A feed device for a mud purifier
By introducing adjustment and auxiliary components into the feeding device of the mud purifier, the problems of uneven feeding and clogging were solved, achieving uniform feeding and automatic unclogging, thus improving processing efficiency and quality.
Patent Information
- Application Number
- CN202311087232.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-28
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2043-08-28
AI Technical Summary
The existing mud purifier has a fixed feeding structure, which leads to uneven feeding and affects the subsequent treatment effect.
The design incorporates adjustment and auxiliary components. The electric cylinder controls the left and right movement of the clamping seat and clamping block, combined with elastic contact and threaded rod locking, to achieve continuous vibration and uniform clamping of the slurry inlet pipe and water inlet pipe, avoiding blockage. An automatic unblocking device further improves the unblocking efficiency.
It achieves uniform feeding, avoids clogging, improves clogging removal efficiency and mud treatment efficiency, and ensures treatment quality and convenience.
Smart Images

Figure CN117534271B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of feeding device, in particular to a kind of feeding device of mud purifier. BACKGROUND
[0002] When mud purification treatment needs to use purifying processor, feeding device needs to be set to realize feeding, and the feeding structure is mostly fixed structure when feeding mud, which affects the uniformity of feeding, and further affects the subsequent treatment effect of mud. SUMMARY
[0003] Therefore, the present application provides a kind of feeding device of mud purifier, solve the problem that feeding structure is mostly fixed structure when feeding mud, which affects the uniformity of feeding, and further affects the subsequent treatment effect of mud.
[0004] A kind of feeding device of mud purifier, it has adjustment part, by the setting of adjustment part, on the one hand, when feeding position is adjusted, directly control electric cylinder continuous extension and contraction can be, when electric cylinder continuous extension and contraction, clamping seat and clamping block are in left and right movement state, while, with this, inlet pipe and water pipe are also in left and right continuous movement state, which guarantees the uniformity of feeding at this time;With this, because the lower end of stress bar is in contact with the top surface of stress seat, when clamping seat moves left and right, stress bar is in continuous elastic contact with first protrusion, which realizes the continuous vibration of inlet pipe and water pipe at this time, thereby avoiding the blockage of inlet pipe;On the other hand, when installing inlet pipe and water pipe, inlet pipe and water pipe are placed between clamping seat and clamping block, then threaded rod is rotated and locked, when threaded rod is adjusted, locking screw is tightened to lock threaded rod, to prevent threaded rod from loosening during use;During installation, because the clamping grooves on clamping seat and clamping block are all V-shaped groove structures, different diameter inlet pipe and water pipe can be clamped at this time, and the uniformity of feeding can be ensured by reciprocating motion, and the efficiency is high when pipe is clamped and installed, and it will not loosen.
[0005] The purpose and effect of the feeding device of the mud purifier are achieved by the following specific technical means:
[0006] The present application provides a kind of feeding device of mud purifier, specifically includes: mounting seat;
[0007] The mounting seat is fixed on the mud purifier, and the feeding part is installed on the mounting seat.
[0008] Further, the feeding part is composed of a suction pump, a first motor, a suction pipe, a faucet, a gear sleeve, a second motor, a gear and a sleeve, the suction pump is fixed on the mounting seat, and the first motor is installed on the suction pump for self-driving;
[0009] The suction pump is connected with a suction pipe, and a faucet is installed on the suction pipe.
[0010] Further, the faucet is further rotationally connected with a sleeve seat, the sleeve seat and the faucet are both provided with feeding holes in an annular array, the feeding holes on the sleeve seat and the faucet are the same in size and are aligned in position;
[0011] The sleeve seat is fixedly welded with a gear sleeve, a second motor is fixed on the faucet, a gear is fixed on the bottom end surface of the second motor, and the gear is engaged with the gear sleeve. When the faucet is blocked, the second motor is controlled to rotate, the sleeve seat can be driven when the second motor rotates, the sleeve seat is rotated at this time, automatic unblocking can be realized when the sleeve seat is rotated, manual unblocking is not required, the unblocking efficiency is improved, and unblocking can be realized without stopping, so that the mud treatment efficiency is ensured.
