A metal material sewage treatment device of a chemical liquid uniform mixing type
By linking the spinning control component and the mixing and spinning mechanism, the automated dosing and uniform mixing of chemicals in the wastewater treatment device for metal materials is achieved, solving the problems of time-consuming and labor-intensive manual operation and uneven mixing, thus improving the efficiency and environmental friendliness of wastewater treatment.
Patent Information
- Application Number
- CN202311379853.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-24
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2043-10-24
AI Technical Summary
In existing wastewater treatment devices made of metal materials, the addition of chemical solutions relies on manual experience, which is time-consuming, labor-intensive, and prone to errors, prolonging wastewater treatment time and causing uneven mixing, thus affecting treatment efficiency.
Employing a rotating visual control component and a stirring and rotating mechanism, and driven by a linkage motor through a cam and gear system, the system achieves automated, intermittent dispensing and high-pressure spraying of chemical solutions. Combined with a stirring device, it ensures uniform mixing of the solutions, and achieves gas purification and stable delivery through a forward momentum discharge unit and a lateral movement stop mechanism.
It achieves automated, time-saving, and labor-saving chemical solution dosing, avoids dosing errors, improves the efficiency and uniformity of wastewater treatment, reduces treatment time, and has gas purification function, thus improving environmental friendliness.
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Figure CN117228759B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of metal materials, and particularly relates to a metal material sewage treatment equipment of a uniform mixed type of chemical liquid. BACKGROUND
[0002] Metal wastewater refers to wastewater containing heavy metals discharged in the production process of metal material manufacturing industry. The heavy metals in the heavy metal wastewater cannot be decomposed and destroyed, and can only be transferred to a position and transformed in a physical and chemical form.
[0003] The existing metal material sewage treatment device generally puts chemical liquid into a metal material sewage treatment tank through manual operation, and then mixes the sewage in the tank through a stirring device. However, the chemical liquid is usually manually operated according to experience, which is time-consuming and laborious. If the process is neglected or failed, the sewage treatment time will be prolonged, and the sewage treatment efficiency will be reduced. SUMMARY
[0004] In view of the above problems, the application provides a metal material sewage treatment equipment of a uniform mixed type of chemical liquid, which effectively solves the problems in the background.
[0005] To achieve the above purpose, the application provides the following technical scheme: a metal material sewage treatment equipment of a uniform mixed type of chemical liquid, comprising a bottom plate, wherein support frames are symmetrically installed on the bottom plate, and the two support frames are connected with a treatment box; buckles are arranged on the support frames, and the buckles are connected with buckling grooves arranged on the treatment box; an installation plate is fixedly arranged on the support frame, the installation plate and a linkage plate are connected through bolts, a linkage motor is fixedly installed on the linkage plate, and the linkage motor is connected with a rotary visual control assembly.
[0006] The spin control assembly comprises a linkage block arranged on the output end of the linkage motor, the linkage block is connected with the linkage square groove arranged on the cam, a linkage rotating shaft is arranged on the cam, the linkage rotating shaft is connected with the rotating mechanism, the cam is connected with the rotating cross block, the rotating cross block is symmetrically provided with rotating rods, the rotating rods are connected with the rotating base and the rotating disc arranged on the processing box, a rotating spring is arranged on the rotating rod, one end of the rotating spring is fixedly connected with the rotating cross block, and the other end is fixedly connected with the rotating base, the two rotating discs are connected with the rotating rack, the rotating rack is connected with the rotating gear, the rotating gear is provided with a rotating shaft, a plurality of rotating blocks are arranged on the rotating shaft, a high-pressure nozzle is arranged on one side of the rotating block, a connecting block is arranged on the other side, a plurality of connecting blocks are connected with the collecting box, a fixed pulley is arranged on the collecting box, a first rope is arranged on the fixed pulley, one end of the first rope is connected with the first fixed seat arranged in the processing box, and the other end is connected with the winding wheel, the winding wheel is connected with the moving amount arranging unit.
[0007] Preferably, the moving amount arranging unit comprises a winding rotating shaft arranged on the winding wheel, one end of the winding rotating shaft is connected with the clockwork spring through the collecting box, the port of the clockwork spring is connected with the collecting box, the other end is connected with the winding bevel gear, the winding bevel gear is connected with the moving bevel gear, the moving bevel gear is provided with a control rotating shaft, one end of the control rotating shaft is connected with the bottom surface of the collecting box, the other end is connected with the winding disc, the winding disc is provided with a winding rod, the winding rod is connected with the square groove arranged on the square block, one side of the square block is symmetrically provided with square rods, the square rods are connected with the square base and the square disc through the square base, a square spring is arranged on the square rod, one end of the square spring is connected with the square disc, the other end is connected with the square base, the square base is connected with the collecting box, the collecting box is provided with a second fixed seat, the second fixed seat is connected with the force transmission assembly.
[0008] Preferably, the other side of the square block is provided with a different position rod, the different position rod is connected with a plurality of extension rods, the extension rods are connected with the touch different plate, the touch different plate is provided with a touch rod, one end of the touch rod is connected with the touch base arranged in the collecting box, the other end is connected with the touch disc, a touch spring is arranged on the touch rod, one end of the touch spring is connected with the touch disc, the other end is connected with the touch different plate, the touch different plate is provided with a cover stop disc, the cover stop disc is connected with the cover stop groove arranged in the collecting box, the cover stop groove and the high-pressure nozzle are connected through the linkage pipeline.
