Material mixing and batching mechanism
By setting a feeding mechanism at the feed pipe of the mixing and batching machine, the problem of powder material agglomeration is solved by using a splitting claw frame and a cross blade to break up powder clumps, thus achieving high-quality material mixing.
Patent Information
- Application Number
- CN202422578600.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-24
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2034-10-24
AI Technical Summary
Existing material mixing and batching machines are not easy to break up powdery materials that are prone to clumping when mixing them, resulting in small clumps in the mixed material and affecting the quality.
A material dispensing mechanism is installed at the feed pipe of the mixing and batching machine. The high-speed rotating splitting claw frame and cross blades break up the powder clumps in the small feed pipe cavity and then enter the mixing and batching machine through the extension pipe for further mixing.
It effectively breaks up lumps of powder, ensuring that the materials are evenly mixed in the mixing and batching machine, thereby improving the mixing effect and material quality.
Smart Images

Figure CN223788422U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of material mixing technology, and in particular to a material mixing and batching mechanism. Background Technology
[0002] A material mixing and batching machine is a device for mixing and configuring materials. The material mixing and batching machine uses an electric motor to drive an agitator to rotate and mix materials of different components. The rotation of the agitator causes the materials to continuously tumble and stir inside the machine, thereby achieving uniform mixing. After mixing and configuring, the materials can be discharged to a belt conveyor to feed to the material processing equipment.
[0003] Currently, when mixing different materials, some easily clumping powder materials are poured into the material mixing and batching machine for mixing. However, the mixing space inside the material mixing and batching machine is relatively large, and some small clumps of powder are not easily broken up during the mixing process. As a result, small clumps are likely to be present in the powder material discharged from the material mixing and batching machine, which affects the quality of the mixed and batched material. To address this, we propose a material mixing and batching mechanism. Utility Model Content
[0004] The main objective of this invention is to provide a material mixing and batching mechanism. A feeding mechanism is installed at the feed pipe of the mixing and batching machine, forming a material pretreatment structure. The feeding mechanism, with its high-speed rotating claw frame and cross blade, can disperse materials containing lumps within a small feed pipe cavity. The lumps in the small cavity are effectively dispersed, allowing the dispersed material to fall along the extension pipe into the mixing and batching machine for mixing. This ensures that materials containing lumps are properly processed and mixed into high-quality materials within the mixing and batching machine, effectively solving the problems in the prior art.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0006] A material mixing and batching mechanism includes a mixing and batching machine and a feeding pipe. The feeding pipe is fixed to the top of the mixing and batching machine. The mechanism also includes a feeding mechanism, which comprises an extension pipe, a top plate, a bearing, a rotating rod, a connecting plate, a motor, a cross blade, a claw holder, a ring, and a guide cover. An extension pipe is welded to the top of the feeding pipe, and a top plate is installed at the opening of the extension pipe. A recessed hole is centrally located in the center of the top plate, and a bearing is engaged with the bottom wall of the recessed hole. A rotating rod passes downward through the inner ring of the bearing. The extension tube is inserted into the rotating rod, and a connecting disc is welded to the top of the rod body. The disc body is inserted into the upper wall of the recessed connection hole, and the upper surface of the connecting disc is recessed to provide a shaft connection hole for mounting the motor for direct key connection. The mounting ring of the motor is screwed to the top plate with bolts. A cross blade is welded to the outside of the rod body of the rotating rod that extends into the extension tube, and a claw bracket is welded to the bottom surface of the rotating rod. A ring is welded to the outside of the claw bracket. A side inlet is opened on the outer tube wall of the extension tube near the top plate, and a guide cover is welded to the surface of the extension tube outside the side inlet.
[0007] Furthermore, the bracket plate of the split claw frame is welded to the bottom of the rotating rod, and the outer arc surface of the bracket plate of the split claw frame is distributed and fixed with bracket rods for welding rings.
[0008] By adopting the above technical solution, the bracket plate of the split claw frame is welded to the rotating rod, and the bracket rod can be welded with a ring.
[0009] Furthermore, the cavity of the recessed hole is provided with an annular stepped hole wall for supporting the connecting plate, and a bearing is embedded in the recessed hole below the connecting plate.
[0010] By adopting the above technical solution, the connecting plate is supported by the annular stepped hole wall at the recessed joint, and the bearing can be clamped in the recessed joint below the connecting plate.
[0011] Furthermore, a bottom hole for inserting the rotating rod is provided at the recessed hole below the bearing, and the rod body is inserted into the extension tube from the bottom hole of the recessed hole;
[0012] By adopting the above technical solution, the rotating rod can pass through the bearing ring hole and be inserted into the extension tube along the bottom hole of the concave connection hole.
[0013] Furthermore, the four sets of plates of the cross blade are welded in a cross shape to the surface of the rotating rod.
