Composite plugging material production equipment
By designing composite leak-blocking material production equipment, and using the synergistic effect of components such as main drive mechanism and deflection crushing mechanism, the problem of material crushing and rapid mixing in the existing technology is solved, and the production efficiency is improved.
Patent Information
- Application Number
- CN202510614536.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-14
- Publication Date
- 2025-06-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing composite leak plugging material production technology cannot effectively crush and quickly mix multiple materials, resulting in low production efficiency.
A composite leak-blocking material production equipment is designed, including a production processing cylinder, a main drive mechanism, a deflection crushing mechanism, a compression drive wheel mechanism, a material storage and discharge mechanism, an installation ring mechanism, a centrifugal feed mechanism and a mixing plate mechanism, and the crushing, premixing and stirring treatment of the materials are achieved through the synergy of these components.
The production and processing capacity of composite leak-blocking materials has been improved, effective crushing and rapid mixing of materials has been achieved, and production efficiency has been improved.
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Figure CN120132691A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of plugging material production, and specifically to a production device for composite plugging materials. Background Art
[0002] Composite plugging materials are composite materials mixed with multiple components, mainly including silicone, polymers, nanomaterials, etc. Among them, silicone has properties such as high temperature resistance and corrosion resistance, polymers can increase the adhesion and strength of the plugging agent, and nanomaterials enhance its sealing performance and stability.
[0003] In the prior art, the materials to be mixed are usually put into a mixing cylinder to stir the composite plugging materials. However, in the prior art, the plugging materials to be processed cannot be crushed, and it is not convenient for rapid mixing of multiple materials. Therefore, the production efficiency of composite plugging materials is low, so there is a large room for improvement in the prior art. Summary of the Invention
[0004] The present invention provides a production device for composite plugging materials, which solves the problems raised in the above background art.
[0005] To achieve the above object, the present invention provides the following technical solutions: A production device for composite plugging materials includes a production and processing cylinder. A plurality of support legs are fixedly connected to the bottom of the production and processing cylinder. A discharge port is provided at the bottom of the production and processing cylinder. The upper part of the production and processing cylinder is rotatably connected to a cover plate shell. The cover plate shell is fixedly connected to an installation frame plate. A main drive mechanism and a deflection and crushing mechanism are provided on the installation frame plate. A pressing drive wheel mechanism is provided on the deflection and crushing mechanism. A material storage and feeding mechanism is provided on the cover plate shell. An installation ring mechanism is provided on the material storage and feeding mechanism. A plurality of centrifugal feeding mechanisms are provided on the installation ring mechanism. A plurality of mixing paddle mechanisms are provided on the material storage and feeding mechanism. The main drive mechanism is used to drive the installation frame plate and the cover plate shell to rotate, the main drive mechanism is used to drive the pressing drive wheel mechanism, the pressing drive wheel mechanism is used to drive the deflection and crushing mechanism, the centrifugal feeding mechanism is used to store materials, and the mixing paddle mechanism is used to stir the materials in the production and processing cylinder.
[0006] As a preferred technical solution of the present invention, the main drive mechanism includes a drive motor fixed on the installation frame plate. The output shaft of the drive motor is fixedly connected to a drive shaft. The drive shaft is coaxially fixedly connected to a first gear and a drive wheel. A second gear is fixedly connected to the outside of the production and processing cylinder. The second gear meshes with the first gear.
[0007] As a preferred technical solution of the present invention, the deflection and crushing mechanism includes a first deflection and displacement seat fixed on the mounting frame plate. The first deflection and displacement seat is rotatably connected to a deflection rod, and the deflection rod is fixedly connected to an outer sleeve. The mounting frame plate is fixedly connected to a second deflection and displacement seat, and the second deflection and displacement seat is rotatably connected to a linear motor. One end of the linear motor away from the second deflection and displacement seat is rotatably connected to a third deflection and displacement seat, and the third deflection and displacement seat is fixed on the outside of the outer sleeve. The inner side of the outer sleeve is rotatably connected to a crushing and feeding pipe, and the crushing and feeding pipe is rotatably connected to a feeding valve. An elastic telescopic pipe is fixedly connected between the feeding valve and the production and processing cylinder. The crushing and feeding pipe is fixedly connected to a crushing cylinder, and several crushing blades are fixedly connected to the inner side of the crushing cylinder. A feeding port is provided on the crushing cylinder.
