A production device for a dispersant

By designing a dispersant production device with a spherical valve and an adjustable gear rod, the problem of inability to regulate the dispersant in the prior art is solved, and efficient and resource-saving dispersant production is achieved.

CN119796622BActive Publication Date: 2025-06-13SHANDONG GUOQIAO BUILDING MATERIALS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510272044.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2025-06-13
Estimated Expiration
2045-03-10

AI Technical Summary

Technical Problem

The prior art cannot regulate the dispersing amount during the dispersing agent aliquoting process, resulting in waste of resources and environmental pollution.

Method used

A dispersant production device is designed, including a base plate, a support frame, a storage cylinder, a discharge tube, a ball valve and an adjustable stopper. The drive mechanism drives the placement plate and the stop rod to rotate simultaneously, and controls the opening and closing of the ball valve to adjust the discharge volume.

Benefits of technology

Effective adjustment of the dispersant feeding amount is achieved, production efficiency is improved, and resource waste and environmental pollution are reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a production device for a dispersant, which includes a bottom plate and a support frame fixedly arranged on the bottom plate. A plurality of storage cylinders for containing the dispersant are fixedly arranged on the support frame, and a discharge pipe is communicated with the bottom of the storage cylinder; the present invention relates to the technical field of dispersant processing. In this production device for the dispersant, through the cooperative setting of a driving mechanism, a blocking rod and a spherical valve, the driving mechanism can drive the first placing plate and the second placing plate to drive the material taking tank to intermittently move below each discharge pipe for material taking. At the same time, during the rotation of the second placing plate, the blocking rod can be driven to push the spherical valve to rotate for discharging. After the discharging is completed, the spherical valve can automatically reset to block the inside of the discharge pipe, and each material taking tank can also move in sequence for material taking, which saves time and effort and improves the production efficiency of the dispersant.
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Description

Technical Field

[0001] The present invention relates to the technical field of dispersant processing, and specifically to a production device for a dispersant. Background Art

[0002] A dispersant is an interfacial active agent that simultaneously has two opposite properties of lipophilicity and hydrophilicity within a molecule.

[0003] Chinese Patent with publication number CN220721634U discloses a packaging device for a polymer dispersant, which relates to the technical field of dispersant packaging. It includes a base. A liquid storage tank is provided on the outer wall of the top of the base. A guide groove is opened on the base. A fixing mechanism is provided on the base. The fixing mechanism includes a first motor, a bidirectional screw, and a pressing plate. The first motor is installed on the outer wall of the base. One end of the bidirectional screw is rotatably connected to the inner wall of the guide groove; through the setting of the fixing mechanism, the utility model can fix packaging barrels of different shapes, prevent the packaging barrels from shaking during the packaging process, resulting in the spillage of the dispersant, causing waste of resources and environmental pollution, and through the cooperation of the third motor and the screw, it can drive the filling head to rise and fall, adapt to the heights of different packaging barrels, and keep an appropriate distance from the packaging barrels to prevent the dispersant from splashing outside during the packaging process. However, in the above-mentioned prior art, when packaging the dispersant, the packaging quantity cannot be adjusted; for this reason, the present invention provides a production device for a dispersant to solve the above-mentioned problems. Summary of the Invention

[0004] Aiming at the deficiencies of the prior art, the present invention provides a production device for a dispersant, which solves the problems mentioned in the above background art.

[0005] To achieve the above purposes, the present invention is realized through the following technical solutions: A production device for a dispersant includes a bottom plate and a support frame fixedly arranged on the bottom plate. A plurality of storage cylinders for containing the dispersant are fixedly arranged on the support frame. A discharge pipe is communicated with the bottom of the storage cylinder. A first placement plate and a second placement plate are arranged on the bottom plate. A plurality of through holes are penetrated through the second placement plate. A material taking tank passing through the through holes is placed on the first placement plate. A spherical valve is rotatably arranged inside the discharge pipe. A height-adjustable stop rod is penetrated through the second placement plate. A driving mechanism is arranged on the bottom plate. Among them, the driving mechanism drives the first placement plate and the second placement plate to rotate synchronously, and the second placement plate drives the stop rod to rotate during the rotation process. When the material taking tank rotates to the lower part of the discharge pipe, the first placement plate and the second placement plate stop rotating, and the stop rod pushes the spherical valve to open. A locking structure for limiting the second placement plate is arranged on the support frame.