[0012] Further, the mounting seat is provided with an adjusting part;
[0013] The adjusting part comprises a mounting arm, first guide rods, a clamping seat, second guide rods, clamping blocks, threaded rods, locking screws, an electric cylinder, a force receiving seat, first protrusions and force receiving rods. The mounting arm is fixed on the mounting seat, two first guide rods are slidably connected to the mounting arm and fixed to the clamping seat, two second guide rods are symmetrically welded to the front end surface of the clamping seat, and clamping blocks are slidably connected to the two second guide rods.
[0014] A threaded rod is rotationally connected to the clamping seat, and the threaded rod is threadedly connected with the clamping blocks. A locking screw for locking the threaded rod is threadedly connected to the threaded rod.
[0015] Further, an electric cylinder is mounted on the mounting arm, and one end of the electric cylinder on the right side is fixed to the clamping seat. When the electric cylinder is extended or retracted, the clamping seat moves left and right.
[0016] Further, the clamping seat and the clamping blocks clamp a pipeline part.
[0017] The pipeline part comprises a slurry inlet pipe and a water inlet pipe, and the slurry inlet pipe and the water inlet pipe are clamped by the clamping seat and the clamping blocks.
[0018] Further, the clamping grooves on the clamping seat and the clamping blocks are both V-shaped groove structures.
[0019] Further, a force receiving seat is welded to the mounting arm, the force receiving seat is a rectangular block structure, a first protrusion is linearly arrayed and welded to the top end surface of the force receiving seat, and the first protrusion is a semicircular cylindrical structure.
[0020] The bottom end face of the clamping seat is welded with a force bearing rod, the force bearing rod is a spring rod structure, the force bearing rod is a cylindrical rod structure, the lower end of the force bearing rod is polished, the lower end of the force bearing rod is an arc structure after polishing, the lower end of the force bearing rod is in contact with the top end face of the force bearing seat, the force bearing rod is in continuous elastic contact with the first protrusion when the clamping seat moves left and right, at this time, the pulp feeding pipe and the water feeding pipe are in a continuous vibration state, when adjusting the feeding position, directly control the continuous extension and contraction of the electric cylinder, when the electric cylinder continuously extends and contracts, the clamping seat and the clamping block are in a left and right moving state, at the same time, the pulp feeding pipe and the water feeding pipe are also in a left and right continuous moving state, at this time, the uniformity of feeding is ensured.
[0021] At the same time, because the lower end of the force bearing rod is in contact with the top end face of the force bearing seat, when the clamping seat moves left and right, the force bearing rod is in continuous elastic contact with the first protrusion, at this time, the continuous vibration of the pulp feeding pipe and the water feeding pipe is realized, thereby avoiding the blockage of the pulp feeding pipe.
[0022] When installing the pulp feeding pipe and the water feeding pipe, place the pulp feeding pipe and the water feeding pipe between the clamping seat and the clamping block, then rotate the threaded rod to lock, when the threaded rod is adjusted, tighten the locking screw to lock the threaded rod, preventing the threaded rod from loosening during use
[0023] During installation, because the clamping grooves on the clamping seat and the clamping block are V-shaped groove structures, different diameter pulp feeding pipes and water feeding pipes can be clamped at this time.
[0024] Further, the force bearing seat is provided with an auxiliary part;
[0025] The auxiliary part is composed of a seat body and a second protrusion, the seat body is welded on the force bearing seat, the second protrusion is linearly arrayed and welded on the seat body, the second protrusion is in elastic contact with the pulp feeding pipe and the water feeding pipe, and the pulp feeding pipe and the water feeding pipe are in a forward and backward swinging state under the extrusion of the second protrusion when they move left and right.
[0026] Further, the second protrusion is a semi-cylindrical structure, the second protrusion is a protective extrusion structure for the pulp feeding pipe and the water feeding pipe, when the pulp feeding pipe and the water feeding pipe move left and right with the clamping seat and the clamping block, they swing forward and backward under the extrusion of the second protrusion at this time, which improves the uniformity of feeding and ensures the quality of subsequent processing.