[0008] As a preferred technical solution of the present invention, the pressing and driving wheel mechanism includes a pressing cylinder fixed on the crushing cylinder. An elastic member is fixedly connected inside the pressing cylinder, and the elastic member is fixedly connected to a pressing block. The cross-section of the pressing block is a rectangular structure. The pressing block is located inside the pressing cylinder and is slidably connected to the pressing cylinder. The pressing block is fixedly connected to a pressing rod, and the pressing rod passes through the pressing cylinder and is slidably connected to the pressing cylinder. One end of the pressing rod away from the pressing block is fixedly connected to a hemispherical transmission wheel, and the hemispherical transmission wheel is in contact with the driving wheel.
[0009] As a preferred technical solution of the present invention, the material storage and feeding mechanism includes a rotating pipe rotatably connected to the production and processing cylinder. The upper end of the rotating pipe is fixedly connected to a material storage shell, and an opening and closing valve is provided on the rotating pipe. A third gear is fixedly connected to the outside of the rotating pipe, and the third gear meshes with a fourth gear. The fourth gear is coaxially fixedly connected to a first gear shaft, and the first gear shaft is rotatably connected to the production and processing cylinder. The fourth gear meshes with a fifth gear, and the fifth gear is coaxially fixedly connected to a second gear shaft, and the second gear shaft is rotatably connected to the production and processing cylinder. The fifth gear meshes with a sixth gear, and the sixth gear is fixed inside the production and processing cylinder.
[0010] As a preferred technical solution of the present invention, the mounting ring mechanism includes an inclined feeding pipe fixed on the material storage shell, and one end of the inclined feeding pipe away from the material storage shell is fixedly connected to a mounting ring.
[0011] As a preferred technical solution of the present invention, the centrifugal feeding mechanism includes a mounting shell fixed on the mounting ring. The mounting shell is communicated with the mounting ring. A fourth deflection and displacement seat is fixedly connected to the side of the mounting shell, and the fourth deflection and displacement seat is rotatably connected to a deflection pipe. The deflection pipe is fixedly connected to a centrifugal cylinder. A sealing cover plate is provided at one end of the centrifugal cylinder away from the fourth deflection and displacement seat. A hose is provided between the deflection pipe and the mounting shell. The mounting shell is fixedly connected to a fifth deflection and displacement seat, and the fifth deflection and displacement seat is rotatably connected to an internal thread sleeve. The internal thread sleeve is threadedly connected to a threaded adjustment rod, and the threaded adjustment rod is rotatably connected to a threaded rod mounting block, and the threaded rod mounting block is rotatably connected to a sixth deflection and displacement seat.
[0012] As a preferred technical solution of the present invention, the mixing baffle mechanism includes a mixing baffle housing fixed to the side of the rotating tube. The mixing baffle housing is in communication with the rotating tube. The mixing baffle housing is provided with a plurality of deflection housing grooves. The mixing baffle housing is fixedly connected to a central shaft. The central shaft is fixedly connected to a torsion spring. One end of the torsion spring away from the central shaft is fixedly connected to a torsion sleeve. The torsion sleeve is rotatably connected to the mixing baffle housing. The outer side of the torsion sleeve is fixedly connected to a deflection plate.
[0013] The present invention has the following beneficial effects: By setting the main driving mechanism, the mounting frame plate and the cover plate housing can be driven to rotate, thereby driving the storage and feeding mechanism to rotate and displace to achieve feeding. Cooperating with the pressing driving wheel mechanism can drive the deflection and crushing mechanism to achieve the crushing of materials, and at the same time, the rotation speed of the deflection and crushing mechanism can be adjusted. Through the centrifugal feeding mechanism, different materials can enter the mounting ring mechanism in sequence at different rotation speeds, and then pre-mixing is completed. Through the mixing baffle mechanism, the materials in the production and processing cylinder can be mixed, improving the production and processing capacity of the composite plugging material. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for the description of the specific embodiments or the prior art. Obviously, the following drawings are some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0015] Figure 1 It is a schematic structural diagram of a first perspective of a composite plugging material production device.
