Material dispersing structure of resin anchor rod anchoring agent raw material uniform mixing equipment
By designing a material distribution tray and a dispersing mesh structure, combined with a motor drive and a follow-up structure, the problems of raw material agglomeration and stratification were solved, achieving uniform distribution and rapid mixing of raw materials, thus improving the production efficiency and quality of resin anchor bolt anchoring agent.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- INNER MONGOLIA ZHONGCHENG HETAI HI TECH CO LTD
- Filing Date
- 2025-05-09
- Publication Date
- 2026-05-01
AI Technical Summary
Existing mixing devices often cause raw materials to clump or separate during feeding, resulting in uneven mixing and affecting product quality and production efficiency.
The material is initially dispersed and then spread out by using a material distribution tray and a dispersing mesh structure, combined with a motor drive and a follow-up structure. The material is further broken up by the material distribution trough and the crushing protrusions to ensure that the material is evenly spread out.
It improves the feeding state of raw materials, promotes rapid and uniform mixing, reduces mixing time, and enhances mixing efficiency and product quality stability.
Smart Images

Figure CN224180797U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of anchoring agent production equipment, and in particular to a bulk material structure of a resin anchor bolt anchoring agent raw material mixing device. Background Technology
[0002] In the production process of resin anchor bolt anchoring agent, the degree of uniform mixing of raw materials has a crucial impact on product quality.
[0003] In existing mixing devices, raw materials tend to fall into the mixing device in a concentrated manner during feeding, and cannot be actively dispersed. This easily leads to clumping or stratification, making it difficult to achieve uniform dispersion quickly. As a result, more time and energy are required to achieve uniform mixing during the mixing process, which not only reduces production efficiency but may also affect the stability of product performance due to uneven mixing. Therefore, a material dispersion structure for a resin anchor bolt anchoring agent raw material mixing device is needed. Utility Model Content
[0004] The purpose of this application is to provide a bulk material structure for a resin anchor bolt anchoring agent raw material mixing device to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this application provides the following technical solution: a bulk material structure for a resin anchor bolt anchoring agent raw material mixing device, comprising:
[0006] The material tray is located below the feed inlet of the mixing equipment. Multiple material distribution grooves are provided on the material tray and are arranged in a circular array along the upper surface of the material tray. The material tray is a disc with a conical shape at the top and the top of the material tray protrudes upward.
[0007] The dispersing net is located below the material distribution plate. A through hole is formed in the middle of the dispersing net. The periphery of the dispersing net is slidably connected to the inner wall of the mixing equipment through the mounting frame. The dispersing net slides vertically up and down.
[0008] The motor is fixed to the bottom of the dispersing net by a mounting bracket, and the output shaft of the motor passes through the through hole in the middle of the dispersing net and is fixed to the lower end of the material distribution plate.
[0009] Follower structure: The follower structure is used to drive the dispersing net to vibrate up and down as the material tray rotates.
[0010] As a further supplement to this solution, a material breakage protrusion is formed near the opening of the material distribution trough. Multiple material breakage protrusions are provided and evenly distributed between the inner walls on both sides of the material distribution trough.
[0011] As a further supplement to this solution, the material distribution trough is an inclined trough adapted to the conical part of the material distribution tray. The upper opening of the material distribution trough is smaller than the lower opening of the material distribution trough, and the depth of the upper opening of the material distribution trough is greater than the depth of the lower opening of the material distribution trough.
[0012] As a further supplement to this solution, the material breakage protrusions are sheet-like protrusions with a spindle-shaped cross-section. The angles of the multiple material breakage protrusions are different, and the centerlines of the cross-sections of the multiple material breakage protrusions are all adapted to the horizontal extension arc of the material distribution groove.
[0013] As a further supplement to this solution, multiple baffles are integrally formed around the periphery of the bulk material tray, with each baffle positioned at the edge of the bulk material tray between two distribution troughs.