[0027] Advantages
[0028] The adjusting part is arranged, and through the arrangement of the adjusting part, on the one hand, when the feeding position is adjusted, the electric cylinder can be directly controlled to continuously extend and retract, when the electric cylinder continuously extends and retracts, the clamping seat and the clamping block are in a left-right moving state, and at the same time, the pulp feeding pipe and the water feeding pipe are also in a left-right continuous moving state, so that the uniformity of feeding is ensured; at the same time, because the one end of the stress rod below is in contact with the top end surface of the stress seat, when the clamping seat moves left and right, the stress rod is in continuous elastic contact with the first protrusion, so that the continuous vibration of the pulp feeding pipe and the water feeding pipe is realized, thereby avoiding the blockage of the pulp feeding pipe; on the other hand, when the pulp feeding pipe and the water feeding pipe are installed, the pulp feeding pipe and the water feeding pipe are placed between the clamping seat and the clamping block, and then the threaded rod is rotated to be locked, when the threaded rod is adjusted, the locking screw is tightened to lock the threaded rod, so as to prevent the threaded rod from loosening during use; during installation, because the clamping grooves on the clamping seat and the clamping block are V-shaped groove structures, the clamping of pulp feeding pipes and water feeding pipes with different diameters can be realized, the uniformity of feeding can be ensured through reciprocating motion, and the pipe clamping and installation are efficient and will not loosen.
[0029] The feeding part is arranged, when the faucet is blocked, the second motor is controlled to rotate, the sleeve seat can be driven, the sleeve seat is rotated, automatic unblocking is realized, manual unblocking is not needed, the unblocking efficiency is improved, unblocking is not needed during shutdown, the mud treatment efficiency is ensured, and the convenience and practicality during use are improved.
[0030] The auxiliary part is arranged, when the pulp feeding pipe and the water feeding pipe move left and right with the clamping seat and the clamping block, the pulp feeding pipe and the water feeding pipe swing forward and backward under the extrusion of the second protrusion, the uniformity of feeding is improved, the subsequent treatment quality is ensured, the structure is strong, and a separate electric element is not needed for driving. BRIEF DESCRIPTION OF DRAWINGS
[0031] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.
[0032] The drawings in the following description only relate to some embodiments of the present application, and are not a limitation of the present application.
[0033] In the drawings:
[0034] Figure 1 is the axial view structural schematic diagram of the feeding device of the mud purifier of the present application.
[0035] Figure 2 is the main view structural schematic diagram of the feeding device of the mud purifier of the present application.
[0036] Figure 3 is the axial view structural schematic diagram of the feeding device of the mud purifier of the present application. Figure 1 is the axial view structural schematic diagram of the feeding device of the mud purifier of the present application.
[0037] Figure 4 is a top view structural schematic diagram of the feeding device of the mud purifier of the present application.
[0038] Figure 5 is an enlarged structural schematic diagram of A of the present application Figure 4 .
[0039] Figure 6 is an axial view structural schematic diagram of the faucet, the gear sleeve, the second motor, the gear and the sleeve seat of the present application.
[0040] Figure 7 is an axial view structural schematic diagram of the adjusting part of the present application.
[0041] Figure 8 is an enlarged structural schematic diagram of B of the present application Figure 7 .
[0042] List of reference signs
[0043] 1, mounting seat; 2, feeding part; 201, mud suction pump; 202, first motor; 203, mud suction pipe; 204, faucet; 205, gear sleeve; 206, second motor; 207, gear; 208, sleeve seat; 3, adjusting part; 301, mounting arm; 302, first guide rod; 303, clamping seat; 304, second guide rod; 305, clamping block; 306, threaded rod; 307, locking screw; 308, electric cylinder; 309, force receiving seat; 310, first protrusion; 311, force receiving rod; 4, pipeline part; 401, slurry inlet pipe; 402, water inlet pipe; 5, auxiliary part; 501, seat body; 502, second protrusion. DETAILED DESCRIPTION
[0044] In order to make the purpose, scheme and advantages of the technical solutions of the present application clearer, the technical solutions of the embodiments of the present application will be described clearly and completely in the following with reference to the drawings of the specific embodiments of the present application. Unless otherwise specified, the terms used herein have the meanings commonly used in the art. The same reference signs in the drawings represent the same components.