[0016] Figure 2 It is a schematic structural diagram of a second perspective of a composite plugging material production device.
[0017] Figure 3 It is a schematic structural diagram of a partial cross-section of a composite plugging material production device.
[0018] Figure 4 It is Figure 2 an enlarged view of area A in
[0019] Figure 5 It is a cross-sectional view of a pressing driving wheel mechanism in a composite plugging material production device.
[0020] Figure 6 It is a cross-sectional view of a mixing baffle mechanism in a composite plugging material production device.
[0021] In the figure: 1. Production and processing cylinder; 2. Support leg; 3. Discharge port; 4. Cover plate shell; 5. Mounting frame plate; 6. Main drive mechanism; 601. Drive motor; 602. Drive shaft; 603. First gear; 604. Drive wheel; 605. Second gear; 7. Deflection and crushing mechanism; 701. First deflection and displacement seat; 702. Deflection rod; 703. Outer sleeve; 704. Second deflection and displacement seat; 705. Linear motor; 706. Third deflection and displacement seat; 707. Crushing and feeding pipe; 708. Feed valve; 709. Elastic telescopic pipe; 710. Crushing cylinder; 711. Feeding port; 8. Pressing drive wheel mechanism; 801. Pressing cylinder; 802. Elastic member; 803. Pressing block; 804. Pressing rod; 805. Hemispherical transmission wheel; 9. Storage and feeding mechanism; 901. Rotating pipe; 902. Storage shell; 903. Third gear; 904. Fourth gear; 905. First gear shaft; 906. Fifth gear; 907. Second gear shaft; 908. Sixth gear; 10. Mounting ring mechanism; 1001. Inclined feeding pipe; 1002. Mounting ring; 11. Centrifugal feeding mechanism; 1101. Mounting shell; 1102. Fourth deflection and displacement seat; 1103. Deflection pipe; 1104. Centrifugal cylinder; 1105. Sealing cover plate; 1106. Hose; 1107. Fifth deflection and displacement seat; 1108. Internal thread sleeve; 1109. Thread adjusting rod; 1110. Threaded rod mounting block; 1111. Sixth deflection and displacement seat; 12. Mixing baffle mechanism; 1201. Mixing shell; 1202. Deflection shell groove; 1203. Central axis; 1204. Torsion spring; 1205. Torsion sleeve; 1206. Deflection plate. Detailed implementation mode
[0022] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only for the purpose of illustrating and explaining the present invention, and are not used to limit the present invention.
[0023] Example 1, please refer to Figures 1 - 6, a production equipment for composite plugging materials, including a production and processing cylinder 1. A number of support legs 2 are fixedly connected to the bottom of the production and processing cylinder 1. A discharge port 3 is provided at the bottom of the production and processing cylinder 1. The upper part of the production and processing cylinder 1 is rotatably connected to a cover plate housing 4. The cover plate housing 4 is fixedly connected to a mounting frame plate 5. A main drive mechanism 6 and a deflection and crushing mechanism 7 are provided on the mounting frame plate 5. A pressing drive wheel mechanism 8 is provided on the deflection and crushing mechanism 7. A material storage and feeding mechanism 9 is provided on the cover plate housing 4. A mounting ring mechanism 10 is provided on the material storage and feeding mechanism 9. A number of centrifugal feeding mechanisms 11 are provided on the mounting ring mechanism 10. A number of mixing baffle mechanisms 12 are provided on the material storage and feeding mechanism 9. The main drive mechanism 6 is used to drive the mounting frame plate 5 and the cover plate housing 4 to rotate. The main drive mechanism 6 is used to drive the pressing drive wheel mechanism 8. The pressing drive wheel mechanism 8 is used to drive the deflection and crushing mechanism 7. The centrifugal feeding mechanism 11 is used to store materials. The mixing baffle mechanism 12 is used to stir the materials in the production and processing cylinder 1.