[0014] As a further supplement to this solution, the mounting frame includes columns and poles, and the perimeter of the distribution net has notches that slide and engage with the columns;
[0015] The lower end of the column is integrally formed with one end of the frame rod, and the other end of the frame rod extends horizontally to the lower end of the motor and is fixed thereto.
[0016] As a further supplement to this solution, the follower structure includes:
[0017] The spring is fixed at its upper and lower ends to the lower end of the netting and the end of the support pole near the column, respectively.
[0018] Rollers are embedded in the upper part of the dispersing mesh, with the axis of the rollers coinciding with the radial direction of the dispersing mesh, and the rollers located within the mapping range of the material distribution disc.
[0019] The upper end of the abutment is fixed to the lower end of the bulk material tray, and the lower end of the abutment forms a hemispherical end.
[0020] In this system, the roller and the abutment are positioned on the circular path. When the roller and the abutment are staggered and separated, the upper horizontal height of the roller is higher than the lower horizontal height of the abutment.
[0021] As a further supplement to this solution, a retaining ring is also fixed at the upper end of the dispersing network. The retaining ring is arranged around the outside of the roller, and the outer diameter of the retaining ring is smaller than the diameter of the dispersing disc.
[0022] In summary, the technical effects and advantages of this utility model are as follows:
[0023] 1. In this utility model, by setting up a material distribution plate and a dispersing net, the motor is turned on while adding raw materials into the mixing equipment. When the raw materials enter the mixing equipment through the feed inlet, the motor drives the material distribution plate to rotate. The material that was originally on the material distribution plate is initially dispersed by the rotating material distribution plate. The dispersed raw materials are dispersed with the rotation of the material distribution plate. During the dispersion process, the raw materials enter the distribution trough and are guided by the distribution trough to be evenly spread. Then the spread raw materials fall onto the dispersing net, which vibrates up and down under the drive of the follow-up structure, thereby spreading the spread raw materials a second time. At the same time, the vibrating dispersing net can also further disperse the clumps of raw materials, thereby preventing the clumps of raw materials from falling directly, greatly improving the feeding state of the raw materials, promoting rapid and uniform mixing, reducing the mixing time of the resin anchor bolt anchoring agent raw material mixing equipment, and improving the mixing efficiency.
[0024] 2. In this utility model, by setting the material breakage protrusion, when the raw material passes through the material breakage protrusion, the material breakage protrusion can break and disperse the moving clump of raw material, thereby achieving better uniform spreading and anti-clumping effect. At the same time, the shuttle-shaped material breakage protrusion can also reduce its own obstruction to the raw material, ensure the smooth spreading of the raw material, and provide the spreading effect of the material distribution plate. Attached Figure Description
[0025] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1 This is a schematic diagram of the three-dimensional structure in this embodiment;
[0027] Figure 2 This is a first-view structural diagram of the bulk material tray in this embodiment;
[0028] Figure 3 This is a schematic diagram of the distribution net and mounting frame structure in this embodiment;
[0029] Figure 4 This is a schematic diagram of the second-view structure of the bulk material tray in this embodiment.
[0030] In the diagram: 1. Material tray; 11. Material distribution chute; 12. Baffle plate; 13. Crushed material protrusion; 2. Dispersing net; 21. Notch; 22. Material retaining ring; 3. Mounting frame; 31. Column; 32. Frame rod; 4. Motor; 5. Roller; 6. Spring; 7. Support column. Detailed Implementation
[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0032] Example: Reference Figures 1-4 The bulk material structure of the resin anchor bolt anchoring agent raw material mixing device shown includes:
[0033] The material tray 1 is located below the feed inlet of the mixing equipment. The material tray 1 is a tray with a cone-shaped upper end and the upper end of the material tray 1 protrudes upward.
[0034] The bulk material tray 1 is provided with a material distribution groove 11. Multiple material distribution grooves 11 are provided and distributed in a circumferential array along the upper surface of the bulk material tray 1. The material distribution groove 11 is an inclined groove adapted to the conical part of the bulk material tray 1. The upper opening of the material distribution groove 11 is smaller than the lower opening of the material distribution groove 11, and the depth of the upper opening of the material distribution groove 11 is greater than the depth of the lower opening of the material distribution groove 11.
