A slurry-free mixing device for resin adhesive processing
By using a lifting motor and centrifugal blade design in a slurry-free mixing device, the problem of fixed mixing range in traditional mixing paddles is solved, achieving efficient flow and drainage of the mixture, and improving the efficiency and safety of resin adhesive processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-19
- Publication Date
- 2026-04-03
AI Technical Summary
Traditional resin adhesive processing mixing mechanisms mainly use motor-driven exposed stirring paddles, which have a fixed mixing range and limited functionality, failing to effectively improve the fluidity and drainage efficiency of the mixture.
The device employs a slurry-free mixing system, utilizing an internal adjusting seat and centrifugal blades controlled by a lifting motor, combined with a pressure sensor controller, to achieve centrifugal extraction and bottom drainage of the mixture. By controlling the strip guide port through a lifting closed frame, the stirring mechanism is transformed into a liquid extraction mechanism, thereby improving the fluidity and drainage efficiency of the mixture.
It improves the internal flowability and mixing efficiency of the mixture, reduces energy consumption, enhances the safety and durability of the equipment, and maintains the cleanliness of the discharged material.
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Figure CN115646309B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of resin adhesive processing and conveying technology, and in particular to a slurry-free mixing device for resin adhesive processing. Background Technology
[0002] Resins are classified into natural resins and synthetic resins. Natural resins refer to amorphous organic substances obtained from the secretions of plants and animals in nature; synthetic resins refer to resin products obtained by chemical synthesis of simple organic compounds or by chemical reactions of certain natural products, while resin adhesives are adhesives synthesized using resins as raw materials. They possess excellent characteristics such as being eco-friendly and environmentally friendly.
[0003] In order to improve processing efficiency, a mixing mechanism needs to be installed inside the processing tank during the processing of resin adhesive. Traditional mixing mechanisms mainly use motor-driven exposed stirring paddles to rotate and stir, which can only simply stir the internal mixture laterally. The stirring range is fixed and limited, and the functionality is also relatively simple. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to provide an improved slurry-free mixing device for resin adhesive processing in order to solve the problems existing in the background art. This solves the problem that the traditional mixing mechanism mainly uses an exposed stirring paddle driven by a motor to rotate and stir, which can only simply stir the internal mixture laterally, with a fixed and limited stirring range and relatively simple functionality.
[0005] The technical solution adopted by the present invention to solve its technical problem is: a slurry-free mixing device for resin glue processing, comprising a main receiving tank for holding resin glue mixture, a lifting motor and a drive motor, wherein the main receiving tank is provided with an internal adjusting seat controlled by the lifting motor, the internal adjusting seat is fixedly equipped with an internal fixing seat for installing the drive motor and movably equipped with a centrifugal blade controlled by the drive motor, a bottom extrusion receiving groove that cooperates with the internal adjusting seat is opened at the center of the bottom surface of the main receiving tank, the lifting motor is fixedly installed on the top of the main receiving tank through the bottom fixing seat, and a bottom liquid extraction port is opened on the lower surface of the internal adjusting seat.
[0006] The inner adjusting seat has multiple parallel longitudinal adjusting grooves on its outer side surface. The upper surface of the inner adjusting seat has a transverse adjusting groove that communicates with the longitudinal adjusting grooves. The outer wall of the inner adjusting seat and the inner wall of the transverse adjusting groove both have strip-shaped guide ports that communicate with the interior of the inner adjusting seat. The longitudinal adjusting groove and the transverse adjusting groove are both slidably fitted with lifting closing frames.
[0007] The drive shaft at the lower end of the drive motor is inserted into the centrifugal blade and axially assembled with the centrifugal blade.
[0008] The lower surface of the internal adjustment seat is fixedly equipped with a pressure sensor controller for controlling the lifting motor and the drive motor.
[0009] The longitudinal adjustment slide groove has symmetrically provided lateral limiting slide grooves on both sides of its inner wall. The lifting closing frame has an integral lateral limiting slider on both sides of its inner wall that cooperates with the lateral limiting slide groove. The lifting closing frame is slidably assembled with the longitudinal adjustment slide groove by inserting the lateral limiting slider into the lateral limiting slide groove.