[0024] The main drive mechanism 6 includes a drive motor 601 fixed on the mounting frame plate 5. The output shaft of the drive motor 601 is fixedly connected to a drive shaft 602. The drive shaft 602 is coaxially fixedly connected to a first gear 603 and a drive wheel 604. A second gear 605 is fixedly connected to the outside of the production and processing cylinder 1. The second gear 605 meshes with the first gear 603. The deflection and crushing mechanism 7 includes a first deflection and displacement seat 701 fixed on the mounting frame plate 5. The first deflection and displacement seat 701 is rotatably connected to a deflection rod 702. The deflection rod 702 is fixedly connected to an outer sleeve 703. The mounting frame plate 5 is fixedly connected to a second deflection and displacement seat 704. The second deflection and displacement seat 704 is rotatably connected to a linear motor 705. One end of the linear motor 705 away from the second deflection and displacement seat 704 is rotatably connected to a third deflection and displacement seat 706. The third deflection and displacement seat 706 is fixed on the outside of the outer sleeve 703. The inside of the outer sleeve 703 is rotatably connected to a crushing and feeding pipe 707. The crushing and feeding pipe 707 is rotatably connected to a feeding valve 708. An elastic telescopic pipe 709 is fixedly connected between the feeding valve 708 and the production and processing cylinder 1. The crushing and feeding pipe 707 is fixedly connected to a crushing cylinder 710. A number of crushing blades are fixedly connected to the inside of the crushing cylinder 710. A feeding port 711 is provided on the crushing cylinder 710. The pressing drive wheel mechanism 8 includes a pressing cylinder 801 fixed on the crushing cylinder 710. An elastic member 802 is fixedly connected inside the pressing cylinder 801. The elastic member 802 is fixedly connected to a pressing block 803. The cross-section of the pressing block 803 is a rectangular structure. The pressing block 803 is located inside the pressing cylinder 801. The pressing block 803 is slidably connected to the pressing cylinder 801. The pressing block 803 is fixedly connected to a pressing rod 804. The pressing rod 804 passes through the pressing cylinder 801. The pressing rod 804 is slidably connected to the pressing cylinder 801. One end of the pressing rod 804 away from the pressing block 803 is fixedly connected to a hemispherical transmission wheel 805. The hemispherical transmission wheel 805 contacts the drive wheel 604.
[0025] Specifically, turning on the drive motor 601 can drive the drive shaft 602 to rotate. The rotation of the drive shaft 602 will drive the first gear 603 and the drive wheel 604 to rotate. Since the first gear 603 meshes with the second gear 605, it can drive the mounting plate 5 and the cover shell 4 to rotate around the production and processing cylinder 1. At the same time, the rotation of the drive wheel 604 will drive the hemispherical transmission wheel 805 to rotate. The rotation of the hemispherical transmission wheel 805 will drive the pressing rod 804 and the pressing block 803 to rotate. The rotation of the pressing block 803 will drive the pressing cylinder 801 to rotate, thereby driving the crushing cylinder 710 to rotate. The rotation of the crushing cylinder 710 will drive the crushing blades inside it, so as to crush the materials in the crushing cylinder 710.
[0026] In addition, after the crushing is completed, the linear motor 705 is turned on. The rotation of the linear motor 705 will drive the deflection rod 702 and the outer sleeve 703 to rotate around the first deflection seat 701, and then drive the crushing blanking pipe 707 and the crushing cylinder 710 to deflect. Finally, the materials in the crushing cylinder 710 enter the crushing blanking pipe 707, and the materials pass through the blanking valve 708 and the elastic telescopic pipe 709, and finally the materials enter the production and processing cylinder 1.
[0027] The storage and blanking mechanism 9 includes a rotating pipe 901 rotatably connected to the production and processing cylinder 1. The upper end of the rotating pipe 901 is fixedly connected to a storage shell 902. An opening and closing valve is provided on the rotating pipe 901. A third gear 903 is fixedly connected to the outside of the rotating pipe 901. The third gear 903 meshes with a fourth gear 904. The fourth gear 904 is coaxially fixedly connected to a first gear shaft 905. The first gear shaft 905 is rotatably connected to the production and processing cylinder 1. The fourth gear 904 meshes with a fifth gear 906. The fifth gear 906 is coaxially fixedly connected to a second gear shaft 907. The second gear shaft 907 is rotatably connected to the production and processing cylinder 1. The fifth gear 906 meshes with a sixth gear 908. The sixth gear 908 is fixed to the inside of the production and processing cylinder 1.
