Novel funnel convenient for loading materials
By designing a drive rod and gear disc structure, the problem of the inability of the funnel structure to adjust the material discharge rate is solved, realizing the flexibility and efficiency of material transfer, avoiding blockage, and improving loading efficiency.
Patent Information
- Application Number
- CN202520145961.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-22
AI Technical Summary
The existing funnel structure cannot adjust the material discharge rate according to the material loading requirements, and it is prone to clogging, which affects the material transfer efficiency.
A funnel structure including a drive rod, a rotating sleeve, a main gear disk, and a secondary gear disk is designed. The drive rod drives the rotating sleeve to rotate and push the material to move. The main gear disk and the secondary gear disk mesh to control the opening and closing of the baffle and adjust the area of the discharge pipe, so as to realize the flexible adjustment of the material discharge volume and avoid blockage.
It enables flexible adjustment based on material loading requirements, prevents material blockage, and improves material transfer efficiency.
Smart Images

Figure CN223736758U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of loading materials, and in particular to a novel funnel that facilitates loading materials. Background Technology
[0002] An existing patent (publication number: CN211076541U) discloses a funnel for transferring materials, including a funnel body and a funnel support frame. The funnel support frame includes support legs and a support bracket with a circular cross-section. The support bracket is fixedly installed above the support legs, and a storage bag is fitted onto the support bracket, with the upper end of the storage bag covering the support bracket. The funnel body is movably installed on the support bracket, and the upper end of the storage bag is sandwiched between the support bracket and the funnel body. However, the structure at the discharge port of this device is relatively fixed, making it impossible to adjust the material transfer volume according to actual usage needs. Furthermore, the material is prone to clogging at the discharge port during discharge, resulting in obstructed material transfer and affecting material loading efficiency, thus presenting drawbacks. Summary of the Invention
[0003] This utility model addresses the aforementioned shortcomings of existing technologies by providing a novel funnel for easy material loading. This funnel allows for adjustment of the material discharge rate according to loading requirements, is structurally flexible and highly practical, and utilizes an internal rotating rod to propel the material, preventing blockage in the discharge pipe, ensuring normal material transport, preventing obstruction, and improving loading efficiency.
[0004] The objective of this utility model is achieved through the following technical solution:
[0005] A novel funnel for easy material loading includes a funnel, a discharge pipe, a rotating sleeve, a drive rod, a main gear disk, a discharge pipe, and a baffle. The lower part of the funnel is connected to the discharge pipe, which has a mounting flange. The funnel has a fixed flange, which is connected to the mounting flange. A screw passes through the mounting flange and the fixed flange in sequence, and nuts are threaded to both ends of the screw. Support blocks are located on both sides of the discharge pipe, and the rotating sleeve is fitted inside the support blocks. Multiple rotating rods are located outside the rotating sleeve, and the drive rod is connected inside the rotating sleeve. The drive rod passes through the support blocks and the rotating sleeve in sequence. Drive grooves are located on both sides of the drive rod, and drive protrusions are located on both sides of the rotating sleeve. The drive protrusions are adapted to the drive grooves and are connected to the drive grooves. An upper motor is connected to the right end of the drive rod, which is connected to the support block. A protrusion is located on the left end of the drive rod, which passes through the support block and is connected to a limiting plate. The limiting plate is fitted to the support block.
[0006] The lower part of the discharge pipe of this utility model has a pressure plate, the pressure plate is connected to a support seat, the support seat has a discharge pipe, the support seat is attached to the lower side of the main gear disk, the upper side of the main gear disk is attached to the pressure plate, the main gear disk has a shaft, the shaft passes through the pressure plate, the shaft is connected to a lower motor, and the lower motor is connected to the pressure plate.