[0009] Preferably, the rotating shaft passes through the processing box and is connected with the limit block, the limit block is connected with the limit groove symmetrically arranged on the limit rod, the limit rod is fixedly connected with the limit base arranged on the processing box; the limit groove is provided with the ring moving rod, the ring moving rod is provided with the ring spring, one end of the ring spring is connected with the limit groove, and the other end is connected with the limit block.
[0010] Preferably, the second rope arranged on the second fixed seat is connected with the winding wheel, the winding wheel is provided with the winding shaft, one end of the winding shaft is in transmission connection with the winding base arranged on the processing box, the other end is connected with the winding gear, the winding gear is in meshing connection with the winding rack, the winding rack is provided with the winding plate, two winding plates are connected with the winding rod, the winding rod is in sliding connection with the matching base arranged on the processing box, the winding rod is provided with the winding spring, one end of the winding spring is connected with the matching base, and the other end is connected with the winding plate; the winding rack is provided with the U-shaped rod, the U-shaped rod is provided with the matching square plate, the matching square plate is provided with the matching rack, and the matching rack is connected with the horizontal moving stop mechanism.
[0011] Preferably, the matching square plate is provided with the blocking block, the blocking block is in sliding connection with the blocking square box arranged on the processing box, and the blocking square box is provided with a plurality of blocking grooves; the matching square plate is symmetrically provided with the positioning block, the positioning block is in sliding connection with the positioning rod arranged on the processing box, the positioning rod is provided with the positioning spring, one end of the positioning spring is connected with the processing box, and the other end is connected with the positioning block.
[0012] Preferably, the stirring and rotating mechanism comprises a delay cone gear arranged on the delay shaft, the delay cone gear is in meshing connection with the stirring cone gear, the stirring cone gear is provided with the stirring shaft, the stirring shaft passes through the stirring base arranged on the bottom plate and is connected with the stirring pulley, and the stirring pulley is connected with the delay pulley through the transmission belt.
[0013] Preferably, the delay pulley is provided with the brake shaft, the brake shaft is connected with a plurality of driving stirring rods through the bottom plate and the processing box; the brake shaft is provided with the delay gear, the delay gear is in meshing connection with two stirring gears, the stirring gear is provided with the rotating shaft, and the rotating shaft is connected with a plurality of driven stirring rods through the processing box.
[0014] Preferably, the horizontal movement stop mechanism comprises a gear connected with the gear rack, a gear shaft is arranged on the gear, the gear shaft is connected with a horizontal movement bevel gear through a horizontal movement base arranged on the processing box, the horizontal movement bevel gear is connected with a driven bevel gear, a driving threaded shaft is arranged on the driven bevel gear, and the driving threaded shaft is connected with a driving base arranged on the processing box; driving cross blocks are symmetrically arranged on the driving threaded shaft, and the driving cross blocks are connected with driving rods arranged on the driving base.
[0015] Preferably, a guide eccentric rod is arranged on the driving cross block, the guide eccentric rod is connected with a guide block through a guide groove arranged on the processing box, eccentric rods are symmetrically arranged on the guide block, the eccentric rods are connected with a fitting plate, a buffer pad is arranged on the fitting plate, the buffer pad is connected with an eccentric plate arranged on the collecting box, and a plurality of brake hinges are arranged on the eccentric plate; an eccentric spring is sleeved on the eccentric rod, one end of the eccentric spring is connected with the fitting plate, and the other end of the eccentric spring is connected with the guide block.
[0016] Compared with the prior art, the present application has the following beneficial effects:
[0017] (1) when the rotating control assembly rotates around the rotating shaft as the center, the first fixed seat, the first rope and the fixed pulley cooperate to make the winding wheel rotate, and then the spring on one end of the winding shaft is in a buffering state, and the winding bevel gear on the other end meshes with the driving bevel gear to rotate, so that the winding disc on the control shaft rotates, the winding rod reciprocatingly moves in the square groove, the square block reciprocatingly moves in the winding base through the square rod, and the square spring is in a buffering and resetting state; when the square spring is in a buffering state, the square block drives the moving rod to move forward, the extension rods drive the touch plate to move in the touch rod, the touch spring is in a buffering state, and then the moving touch plate drives the cover stop disc to move, so that it is no longer connected with the cover stop groove, and then a plurality of cover stop grooves are in an open state, so that the chemical liquid in the collecting box enters the linkage pipeline through the cover stop groove, and then enters the high-pressure nozzle, and the chemical liquid is put into the metal material sewage treatment tank through the high-pressure nozzle; when the square spring resets, the moving rod resets, and then the touch plate drives the cover stop disc to reset, the touch spring is in a resetting state, the cover stop disc covers the cover stop groove, so that the chemical liquid is prevented from entering the high-pressure nozzle, and through the above-mentioned reciprocating movement, the high-pressure nozzle reciprocatingly releases the liquid in the treatment tank, and only one-time operation of the operator is needed to put the required chemical liquid into the collecting box, so as to avoid manual operation of the operator, save time and labor, and avoid the occurrence of mistakes caused by the negligence of the operator, avoid the extension of the sewage treatment time, improve the efficiency of the sewage treatment, and intermittently deliver the chemical liquid to the high-pressure nozzle for spraying, avoid the uneven treatment caused by putting all the liquid into the treatment tank at one time, and improve the effect of the sewage treatment through the cooperation of the stirring and screwing mechanism, so as to reduce the time required for the sewage treatment;