[0006] Preferably, a plurality of limiting rods are fixedly arranged at the bottom edge of the second placing plate, and the limiting rods penetrate through the first placing plate and are slidably arranged on its inner surface.

[0007] Preferably, a supporting block is fixedly arranged on the supporting frame, a supporting ring is fixedly arranged on the outer surface of the second placing plate, and the bottom of the supporting ring is slidably arranged on the inner surface of the supporting block.

[0008] Preferably, a connecting shaft is rotatably arranged through the side wall of the discharge pipe, the spherical valve is fixedly arranged at the end of the connecting shaft, a torsion spring is fixedly arranged on the outer surface of the connecting shaft, wherein one end of the torsion spring is fixedly arranged on the outer surface of the discharge pipe, and a baffle is fixedly arranged on one side of the bottom of the connecting shaft.

[0009] Preferably, an external thread is formed on the outer surface of the blocking rod, a plurality of adjusting holes are formed through the second placing plate, and an internal thread is formed on the inner surface of the adjusting holes. Among them, the external thread of the blocking rod is matched with the internal thread in a rotating manner.

[0010] Preferably, the driving mechanism includes a driving screw rod rotatably arranged on the bottom plate, the first placing plate is in threaded connection with the outer surface of the driving screw rod, a braking disc is fixedly arranged on the outer surface of the driving screw rod, a plurality of extending rods are fixedly arranged on the surface of the braking disc, a driving motor is fixedly arranged on the bottom plate, a limiting disc is fixedly arranged on the output shaft of the driving motor, and a driving rod extending between two adjacent extending rods is fixedly arranged on the surface of the limiting disc. Among them, the driving motor drives the driving rod to push the extending rod to rotate, so as to drive the driving screw rod to rotate, and the driving screw rod drives the second placing plate to rotate synchronously through a transmission component during the rotation process.

[0011] Preferably, a plurality of limiting grooves are formed by inward depression on the outer surface of the braking disc, and a receiving groove is formed through the edge part of the limiting disc. Among them, the end of the extending rod points to the center of the limiting groove, and the end of the driving rod points to the horizontal center line of the receiving groove.

[0012] Preferably, the transmission component includes a first gear disc fixedly arranged at the top end of the driving screw rod, a transmission shaft is fixedly arranged at the bottom of the second placing plate, and a second gear disc meshing with the first gear disc is slidably arranged on the outer surface of the transmission shaft. A connecting elastic member is fixedly arranged on the outer surface of the transmission shaft, and one end of the connecting elastic member is fixedly arranged with the second gear disc.

[0013] Preferably, the locking structure includes a locking block slidably arranged on the side wall of the support frame, a locking elastic member is fixedly arranged on one side of the locking block and the outer surface of the support frame, a first electromagnet is fixedly arranged on the other side of the locking block, and a second electromagnet is embedded on the outer surface of the second placing plate. Beneficial effects

[0014] The present invention provides a production device for a dispersant. Compared with the prior art, it has the following beneficial effects:

[0015] (1) In the production device for the dispersant, through the cooperative setting of a driving mechanism, a stop rod, and a spherical valve, the driving mechanism can drive the first placement plate and the second placement plate to drive the material taking tank to intermittently move below each discharge pipe for material taking. At the same time, during the rotation of the second placement plate, the stop rod can be driven to push the spherical valve to rotate for discharging. After discharging is completed, the spherical valve can automatically reset to block the inside of the discharge pipe, and each material taking tank can also move in sequence for material taking, saving time and effort and improving the production efficiency of the dispersant.

[0016] (2) In the production device for the dispersant, by providing an adjustable stop rod, the height of the stop rod can be adjusted according to requirements, so that when the stop rod pushes the spherical valve, it drives the spherical valve to rotate by different angles, thereby effectively adjusting the discharging amount.