[0010] The bottom extrusion storage tank has multiple lateral drainage holes on its inner arc-shaped surface that cooperate with the strip-shaped guide port. The bottom discharge device with a built-in electrically controlled discharge valve is installed on the lower surface of the main storage tank outside the lateral drainage holes.
[0011] The top of the lifting rod at the upper end of the lifting motor is coaxially fitted with an external control frame for controlling the internal adjustment seat. The lower end of the external control frame is fixedly assembled with the upper end of the internal adjustment seat by inserting it into the main storage tank.
[0012] Multiple raw material input pipes are fixedly mounted on the upper surface of the main storage tank.
[0013] The lifting closing frame includes an inverted L-shaped external closing control bracket that is slidably inserted into the longitudinal and transverse adjusting slides, and an annular linkage frame fixed to the upper end of the external closing control bracket.
[0014] The height of the bottom surface of the main storage tank gradually decreases from the outer perimeter to the bottom, pressing down to the opening at the top of the storage groove.
[0015] The beneficial effects of this invention are:
[0016] (1) The resin glue processing device of the present invention adopts a non-exposed slurry structure design and uses centrifugal pumping to mix the mixture, thereby improving the internal flow of the mixture and enhancing its activity to promote mixing efficiency.
[0017] (2) The strip guide port on the inner wall of the transverse adjustment chute can be controlled by the lifting closed frame located outside the inner adjustment seat. The stirring mechanism can be changed to the liquid pumping mechanism by inserting the bottom squeezing and collecting trough, thereby greatly improving the bottom liquid discharge efficiency and greatly enhancing the functionality.
[0018] (3) By assembling a pressure sensor controller at the lower end of the lifting closed frame to control the lifting motor and drive motor, not only can energy consumption be reduced, but the safety and durability of the lifting motor and the lifting closed frame can also be improved.
[0019] (4) A bottom extrusion storage groove is provided at the center of the bottom surface of the main storage tank to cooperate with the internal adjustment seat. The bottom extrusion storage groove can facilitate the raising and lowering of the internal adjustment seat. While switching functions, it can maintain the flowability of the bottom surface of the main storage tank and improve the discharge cleanliness. Attached Figure Description
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0021] Figure 1 This is a schematic diagram of the structure of the present invention.
[0022] Figure 2 This is a schematic diagram of the internal structure of the present invention.
[0023] Figure 3 This is a schematic diagram of the internal structure of the internal adjustment seat in this invention. Detailed Implementation
[0024] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.
[0025] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0026] Figure 1 , Figure 2 and Figure 3 The illustrated resin adhesive processing slurry-free mixing device includes a main receiving tank 1 for holding the resin adhesive mixture, a lifting motor 2, and a drive motor 3. The main receiving tank 1 is equipped with an internal adjusting seat 4 controlled by the lifting motor 2. The internal adjusting seat 4 is fixedly fitted with an internal fixing seat 4 for mounting the drive motor 3 and movably fitted with a centrifugal impeller 5 controlled by the drive motor 3. A bottom extrusion receiving groove 6 that cooperates with the internal adjusting seat 4 is opened at the center of the bottom surface of the main receiving tank 1. The lifting motor 2 is fixedly mounted on the top of the main receiving tank 1 through the bottom fixing seat. A bottom liquid extraction port 7 is opened on the lower surface of the internal adjusting seat 4.
[0027] To facilitate assembly and closure, five parallel longitudinal adjustment grooves 8 are provided on the outer side of the internal adjustment seat 4. A transverse adjustment groove 9 connected to the longitudinal adjustment grooves 8 is provided on the upper surface of the internal adjustment seat 4. A strip-shaped guide port 10 connected to the interior of the internal adjustment seat 4 is provided on the outer wall of the internal adjustment seat 4 and the inner wall of the transverse adjustment groove 9. A lifting closing frame 11 is slidably assembled inside the longitudinal adjustment grooves 8 and the transverse adjustment grooves 9.
[0028] The buoyancy of the mixture is insufficient to lift the lifting closed frame 11. Therefore, when the internal adjusting seat 4 is not fully inserted into the bottom squeezing and collecting groove 6, the lifting closed frame 11 remains closed to the strip guide port 10 inside the transverse adjusting slide 9.
[0029] To facilitate assembly, the lower drive shaft of the drive motor 3 is inserted into the centrifugal blade 5 and axially assembled with the centrifugal blade 5.