[0045] Embodiment one:
[0046] Please refer to Figures 1 to 8 :
[0047] The present application provides a feeding device of a mud purifier, comprising: a mounting seat 1;
[0048] The mounting seat 1 is fixed on the mud purifier, and the mounting seat 1 is provided with a feeding part 2.
[0049] The feeding part 2 is composed of a suction pump 201, a first motor 202, a suction pipe 203, a faucet 204, a gear sleeve 205, a second motor 206, a gear 207 and a sleeve 208, the suction pump 201 is fixed on the mounting seat 1, and the first motor 202 is installed on the suction pump 201 for driving the suction pump 201;
[0050] The suction pipe 203 is connected to the suction pump 201, and the faucet 204 is installed on the suction pipe 203.
[0051] The faucet 204 is further rotationally connected to the sleeve 208, the sleeve 208 and the faucet 204 are both annularly arrayed with feeding holes, the feeding holes on the sleeve 208 and the faucet 204 are the same size and are aligned;
[0052] The sleeve 208 is fixedly welded with the gear sleeve 205, the second motor 206 is fixed on the faucet 204, the gear 207 is fixed on the bottom end surface of the second motor 206, the gear 207 is engaged with the gear sleeve 205, when the faucet 204 is blocked, the second motor 206 is controlled to rotate, the sleeve 208 is driven when the second motor 206 rotates, the sleeve 208 is rotated, automatic unblocking is realized when the sleeve 208 is rotated, manual unblocking is not needed, the unblocking efficiency is improved, and unblocking is realized without stopping, so that the mud treatment efficiency is ensured.
[0053] Embodiment two:
[0054] On the basis of embodiment one, as shown in Figure 3 Figure 7 and Figure 8 It further includes an adjusting part 3 and a pipeline part 4, the adjusting part 3 is installed on the mounting seat 1.
[0055] The adjusting part 3 is composed of an installation arm 301, two first guide rods 302, a clamping seat 303, two second guide rods 304, a clamping block 305, a threaded rod 306, a locking screw 307, an electric cylinder 308, a stress seat 309, a first protrusion 310 and a stress rod 311, the installation arm 301 is fixed on the mounting seat 1, the two first guide rods 302 are slidably connected to the installation arm 301, the two first guide rods 302 are both fixed with the clamping seat 303, the two second guide rods 304 are symmetrically welded on the front end surface of the clamping seat 303, and the clamping block 305 is slidably connected to the two second guide rods 304.
[0056] The clamping seat 303 is rotationally connected with the threaded rod 306, the threaded rod 306 is threadedly connected with the clamping block 305, the threaded rod 306 is threadedly connected with the locking screw 307 for locking the threaded rod 306.
[0057] The mounting arm 301 is provided with an electric cylinder 308, and the right end of the electric cylinder 308 is fixed on the clamping seat 303, so that the clamping seat 303 moves left and right when the electric cylinder 308 is extended or retracted.
[0058] The clamping seat 303 and the clamping block 305 clamp the pipeline part 4.
[0059] The pipeline part 4 is composed of a pulp feeding pipe 401 and a water feeding pipe 402, and the pulp feeding pipe 401 and the water feeding pipe 402 are clamped by the clamping seat 303 and the clamping block 305.
[0060] The clamping grooves on the clamping seat 303 and the clamping block 305 are V-shaped groove structures.
[0061] The mounting arm 301 is welded with a force receiving seat 309, which is a rectangular block structure, and the top end surface of the force receiving seat 309 is linearly arrayed with a first protrusion 310, which is a semi-cylindrical structure.
[0062] The bottom end surface of the clamping seat 303 is welded with a force receiving rod 311, which is a spring rod structure and a cylindrical rod structure, and the lower end of the force receiving rod 311 is polished to be an arc structure, and the lower end of the force receiving rod 311 is in contact with the top end surface of the force receiving seat 309, and the force receiving rod 311 is in continuous elastic contact with the first protrusion 310 when the clamping seat 303 moves left and right, so that the pulp feeding pipe 401 and the water feeding pipe 402 are in continuous vibration state, and the electric cylinder 308 is directly controlled to continuously extend and retract when adjusting the feeding position, so that the clamping seat 303 and the clamping block 305 move left and right, and at the same time, the pulp feeding pipe 401 and the water feeding pipe 402 also move left and right, which ensures the uniformity of feeding.
