A return module of a material sampling device
By designing an automated material sampling device return module, the problem of high labor intensity during the pelletizing disc injection process was solved, and efficient automated material conveying was achieved.
Patent Information
- Application Number
- CN202521473951.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-15
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-07-15
AI Technical Summary
In existing technologies, the process of filling the pelletizing disc relies on manual handling, which results in high labor intensity and low efficiency.
A return module for a material sampling device was designed. Through a motor-driven horizontal and vertical adjustment component, the hopper can be moved and tilted automatically, avoiding manual operation.
It reduced labor intensity, improved material injection efficiency, and reduced the need for manual operation.
Smart Images

Figure CN224677102U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of material conveying technology, specifically a return module of a material sampling device. Background Technology
[0002] Material handling technology is a crucial link in modern industrial production, with its core objective being the efficient, precise, and safe transfer of raw materials, semi-finished products, or finished products. Traditional conveying methods mainly include belt conveyors, chain conveyors, screw conveyors, and pneumatic conveyors. Among these, belt conveyors are widely used for the continuous transport of bulk materials and packaged goods due to their simple structure and strong adaptability; chain conveyors occupy an important position in heavy industry due to their high load-bearing capacity and high-temperature resistance; screw conveyors use rotating blades to propel materials and are suitable for the closed transport of powdery and granular materials; while pneumatic conveyors utilize airflow power to achieve long-distance pipeline transport of powdery and granular materials, offering advantages such as dust-free operation and flexible layout.
[0003] A search of publication number CN202296168U reveals an adjustable material conveying device, which mainly comprises a conveyor belt, guide wheels, a motor, and a support plate. The motor is connected to the guide wheels via a drive system. The conveyor belt is looped around the guide wheels, which are then mounted on the support plate. A support foot is connected to one end of the support plate via a pin, and a lifting cylinder is connected to the other end via a pin. This adjustable material conveying device features a lifting cylinder on one side of the support plate. This cylinder allows for adjustment of the height at both ends of the conveyor belt, thus changing the conveying speed and capacity. When a high conveying speed is required, the lifting cylinder can be raised, increasing the inclination of the conveyor belt and increasing material slippage, thus accelerating material transport. When a lower conveying speed is required, the lifting cylinder can be lowered, flattening the conveyor belt and reducing material slippage, thus slowing down material transport.
[0004] However, currently, when using pelleting discs, they need to be filled with material, but the filling process is often done manually, which is too labor-intensive and slow, thus affecting the production efficiency of pelleting discs. Utility Model Content
[0005] The purpose of this invention is to provide a return module for a material sampling device to address the shortcomings of the prior art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: it includes a support component, on which a lateral adjustment component is fixedly mounted, a height adjustment component is connected to the lateral adjustment component, and a hopper component is mounted on the height adjustment component. The lateral adjustment component can drive the height adjustment component to move laterally, and the height adjustment component can drive the hopper component to adjust its height.
[0007] Furthermore, the support assembly includes a base plate, a support frame is provided on the base plate, a first reinforcing rib is provided between the support frame and the base plate, and a support rod is provided on the top of the support frame.
[0008] Furthermore, the lateral adjustment component includes a lateral sliding rail fixedly mounted on the support rod, a lateral drive motor mounted on the lateral sliding rail, and a lateral slider slidably connected to the lateral sliding rail. The lateral drive motor can drive the lateral sliding rail to move.
[0009] Furthermore, the height adjustment component includes a height adjustment track fixedly mounted on the horizontal slider, and a height adjustment motor is mounted on the height adjustment track, which can drive the height adjustment track to move.
[0010] Furthermore, the hopper assembly includes a sliding plate slidably connected to the height adjustment track, a support plate is fixedly disposed on the sliding plate, and a second reinforcing rib is disposed between the support plate and the sliding plate.