[0018] (2) through the start linkage motor, make its output end on the linkage block drive cam rotation, make its reciprocating contact to the rotating cross block; when the cam contact to rotating cross block, make it through the rotating rod in the rotating base limit movement, rotating spring in the buffer state, in turn drive rotating rack movement, and meshing rotating gear rotation, so that the rotating shaft on the limit block in the limit bar limit rotation, so that the ring on the ring spring in the buffer state, improve the stability of the rotating case, so that several high pressure nozzle rotation, when the cam does not contact rotating cross block, make the rotating spring reset and drive rotating rack reset movement, and make the meshing rotating gear reset rotation, make the ring spring in the reset state, make the high pressure nozzle reset rotation, through the above description, make the high pressure nozzle is constantly in the state of rotation, improve the range of high pressure nozzle in the spray of chemical liquid, avoid its fixed in a place of the delivery and lead to chemical liquid in the treatment tank is difficult to mix, improve the efficiency of sewage treatment, through the cooperation with the mixing mechanism to further improve the efficiency of the mixing of chemical liquid and sewage;
[0019] (3) linkage motor drive cam rotation at the same time through the delay shaft drive delay bevel gear rotation, and make it meshing mixing bevel gear rotation, because the two bevel gear different size and make the mixing shaft rotation, make it through the mixing pulley, transmission belt and delay pulley cooperation, make the brake shaft rotation, at the same time make delay gear meshing two mixing gear rotation, drive screw rotation shaft rotation, make two screw shaft on the driven agitator rod and a brake shaft on the driven agitator rod in the reverse direction of rotation, and in the treatment tank rotation stirring, improve the efficiency of stirring, through the rotation of the view control component and the cooperation of the dynamic amount of unit to put the chemical liquid into the sewage, through the above description, improve the efficiency of sewage and chemical liquid mixing treatment;
[0020] (4) When the collecting box rotates, the second fixed seat and the second rope cooperate to make the winding wheel rotate, so that the winding gear provided on the winding rotating shaft rotates and engages with the winding rack to move, so that it moves in the matching base through the winding rod, and the winding spring is in a buffering state, so that the winding rack moves the matching square plate through the U-shaped rod, so that it moves in the positioning rod through the positioning block, and the positioning spring is in a buffering state; further, the matching square plate drives the blocking block to move in the blocking square box, so that the external air enters the processing box through the plurality of blocking grooves provided; when the collecting box resets and rotates, the buffering winding spring resets, and drives the winding rack to reset and move, at the same time, the resetting positioning spring drives the matching square plate to reset and move in the positioning rod, so that the blocking block resets and moves in the blocking square box, thereby discharging the contaminated gas in the processing box through the blocking groove, and the filtering body provided on the blocking groove can purify the gas, and the above description can discharge the gas in the processing box, and at the same time, the external air can be transported into the processing box, avoiding the contaminated gas generated by the sewage from being stored in the processing box for a long time, prolonging the sewage treatment time, and avoiding the long-term accumulation in the processing box, which is difficult to clean, and achieving the environmental protection effect, and indirectly improving the sewage treatment speed;
[0021] (5) When the matching square plate moves, it drives the matching rack to move and engage with the matching gear to rotate, so that the matching rotating shaft rotates and engages with the driven bevel gear to rotate, thereby driving the driving threaded shaft to rotate, and since the two ends of the driving threaded shaft are the same, the two driving cross blocks connected by threads move in the same direction, so that one driving cross block moves in the direction of the rotation of the collecting box, and the other moves away from the collecting box, so that the driving cross block drives the guide block to move through the guide eccentric rod, so that the buffer pad on the abutting plate contacts the eccentric plate provided on the collecting box, so that the buffer pad is in a buffering state, reducing the impact force on the collecting box, so that the connecting spring is in a buffering state, and at the same time, the chemical liquid in the collecting box will inevitably shake when it rotates, and the above description can reduce the shaking phenomenon caused by the rotation of the collecting box, and the impact force is offset by the buffer pad and the connecting spring, thereby improving the stability of the movement of the moving unit, and at the same time, the eccentric plate will also rotate when the collecting box rotates, and the plurality of brake hinges are provided, thereby playing a stirring role, accelerating the mixing speed of the chemical liquid and the sewage, and thereby improving the efficiency of the sewage treatment. BRIEF DESCRIPTION OF DRAWINGS
[0022] The accompanying drawings are included to provide a further understanding of the application, and constitute a part of the specification, and are used to explain the application together with the embodiments of the application, and do not constitute a limitation on the application.
