw is threadedly connected between the symmetric notched grooves, the supporting strip is rotatably sleeved on the locking screw, the both ends of the supporting strip are connected to the vertical block outer side surface of the L-shaped clamping block, the horizontal block of the L-shaped clamping block is slidably inserted into the notched groove and is in contact with the end surface of the T-shaped sliding block, and the inner side surface of the L-shaped clamping block is attached to the horizontal block outer side surface of the T-shaped sliding block.

4. A new type of steel slag pressure hot depolarization turbid ring water tank according to claim 3, characterized in that, The dismounting and mounting assembly further comprises a supporting spring, the supporting spring is sleeved on the locking screw, one end of the supporting spring is connected to the outer side surface of the annular mounting plate, and the other end of the supporting spring is in contact with the supporting strip.

Citation Information

Patent Citations

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