[0028] Specifically, since the third gear 903 meshes with the fourth gear 904, the fourth gear 904 meshes with the fifth gear 906, and the fifth gear 906 meshes with the sixth gear 908, when the cover shell 4 rotates, it can drive the rotating pipe 901 to rotate to drive the storage shell 902 to rotate.
[0029] The mixing baffle mechanism 12 includes a mixing baffle shell 1201 fixed to the side of the rotating pipe 901. The mixing baffle shell 1201 is communicated with the rotating pipe 901. A number of deflection shell grooves 1202 are provided on the mixing baffle shell 1201. The mixing baffle shell 1201 is fixedly connected to a central shaft 1203. The central shaft 1203 is fixedly connected to a torsion spring 1204. One end of the torsion spring 1204 away from the central shaft 1203 is fixedly connected to a torsion sleeve 1205. The torsion sleeve 1205 is rotatably connected to the mixing baffle shell 1201. A deflection plate 1206 is fixedly connected to the outside of the torsion sleeve 1205.
[0030] Specifically, when the rotating tube 901 rotates, it will drive the mixing shell 1201 to rotate. At the same time, the deflection plate 1206 will deflect. The rotation of the mixing shell 1201 will stir the materials in the production and processing cylinder 1, thereby completing the stirring and mixing of the materials in the production and processing cylinder 1. At the same time, the materials enter the mixing shell 1201 through the rotating tube 901. At this time, the materials will be discharged from the deflection shell groove 1202 on the mixing shell 1201 into the production and processing cylinder 1.
[0031] In addition, when the rotating tube 901 stops rotating, under the action of the torsion spring 1204, the torsion sleeve 1205 will deflect, so that the deflection plate 1206 and the mixing shell 1201 are in the same plane. The deflection plate 1206 will be placed at the position of the deflection shell groove 1202 to prevent the materials from blocking the deflection shell groove 1202 when not stirring and mixing.
[0032] Example 2, continue to refer to Figures 1 - 4 In the embodiment of the present invention, the mounting ring mechanism 10 includes an inclined feeding pipe 1001 fixed to the storage shell 902. One end of the inclined feeding pipe 1001 away from the storage shell 902 is fixedly connected to the mounting ring 1002. The centrifugal feeding mechanism 11 includes a mounting shell 1101 fixed to the mounting ring 1002. The mounting shell 1101 communicates with the mounting ring 1002. A fourth deflection and displacement seat 1102 is fixedly connected to the side of the mounting shell 1101. The fourth deflection and displacement seat 1102 is rotatably connected to a deflection pipe 1103. The deflection pipe 1103 is fixedly connected to a centrifugal cylinder 1104. A sealing cover plate 1105 is provided at one end of the centrifugal cylinder 1104 away from the fourth deflection and displacement seat 1102. A hose 1106 is provided between the deflection pipe 1103 and the mounting shell 1101. The mounting shell 1101 is fixedly connected to a fifth deflection and displacement seat 1107. The fifth deflection and displacement seat 1107 is rotatably connected to an internal thread sleeve 1108. The internal thread sleeve 1108 is threadedly connected to a threaded adjustment rod 1109. The threaded adjustment rod 1109 is rotatably connected to a threaded rod mounting block 1110. The threaded rod mounting block 1110 is rotatably connected to a sixth deflection and displacement seat 1111.
[0033] Specifically, remove the sealing cover plate 1105. At this time, place the materials to be added into the centrifugal cylinder 1104. Then cover the sealing cover plate 1105 on the centrifugal cylinder 1104. At this time, rotate the threaded adjustment rod 1109 to control the length of the threaded adjustment rod 1109 extending out of the internal threaded sleeve 1108, so as to adjust the deflection angle of the centrifugal cylinder 1104. When the material storage shell 902 rotates, it will drive the inclined blanking pipe 1001 to rotate. The rotation of the inclined blanking pipe 1001 will drive the mounting ring 1002 to rotate, thereby driving the centrifugal cylinder 1104 to rotate. When the centrifugal cylinder 1104 reaches the specified speed, the materials in the centrifugal cylinder 1104 will enter the mounting ring 1002 through the deflection pipe 1103 and the hose 1106. Different materials are premixed when entering the mounting ring 1002, and the materials in the mounting ring 1002 finally enter the material storage shell 902 through the inclined blanking pipe 1001.