[0017] (3) In the production device for the dispersant, through the cooperative setting of a transmission component and a locking structure, during filling, the second placement plate and the first placement plate can drive the material taking tank to rotate intermittently synchronously. After filling is completed, by locking the position of the second placement plate, when the driving mechanism operates at this time, the first placement plate can be driven to move downward until the material taking tank moves out of the through hole, facilitating the staff to take and place the material taking tank. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a three-dimensional external structure diagram of the present invention;

[0019] Figure 2 is a connection schematic diagram of the second placement plate and the support frame of the present invention;

[0020] Figure 3 is a schematic diagram of the through hole structure of the present invention;

[0021] Figure 4 is a schematic diagram of the cross-section of the discharge pipe of the present invention;

[0022] Figure 5 is a schematic diagram of the stop rod structure of the present invention;

[0023] Figure 6 is a schematic diagram of the driving mechanism of the present invention;

[0024] Figure 7 is a connection schematic diagram of the driving mechanism and the first placement plate of the present invention;

[0025] Figure 8 is a schematic diagram of the transmission component of the present invention;

[0026] Figure 9 For the present invention Figure 8 Enlarged schematic view of location A in the present invention;

[0027] Figure 10 Connection schematic diagram of the second placement plate and the locking structure of the present invention;

[0028] Figure 11 For the present invention Figure 10 Enlarged schematic view of location B in the present invention.

[0029] In the figure: 1 - bottom plate, 2 - support frame, 3 - storage cylinder, 4 - discharge pipe, 5 - first placement plate, 6 - second placement plate, 601 - limiting rod, 602 - support block, 603 - support ring, 7 - through hole, 8 - material taking tank, 9 - spherical valve, 901 - connecting shaft, 902 - torsion spring, 903 - baffle plate, 10 - stop rod, 1001 - external thread, 1002 - adjustment hole, 1003 - internal thread, 11 - driving mechanism, 1101 - driving screw, 1102 - brake disc, 1103 - extension rod, 1104 - driving motor, 1105 - limiting disc, 1106 - driving rod, 1107 - transmission component, 11071 - first gear disc, 11072 - transmission shaft, 11073 - second gear disc, 11074 - connecting elastic member, 1108 - limiting groove, 1109 - receiving groove, 12 - locking structure, 1201 - locking block, 1202 - locking elastic member, 1203 - first electromagnet, 1204 - second electromagnet. Detailed implementation manners

[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0031] Please refer to Figure 1-11 , the present invention provides the following technical solutions:

[0032] Embodiment 1: A production device for a dispersant, comprising a bottom plate 1 and a support frame 2 fixedly arranged on the bottom plate 1. A plurality of storage cylinders 3 for containing the dispersant are fixedly arranged on the support frame 2. A sealing cover adapted to the storage cylinder 3 is arranged at the top of the storage cylinder 3. A discharge pipe 4 is communicated with the bottom of the storage cylinder 3, and the dispersant is discharged through the discharge pipe 4. A first placing plate 5 and a second placing plate 6 are arranged on the bottom plate 1. A plurality of through holes 7 are formed through the second placing plate 6. A material taking tank 8 passing through the through holes 7 is placed on the first placing plate 5. Through the arrangement of the through holes 7, the material taking tank 8 can be limited, preventing the position of the material taking tank 8 from shifting due to centrifugal force when the first placing plate 5 rotates. A spherical valve 9 is rotatably arranged inside the discharge pipe 4. The outer surface of the spherical valve 9 contacts the inner surface of the discharge pipe 4. A material discharging hole is formed through the center of the spherical valve 9. And in the initial state, the material discharging hole on the spherical valve 9 is perpendicular to the through position of the discharge pipe 4. At this time, the inside of the discharge pipe 4 is blocked and no discharging can be carried out. A height-adjustable stop rod 10 is arranged through the second placing plate 6. Thus, according to the requirements of the discharging amount, the height of the stop rod 10 can be adjusted. When it moves, it can push the spherical valve 9 to rotate by different angles, and effectively control the discharging amount by controlling the discharging speed. A driving mechanism 11 is arranged on the bottom plate 1. Among them, the driving mechanism 11 drives the first placing plate 5 and the second placing plate 6 to rotate synchronously, and the second placing plate 6 drives the stop rod 10 to rotate during the rotation process. When the material taking tank 8 rotates to the lower part of the discharge pipe 4, the first placing plate 5 and the second placing plate 6 stop rotating, and the stop rod 10 pushes the spherical valve 9 to open. A locking structure 12 for limiting the second placing plate 6 is arranged on the support frame 2. When the second placing plate 6 is locked, the driving mechanism 11 operates, which can drive the first placing plate 5 to move in the vertical direction, thereby driving the material taking tank 8 to move out of the through holes 7, facilitating the taking and placing of the material taking tank 8.