[0030] To facilitate the pressing control, a pressure sensor controller 12 for controlling the lifting motor 2 and the drive motor 3 is fixedly mounted on the lower surface of the internal adjustment seat 4.
[0031] The lifting motor 2 drives the lifting closed frame 11 to descend. When the lifting closed frame 11 descends into the mixture, the pressure sensor controller 12 at the bottom of the internal adjusting seat 4 receives the buoyancy pressure, thereby controlling the drive motor 3 to start. Then the lifting motor 2 continues to control the descent until the internal adjusting seat 4 descends into the bottom extrusion collection tank 6. Finally, the pressure sensor controller 12 receives the bottom extrusion pressure, thereby controlling the lifting motor 2 to close. The lifting motor 2, drive motor 3 and pressure sensor controller 12 are all existing technologies. The pressure sensor controller 12 adopts a two-stage structure design. One stage controls the extrusion pressure generated by buoyancy, and the other stage controls the extrusion pressure on the bottom surface of the bottom extrusion collection tank 6.
[0032] To facilitate sliding assembly and limiting, lateral limiting grooves 13 are symmetrically provided on the inner walls of both sides of the longitudinal adjustment groove 8. The lifting closing frame 11 has an integral lateral limiting slider 14 on both sides that cooperates with the lateral limiting groove 13. The lifting closing frame 11 is inserted into the lateral limiting groove 13 through the lateral limiting slider 14 and slidably assembled with the longitudinal adjustment groove 8.
[0033] To facilitate internal discharge and bottom control, eight lateral discharge holes 15 are provided on the inner arc-shaped surface of the bottom extrusion storage tank 6, which are matched with the strip-shaped guide port 10. The bottom discharge device 17 with built-in electrically controlled discharge valve 16 is installed on the lower surface of the main storage tank 1 outside the lateral discharge holes 15.
[0034] When the internal adjusting seat 4 is inserted into the bottom squeezing and collecting groove 6, the drive motor 3 controls the centrifugal blade 5 to rotate. The centrifugal blade 5 drives the internal mixture to be drawn in from the strip guide port 10 on the inner wall of the transverse adjusting slide 9, and then guided into the side drain hole 15 through the strip guide port 10 on the outer wall of the internal adjusting seat 4, and then discharged from the bottom discharge device 17 through the electrically controlled drain valve 16.
[0035] The electrically controlled drain valve 16 is existing technology. It is movably sleeved around the side drain hole 15. Then the bottom discharge device 17 consists of an outer housing sleeved outside the electrically controlled drain valve 16 and a bottom drain pipe fixed outside the outer housing.
[0036] To facilitate top control, an external control frame 18 for controlling the internal adjustment seat 4 is coaxially mounted on the top of the lifting rod at the upper end of the lifting motor 2. The lower end of the external control frame 18 is fixedly assembled with the upper end of the internal adjustment seat 4 by inserting it into the main storage tank 1.
[0037] The top of the main storage tank 1 has a top telescopic through hole that cooperates with the external control frame 18.
[0038] To facilitate top feeding, two raw material input pipes 19 are fixedly installed on the upper surface of the main receiving tank 1.
[0039] To facilitate control, the lifting closing frame 11 includes an inverted L-shaped external closing control bracket 20 that is slidably inserted into the longitudinal adjusting slide 8 and the transverse adjusting slide 9, and an annular linkage frame 21 fixed to the upper end of the external closing control bracket 20.
[0040] To improve the flowability of the inner bottom surface, the height of the inner bottom surface of the main storage tank 1 is gradually reduced from the outer periphery to the bottom, squeezing the upper opening of the storage groove 6.
[0041] This invention discloses a slurry-free mixing device for resin adhesive processing. It employs a non-exposed slurry structure and uses centrifugal extraction to mix the liquid, thereby improving internal flow and activity to enhance mixing efficiency. A lifting closed frame 11 located outside the internal adjusting seat 4 controls the strip-shaped guide port 10 on the inner wall of the transverse adjusting chute 9. Inserting the bottom extrusion receiving groove 6 transforms the device from a stirring mechanism to an extraction mechanism, significantly improving bottom drainage efficiency and functionality. A pressure sensor controller 12 mounted at the lower end of the lifting closed frame 11 controls the lifting motor 2 and drive motor 3, reducing energy consumption and improving the safety and durability of the lifting motor 2 and the lifting closed frame 11. A bottom extrusion receiving groove 6, which cooperates with the internal adjusting seat 4, is located at the center of the bottom surface of the main receiving tank 1. This groove facilitates the lifting and lowering of the internal adjusting seat 4, maintaining the flowability of the bottom surface of the main receiving tank 1 while switching functions, thus improving discharge purity.