[0014] By adopting the above technical solution, the four sets of plates of the cross blade can form multiple feeding positions at the rotating rod.
[0015] Furthermore, the size of the guide shield is larger than the size of the side inlet cavity;
[0016] By adopting the above technical solution, the guide cover can cover the side inlet after being welded at the extension tube.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] This invention features a material dispensing mechanism installed at the feed pipe of a mixing and batching machine. This dispensing mechanism forms a material pretreatment structure at the feed pipe of the mixing and batching machine. The dispensing mechanism, with its high-speed rotating claw frame and cross blade, can disperse materials containing lumps in the small feed pipe cavity. The lumps in the small pipe cavity can be effectively dispersed, allowing the dispersed materials to fall into the mixing and batching machine along the extension pipe for mixing. This ensures that the materials containing lumps can be well processed and mixed into high-quality materials in the mixing and batching machine.
[0019] Furthermore, the feeding mechanism can pre-break up some lumpy materials when pouring them in, so that the broken-up lumpy materials can fall into the mixing and batching machine for efficient mixing, thus improving the material processing effect of the mixing and batching machine. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of a material mixing and batching mechanism according to the present invention.
[0021] Figure 2 This is an exploded view of the feeding mechanism of a material mixing and batching mechanism according to this utility model.
[0022] In the diagram: 1. Mixing and batching machine; 2. Feed pipe; 3. Feeding mechanism; 4. Extension pipe; 5. Top plate; 6. Recessed hole; 7. Bearing; 8. Rotating rod; 9. Connecting disc; 10. Shaft connecting hole; 11. Motor; 12. Cross blade; 13. Dividing claw frame; 14. Ring; 15. Side inlet; 16. Guide cover. Detailed Implementation
[0023] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0024] like Figure 1-2As shown, a material mixing and batching mechanism includes a mixing and batching machine 1 and a feeding pipe 2. The feeding pipe 2 is fixed to the top of the mixing and batching machine 1. It also includes a feeding mechanism 3. The feeding mechanism 3 includes an extension pipe 4, a top plate 5, a bearing 7, a rotating rod 8, a connecting plate 9, a motor 11, a cross blade 12, a claw holder 13, a ring 14, and a guide cover 16. The top of the feeding pipe 2 is welded to the extension pipe 4, and the top plate 5 is installed at the pipe opening of the extension pipe 4. A recessed hole 6 is centrally located in the middle of the plate body of the top plate 5, and a bearing 7 is engaged at the bottom wall of the recessed hole 6. A rotating rod 8 is located on the inner ring of the bearing 7 and points downwards. The extension tube 4 is inserted into the rotating rod 8, and a connecting plate 9 is welded to the top of the rod body. The plate body of the connecting plate 9 is inserted into the upper wall of the recessed connection hole 6, and the upper plate surface of the connecting plate 9 is recessed to provide a shaft connecting hole 10 for mounting the motor 11 for direct key connection. The mounting ring of the motor 11 is screwed to the top plate 5. A cross blade plate 12 is welded to the outside of the rod body of the rotating rod 8 extending into the extension tube 4, and a claw bracket 13 is welded to the bottom rod surface of the rotating rod 8. A ring 14 is welded to the outside of the bracket of the claw bracket 13. A side inlet 15 is opened on the outer tube wall of the extension tube 4 near the top plate 5, and a guide cover 16 is welded to the surface of the extension tube 4 outside the side inlet 15.
[0025] The bracket plate of the split claw frame 13 is welded to the bottom of the rotating rod 8, and the outer arc surface of the bracket plate of the split claw frame 13 is fixed with bracket rods for welding the ring 14.
[0026] By adopting the above technical solution, after the bracket plate of the claw frame 13 is welded to the rotating rod 8, the ring 14 can be welded to the bracket rod.
[0027] The recessed hole 6 is provided with an annular stepped hole wall for supporting the connecting plate 9, and the recessed hole 6 below the connecting plate 9 is embedded with a bearing 7.
[0028] By adopting the above technical solution, the connecting plate 9 is supported by the annular stepped hole wall at the recessed hole 6, and the bearing 7 can be clamped in the recessed hole 6 below the connecting plate 9.
[0029] The bearing 7 has a recessed hole 6 below it, which is provided with a bottom hole for inserting the rotating rod 8, and the rod body of the rotating rod 8 is inserted into the extension tube 4 from the bottom hole of the recessed hole 6.
[0030] By adopting the above technical solution, the rotating rod 8 can pass through the ring hole of the bearing 7 and be inserted into the extension tube 4 along the bottom hole of the recessed hole 6.
[0031] The four sets of plates of the cross blade 12 are distributed in a cross shape and welded to the surface of the rod body of the rotating rod 8;
[0032] By adopting the above technical solution, the four sets of plates of the cross blade 12 can form a multi-point feeding position at the rotating rod 8.