[0063] At the same time, the lower end of the force receiving rod 311 is in contact with the top end surface of the force receiving seat 309, and the force receiving rod 311 is in continuous elastic contact with the first protrusion 310 when the clamping seat 303 moves left and right, so that the pulp feeding pipe 401 and the water feeding pipe 402 are in continuous vibration, thereby avoiding the blockage of the pulp feeding pipe 401.
[0064] When the pulp feeding pipe 401 and the water feeding pipe 402 are installed, the pulp feeding pipe 401 and the water feeding pipe 402 are placed between the clamping seat 303 and the clamping block 305, and then the threaded rod 306 is rotated to lock, and the locking screw 307 is tightened to lock the threaded rod 306 after the threaded rod 306 is adjusted, so as to prevent the threaded rod 306 from loosening during use.
[0065] In the installation process, the clamping grooves on the clamping seat 303 and the clamping block 305 are V-shaped groove structures, so that the pulp inlet pipe 401 and the water inlet pipe 402 of different diameters can be clamped.
[0066] Embodiment three:
[0067] Based on embodiment two, as shown in Figure 3 The auxiliary part 5 is installed on the stress seat 309.
[0068] The auxiliary part 5 is composed of a seat body 501 and a second protrusion 502. The seat body 501 is welded on the stress seat 309, and the second protrusion 502 is linearly arrayed and welded on the seat body 501. The second protrusion 502 is in elastic contact with the pulp inlet pipe 401 and the water inlet pipe 402. When the pulp inlet pipe 401 and the water inlet pipe 402 move left and right, they swing forward and backward under the extrusion of the second protrusion 502.
[0069] The second protrusion 502 is a semi-cylindrical structure, which is a protective extrusion structure for the pulp inlet pipe 401 and the water inlet pipe 402. When the pulp inlet pipe 401 and the water inlet pipe 402 move left and right with the clamping seat 303 and the clamping block 305, they swing forward and backward under the extrusion of the second protrusion 502. This improves the uniformity of the feed and ensures the quality of subsequent processing.
[0070] The specific use and effect of the embodiment:
[0071] When feeding, start the pulp pump 201;
[0072] When the faucet 204 is blocked, the second motor 206 can be controlled to rotate. When the second motor 206 rotates, it can drive the sleeve seat 208 to rotate. When the sleeve seat 208 rotates, it can automatically clear the blockage without manual clearing, improving the clearing efficiency and ensuring the mud treatment efficiency without stopping for clearing.
[0073] When adjusting the feeding position, the electric cylinder 308 can be directly controlled to continuously stretch and retract. When the electric cylinder 308 continuously stretches and retracts, the clamping seat 303 and the clamping block 305 move left and right, and at the same time, the pulp inlet pipe 401 and the water inlet pipe 402 also move left and right continuously. This ensures the uniformity of the feed.
[0074] At the same time, the stress rod 311 is in continuous elastic contact with the first protrusion 310 when the clamping seat 303 moves left and right, which realizes the continuous vibration of the pulp inlet pipe 401 and the water inlet pipe 402, thereby avoiding the blockage of the pulp inlet pipe 401.
[0075] When the pulp inlet pipe 401 and the water inlet pipe 402 are installed, the pulp inlet pipe 401 and the water inlet pipe 402 are placed between the clamping seat 303 and the clamping block 305, and then the threaded rod 306 is rotated to be locked, and when the threaded rod 306 is adjusted, the locking screw 307 is tightened to lock the threaded rod 306, so that the threaded rod 306 is prevented from loosening during use
[0076] During installation, the clamping grooves on the clamping seat 303 and the clamping block 305 are V-shaped groove structures, so that the pulp inlet pipe 401 and the water inlet pipe 402 with different diameters can be clamped;
[0077] When the pulp inlet pipe 401 and the water inlet pipe 402 move left and right with the clamping seat 303 and the clamping block 305, the pulp inlet pipe 401 and the water inlet pipe 402 swing forward and backward under the extrusion of the second protrusion 502, so that the uniformity of the inlet material is improved, and the subsequent processing quality is ensured.