[0007] The present invention describes a main gear disk and a secondary gear disk meshing together, with the main gear disk connected to the secondary gear disk. The lower side of the secondary gear disk is attached to a support seat, and the upper side of the secondary gear disk is attached to a pressure plate. The secondary gear disk has a central support rod in the middle, with the upper end of the central support rod passing through the pressure plate and the lower end of the central support rod passing through the support seat. Beneficial effects
[0008] This utility model increases the support point of the discharge pipe on the rotating sleeve by adding a drive rod, and through the embedded insertion between the drive rod and the rotating sleeve, the rotating sleeve and the rotating rod rotate synchronously with the drive rod. Under the drive of the upper motor, the rotating rod rotates axially around the support block. When the rotating rod rotates, it pushes the material to move, preventing the material from blocking the discharge pipe, ensuring the normal transmission of the material, and avoiding the obstruction of the material transmission, which would affect the material loading efficiency.
[0009] The main gear disk and the auxiliary gear disk of this utility model are meshed together, so that when the main gear disk is driven by the motor to rotate, the auxiliary gear disk will move accordingly. Through the rotation of the baffle, the opening and closing of the pipe opening between the discharge pipe and the material outlet pipe can be controlled. According to the material loading requirements, the material discharge volume can be changed by changing the coverage area of the baffle at the material outlet pipe opening, thereby increasing the structural flexibility and practical performance.
[0010] This utility model can adjust the material discharge rate according to the material loading requirements. It has a flexible structure and strong practicality. At the same time, it uses an internal rotating rod to push the material to move, which can prevent the material from blocking the discharge pipe, ensure the normal material transmission, prevent the material transmission from being obstructed, and improve the material loading efficiency. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of a novel funnel structure for easy loading of materials, as described in this utility model.
[0012] Figure 2 This is a cross-sectional view of a novel funnel structure for easy loading of materials, as described in this utility model.
[0013] Figure 3 This is a schematic diagram of the connection structure of the discharge pipe and baffle described in this utility model.
[0014] Figure 4 This is an exploded view of a novel funnel structure for easy loading of materials, as described in this utility model.
[0015] Figure 5 This is a cross-sectional view of the drive rod and rotating sleeve connection structure described in this utility model.
[0016] Figure 6 This is an exploded view of the rotating drive structure described in this utility model. Detailed Implementation
[0017] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:
[0018] Example 1:
[0019] A novel funnel for easy loading of materials includes a funnel 01, a discharge pipe 06, a rotating sleeve 07, a drive rod 11, a main gear disk 18, a discharge pipe 20, and a baffle 25. The lower part of the funnel 01 is connected to the discharge pipe 06, which has a mounting flange 03. The funnel 01 has a fixing flange 02, which is connected to the mounting flange 03. A screw 04 passes through the mounting flange 03 and the fixing flange 02 in sequence. Nuts 05 are threaded to both ends of the screw 04. Support blocks 15 are located on both sides of the discharge pipe 06. The rotating sleeve 07 is fitted inside the support blocks 15. Multiple rotating rods 08 are located outside the rotating sleeve 07. The drive rod 11 is connected inside the rotating sleeve 07 and passes through the support blocks 15 and the rotating sleeve 07 in sequence. The drive rod 11 has drive grooves 10 on both sides, and drive protrusions 09 on both sides of the rotating sleeve 07. The driving protrusion 09 is adapted to the driving groove 10 and is connected to the driving groove 10. The right end of the driving rod 11 is connected to the upper motor 12, and the upper motor 12 is connected to the support block 15. The left end of the driving rod 11 has a protrusion 14, which passes through the support block 15 and is connected to the limiting plate 13. The limiting plate 13 fits against the support block 15. The driving rod 11 increases the support force point of the discharge pipe 06 on the rotating sleeve 07, and through the embedded insertion between it and the rotating sleeve 07, the rotating sleeve 07 and the rotating rod 08 rotate synchronously with the driving rod 11. Under the drive of the upper motor 12, they rotate axially around the support block 15. When the rotating rod 08 rotates, it pushes the material to move, preventing the material from blocking the discharge pipe 06, ensuring normal material transmission, and avoiding material transmission obstruction, which would affect the material loading efficiency.
[0020] Example 2:
[0021] The discharge pipe 06 of this utility model has a pressure plate 16 at its lower part, the pressure plate 16 is connected to a support seat 17, the support seat 17 has a discharge pipe 20, the support seat 17 is attached to the lower side of the main gear disk 18, the upper side of the main gear disk 18 is attached to the pressure plate 16, the main gear disk 18 has a shaft 21, the shaft 21 passes through the pressure plate 16, the shaft 21 is connected to a lower motor 22, and the lower motor 22 is connected to the pressure plate 16.