[0035] Dispersing net 2 is located below the material distribution plate 1. A through hole is formed in the middle of the dispersing net 2. The dispersing net 2 is a ring net with a high center and a low periphery. The horizontal inclination angle of its cross-section is 3-12°, which allows the raw material falling on the dispersing net 2 to be evenly dispersed and spread in all directions. The periphery of the dispersing net 2 is slidably connected to the inner wall of the mixing equipment through the mounting frame 3. The dispersing net 2 slides vertically up and down.
[0036] Motor 4 is fixed below the dispersing net 2 by mounting bracket 3, and the output shaft of motor 4 passes through the through hole in the middle of the dispersing net 2 and is fixed to the lower end of the material distribution plate 1;
[0037] The follower structure is used to drive the dispersing net 2 to vibrate up and down as the material tray 1 rotates.
[0038] Based on the above structure, while adding the resin anchor bolt anchoring agent raw material (hereinafter referred to as raw material) into the mixing equipment, the motor 4 is turned on. When the raw material enters the mixing equipment through the feed port, the motor 4 drives the material distribution plate 1 to rotate. The material that was originally on the material distribution plate 1 and was initially dispersed by the rotating material distribution plate 1 falls down. The dispersed raw material is dispersed with the rotation of the material distribution plate 1. During the dispersion process, the raw material enters the distribution trough 11 and is guided by the distribution trough 11 to be evenly spread. Then the spread raw material falls onto the dispersing net 2. The dispersing net 2 is driven by the follow-up structure to generate up and down reciprocating vibration, thereby dispersing the spread raw material a second time. At the same time, the vibrating dispersing net 2 can also disperse the clumps of raw material a second time, thereby preventing the clumps of raw material from falling directly, greatly improving the feeding state of the raw material, promoting rapid and uniform mixing, reducing the mixing time of the resin anchor bolt anchoring agent raw material mixing equipment, and improving the mixing efficiency.
[0039] In addition, the material of the material tray 1 in this embodiment is a wear-resistant material with a certain degree of elasticity, such as a rubber and metal composite (coating) material. This material can ensure that the material tray 1 is not easily damaged under long-term impact from raw materials, and can also use its elasticity to buffer the falling raw materials, which helps the raw materials to be more evenly distributed on the material tray 1.
[0040] Furthermore, a material breakage protrusion 13 is formed near the opening of the material distribution trough 11. Multiple material breakage protrusions 13 are provided and evenly distributed between the inner walls on both sides of the material distribution trough 11.
[0041] Among them, the scrap protrusion 13 is a sheet-like protrusion with a spindle-shaped cross section. The angles of the multiple scrap protrusions 13 are different, and the center lines of the cross sections of the multiple scrap protrusions 13 are all adapted to the horizontal extension arc of the material distribution groove 11.
[0042] By setting the material breakage protrusion 13, when the raw material passes through the material breakage protrusion 13, the material breakage protrusion 13 can break and disperse the moving clump of raw material, thereby achieving better uniform distribution and anti-clumping effect. At the same time, the shuttle-shaped material breakage protrusion 13 can also reduce its own obstruction to the raw material, ensure the smooth distribution of the raw material, and provide the distribution effect of the material distribution plate 1.
[0043] Furthermore, multiple baffles 12 are integrally formed around the perimeter of the bulk material tray 1. Each baffle 12 is positioned at the edge of the bulk material tray 1 between two distribution troughs 11. The baffles 12 prevent large pieces of raw material from falling directly. Instead, the raw material is blocked by the baffles 12 and enters the distribution trough 11, where it is broken up by the distribution trough 11 or by the adjacent baffles 12 before falling. This ensures the effectiveness of the material spreading operation of the bulk material tray 1.