[0011] Furthermore, a fixing block is fixedly installed on the support plate, and an angle adjustment motor is installed on the fixing block. The output end of the angle adjustment motor passes through the fixing block, and a hopper component is installed on the output end of the angle adjustment motor.
[0012] Compared with the prior art, the return module of the material sampling device provided by this utility model places the material inside the hopper, then starts the height adjustment motor to drive the height adjustment track to move, causing the sliding plate to slide, driving the support plate to slide, causing the fixed block to slide, and driving the angle adjustment motor to slide, allowing the hopper to change height. By starting the lateral drive motor to drive the lateral sliding track to move, driving the lateral slider to move, causing the height adjustment track to move, driving the sliding plate to move, driving the support plate to move, driving the fixed block to move, and driving the angle adjustment motor to move, thus moving the hopper. At this time, the hopper can be height adjusted and moved laterally. By moving the hopper to correspond to the position of the pelletizing plate, the angle adjustment motor is then started to drive the hopper to rotate, causing the material inside the hopper to be poured onto the pelletizing plate, thereby avoiding manual material lifting and reducing labor intensity. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the exploded structure provided for an embodiment of the present utility model.
[0014] Figure 2This is a side view structural diagram provided for an embodiment of the present utility model.
[0015] Explanation of reference numerals in the attached drawings: 1. Support assembly; 11. Base plate; 12. Support frame; 13. Support rod; 14. First reinforcing rib; 2. Lateral adjustment assembly; 21. Lateral sliding track; 22. Lateral drive motor; 23. Lateral slider; 3. Height adjustment assembly; 31. Height adjustment track; 32. Height adjustment motor; 4. Hopper assembly; 41. Sliding plate; 42. Support plate; 43. Second reinforcing rib; 44. Fixing block; 45. Angle adjustment motor; 46. Hopper component. Detailed Implementation
[0016] Please see Figure 1-2 The present invention provides a return module for a material sampling device, comprising a support assembly 1, a lateral adjustment assembly 2 fixedly mounted on the support assembly 1, a height adjustment assembly 3 connected to the lateral adjustment assembly 2, and a hopper assembly 4 mounted on the height adjustment assembly 3. The lateral adjustment assembly 2 can drive the height adjustment assembly 3 to move laterally, and the height adjustment assembly 3 can drive the hopper assembly 4 to adjust its height. In use, by placing material inside the hopper 46, the height adjustment motor 32 is activated to drive the height adjustment track 31 to move, causing the sliding plate 41 to slide, which in turn causes the support plate 42 to slide, causing the fixed block 44 to slide, which in turn causes the angle adjustment motor 45 to slide, thus... The hopper 46 can adjust its height. By starting the transverse drive motor 22, the transverse sliding rail 21 is moved, which in turn moves the transverse slider 23, causing the height adjustment rail 31 to move. This moves the sliding plate 41, which in turn moves the support plate 42, which in turn moves the fixing block 44, causing the angle adjustment motor 45 to move, thus moving the hopper 46. At this time, the hopper 46 can be adjusted in height and moved laterally. By moving the hopper 46 to correspond to the position of the pelletizing plate, the angle adjustment motor 45 is then started to rotate the hopper 46, causing the material inside the hopper 46 to be poured onto the pelletizing plate. This avoids manual material lifting and reduces labor intensity.
[0017] Preferably, the support assembly 1 includes a base plate 11, a support frame 12 is provided on the base plate 11, a first reinforcing rib 14 is provided between the support frame 12 and the base plate 11, and a support rod 13 is provided on the top of the support frame 12.
[0018] Preferably, the lateral adjustment component includes a lateral sliding rail 21 fixedly mounted on the support rod 13, a lateral drive motor 22 mounted on the lateral sliding rail 21, and a lateral slider 23 slidably connected to the lateral sliding rail 21. The lateral drive motor 22 can drive the lateral sliding rail 21 to move.