[0023] In the drawings:
[0024] Figure 1 Fig. 1 is a schematic diagram of the overall structure of the present application;
[0025] Figure 2 Fig. 2 is a schematic diagram of the processing box structure of the present application;
[0026] Figure 3 Fig. 3 is a schematic diagram of the rotation control assembly structure of the present application;
[0027] Figure 4 Fig. 4 is a schematic diagram of the moving amount sorting unit structure of the present application;
[0028] Figure 5 Fig. 5 is a schematic diagram of the linkage square groove structure of the present application;
[0029] Figure 6 Fig. 6 is a schematic diagram of the force transfer assembly structure of the present application;
[0030] Figure 7 Fig. 7 is a schematic diagram of the collection box structure of the present application;
[0031] Figure 8 Fig. 8 is a schematic diagram of the limit motion different rod structure of the present application;
[0032] Figure 9 Fig. 9 is a schematic diagram of the direction rotation mechanism structure of the present application;
[0033] Figure 10 Fig. 10 is a schematic diagram of the fixed pulley structure of the present application;
[0034] Figure 11 Fig. 11 is a schematic diagram of the horizontal motion direction stopping mechanism structure of the present application;
[0035] Figure: 1, bottom plate; 2, support frame; 3, processing box; 4, mounting plate; 5, linkage plate; 6, linkage motor; 7, linkage diamond block; 8, cam; 9, linkage square groove; 10, extension rotating shaft; 11, rotating horizontal block; 12, rotating rod; 13, rotating base; 14, rotating round plate; 15, rotating spring; 16, rotating rack; 17, rotating gear; 18, rotating shaft; 19, rotating square block; 20, high-pressure spray head; 21, connecting block; 22, collection box; 23, fixed pulley; 24, first rope; 25, first fixed seat; 26, winding wheel; 27, winding rotating shaft; 28, clockwork spring; 29, winding bevel gear; 30, forward bevel gear; 31, control rotating shaft; 32, winding disc; 33, winding rod; 34, square block; 35, square groove; 36, square rod; 37, winding base; 38, square round plate; 39, square spring; 40, second fixed seat; 41, different position rod; 42, extension rod; 43, touch different plate; 44, touch rod; 45, touch base; 46, touch round plate; 47, touch spring; 48, cover round plate; 49, cover round groove; 50, linkage pipeline; 51, limit different block; 52, limit different rod; 53, limit groove; 54, limit base; 55, ring rod; 56, ring spring; 57, second rope; 58, winding wheel; 59, winding rotating shaft; 60, winding base; 61, winding gear; 62, winding rack; 63, winding plate; 64, winding rod; 65, matching base; 66, winding spring; 67, U-shaped rod; 68, matching square plate; 69, matching rack; 70, resistance block; 71, resistance square box; 72, resistance groove; 73, positioning block; 74, positioning rod; 75, positioning spring; 76, extension bevel gear; 77, stirring bevel gear; 78, stirring rotating shaft; 79, stirring base; 80, stirring pulley; 81, transmission belt; 82, extension pulley; 83, brake rotating shaft; 84, main stirring rod; 85, extension gear; 86, stirring gear; 87, screw rotating shaft; 88, driven stirring rod; 89, matching gear; 90, matching rotating shaft; 91, horizontal base; 92, horizontal bevel gear; 93, driven bevel gear; 94, driving threaded shaft; 95, driving base; 96, driving horizontal block; 97, driving rod; 98, guide different rod; 99, guide groove; 100, guide block; 101, link rod; 102, fit plate; 103, buffer pad; 104, different plate; 105, brake hinge rod; 106, link spring. DETAILED DESCRIPTION
[0036] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0037] The embodiment, by Figures 1 to 11 The present application comprises a base plate 1, on which two symmetrical support frames 2 are installed, and the two support frames 2 are connected with a processing box 3; the support frame 2 is provided with buckles, and a plurality of buckles are connected with the clamping grooves provided on the processing box 3; the support frame 2 is fixedly provided with a mounting plate 4, which is connected with a linkage plate 5 through bolts, and the linkage plate 5 is fixedly provided with a linkage motor 6, which is connected with a rotary control assembly; the rotary control assembly comprises a linkage block 7 provided on the output end of the linkage motor 6, which is connected with a linkage square groove 9 provided on a cam 8; the cam 8 is provided with a delay shaft 10, which is connected with a stirring and rotating mechanism; the cam 8 is connected with a rotary cross block 11, which is symmetrically provided with a rotary rod 12, which penetrates through a rotary base 13 provided on the processing box 3 and is connected with a rotary disc 14; the rotary rod 12 is provided with a rotary spring 15, one end of which is fixedly connected with the rotary cross block 11, and the other end is fixedly connected with the rotary base 13; the two rotary discs 14 are jointly connected with a rotary rack 16, which is meshingly connected with a rotary gear 17, which is provided with a rotary shaft 18, which is provided with a plurality of rotary blocks 19, one side of which is provided with a high-pressure nozzle 20, and the other side is provided with a connecting block 21, a plurality of connecting blocks 21 are jointly connected with a collecting box 22, which is provided with a fixed pulley 23, which is provided with a first rope 24, one end of which is connected with a first fixed seat 25 provided in the processing box 3, and the other end is connected with a winding wheel 26, which is connected with a moving amount arranging unit; the rotary shaft 18 penetrates through the processing box 3 and is connected with a limiting block 51, which is connected with a limiting groove 53 provided on the limiting rod 52, and the limiting groove 53 is fixedly connected with the limiting base 54 provided on the processing box 3; the limiting groove 53 is provided with a ring rod 55, which is provided with a ring spring 56, one end of which is connected with the limiting groove 53, and the other end is connected with the limiting block 51;
[0038] The operator drives the linkage motor 6 to rotate the linkage block 7 on the output end of the linkage motor 6 to drive the cam 8 to reciprocatingly contact the rotating cross block 11; when the cam 8 contacts the rotating cross block 11, the rotating cross block 11 is limited to move in the rotating base 13 through the rotating rod 12, the rotating spring 15 is in a buffering state, then drives the rotating rack 16 to move and mesh with the rotating gear 17 to rotate, so that the limiting block 51 on the rotating shaft 18 is limited to rotate in the limiting rod 52, so that the ring spring 56 on the ring rod 55 is in a buffering state, which improves the stability of the rotating of the collecting box 22, so that the high-pressure spray head 20 rotates; when the cam 8 does not contact the rotating cross block 11, the rotating spring 15 resets to drive the rotating rack 16 to reset and move, and the meshed rotating gear 17 resets to rotate, so that the ring spring 56 is in a reset state, and the high-pressure spray head 20 resets to rotate. Through the above description, the high-pressure spray head 20 is continuously in a rotating state, which improves the range of the high-pressure spray head 20 when spraying and dispensing chemical liquid, avoids the fixed dispensing of the high-pressure spray head 20, and improves the efficiency of the sewage treatment. Through cooperation with the rotating and rotating mechanism, the efficiency of mixing the chemical liquid and the sewage is further improved.