[0042] Based on the above-described preferred embodiments of the present invention, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the inventive concept. The technical scope of this invention is not limited to the contents of the specification, but must be determined according to the scope of the claims.
Claims
1. A slurry-free mixing device for resin adhesive processing, comprising a main receiving tank (1) for holding the resin adhesive mixture, a lifting motor (2) and a drive motor (3), characterized in that: The main storage tank (1) is equipped with an internal adjustment seat (4) controlled by a lifting motor (2). The internal adjustment seat (4) is fixedly equipped with an internal fixed seat for installing a drive motor (3) and a centrifugal blade (5) controlled by the drive motor (3) is movably equipped. The bottom of the main storage tank (1) is provided with a bottom squeezing storage groove (6) that cooperates with the internal adjustment seat (4). The lifting motor (2) is fixedly installed on the top of the main storage tank (1) through the bottom fixed seat. The lower surface of the internal adjustment seat (4) is provided with a bottom liquid extraction port (7). The inner adjusting seat (4) has multiple parallel longitudinal adjusting grooves (8) on its outer side surface. The inner adjusting seat (4) has a transverse adjusting groove (9) connected to the longitudinal adjusting grooves (8) on its upper surface. The outer wall of the inner adjusting seat (4) and the inner wall of the transverse adjusting groove (9) are both provided with strip-shaped guide ports (10) connected to the interior of the inner adjusting seat (4). The longitudinal adjusting groove (8) and the transverse adjusting groove (9) are both slidably fitted with lifting closing frames (11). The longitudinal adjustment slide (8) has symmetrically provided lateral limiting slides (13) on both sides of its inner wall. The lifting closed frame (11) has an integral lateral limiting slider (14) on both sides of its inner wall that cooperates with the lateral limiting slide (13). The lifting closed frame (11) is inserted into the lateral limiting slide (13) through the lateral limiting slider (14) and slides with the longitudinal adjustment slide (8). The bottom extrusion storage groove (6) has multiple lateral drainage holes (15) that cooperate with the strip-shaped guide port (10) on the inner arc surface. The main storage tank (1) is equipped with a bottom discharge device (17) with a built-in electrically controlled discharge valve (16) on the lower surface outside the lateral drainage holes (15).
2. The slurry-free mixing device for resin adhesive processing according to claim 1, characterized in that: The drive shaft at the lower end of the drive motor (3) is inserted into the centrifugal blade (5) and axially assembled with the centrifugal blade (5).
3. The slurry-free mixing device for resin adhesive processing according to claim 2, characterized in that: The lower surface of the internal adjustment seat (4) is fixedly equipped with a pressure sensor controller (12) for controlling the lifting motor (2) and the drive motor (3).
4. The slurry-free mixing device for resin adhesive processing according to claim 1, characterized in that: The top of the lifting rod at the upper end of the lifting motor (2) is coaxially fitted with an external control frame (18) for controlling the internal adjustment seat (4). The lower end of the external control frame (18) is fixedly assembled with the upper end of the internal adjustment seat (4) by inserting it into the main storage tank (1).
5. The slurry-free mixing device for resin adhesive processing according to claim 1, characterized in that: Multiple raw material input pipes (19) are fixedly mounted on the upper surface of the main storage tank (1).
6. The slurry-free mixing device for resin adhesive processing according to claim 1, characterized in that: The lifting closing frame (11) includes an inverted L-shaped external closing control bracket (20) that is slidably inserted into the longitudinal adjusting slide (8) and the transverse adjusting slide (9), and an annular linkage frame (21) fixed on the upper end of the external closing control bracket (20).
7. The slurry-free mixing device for resin adhesive processing according to claim 1, characterized in that: The height of the bottom surface of the main storage tank (1) gradually decreases from the outside to the bottom, and the opening position of the upper end of the storage groove (6) gradually decreases.
Citation Information
Patent Citations
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