[0019] Preferably, the height adjustment component 3 includes a height adjustment track 31 fixedly mounted on the horizontal slider 23, and a height adjustment motor 32 is mounted on the height adjustment track 31, which can drive the height adjustment track 31 to move.
[0020] Preferably, the hopper assembly 4 includes a sliding plate 41 slidably connected to the height adjustment track 31, a support plate 42 is fixedly disposed on the sliding plate 41, and a second reinforcing rib 43 is disposed between the support plate 42 and the sliding plate 41.
[0021] Preferably, a fixing block 44 is fixedly installed on the support plate, an angle adjustment motor 45 is installed on the fixing block 44, the output end of the angle adjustment motor 45 passes through the fixing block 44, and a hopper component 46 is installed on the output end of the angle adjustment motor 45.
[0022] The working principle of this utility model is as follows: By placing the material inside the hopper 46, the height adjustment motor 32 is activated to drive the height adjustment track 31 to move, causing the sliding plate 41 to slide, which in turn causes the support plate 42 to slide, which in turn causes the fixed block 44 to slide, which in turn causes the angle adjustment motor 45 to slide, allowing the hopper 46 to change height. By activating the transverse drive motor 22 to drive the transverse sliding track 21 to move, which in turn causes the transverse slider 23 to move, which in turn causes the height adjustment track 31 to move, which in turn causes the sliding plate 41 to move, which in turn causes the support plate 42 to move, which in turn causes the fixed block 44 to move, which in turn causes the angle adjustment motor 45 to move, allowing the hopper 46 to move. At this time, the hopper 46 can be height adjusted and moved laterally. By moving the hopper 46 to the position corresponding to the pelletizing plate, the angle adjustment motor 45 is activated to drive the hopper 46 to rotate, causing the material inside the hopper 46 to be poured onto the pelletizing plate, thereby avoiding manual material lifting and reducing labor intensity.
Claims
1. A return module of a material sampling device, characterized in that, It includes a support component (1), on which a horizontal adjustment component (2) is fixedly installed. A height adjustment component (3) is connected to the horizontal adjustment component (2), and a hopper component (4) is installed on the height adjustment component (3). The horizontal adjustment component (2) can drive the height adjustment component (3) to move horizontally, and the height adjustment component (3) can drive the hopper component (4) to adjust its height.
2. The return module of a material sampling device according to claim 1, characterized in that, The support assembly (1) includes a base plate (11), a support frame (12) is provided on the base plate (11), a first reinforcing rib (14) is provided between the support frame (12) and the base plate (11), and a support rod (13) is provided on the top of the support frame (12).
3. The return module of a material sampling device according to claim 2, characterized in that, The lateral adjustment assembly includes a lateral sliding rail (21) fixedly mounted on the support rod (13), a lateral drive motor (22) is mounted on the lateral sliding rail (21), and a lateral slider (23) is slidably connected to the lateral sliding rail (21). The lateral drive motor (22) can drive the lateral sliding rail (21) to move.
4. The return module of a material sampling device according to claim 3, characterized in that, The height adjustment component (3) includes a height adjustment track (31) fixedly mounted on the horizontal slider (23), and a height adjustment motor (32) is mounted on the height adjustment track (31), which can drive the height adjustment track (31) to move.
5. The return module of a material sampling device according to claim 4, characterized in that, The hopper assembly (4) includes a sliding plate (41) slidably connected to the height adjustment track (31), a support plate (42) is fixedly provided on the sliding plate (41), and a second reinforcing rib (43) is provided between the support plate (42) and the sliding plate (41).
6. The return module of a material sampling device according to claim 5, characterized in that, A fixing block (44) is fixedly installed on the support plate. An angle adjustment motor (45) is installed on the fixing block (44). The output end of the angle adjustment motor (45) passes through the fixing block (44). A hopper component (46) is installed on the output end of the angle adjustment motor (45).
Citation Information
Patent Citations
Adjustable material conveying device
CN202296168U