Vibrating feeding device capable of adjusting outlet flow
By installing a flow regulation component at the discharge port of the vibrating feeding device, including an outlet bin and a regulating baffle, the problem of uncontrollable discharge volume is solved, and precise adjustment of material conveying volume and improved safety are achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEBEI CHUIHUA CASTING CO LTD
- Filing Date
- 2025-05-22
- Publication Date
- 2026-04-21
AI Technical Summary
The discharge rate of the vibrating feeding device is uncontrollable and cannot be adjusted according to the situation of the next process, which affects subsequent production.
A flow regulation component is installed at the discharge port of the storage silo, including an outlet hopper and an adjusting baffle. The material conveying volume is controlled by adjusting the position of the adjusting baffle, and the width of the feeding channel is changed by adjusting the distance between the adjusting baffle and the rear side wall of the outlet hopper.
It enables precise control of material conveying volume, avoids injury to operators from materials, and improves production efficiency and safety.
Smart Images

Figure CN224144326U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of vibratory feeding technology, specifically relating to an outlet flow rate regulating vibratory feeding device. Background Technology
[0002] During the production of castings, polishing is required to grind and polish the surface of the castings. This polishing process necessitates the loading of the castings, which can be done manually or mechanically. Manual loading is convenient for adjusting the position of the castings, but it has low efficiency, high labor intensity, and is unsuitable for loading small castings. A vibratory feeding device can be used for loading small castings. A vibratory feeder, also known as a vibratory feeder, is a receiving device that uniformly, regularly, and continuously feeds material from a storage bin to the next process stage. It is widely used in industries such as metallurgy, coal mining, mineral processing, building materials, chemicals, abrasives, and medical devices. The vibratory feeding device consists of a storage bin and a vibrating motor. Material is placed in the storage bin, and the vibrating motor drives the bin to vibrate, causing the material to be discharged from the outlet. However, during loading, the discharge rate from the storage bin is uncontrollable due to the amount of material in the bin, making it impossible to adjust the discharge rate according to the conditions of the next process, thus affecting subsequent production. Utility Model Content
[0003] The purpose of this invention is to provide an outlet flow rate regulating vibrating feeder, which aims to solve the problem of uncontrollable discharge rate of the vibrating feeder.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows: An outlet flow rate regulating vibrating feeding device is provided, including a storage silo. A flow rate regulating component is provided at the outlet of the storage silo. The flow rate regulating component is used to adjust the flow rate at the outlet. The flow rate regulating component includes an outlet silo, an outlet baffle, and an adjusting baffle. The outlet silo is disposed on the outlet, and the outlet baffle is disposed inside the outlet silo. The first end of the outlet baffle is hinged to the front side wall of the outlet silo. The outlet baffle and the rear side wall of the outlet silo form a feeding channel suitable for material passage. The first end of the outlet baffle is disposed near the outlet. The first end of the adjusting baffle is disposed at the second end of the outlet baffle. The adjusting baffle is rotatably connected to the outlet baffle. Adjusting the position of the adjusting baffle adjusts the distance between the outlet baffle and the rear side wall of the outlet silo, thereby adjusting the material conveying rate.
[0005] In one possible implementation, the front sidewall of the outlet compartment is provided with a clearance groove suitable for the second end of the adjusting baffle to pass through, and the adjusting baffle and the clearance groove are in clearance fit.
[0006] In one possible implementation, the second end of the outlet baffle is provided with a mounting base, the mounting base is provided with a mounting groove, the mounting groove is provided through the upper and lower end faces of the mounting base, the first end of the adjusting baffle is provided with a mounting post, the mounting post is vertically arranged, the mounting post passes through the mounting groove, and the mounting post and the mounting base are clearance fit.
[0007] In one possible implementation, the mounting base is provided in two sets, and the two sets of mounting bases are arranged on the same vertical line.
[0008] In one possible implementation, the upper and lower ends of the mounting column respectively penetrate two sets of mounting seats, and the adjusting baffle is located between the two sets of mounting seats.
[0009] In one possible implementation, the lower end of the adjusting baffle is provided with a positioning slot, and multiple sets of positioning slots are provided, with the bottom of the positioning slot covering the bottom of the clearance slot.
[0010] In one possible implementation, the second end of the adjusting baffle is provided with a spring connecting assembly.
[0011] In one possible implementation, the spring connection assembly includes an upper connector, a connecting spring, and a lower connector. The upper connector is disposed at the second end of the adjusting baffle, the lower connector is disposed on the ground, and the connecting spring connects the upper connector and the lower connector.
[0012] In one possible implementation, the upper connector includes an upper connecting seat and an upper hinge shaft. The upper end face of the upper connecting seat is provided with an upper connecting groove, which covers the outer side of the lower edge of the adjusting baffle. The upper hinge shaft passes through the upper connecting seat and the adjusting baffle.