[0022] Example 3:
[0023] The main gear disk 18 and the auxiliary gear disk 19 of this utility model mesh with each other. The main gear disk 18 is connected to the auxiliary gear disk 19. The lower side of the auxiliary gear disk 19 is attached to the support seat 17, and the upper side of the auxiliary gear disk 19 is attached to the pressure plate 16. The auxiliary gear disk 19 has a central support rod 24 in the middle. The upper end of the central support rod 24 passes through the pressure plate 16, and the lower end of the central support rod 24 passes through the support seat 17. The meshing connection between the main gear disk 18 and the auxiliary gear disk 19 causes the auxiliary gear disk 19 to rotate when the motor 22 drives the main gear disk 18 to rotate. It also rotates through the baffle 25 to control the opening and closing of the pipe opening between the discharge pipe 06 and the discharge pipe 20. This allows the material discharge rate to be varied according to the material loading requirements by changing the coverage area of the discharge pipe 20 opening by the baffle 25, thereby increasing the structural flexibility and practical performance.
[0024] Example 4:
[0025] The auxiliary gear disk 19 of this utility model has a control rod 23, the control rod 23 has a baffle 25, the upper side of the baffle 25 is attached to the pressure plate 16, the lower side of the baffle 25 is attached to the support seat 17, the baffle 25 has mounting grooves 28 on both sides, the mounting grooves 28 are adapted to the balls 29, the mounting grooves 28 are connected to the balls 29, the balls 29 are divided into upper balls 291 and lower balls 292.
[0026] Example 5:
[0027] The pressure plate 16 of this utility model has an upper sliding groove 26, which is adapted to an upper ball bearing 291. The upper ball bearing 291 is connected to the upper sliding groove 26 and slides within the upper sliding groove 26. The support seat 17 has a lower sliding groove 27, which is adapted to a lower ball bearing 292. The lower ball bearing 292 is connected to the lower sliding groove 27 and slides within the lower sliding groove 27. This device can adjust the material discharge rate according to the material loading requirements. It has a flexible structure and strong practicality. At the same time, it can also push the material to move through the internal rotating rod 08 to avoid the material from blocking the discharge pipe 06, ensuring normal material transmission, preventing material transmission obstruction, and improving material loading efficiency.
[0028] Example 6:
[0029] Installation steps: First, assemble the structure of the discharge pipe 06. First, place the rotating sleeve 07 into the discharge pipe 06, with both ends of the rotating sleeve 07 fitting against the inner surface of the support block 15. Then, pass the drive rod 11 through the support block 15 and the rotating sleeve 07 in sequence until the protrusion 14 passes through the support block 15 and the drive protrusion 09 is embedded in the drive groove 10. Then, install and fix the upper motor 12 on the outside of the support block 15 and drive it to the drive rod 11. Finally, place the limiting plate 13 on the outside of the support block 15 and fix it to the protrusion 14, with the inner surface of the limiting plate 13 fitting against the outer surface of the support block 15. The limiting plate 13 rotates synchronously with the drive rod 11. After assembling the structure of the discharge pipe 06, assemble the drive structure of the baffle 25. First, place the baffle 25 into the support seat 17, with the baffle 25, the control rod 23, and the lower surface of the auxiliary gear disk 19 all fitting against the support seat 17. The central support rod 24... The lower end passes through the support seat 17, and the lower ball bearing 292 is embedded in the sliding groove 27. Then, the main gear disk 18 is placed into the support seat 17, with the lower surface of the main gear disk 18 in contact with the support seat 17, and the main gear disk 18 and the auxiliary gear disk 19 meshing. Then, the discharge pipe 20 is placed below the discharge pipe 06, and the support seat 17 is fixedly connected to the pressure plate 16. The baffle 25, the control rod 23, the auxiliary gear disk 19, and the upper surface of the main gear disk 18 are in contact with the pressure plate 16. Plates 16 are fitted together, the upper end of the central support rod 24 passes through the pressure plate 16, the shaft rod 21 passes through the pressure plate 16, the upper ball bearing 291 is embedded in the upper sliding groove 26, and finally the lower motor 22 is installed and fixed on the upper part of the pressure plate 16 and driven to connect with the shaft rod 21. After the baffle 25 drive structure is assembled, the discharge pipe 06 is placed at the lower part of the funnel 01, and the mounting flange 03 and the fixing flange 02 are fixedly connected by screws 04 and nuts 05 to complete the installation.