[0044] Furthermore, the mounting frame 3 includes a column 31 and a support pole 32, and the periphery of the distribution net 2 is provided with a notch 21 that slides into the column 31;
[0045] The lower end of the column 31 is integrally formed with one end of the support rod 32, and the other end of the support rod 32 extends horizontally to the lower end of the motor 4 and is fixed to the lower end of the motor 4.
[0046] Furthermore, the follower structure includes:
[0047] Spring 6, with its upper and lower ends fixed to the lower end of the dispersing net 2 and the end of the support rod 32 near the column 31, respectively;
[0048] Roller 5 is rolled and embedded on the upper end of the dispersing net 2. The axis of roller 5 coincides with the radial direction of the dispersing net 2. Roller 5 is located within the mapping range of the material distribution disc 1.
[0049] The upper end of the abutment column 7 is fixed to the lower end of the bulk material tray 1, and the lower end of the abutment column 7 forms a hemispherical end.
[0050] In this arrangement, the roller 5 and the abutment 7 are positioned on the circular path. When the roller 5 and the abutment 7 are staggered and separated, the horizontal height of the upper end of the roller 5 is higher than the horizontal height of the lower end of the abutment 7.
[0051] When the material distribution disc 1 rotates, it drives the abutment column 7 to rotate synchronously. When the position of the abutment column 7 coincides with that of the roller 5 during the rotation, the hemispherical end of the lower end of the abutment column 7 pushes against the roller 5, forcing the roller 5 to descend, thereby driving the dispersing net 2 to descend. After the abutment column 7 separates from the roller 5, the dispersing net 2 is reset under the elastic force of the spring 6, completing one vibration. As the material distribution disc 1 rotates, the dispersing net 2 reciprocates, thereby uniformly dispersing and secondary crushing the raw materials.
[0052] Using roller 5 in conjunction with abutment 7 can reduce the friction between the two, thereby reducing the wear of abutment 7 and roller 5 and enabling long-term transmission.
[0053] Furthermore, a baffle ring 22 is fixed at the upper end of the dispersing net 2. The baffle ring 22 is arranged around the outside of the roller 5, and the outer diameter of the baffle ring 22 is smaller than the diameter of the dispersing disc 1. The baffle ring 22 can prevent the raw material from entering the roller 5 and affecting the rotation of the roller 5.
[0054] The working principle of this utility model is as follows: During daily use, while adding raw materials to the mixing equipment, the motor 4 is turned on. When the raw materials enter the mixing equipment through the feed inlet, the motor 4 drives the material distribution disc 1 to rotate. The raw materials that were originally on the material distribution disc 1 are initially dispersed by the rotating disc 1. The dispersed raw materials are then dispersed as the disc 1 rotates. During this dispersion process, the raw materials enter the distribution trough 11 and are guided by it to spread evenly. When the raw materials pass through the crushing protrusions 13, the protrusions 13 can break up and disperse any clumps of moving raw materials, thus achieving better uniform dispersion and anti-caking effects. At the same time, the spindle-shaped crushing protrusions 13 can also reduce their own obstruction to the raw materials, ensuring smooth dispersion and improving the dispersion effect of the material distribution disc 1. The raw material falls onto the dispersing net 2. As the dispersing disc 1 rotates, it drives the abutment column 7 to rotate synchronously. When the abutment column 7 coincides with the position of the roller 5 during rotation, the hemispherical end of the lower end of the abutment column 7 pushes against the roller 5, forcing the roller 5 to fall, thereby driving the dispersing net 2 to fall. After the abutment column 7 separates from the roller 5, the dispersing net 2 returns to its original position under the elastic force of the spring 6, completing one vibration. As the dispersing disc 1 rotates, the dispersing net 2 reciprocates, thereby spreading the spread raw material a second time. At the same time, the vibrating dispersing net 2 can also break up any clumps of raw material, thus preventing the clumps from falling directly. This greatly improves the feeding state of the raw material, promotes rapid and uniform mixing, reduces the mixing time of the resin anchor bolt anchoring agent raw material mixing equipment, and improves the mixing efficiency.