[0033] As a further technical solution, a plurality of limiting rods 601 are fixedly arranged at the bottom edge of the second placing plate 6. The limiting rods 601 penetrate through the first placing plate 5 and are slidably arranged on its inner surface. Through the arrangement of the limiting rods 601, the first placing plate 5 can rotate synchronously with the second placing plate 6, and at the same time, the first placing plate 5 can be limited and guided.

[0034] As a further technical solution, a support block 602 is fixedly arranged on the support frame 2. A support ring 603 is fixedly arranged on the outer surface of the second placing plate 6. The bottom of the support ring 603 is slidably arranged on the inner surface of the support block 602. Through the cooperative arrangement of the support block 602 and the support ring 603, support is provided for the second placing plate 6, improving its stability during the rotation process.

[0035] As a further technical solution, a connecting shaft 901 is rotatably arranged through the side wall of the discharge pipe 4, a spherical valve 9 is fixedly arranged at the end of the connecting shaft 901, and a torsion spring 902 is fixedly arranged on the outer surface of the connecting shaft 901. One end of the torsion spring 902 is fixedly arranged on the outer surface of the discharge pipe 4. When the torsion spring 902 is not subject to external force, it drives the material discharge hole on the spherical valve 9 to be perpendicular to the through position of the discharge pipe 4. At this time, the inside of the discharge pipe 4 is blocked and no material can be discharged. A baffle 903 is fixedly arranged on one side of the bottom of the connecting shaft 901, so that when the second placement plate 6 drives the stop rod 10 to rotate, the stop rod 10 can push the baffle 903, thereby driving the connecting shaft 901 to rotate, and the connecting shaft 901 drives the spherical valve 9 to rotate.

[0036] As a further technical solution, an external thread 1001 is formed on the outer surface of the stop rod 10, and a plurality of adjustment holes 1002 are formed through the second placement plate 6. An internal thread 1003 is formed on the inner surface of the adjustment hole 1002. The external thread 1001 is matched with the internal thread 1003 by rotating the stop rod 10. By rotating the bottom of the stop rod 10, under the cooperation of the external thread 1001 and the internal thread 1003, the stop rod 10 rotates and moves in the vertical direction at the same time, so as to adjust its height.

[0037] In this technical solution, a gravity sensor can be placed at the bottom of the material taking tank 8 in advance, and the position of the stop rod 10 can be adjusted adaptively according to the intermittent rotation time of the second placement plate 6 and the required weight of the dispersant.

[0038] When the second placement plate 6 and the first placement plate 5 rotate synchronously, they drive the material taking tank 8 and the stop rod 10 to rotate together. During the rotation process, the stop rod 10 gradually approaches the baffle 903. When a part of the material taking tank 8 rotates below the discharge pipe 4, at this time, the stop rod 10 contacts the baffle 903 until the stop rod 10 pushes the baffle 903 to rotate to a specified angle, and the second placement plate 6 and the first placement plate 5 stop rotating. The baffle 903 drives the connecting shaft 901 to rotate, so that the connecting shaft 901 drives the spherical valve 9 to rotate. At this time, the material can be discharged through the material discharge hole on the spherical valve 9 and fall into the material taking tank 8. When the material taking is completed, the second placement plate 6 and the first placement plate 5 continue to rotate, the stop rod 10 is separated from the baffle 903, and under the action of the torsion spring 902, the spherical valve 9 is driven to reset, and the inside of the discharge pipe 4 is blocked again.