[0039] The forward movement amount arranging unit of the embodiment comprises a winding rotation shaft 27 arranged on the winding wheel 26, one end of the winding rotation shaft 27 is arranged in connection with the clock spring 28 through the collecting box 22, the port of the clock spring 28 is arranged in connection with the collecting box 22; the other end is arranged in connection with the winding bevel gear 29, the winding bevel gear 29 is engaged and connected with the forward movement bevel gear 30, the forward movement bevel gear 30 is provided with a control rotation shaft 31, one end of the control rotation shaft 31 is arranged in transmission connection with the inner bottom surface of the collecting box 22, the other end is arranged in connection with the winding disc 32, the winding disc 32 is provided with a winding rod 33, the winding rod 33 is arranged in connection with the square movement groove 35 provided on the square movement block 34; one side of the square movement block 34 is symmetrically installed with a square movement rod 36, the square movement rod 36 is arranged in connection with the square movement disc 38 through the winding base 37, the square movement rod 36 is sleeved with a square movement spring 39, one end of the square movement spring 39 is arranged in connection with the square movement disc 38, the other end is arranged in connection with the winding base 37, the winding base 37 is arranged in connection with the collecting box 22, the collecting box 22 is provided with a second fixing seat 40, the second fixing seat 40 is arranged in connection with the force transmission assembly; the other side of the square movement block 34 is installed with a different movement position rod 41, the different movement position rod 41 is arranged in connection with a plurality of extension rods 42, the extension rods 42 are arranged in connection with the touch different plate 43, the touch different plate 43 is provided with a touch rod 44, one end of the touch rod 44 is arranged in connection with the touch base 45 provided in the collecting box 22, the other end is arranged in connection with the touch disc 46; the touch rod 44 is sleeved with a touch spring 47, one end of the touch spring 47 is arranged in connection with the touch disc 46, the other end is arranged in connection with the touch different plate 43, the touch different plate 43 is provided with a cover stop disc 48, the cover stop disc 48 is arranged in connection with the cover stop circular groove 49 provided in the collecting box 22, the cover stop circular groove 49 is arranged in connection with the high-pressure spray head 20 through the linkage pipeline 50;
[0040] When the control unit 22 rotates around the rotating shaft 18 via the rotating visual control assembly, the winding wheel 26 rotates due to the cooperation of the first fixed seat 25, the first rope 24, and the fixed pulley 23. This causes the spring spring 28 on one end of the rotating shaft 27 to be in a buffered state, while the winding bevel gear 29 on the other end meshes with the reciprocating bevel gear 30, causing the rotating disk 32 on the control shaft 31 to rotate. This causes the winding rod 33 to reciprocate within the torque groove 35, and the torque block 34 to reciprocate and be limited within the rotating base 37 via the torque rod 36, thus causing the torque spring... Spring 39 is constantly in a buffering and resetting state; when the torque spring 39 is in a buffering state, the torque block 34 causes the moving rod 41 to move forward, causing several extension rods 42 to move the contact plate 43 within the contact rod 44, causing the contact spring 47 to be in a buffering state, and then causing the moving contact plate 43 to move the cover stop plate 48, so that it is no longer connected to the cover stop groove 49, and then causing several cover stop grooves 49 to be in an open state, so that the chemical liquid in the moving box 22 enters the linkage pipe 50 through the cover stop groove 49, thereby entering the Inside the high-pressure nozzle 20, chemical solution is released into the wastewater treatment tank containing metal materials. When the torque spring 39 returns to its original position, the displacement rod 41 moves back to its original position, which in turn causes the contact plate 43 to move the cover stop plate 48 back to its original position. This puts the contact spring 47 in its original position, allowing the cover stop plate 48 to cover the cover stop groove 49, thus preventing the chemical solution from entering the high-pressure nozzle 20. Through the reciprocating motion of the above movements, the high-pressure nozzle 20 repeatedly releases the chemical solution into the treatment tank 3. The operator only needs to add the required amount of chemical solution once. The liquid can be added into the collection box 22, avoiding the need for manual addition of the liquid by operators throughout the process. This saves time and effort and prevents errors caused by human negligence, thus avoiding prolonging the sewage treatment time and improving the efficiency of sewage treatment. At the same time, as described above, the chemical liquid can be intermittently delivered to the high-pressure nozzle 20 for spraying, avoiding the uneven treatment caused by adding all the liquid into the treatment tank 3 at once. In addition, the cooperation of the stirring and swirling mechanism improves the sewage treatment effect and reduces the time required for sewage treatment.