[0055] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model 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 make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A bulk material structure for a resin anchor bolt anchoring agent raw material mixing device, characterized in that, include: The material tray (1) is located below the feed inlet of the mixing equipment. The material tray (1) is provided with a material distribution groove (11). Multiple material distribution grooves (11) are provided and distributed in a circular array along the upper surface of the material tray (1). The material tray (1) is a tray with a cone-shaped upper end and the upper end of the material tray (1) protrudes upward. Dispersing mesh (2), the dispersing mesh (2) is located below the material tray (1), the dispersing mesh (2) has a through hole in the middle, the periphery of the dispersing mesh (2) is slidably connected to the inner wall of the mixing equipment through the mounting bracket (3), and the dispersing mesh (2) slides vertically up and down; The motor (4) is fixed below the dispersing net (2) by the mounting bracket (3), and the output shaft of the motor (4) passes through the through hole in the middle of the dispersing net (2) and is fixed to the lower end of the material distribution plate (1); The follower structure is used to drive the dispersing net (2) to vibrate up and down as the material tray (1) rotates.
2. The bulk material structure of a resin anchor rod anchoring agent raw material mixing device according to claim 1, characterized in that: The material distribution trough (11) has a material breakage protrusion (13) near the opening. The material breakage protrusion (13) is provided in multiple quantities and is evenly distributed between the inner walls of both sides of the material distribution trough (11).
3. The bulk material structure of the resin anchor bolt anchoring agent raw material mixing device according to claim 2, characterized in that: The material distribution trough (11) is an inclined trough adapted to the conical part of the material distribution tray (1). The upper opening of the material distribution trough (11) is smaller than the lower opening of the material distribution trough (11), and the depth of the upper opening of the material distribution trough (11) is greater than the depth of the lower opening of the material distribution trough (11).
4. The bulk material structure of the resin anchor bolt anchoring agent raw material mixing device according to claim 3, characterized in that: The scrap protrusion (13) is a sheet-like protrusion with a spindle-shaped cross section. The angles of the multiple scrap protrusions (13) are different, and the center lines of the cross sections of the multiple scrap protrusions (13) are adapted to the horizontal extension arc of the material distribution groove (11).
5. The bulk material structure of the resin anchor bolt anchoring agent raw material mixing device according to claim 1, characterized in that: The material tray (1) has multiple baffles (12) integrally formed around its periphery, and each baffle (12) is positioned at the edge of the material tray (1) between two material distribution troughs (11).
6. The bulk material structure of the resin anchor bolt anchoring agent raw material mixing device according to claim 1, characterized in that: The mounting frame (3) includes a column (31) and a support rod (32), and the distribution net (2) has a notch (21) on its periphery that slides into the column (31); The lower end of the column (31) is integrally formed with one end of the frame rod (32), and the other end of the frame rod (32) extends horizontally to the lower end of the motor (4) and is fixed to the lower end of the motor (4).
7. The bulk material structure of the resin anchor bolt anchoring agent raw material mixing device according to claim 6, characterized in that: The follower structure includes: Spring (6), the upper and lower ends of which are fixed to the lower end of the dispersing net (2) and the end of the support rod (32) near the column (31), respectively; Roller (5), the roller (5) is rolled and embedded on the upper end of the dispersing net (2), the axis of the roller (5) coincides with the radial direction of the dispersing net (2), and the roller (5) is located within the mapping range of the material distribution disc (1); A stop post (7) is fixed at its upper end to the lower end of the material distribution plate (1), and the lower end of the stop post (7) forms a hemispherical end. The roller (5) and the abutment (7) are aligned on the circular path. When the roller (5) and the abutment (7) are staggered and separated, the horizontal height of the upper end of the roller (5) is higher than the horizontal height of the lower end of the abutment (7).
8. The bulk material structure of the resin anchor bolt anchoring agent raw material mixing device according to claim 7, characterized in that: The upper end of the dispersing net (2) is also fixed with a baffle ring (22), which is arranged around the outside of the roller (5), and the outer diameter of the baffle ring (22) is smaller than the diameter of the dispersing disc (1).