[0039] Among them, regarding the design of the driving mechanism 11, the driving mechanism 11 includes a driving screw 1101 rotatably arranged on the bottom plate 1. The first placing plate 5 is threadedly connected to the outer surface of the driving screw 1101. A brake disc 1102 is fixedly arranged on the outer surface of the driving screw 1101. A plurality of extension rods 1103 are fixedly arranged on the surface of the brake disc 1102. A driving motor 1104 is fixedly arranged on the bottom plate 1. The driving motor 1104 is a three-phase asynchronous motor that can rotate forward and backward and is electrically connected to an external power supply. A limit disc 1105 is fixedly arranged on the output shaft of the driving motor 1104. A driving rod 1106 extending between two adjacent extension rods 1103 is fixedly arranged on the surface of the limit disc 1105. Among them, the driving motor 1104 drives the driving rod 1106 to push the extension rod 1103 to rotate, thereby driving the driving screw 1101 to rotate. During the rotation of the driving screw 1101, the second placing plate 6 is driven to rotate synchronously through the transmission component 1107. When the driving motor 1104 rotates, the driving rod 1106 is driven to rotate through the limit disc 1105, so that the driving rod 1106 pushes the extension rod 1103 to drive the driving screw 1101 to rotate. During the operation of the driving motor 1104, the driving rod 1106 intermittently pushes the extension rod 1103 in sequence, so that the driving screw 1101 rotates intermittently, driving the first placing plate 5 and the second placing plate 6 to rotate intermittently, so that the material taking tank 8 stops moving after moving below different storage cylinders 3 in sequence, and continues to rotate after the material taking is completed.

[0040] As a further technical solution, a plurality of limit grooves 1108 are formed by inward depression on the outer surface of the brake disc 1102. The outer surface of the limit disc 1105 fits with the inner surface of the limit groove 1108. A receiving groove 1109 is formed through the edge portion of the limit disc 1105. Among them, the end of the extension rod 1103 points to the center of the limit groove 1108, and the end of the driving rod 1106 points to the horizontal center line of the receiving groove 1109. Through the cooperative setting of the limit groove 1108 and the limit disc 1105, when the driving rod 1106 disengages from the extension rod 1103, the brake disc 1102 can be limited by the limit disc 1105. At this time, the driving screw 1101 stops rotating to prevent it from continuing to rotate under the action of inertia. Through the setting of the receiving groove 1109, when the driving rod 1106 gradually approaches and pushes the extension rod 1103, the extension rod 1103 can be placed in the receiving groove 1109 to prevent movement interference.

[0041] Among them, regarding the design of the transmission component 1107, the transmission component 1107 includes a first gear disc 11071 fixedly arranged at the top end of the driving screw 1101. A transmission shaft 11072 is fixedly arranged at the bottom of the second placing plate 6. A second gear disc 11073 meshing with the first gear disc 11071 is slidably arranged on the outer surface of the transmission shaft 11072. A connecting elastic member 11074 is fixedly arranged on the outer surface of the transmission shaft 11072. The connecting elastic member 11074 is a spring, and its elastic coefficient can be set according to requirements. When the connecting elastic member 11074 is not subject to external force, it drives the second gear disc 11073 to mesh with the first gear disc 11071. One end of the connecting elastic member 11074 is fixedly arranged with the second gear disc 11073. When the second placing plate 6 is in a rotatable state, at this time, since the second gear disc 11073 meshes with the first gear disc 11071, when the driving screw 1101 rotates, it can drive the second placing plate 6 to rotate synchronously. The second placing plate 6 drives the first placing plate 5 to rotate through the limiting rod 601. When the second placing plate 6 is in a locked state, at this time, the second placing plate 6 cannot rotate, resulting in the transmission shaft 11072 and the second gear disc 11073 also being unable to rotate. Under the limiting action of the limiting rod 601, the first placing plate 5 is also limited. Therefore, when the driving screw 1101 rotates, it drives the first gear disc 11071 to rotate synchronously. During the rotation of the first gear disc 11071, it will push the second gear disc 11073 to move upward along the outer surface of the transmission shaft 11072, and the connecting elastic member 11074 is compressed. When the serrations on the first gear disc 11071 rotate to be misaligned with the serrations on the second gear disc 11073, under the action of the connecting elastic member 11074, it pushes the second gear disc 11073 to mesh with the first gear disc 11071, thereby driving the second gear disc 11073 to move up and down along the outer surface of the transmission shaft 11072. Since the first placing plate 5 is threadedly arranged on the outer surface of the driving screw 1101, it drives the first placing plate 5 to move downward along the outer surface of the limiting rod 601, driving the material taking tank 8 out of the through hole 7, facilitating the staff to take and place the material taking tank 8. After completion, reverse-start the driving motor 1104, and it can drive the first placing plate 5 to reset to the initial state.