[0034] During the implementation of the present invention, first, the materials to be added can be put into the material storage and blanking mechanism 9, and at the same time, a specified amount of materials can be placed on the centrifugal feeding mechanism 11. Then, when the main driving mechanism 6 is turned on, it can drive the mounting frame plate 5 and the cover plate housing 4 to rotate, and at the same time, the material storage and blanking mechanism 9 rotates and changes its position. At this time, the materials will enter the production and processing cylinder 1. At the same time, driven by the material storage and blanking mechanism 9, the mixing and stirring mechanism 12 can rotate. The mixing and stirring mechanism 12 can stir the materials in the production and processing cylinder 1 to achieve the mixing of the materials. In addition, when the rotation speed of the cover plate housing 4 reaches the specified value, the materials in the centrifugal feeding mechanism 11 will enter the mounting ring mechanism 10 to achieve the premixing of the materials. The premixed materials then enter the material storage and blanking mechanism 9, and finally the materials enter the production and processing cylinder 1 through the mixing and stirring mechanism 12. If the materials need to be crushed, the materials are put into the deflection and crushing mechanism 7. Then, when the main driving mechanism 6 is turned on, it can drive the pressing and driving wheel mechanism 8, and the pressing and driving wheel mechanism 8 can drive the deflection and crushing mechanism 7 to achieve the crushing of the materials. After the crushing is completed, the deflection and crushing mechanism 7 is turned on to achieve the circumferential feeding of the crushed materials into the production and processing cylinder 1, thereby accelerating the production of the composite plugging material.
[0035] By setting the main driving mechanism 6, the present invention can drive the mounting frame plate 5 and the cover plate housing 4 to rotate, thereby driving the material storage and blanking mechanism 9 to rotate and change its position to achieve blanking. Cooperating with the pressing and driving wheel mechanism 8, it can drive the deflection and crushing mechanism 7 to achieve the crushing of the materials, and at the same time, the rotation speed of the deflection and crushing mechanism 7 can be adjusted. Through the centrifugal feeding mechanism 11, different materials can enter the mounting ring mechanism 10 in sequence at different rotation speeds, and then the premixing is completed. Through the mixing and stirring mechanism 12, the materials in the production and processing cylinder 1 can be mixed, improving the production and processing capacity of the composite plugging material.
[0036] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A composite plugging material production equipment, including a production and processing cylinder, characterized in that: The bottom of the production and processing cylinder is fixedly connected to a plurality of supporting legs, a discharge port is provided at the bottom of the production and processing cylinder, the upper part of the production and processing cylinder is rotatably connected to the cover shell, the cover shell is fixedly connected to the mounting frame, the mounting frame is provided with a main driving mechanism and a deflection crushing mechanism, the deflection crushing mechanism is provided with a clamping driving wheel mechanism, the cover shell is provided with a storage and unloading mechanism, the storage and unloading mechanism is provided with a mounting ring mechanism, the mounting ring mechanism is provided with a plurality of centrifugal feeding mechanisms, and the storage and unloading mechanism is provided with a plurality of mixing paddle mechanisms; the main driving mechanism is used to drive the mounting frame and the cover shell to rotate, the main driving mechanism is used to drive the clamping driving wheel mechanism, the clamping driving wheel mechanism is used to drive the deflection crushing mechanism, the centrifugal feeding mechanism is used to store materials, and the mixing paddle mechanism is used to stir the materials in the production and processing cylinder.
2. The composite plugging material production equipment according to claim 1, characterized in that: The main driving mechanism includes a driving motor fixed on the mounting frame plate, the output shaft of the driving motor is fixedly connected to the driving shaft, the driving shaft is coaxially fixedly connected to the first gear and the driving wheel, the outer side of the production and processing cylinder is fixedly connected to the second gear, and the second gear is meshed with the first gear.