Claims
1. A feed device for a mud purifier, characterized in that The utility model relates to a mud purifier pipe automatic adjusting device, including: Mounting seat (1), mounting seat (1) is fixed on mud purifier, and the feeding part (2) is installed on mounting seat (1), the feeding part (2) is composed of mud pump (201), first motor (202), mud pipe (203), tap (204), gear cover (205), second motor (206), gear (207) and cover seat (208), mud pump (201) is fixed on mounting seat (1), and mud pump (201) is installed with first motor (202) for the drive of itself, mud pump (201) is connected with mud pipe (203), and mud pipe (203) is installed with tap (204); Mounting seat (1) is installed with adjustment part (3); Adjustment part (3) is composed of mounting arm (301), first guide rod (302), clamping seat (303), second guide rod (304), clamping block (305), threaded rod (306), locking screw (307), electric cylinder (308), force receiving seat (309), first protrusion (310) and force receiving rod (311), mounting arm (301) is fixed on mounting seat (1), and two first guide rods (302) are slidably connected on mounting arm (301), and the two first guide rods (302) are both fixed with clamping seat (303), and two second guide rods (304) are symmetrically welded on the front end face of clamping seat (303), and clamping block (305) is slidably connected on the two second guide rods (304); One threaded rod (306) is rotatably connected on clamping seat (303), and threaded rod (306) is threadedly connected with clamping block (305); One locking screw (307) for locking threaded rod (306) is threadedly connected on threaded rod (306); One electric cylinder (308) is installed on mounting arm (301), and the right side of electric cylinder (308) is fixed on clamping seat (303), and clamping seat (303) is in left and right moving state when electric cylinder (308) is retracted and extended; Pipe part (4) is clamped between clamping seat (303) and clamping block (305); Pipe part (4) is composed of mud inlet pipe (401) and water inlet pipe (402), and mud inlet pipe (401) and water inlet pipe (402) are clamped through clamping seat (303) and clamping block (305); The clamping groove on clamping seat (303) and clamping block (305) is V-shaped groove structure; One force receiving seat (309) is welded on mounting arm (301), and force receiving seat (309) is rectangular block structure, and first protrusion (310) is linearly arrayed and welded on the top end face of force receiving seat (309), and first protrusion (310) is semicylindrical structure; The bottom end face of the clamping seat (303) is welded with a force bar (311), the force bar (311) is a spring bar structure, the force bar (311) is a cylindrical bar structure, the lower end of the force bar (311) is polished, the lower end of the force bar (311) is an arc structure after polishing, the lower end of the force bar (311) is in contact with the top end face of the force bearing (309), the force bar (311) is in continuous elastic contact with the first protrusion (310) when the clamping seat (303) moves left and right, at this time, the pulp inlet pipe (401) and the water inlet pipe (402) are in a continuous vibration state; The force bearing (309) is installed with an auxiliary part (5); The auxiliary part (5) is composed of a seat body (501) and a second protrusion (502), the seat body (501) is welded on the force bearing (309), the second protrusion (502) is welded on the seat body (501) in a linear array, the second protrusion (502) is in elastic contact with the pulp inlet pipe (401) and the water inlet pipe (402), and the pulp inlet pipe (401) and the water inlet pipe (402) are in a front and back swing state under the extrusion of the second protrusion (502) when they move left and right; The second protrusion (502) is a semi-cylindrical structure, and the second protrusion (502) is a protective extrusion structure of the pulp inlet pipe (401) and the water inlet pipe (402).
2. The feed arrangement for a mud purifier of claim 1 wherein: The faucet (204) is also rotationally connected with a sleeve seat (208), the sleeve seat (208) and the faucet (204) are both provided with feed holes in an annular array, the feed holes on the sleeve seat (208) and the faucet (204) are the same size and are in alignment; The sleeve seat (208) is fixedly welded with a gear sleeve (205), the faucet (204) is fixedly provided with a second motor (206), the second motor (206) is fixedly provided with a gear (207) at the bottom end face, and the gear (207) is in meshing connection with the gear sleeve (205).
Citation Information
Patent Citations
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