[0033] The size of the guide cover 16 is larger than the size of the cavity of the side inlet 15;
[0034] By adopting the above technical solution, the guide cover 16 can cover the side inlet 15 after being welded at the extension tube 4.
[0035] It should be noted that this utility model is a material mixing and batching mechanism. A feeding mechanism 3 is set at the feed pipe 2 of the mixing and batching machine 1. The extension pipe 4 of the feeding mechanism 3 can be welded to the feed pipe 2 for connection. Then, the top plate 5 can be locked to the top of the extension pipe 4 with bolts. Then, the output shaft of the motor 11 is locked in the shaft connection hole 10 of the connecting plate 9 with a straight key. At this time, the mounting ring of the motor 11 is screwed and locked to the top of the top plate 5. When materials containing powder lumps need to be put into the mixing and batching machine 1 for mixing and batching, the materials can fall from the guide cover 16 along the side inlet 15 into the extension pipe 4. The motor 11 on the top of the top plate 5 can be electrically connected. When the motor 11 is turned on by connecting to an external controllable power supply, the connecting disc 9 rotates in the recessed hole 6, while the rotating rod 8 rotates in the inner ring of the bearing 7. At this time, the rod of the rotating rod 8 in the extension tube 4 carries the splitting claw frame 13 and the cross blade plate 12 to rotate. The high-speed rotating splitting claw frame 13 and the cross blade plate 12 can break up the material containing powder lumps in the small feed tube cavity. The powder lumps in the small tube cavity can be well broken up, so that the material after the lumps are broken up can fall into the mixing and batching machine 1 along the extension tube 4 for mixing and batching. This allows the material containing powder lumps to be well processed and mixed into high-quality material in the mixing and batching machine 1.
[0036] It should be noted that this utility model is a material mixing and batching mechanism. All components in this utility model are known to those skilled in the art, and their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods.
[0037] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A material mixing and batching mechanism, comprising a mixing and batching machine (1) and a feeding pipe (2), the top of the mixing and batching machine (1) is fixed with the feeding pipe (2), characterized in that: Also include a material beating mechanism (3), the material beating mechanism (3) includes extension pipe (4), top disc (5), bearing (7), rotating rod (8), connecting disc (9), motor (11), cross cutter plate (12), split claw frame (13), ring (14) and guide cover (16), the top of the feeding pipe (2) is interconnected with extension pipe (4), and the pipe opening of the extension pipe (4) is installed with top disc (5), the disc body of the top disc (5) is centrally provided with a recessed hole (6), and the bottom hole wall of the recessed hole (6) is clamped with a bearing (7), the inner ring of the bearing (7) is downwardly penetrated into the extension pipe (4) with a rotating rod (8), and the rod body top of the rotating rod (8) is welded with a connecting disc (9), the disc body of the connecting disc (9) is clamped into the upper hole wall of the recessed hole (6), and the upper disc surface of the connecting disc (9) is recessed to provide an axle connecting hole (10) for clamping and connecting the motor (11) in a straight key, the mounting ring of the motor (11) is screwed with the top disc (5), the rod body of the rotating rod (8) is welded with a cross cutter plate (12) extending into the extension pipe (4), and the bottom rod surface of the rotating rod (8) is welded with a split claw frame (13), the frame rod of the split claw frame (13) is welded with a ring (14), the outer tube wall of the extension pipe (4) close to the top disc (5) is provided with a side inlet (15), and the surface of the extension pipe (4) outside the side inlet (15) is welded with a guide cover (16).
2. A material mixing and dosing mechanism according to claim 1, characterized in that: The frame disc of the split claw frame (13) is welded at the rod bottom of the rotating rod (8), and the outer arc surface of the frame disc of the split claw frame (13) is dispersedly fixed with a frame rod for welding the ring (14).
3. A material mixing and dosing mechanism according to claim 1, characterized in that: The hole cavity of the recessed hole (6) is provided with a ring step hole wall for supporting and connecting the connecting disc (9), and the recessed hole (6) below the connecting disc (9) is embedded with a bearing (7).
4. A material mixing and dosing mechanism according to claim 1, characterized in that: The bottom hole of the recessed hole (6) below the bearing (7) is provided with a bottom hole for penetrating the rotating rod (8), and the rod body of the rotating rod (8) is inserted into the extension pipe (4) from the bottom hole of the recessed hole (6).
5. A material mixing and dosing mechanism according to claim 1, characterized in that: The four groups of plate bodies of the cross cutter plate (12) are cross-distributed and welded on the rod body surface of the rotating rod (8).
6. A material mixing and dosing mechanism according to claim 1, characterized in that: The size of the cover body of the guide cover (16) is greater than the size of the cavity opening of the side inlet (15).