[0042] Among them, regarding the design of the locking structure 12, the locking structure 12 includes a locking block 1201 slidably arranged on the side wall of the support frame 2. On one side of the locking block 1201, a locking elastic member 1202 is fixedly arranged on the outer surface of the support frame 2. The locking elastic member 1202 is a spring, and its elastic coefficient can be set according to requirements. On the other side of the locking block 1201, a first electromagnet 1203 is fixedly arranged. A second electromagnet 1204 is embedded in the outer surface of the second placement plate 6. The second electromagnet 1204 is electrically connected to an external power supply. And a card slot adapted to the second electromagnet 1204 is formed on the outer surface of the support ring 603. After the first electromagnet 1203 rotates to align with the second electromagnet 1204, the second electromagnet 1204 can be adsorbed to drive the locking block 1201 to insert into the card slot, thereby locking the position of the second placement plate 6.

[0043] After the material taking work is completed, the second electromagnet 1204 is powered on. When the second placement plate 6 drives the first electromagnet 1203 to move to align with the second electromagnet 1204, at this time, the first electromagnet 1203 adsorbs the second electromagnet 1204, drives the second electromagnet 1204 to insert into the support ring 603, locks the position of the second placement plate 6. At this time, the material taking tank 8 is also misaligned with each storage cylinder 3, and the inside of the discharge pipe 4 is in a blocked state.

[0044] Working principle:

[0045] S1. Start the driving motor 1104, drive the driving rod 1106 to rotate through the limiting disc 1105, so that the driving rod 1106 pushes the extension rod 1103 to drive the driving screw 1101 to rotate. Since the second gear disc 11073 meshes with the first gear disc 11071, when the driving screw 1101 rotates, the second placement plate 6 can be driven to rotate synchronously. The second placement plate 6 drives the first placement plate 5 to rotate through the limiting rod 601, thereby driving the material taking tank 8 to move;

[0046] S2. When the material taking tank 8 gradually moves below the storage cylinder 3, the stop rod 10 gradually approaches the baffle 903. When a part of the material taking tank 8 rotates below the discharge pipe 4, at this time, the stop rod 10 contacts the baffle 903 until the stop rod 10 pushes the baffle 903 to rotate to a specified angle. At this time, the driving rod 1106 is separated from the extension rod 1103, and the second placement plate 6 and the first placement plate 5 stop rotating. The baffle 903 drives the connecting shaft 901 to rotate, so that the connecting shaft 901 drives the spherical valve 9 to rotate. At this time, the material can be discharged through the material discharging hole on the spherical valve 9 and fall into the material taking tank 8;

[0047] S3. After the material taking is completed, the second electromagnet 1204 is electrified. When the second placing plate 6 drives the first electromagnet 1203 to move to align with the second electromagnet 1204, at this time, the first electromagnet 1203 adsorbs the second electromagnet 1204, drives the second electromagnet 1204 to insert into the support ring 603, locks the position of the second placing plate 6. At this time, the material taking tank 8 is also misaligned with each storage cylinder 3, and the inside of the discharge pipe 4 is in a blocked state;

[0048] S4. The drive motor 1104 continues to operate, and the drive screw 1101 still rotates intermittently. At this time, the transmission shaft 11072 and the second gear disk 11073 cannot rotate either. Under the limiting action of the limiting rod 601, the first placing plate 5 is also limited. Therefore, when the drive screw 1101 rotates, under the action of the connecting elastic member 11074, it drives the second gear disk 11073 to move up and down along the outer surface of the transmission shaft 11072, and the first placing plate 5 will move down along the outer surface of the limiting rod 601, driving the material taking tank 8 out of the through hole 7, which is convenient for the staff to take and place the material taking tank 8;

[0049] S5. After completion, reverse-start the drive motor 1104, which can drive the first placing plate 5 to reset and return to the initial state.

[0050] Meanwhile, the content not described in detail in this specification belongs to the well-known prior art in the art.

[0051] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.