3. The composite plugging material production equipment according to claim 2, characterized in that: The deflection crushing mechanism includes a first deflection shift seat fixed on a mounting plate, the first deflection shift seat is rotatably connected to a deflection rod, the deflection rod is fixedly connected to an outer sleeve, the mounting plate is fixedly connected to a second deflection shift seat, the second deflection shift seat is rotatably connected to a linear motor, an end of the linear motor away from the second deflection shift seat is rotatably connected to a third deflection shift seat, the third deflection shift seat is fixed to the outside of the outer sleeve, the inside of the outer sleeve is rotatably connected to a crushing discharge pipe, the crushing discharge pipe is rotatably connected to a discharge valve, an elastic telescopic tube is fixedly connected between the discharge valve and the production and processing cylinder, the crushing discharge pipe is fixedly connected to a crushing cylinder, a plurality of crushing blades are fixedly connected to the inside of the crushing cylinder, and a feeding port is provided on the crushing cylinder.
4. The composite plugging material production equipment according to claim 3, characterized in that: The clamping driving wheel mechanism includes a clamping cylinder fixed on the crushing cylinder, an elastic member fixedly connected inside the clamping cylinder, the elastic member fixedly connected to a clamping block, the cross-section of the clamping block is a rectangular structure, the clamping block is located inside the clamping cylinder, the clamping block and the clamping cylinder are slidably connected, the clamping block is fixedly connected to a clamping rod, the clamping rod passes through the clamping cylinder, the clamping rod and the clamping cylinder are slidably connected, the end of the clamping rod away from the clamping block is fixedly connected to a hemispherical transmission wheel, and the hemispherical transmission wheel is in contact with the driving wheel.
5. The composite plugging material production equipment according to claim 4, characterized in that: The material storage and unloading mechanism includes a rotating tube rotatably connected to the production and processing cylinder, the upper end of the rotating tube is fixedly connected to the storage shell, an opening and closing valve is provided on the rotating tube, the outer side of the rotating tube is fixedly connected to the third gear, the third gear meshes with the fourth gear, the fourth gear is coaxially fixedly connected to the first gear shaft, the first gear shaft is rotatably connected to the production and processing cylinder, the fourth gear meshes with the fifth gear, the fifth gear is coaxially fixedly connected to the second gear shaft, the second gear shaft is rotatably connected to the production and processing cylinder, the fifth gear meshes with the sixth gear, and the sixth gear is fixed to the inner side of the production and processing cylinder.
6. The composite plugging material production equipment according to claim 5, characterized in that: The mounting ring mechanism comprises an inclined material tube fixed on the material storage shell, and one end of the inclined material tube away from the material storage shell is fixedly connected to the mounting ring.
7. The composite plugging material production equipment according to claim 6, characterized in that: The centrifugal feeding mechanism includes a mounting shell fixed on the mounting ring, the mounting shell and the mounting ring are connected, the side of the mounting shell is fixedly connected to the fourth deflection shift seat, the fourth deflection shift seat is rotatably connected to the deflection tube, the deflection tube is fixedly connected to the centrifugal cylinder, a sealing cover plate is provided at one end of the centrifugal cylinder away from the fourth deflection shift seat, a hose is provided between the deflection tube and the mounting shell, the mounting shell is fixedly connected to the fifth deflection shift seat, the fifth deflection shift seat is rotatably connected to the internal threaded sleeve, the internal threaded sleeve is threadably connected to the threaded adjustment rod, the threaded adjustment rod is rotatably connected to the threaded rod mounting block, and the threaded rod mounting block is rotatably connected to the sixth deflection shift seat.
8. The composite plugging material production equipment according to claim 5, characterized in that: The hybrid paddle mechanism includes a hybrid paddle housing fixed to the side of a rotating tube, the hybrid paddle housing is connected to the rotating tube, a plurality of deflection housing grooves are provided on the hybrid paddle housing, the hybrid paddle housing is fixedly connected to a central axis, the central axis is fixedly connected to a torsion spring, one end of the torsion spring away from the central axis is fixedly connected to a torsion sleeve, the torsion sleeve is rotationally connected to the hybrid paddle housing, and the outer side of the torsion sleeve is fixedly connected to the deflection plate.
Citation Information
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