[0041] The force transfer assembly of the embodiment includes a second rope 57 arranged on the second fixed seat 40, the second rope 57 is arranged in connection with a winding wheel 58, the winding wheel 58 is provided with a winding rotating shaft 59, one end of the winding rotating shaft 59 is arranged in transmission connection with a winding base 60 arranged on the processing box 3, the other end is arranged in connection with a winding gear 61, the winding gear 61 is engaged with a winding rack 62, the winding rack 62 is provided with a winding plate 63, two winding plates 63 are jointly connected with a winding rod 64, the winding rod 64 is arranged in sliding connection with a matching base 65 arranged on the processing box 3, the winding rod 64 is sleeved with a winding spring 66, one end of the winding spring 66 is arranged in connection with the matching base 65, the other end is arranged in connection with the winding plate 63; the winding rack 62 is installed with a U-shaped rod 67, the U-shaped rod 67 is provided with a matching square plate 68, the matching square plate 68 is installed with a matching rack 69, the matching rack 69 is arranged in connection with a horizontal movement stop mechanism; the matching square plate 68 is installed with a blocking block 70, the blocking block 70 is arranged in sliding connection with a blocking square box 71 arranged on the processing box 3, the blocking square box 71 is provided with a plurality of blocking grooves 72; the matching square plate 68 is symmetrically installed with a positioning block 73, the positioning block 73 is arranged in sliding connection with a positioning rod 74 arranged on the processing box 3, the positioning rod 74 is sleeved with a positioning spring 75, one end of the positioning spring 75 is arranged in connection with the processing box 3, the other end is arranged in connection with the positioning block 73;
[0042] When the collecting box 22 rotates, the winding wheel 58 rotates through the cooperation of the second fixed seat 40 and the second rope 57, the winding gear 61 arranged on the winding rotating shaft 59 rotates and engages with the winding rack 62 to move, so that the winding rack 62 moves in the matching base 65 through the winding rod 64, the winding spring 66 is in a buffering state, the winding rack 62 drives the matching square plate 68 to move through the U-shaped rod 67, the matching square plate 68 moves in the positioning rod 74 through the positioning block 73, and the positioning spring 75 is in a buffering state; further, the blocking block 70 moves in the blocking square box 71 through the matching square plate 68, so that the external air enters the processing box 3 through the plurality of blocking grooves 72 arranged; when the collecting box 22 resets and rotates, the buffering winding spring 66 resets, and drives the winding rack 62 to reset and move, at the same time, the matching square plate 68 resets and moves in the positioning rod 74 through the resetting positioning spring 75, the blocking block 70 resets and moves in the blocking square box 71, thereby the contaminated gas in the processing box 3 is discharged through the blocking grooves 72, a filtering body can be arranged on the blocking grooves 72 to purify the gas, at the same time, the above description can discharge the gas in the processing box 3, and can also transport the external air to the processing box 3, avoiding that the contaminated gas generated by the sewage is stored in the processing box for a long time to prolong the sewage treatment time, and avoiding that the sewage is accumulated in the processing box 3 for a long time to cause difficult cleaning, achieving the environmental protection effect, and indirectly improving the sewage treatment speed.
[0043] The rotating and screwing mechanism of the embodiment comprises a rotating cone gear 76 arranged on the rotating shaft 10, the rotating cone gear 76 is engaged with a stirring cone gear 77, the stirring cone gear 77 is arranged with a stirring shaft 78, the stirring shaft 78 is arranged with a stirring base 79 arranged on the bottom plate 1 and a stirring pulley 80, the stirring pulley 80 is arranged with a driving belt 81 and a rotating pulley 82; the rotating pulley 82 is arranged with a brake shaft 83, the brake shaft 83 is arranged with a plurality of driving stirring rods 84 through the bottom plate 1 and the processing box 3; the brake shaft 83 is arranged with a rotating gear 85, the rotating gear 85 is engaged with two stirring gears 86, the stirring gears 86 are arranged with rotating shafts 87, the rotating shafts 87 are arranged with a plurality of driven stirring rods 88 through the processing box 3;
[0044] When the linkage motor 6 drives the cam 8 to rotate, it drives the rotating cone gear 76 to rotate through the rotating shaft 10, and makes it engage with the stirring cone gear 77 to rotate. Due to the different sizes of the two cone gears, the stirring shaft 78 rotates quickly, which makes the brake shaft 83 rotate through the cooperation of the stirring pulley 80, the driving belt 81 and the rotating pulley 82, and makes the rotating gear 85 engage with the two stirring gears 86 to rotate, drives the rotating shaft 87 to rotate, and makes the driven stirring rods 88 on the two rotating shafts 87 and the driving stirring rods 84 on the brake shaft 83 rotate in opposite directions, and rotate and stir in the processing box 3, which improves the stirring efficiency. Through the cooperation of the rotating and viewing control assembly and the forward movement amount sorting unit, the chemical liquid is put into the sewage, which improves the efficiency of the sewage and chemical liquid mixing treatment.