[0052] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A dispersant production device, comprising a base plate (1) and a support frame (2) fixedly arranged on the base plate (1), a plurality of storage cylinders (3) for containing dispersants fixedly arranged on the support frame (2), the bottom of the storage cylinder (3) being connected to a discharge pipe (4), characterized in that: The bottom plate (1) is provided with a first placement plate (5) and a second placement plate (6), the second placement plate (6) is provided with a plurality of through holes (7), a material taking tank (8) passing through the through holes (7) is placed on the first placement plate (5), a ball valve (9) is provided inside the discharge pipe (4) for rotation, a height-adjustable stopper (10) is provided on the second placement plate (6), a driving mechanism (11) is provided on the bottom plate (1), wherein the driving mechanism (11) drives the first placement plate (5) and the second placement plate (6) to rotate synchronously, and the second placement plate (6) drives the stopper (10) to rotate during the rotation process, when the material taking tank (8) rotates to below the discharge pipe (4), the first placement plate (5) and the second placement plate (6) stop rotating, the stopper (10) pushes the ball valve (9) to open, and a locking structure (12) for limiting the second placement plate (6) is provided on the support frame (2); A plurality of limiting rods (601) are fixedly arranged at the bottom edge of the second placement plate (6), and the limiting rods (601) penetrate the first placement plate (5) and are slidably arranged on the inner surface thereof; The driving mechanism (11) comprises a driving screw (1101) rotatably arranged on a base plate (1); the first placement plate (5) is threadedly connected to the outer surface of the driving screw (1101); a brake disc (1102) is fixedly arranged on the outer surface of the driving screw (1101); a plurality of extension rods (1103) are fixedly arranged on the surface of the brake disc (1102); a driving motor (1104) is fixedly arranged on the base plate (1); a limit disc (1105) is fixedly arranged on the output shaft of the driving motor (1104); a driving rod (1106) extending between two adjacent extension rods (1103) is fixedly arranged on the surface of the limit disc (1105); wherein the driving motor (1104) drives the driving rod (1106) to push the extension rod (1103) to rotate, thereby driving the driving screw (1101) to rotate; and during the rotation process, the driving screw (1101) drives the second placement plate (6) to rotate synchronously via a transmission component (1107); The transmission component (1107) includes a first toothed disc (11071) fixedly arranged at the top end of the driving screw (1101), a transmission shaft (11072) fixedly arranged at the bottom of the second placement plate (6), a second toothed disc (11073) slidably arranged on the outer surface of the transmission shaft (11072) and meshing with the first toothed disc (11071), and a connecting elastic member (11074) fixedly arranged on the outer surface of the transmission shaft (11072), wherein one end of the connecting elastic member (11074) is fixedly arranged on the second toothed disc (11073).

2. The production device of a dispersant according to claim 1, characterized in that: A support block (602) is fixedly arranged on the support frame (2), and a support ring (603) is fixedly arranged on the outer surface of the second placement plate (6), and the bottom of the support ring (603) is slidably arranged with the inner surface of the support block (602).

3. The production device of a dispersant according to claim 1, characterized in that: A connecting shaft (901) is rotatably provided through the side wall of the discharge pipe (4), the ball valve (9) is fixedly provided at the end of the connecting shaft (901), and a torsion spring (902) is fixedly provided on the outer surface of the connecting shaft (901), wherein one end of the torsion spring (902) is fixedly provided on the outer surface of the discharge pipe (4), and a baffle (903) is fixedly provided on one side of the bottom of the connecting shaft (901).

4. The production device of a dispersant according to claim 1, characterized in that: The outer surface of the blocking rod (10) is formed with an external thread (1001), and the second placement plate (6) is provided with a plurality of adjustment holes (1002), and the inner surface of the adjustment hole (1002) is formed with an internal thread (1003), wherein the blocking rod (10) is rotated to match the external thread (1001) with the internal thread (1003).

5. The production device of a dispersant according to claim 1, characterized in that: The outer surface of the brake disc (1102) is inwardly recessed to form a plurality of limiting grooves (1108), and the edge of the limiting disc (1105) is penetrated by a receiving groove (1109), wherein the end of the extension rod (1103) points to the center of the limiting groove (1108) and the end of the driving rod (1106) points to the horizontal center line of the receiving groove (1109).

6. The production device of a dispersant according to claim 1, characterized in that: The locking structure (12) comprises a locking block (1201) slidably arranged on the side wall of the support frame (2), a locking elastic member (1202) being fixedly arranged on one side of the locking block (1201) and the outer surface of the support frame (2), a first electromagnet (1203) being fixedly arranged on the other side of the locking block (1201), and a second electromagnet (1204) being embedded in the outer surface of the second placement plate (6).

Citation Information

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