[0030] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A new type of hopper for facilitating loading of material, characterized in that : Including hopper (01), discharge pipe (06), bushing (07), drive rod (11), main gear disc (18), discharge pipe (20), baffle (25), the lower part of the hopper (01) is connected with the discharge pipe (06), the discharge pipe (06) is provided with mounting flange (03), the hopper (01) is provided with fixed flange (02), the fixed flange (02) is connected with the mounting flange (03), the screw rod (04) passes through the mounting flange (03) and the fixed flange (02) in sequence, the screw rod (04) is connected with the nut (05) through threads on both ends, the discharge pipe (06) is provided with support block (15) on both sides, the support block (15) is attached with the bushing (07) inside, the bushing (07) is provided with a plurality of rotating rods (08) outside, the bushing (07) is connected with the drive rod (11) inside, the drive rod (11) passes through the support block (15) and the bushing (07) in sequence, the drive rod (11) is provided with drive groove (10) on both sides, the bushing (07) is provided with drive lug (09) on both sides, the drive lug (09) is adapted to the drive groove (10), the drive lug (09) is connected with the drive groove (10), the right end of the drive rod (11) is connected with the upper motor (12), the upper motor (12) is connected with the support block (15), the left end of the drive rod (11) is provided with lug (14), the lug (14) passes through the support block (15), the lug (14) is connected with the limiting plate (13), and the limiting plate (13) is attached with the support block (15).
2. A new hopper for facilitating loading of material as claimed in claim 1, wherein : The lower part of the discharge pipe (06) is provided with pressing plate (16), the pressing plate (16) is connected with bearing seat (17), the bearing seat (17) is provided with discharge pipe (20), the bearing seat (17) is attached with main gear disc (18) on the lower side, the upper side of the main gear disc (18) is attached with the pressing plate (16), the main gear disc (18) is provided with shaft rod (21), the shaft rod (21) passes through the pressing plate (16), the shaft rod (21) is connected with the lower motor (22), and the lower motor (22) is connected with the pressing plate (16).
3. A new hopper for facilitating loading of material as claimed in claim 2, wherein : The main gear disc (18) is engaged with the auxiliary gear disc (19), the main gear disc (18) is connected with the auxiliary gear disc (19), the lower side of the auxiliary gear disc (19) is attached with the bearing seat (17), the upper side of the auxiliary gear disc (19) is attached with the pressing plate (16), the auxiliary gear disc (19) is provided with center support rod (24) in the middle, the upper end of the center support rod (24) passes through the pressing plate (16), and the lower end of the center support rod (24) passes through the bearing seat (17).
4. A new type of hopper for facilitating loading of material as claimed in claim 3, wherein : The auxiliary gear disc (19) is provided with control rod (23), the control rod (23) is provided with baffle (25), the upper side of the baffle (25) is attached with the pressing plate (16), the lower side of the baffle (25) is attached with the bearing seat (17), the baffle (25) is provided with mounting groove (28) on both sides, the mounting groove (28) is adapted to the ball (29), the mounting groove (28) is connected with the ball (29), and the ball (29) is divided into upper ball (291) and lower ball (292).
5. A new type of hopper for facilitating loading of material as claimed in claim 4, wherein The pressing plate (16) has an upper sliding groove (26) which is adapted to an upper ball (291), the upper ball (291) is connected to the upper sliding groove (26) and slides in the upper sliding groove (26); the supporting seat (17) has a lower sliding groove (27) which is adapted to a lower ball (292), the lower ball (292) is connected to the lower sliding groove (27) and slides in the lower sliding groove (27).
Citation Information
Patent Citations
Funnel for transferring materials
CN211076541U