[0045] The cross-moving stop mechanism of the embodiment comprises a matching gear 89 arranged in meshing connection with the matching rack 69, the matching gear 89 is provided with a matching rotating shaft 90, the matching rotating shaft 90 is arranged in connection with a cross bevel gear 92 provided on the treatment box 3, the cross bevel gear 92 is arranged in meshing connection with a driven bevel gear 93, the driven bevel gear 93 is provided with a driving threaded shaft 94, the driving threaded shaft 94 is arranged in connection with a driving base 95 provided on the treatment box 3; the driving threaded shaft 94 is provided with driving cross blocks 96 arranged in symmetry, the driving cross blocks 96 are arranged in connection with driving rods 97 provided on the driving base 95; the driving cross blocks 96 are provided with guide eccentric rods 98, the guide eccentric rods 98 are arranged in connection with guide blocks 100 provided on the treatment box 3, the guide blocks 100 are provided with eccentric rods 101 arranged in symmetry, the eccentric rods 101 are arranged in connection with a matching plate 102, the matching plate 102 is provided with a buffer pad 103, the buffer pad 103 is arranged in connection with an eccentric plate 104 provided on the collecting box 22, the eccentric plate 104 is provided with a plurality of brake hinges 105; the eccentric rods 101 are provided with eccentric springs 106, one end of the eccentric springs 106 is arranged in connection with the matching plate 102, the other end is arranged in connection with the guide blocks 100;
[0046] When the matching square plate 68 moves, it drives the matching rack 69 to move and mesh with the matching gear 89 to rotate, so that the cross bevel gear 92 on the matching rotating shaft 90 rotates and meshes with the driven bevel gear 93 to rotate, in turn driving the driving threaded shaft 94 to rotate, because the threads on both ends of the driving threaded shaft 94 are the same, the two driving cross blocks 96 connected by threads move towards the same direction, so that one driving cross block 96 moves towards the direction of rotation of the collecting box 22, and the other moves away from the collecting box 22, so that one driving cross block 96 drives the guide blocks 100 to move through the guide eccentric rods 98, so that the buffer pad 103 on the matching plate 102 contacts the eccentric plate 104 provided on the collecting box 22, so that the buffer pad 103 is in a buffer state, reducing the impact force on the collecting box 22, so that the eccentric springs 106 are in a buffer state, at the same time, the chemical liquid in the collecting box 22 will inevitably shake inside when it rotates, the above description can reduce the shaking phenomenon of the collecting box 22 when it rotates, the impact force is offset by the buffer pad 103 and the eccentric springs 106, improving the stability of the movement of the moving amount sorting unit, at the same time, the eccentric plate 104 will also rotate when the collecting box 22 rotates, through the plurality of brake hinges 105 provided, thereby playing a stirring role, accelerating the mixing speed of the chemical liquid and the sewage, thereby improving the efficiency of sewage treatment.
[0047] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to exclude myriad other embodiments of the present application that other inventors can develop based on the same general inventive concepts embodied by the described embodiments. That is, although the present application is described in terms of particular embodiments and illustrative figures, it should be apparent that the scope of the present application is not limited to these specific embodiments.
[0048] While the embodiments of the application have been shown and described herein, it will be understood by those skilled in the art that many changes, modifications, substitutions and alterations to these embodiments can be made without departing from the principles and spirits of the application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A wastewater treatment device made of metal materials with uniformly mixed chemical solutions, characterized in that: Includes a base plate (1), on which support frames (2) are symmetrically installed, and the two support frames (2) are connected to the processing box (3); the support frames (2) are provided with buckles, and several buckles are connected to the slots provided on the processing box (3); the support frames (2) are fixedly provided with an installation plate (4), and the installation plate (4) is connected to the linkage plate (5) by bolts; the linkage plate (5) is fixedly installed with a linkage motor (6), and the linkage motor (6) is connected to the rotating visual control component; The rotating control assembly includes a linkage diamond block (7) located on the output end of the linkage motor (6), which is connected to a linkage square groove (9) on the cam (8); an extension shaft (10) is mounted on the cam (8), which is connected to the stirring and rotating mechanism; the cam (8) is connected to a rotating horizontal block (11), and rotating rods (12) are symmetrically mounted on the rotating horizontal block (11). The rotating rods (12) pass through a rotating base (13) on the processing box (3) and are connected to a rotating circular plate (14); a rotating spring (15) is sleeved on the rotating rod (12), and one end of the rotating spring (15) is fixedly connected to the rotating horizontal block (11). The other end is fixedly connected to the rotating base (13); the two rotating circular plates (14) are connected to the rotating rack (16), the rotating rack (16) meshes with the rotating gear (17), the rotating gear (17) is equipped with a rotating shaft (18), the rotating shaft (18) is equipped with several rotating blocks (19), a high-pressure nozzle (20) is installed on one side of the rotating block (19), and a connecting block (21) is provided on the other side. Several connecting blocks (21) are connected to the collection box (22), the collection box (22) is equipped with a fixed pulley (23), the fixed pulley (23) is provided with a first rope (24), one end of the first rope (24) is connected to the first fixed seat (25) provided in the processing box (3). One end is connected to the winding wheel (26), and the other end is connected to the reciprocating flow unit. The reciprocating flow unit includes a winding shaft (27) on the winding wheel (26). One end of the winding shaft (27) passes through the collector box (22) and is connected to the spring spring (28). The port of the spring spring (28) is connected to the collector box (22). The other end is connected to the winding bevel gear (29), which meshes with the reciprocating bevel gear (30). The reciprocating bevel gear (30) is provided with a control shaft (31). One end of the control shaft (31) is connected to the bottom surface of the collector box (22) for transmission, and the other end is connected to the winding disc (32). The rotating disc (32) is provided with a rotating rod (33), which is connected to the torque groove (35) provided on the torque block (34); a torque rod (36) is symmetrically installed on one side of the torque block (34), which passes through the rotating base (37) and is connected to the torque circular plate (38); a torque spring (39) is sleeved on the torque rod (36), one end of the torque spring (39) is connected to the torque circular plate (38), and the other end is connected to the rotating base (37); the rotating base (37) is connected to the collection box (22); a second fixed seat (40) is provided on the collection box (22), and the second fixed seat (40) is connected to the force conversion assembly; A displacement rod (41) is installed on the other side of the torque block (34). The displacement rod (41) is connected to several extension rods (42). The extension rods (42) are connected to a trigger plate (43). A trigger rod (44) is provided on the trigger plate (43). One end of the trigger rod (44) is connected to a trigger base (45) provided in the collector box (22), and the other end is connected to a trigger circular plate (46). (44) is fitted with a touch spring (47), one end of which is connected to the touch circular plate (46) and the other end is connected to the touch plate (43). The touch plate (43) is provided with a cover stop circular plate (48), which is connected to the cover stop circular groove (49) provided in the central control box (22). The cover stop circular groove (49) is connected to the high pressure nozzle (20) through a linkage pipe (50).
2. The metal material wastewater treatment equipment for uniformly mixing pharmaceutical solutions according to claim 1, characterized in that: The rotating shaft (18) passes through the processing box (3) and is connected to the limiting block (51). The limiting block (51) is connected to the limiting groove (53) symmetrically provided on the limiting rod (52). The limiting rod (52) is fixedly connected to the limiting base (54) provided on the processing box (3). A ring rod (55) is installed on the limiting groove (53). A ring spring (56) is sleeved on the ring rod (55). One end of the ring spring (56) is connected to the limiting groove (53), and the other end is connected to the limiting block (51).
3. The metal material wastewater treatment equipment for uniformly mixing pharmaceutical solutions according to claim 2, characterized in that: The force conversion assembly includes a second rope (57) mounted on a second fixed base (40). The second rope (57) is connected to a winding wheel (58). The winding wheel (58) is provided with a winding shaft (59). One end of the winding shaft (59) is connected to a winding base (60) on the processing box (3), and the other end is connected to a winding gear (61). The winding gear (61) meshes with a winding rack (62). The winding rack (62) is provided with winding plates (63). The two winding plates (63) are connected to the winding rod. (64) The winding rod (64) is slidably connected to the matching base (65) provided on the processing box (3). A winding spring (66) is sleeved on the winding rod (64). One end of the winding spring (66) is connected to the matching base (65), and the other end is connected to the winding plate (63). A U-shaped rod (67) is installed on the winding rack (62). A matching square plate (68) is provided on the U-shaped rod (67). A matching rack (69) is installed on the matching square plate (68). The matching rack (69) is connected to the transverse stop mechanism.
4. The metal material wastewater treatment equipment for uniformly mixing pharmaceutical solutions according to claim 3, characterized in that: The moving plate (68) is equipped with a stop block (70), which is slidably connected to the stop box (71) provided on the processing box (3). The stop box (71) is provided with several stop grooves (72). The moving plate (68) is symmetrically equipped with a positioning block (73), which is slidably connected to the positioning rod (74) provided on the processing box (3). The positioning rod (74) is fitted with a positioning spring (75), one end of which is connected to the processing box (3) and the other end is connected to the positioning block (73).
5. A metal material wastewater treatment device for uniformly mixing pharmaceutical solutions according to claim 4, characterized in that: The mixing and rotating mechanism includes an extending bevel gear (76) disposed on an extending shaft (10), the extending bevel gear (76) meshing with a mixing bevel gear (77), a mixing shaft (78) mounted on the mixing bevel gear (77), the mixing shaft (78) passing through a mixing base (79) provided on the base plate (1) and connected to a mixing pulley (80), the mixing pulley (80) being connected to the extending pulley (82) via a transmission belt (81).
6. A metal material wastewater treatment device for uniformly mixing pharmaceutical solutions according to claim 5, characterized in that: A brake shaft (83) is installed on the extended pulley (82). The brake shaft (83) passes through the base plate (1) and the processing box (3) and is connected to several active stirring rods (84). An extended gear (85) is installed on the brake shaft (83). The extended gear (85) meshes with two stirring gears (86). A rotating shaft (87) is provided on the stirring gear (86). The rotating shaft (87) passes through the processing box (3) and is connected to several driven stirring rods (88).
7. A metal material wastewater treatment device for uniformly mixing pharmaceutical solutions according to claim 6, characterized in that: The lateral movement stop mechanism includes a drive gear (89) meshing with a drive rack (69), a drive shaft (90) on the drive gear (89), the drive shaft (90) passing through a lateral movement base (91) on the processing box (3) and connected to a lateral movement bevel gear (92), the lateral movement bevel gear (92) meshing with a driven bevel gear (93), a drive threaded shaft (94) mounted on the driven bevel gear (93), the drive threaded shaft (94) connected to a drive base (95) on the processing box (3); drive cross blocks (96) are symmetrically mounted on the drive threaded shaft (94), the drive cross blocks (96) connected to a drive rod (97) on the drive base (95).
8. A metal material wastewater treatment device for uniformly mixing pharmaceutical solutions according to claim 7, characterized in that: The drive block (96) is provided with a guide rod (98), which passes through the guide groove (99) provided on the processing box (3) and is connected to the guide block (100). The guide block (100) is symmetrically equipped with a linkage rod (101), which is connected to the bonding plate (102). The bonding plate (102) is equipped with a buffer pad (103), which is connected to the agitator plate (104) provided on the collection box (22). The agitator plate (104) is provided with several brake hinge rods (105). The linkage rod (101) is fitted with a linkage spring (106), one end of which is connected to the bonding plate (102) and the other end is connected to the guide block (100).
Citation Information
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