[0013] In one possible implementation, the lower connector includes a lower fixed seat, a lower connecting seat, and a lower hinge shaft. The lower fixed seat is disposed on the ground, and the lower connecting seat is disposed on the upper end face of the lower fixed seat. The upper end face of the lower connecting seat is provided with a lower connecting groove. The lower end of the connecting spring is provided with a lower fixing post, which passes through the lower connecting groove. The lower hinge shaft passes through the lower connecting seat and the lower fixing post.
[0014] The beneficial effects of the outlet flow rate regulating vibratory feeding device provided by this utility model are as follows:
[0015] Compared with existing technologies, the discharge port of the storage silo is equipped with a flow regulation component. The flow regulation component is used to adjust the flow rate of the discharge port. The flow regulation component includes an outlet silo, an outlet baffle, and an adjusting baffle. The outlet silo is connected to the storage silo and is set on the discharge port of the storage silo. The material discharged from the discharge port is discharged through the outlet silo. The outlet baffle is set on the front side wall of the outlet silo near the discharge port. The material is discharged from the feeding channel formed by the outlet baffle and the rear side wall of the outlet silo. The outlet baffle is hinged and has the freedom of rotation within the outlet silo. As the outlet baffle rotates, the distance between the outlet baffle and the rear side wall of the outlet silo changes, adjusting the width of the feeding channel and realizing the adjustment of the material conveying volume. The first end of the adjusting baffle is set on the second end of the outlet baffle. The adjusting baffle has the freedom of movement relative to the outlet baffle. The position of the outlet baffle is adjusted by adjusting the baffle, which facilitates operation and avoids material from causing injury to the operator. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model, 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 utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 A front view schematic diagram of an outlet flow rate regulating vibratory feeding device provided in an embodiment of this utility model;
[0018] Figure 2 This is a front view structural diagram of the export warehouse used in the embodiment of this utility model;
[0019] Figure 3 This is a top view of the export warehouse used in an embodiment of the present utility model.
[0020] Figure 4 This is a schematic diagram of the left side of the adjusting baffle used in the embodiment of this utility model.
[0021] In the diagram: 1. Storage bin; 2. Outlet bin; 3. Outlet baffle; 4. Feeding channel; 5. Mounting base; 6. Clearance groove; 7. Adjusting baffle; 8. Positioning slot; 9. Upper connecting base; 10. Upper hinge shaft; 11. Upper fixed column; 12. Connecting spring; 13. Lower fixed column; 14. Lower connecting base; 15. Lower hinge shaft; 16. Lower fixed base; 17. Mounting column. Detailed Implementation
[0022] To make the technical problem to be solved, the technical solution, and the beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0023] Please refer to Figures 1 to 4 This invention provides a specific embodiment of an outlet flow rate regulating vibrating feeding device, comprising a storage bin 1, with a flow rate regulating component at the outlet of the storage bin 1 for adjusting the flow rate at the outlet. The flow rate regulating component includes an outlet bin 2, an outlet baffle 3, and an adjusting baffle 7. The outlet bin 2 is located at the outlet, and the outlet baffle 3 is located inside the outlet bin 2. The first end of the outlet baffle 3 is hinged to the front side wall of the outlet bin 2. The outlet baffle 3 and the rear side wall of the outlet bin 2 form a feeding channel 4 suitable for material passage. The first end of the outlet baffle 3 is located near the outlet, and the first end of the adjusting baffle 7 is located at the second end of the outlet baffle 3. The adjusting baffle 7 is rotatably connected to the outlet baffle 3. Adjusting the position of the adjusting baffle 7 adjusts the distance between the outlet baffle 3 and the rear side wall of the outlet bin 2, thereby adjusting the material conveying rate.
[0024] This utility model provides a vibratory feeding device with adjustable outlet flow rate. Compared with the prior art, the outlet of the storage silo 1 is equipped with a flow rate regulating component. The flow rate regulating component is used to adjust the flow rate at the outlet. The flow rate regulating component includes an outlet silo 2, an outlet baffle 3, and an adjusting baffle 7. The outlet silo 2 is connected to the storage silo 1 and is set on the outlet of the storage silo 1. The material discharged from the outlet passes through the outlet silo 2. The outlet baffle 3 is set on the front side wall of the outlet silo 2 near the outlet. The material passes through the outlet baffle 3 and the rear side wall of the outlet silo 2. The material is discharged through the enclosed feeding channel 4. The outlet baffle 3 is hinged and has the freedom to rotate within the outlet chamber 2. As the outlet baffle 3 rotates, the distance between the outlet baffle 3 and the rear side wall of the outlet chamber 2 changes, thereby adjusting the width of the feeding channel 4 and adjusting the material conveying capacity. The first end of the adjusting baffle 7 is located at the second end of the outlet baffle 3. The adjusting baffle 7 has the freedom of movement relative to the outlet baffle 3. The position of the outlet baffle 3 can be adjusted by adjusting the baffle 7, which facilitates operation and avoids injury to the operator from the material.
[0025] For details, please refer to Figures 1 to 4The system includes a storage bin 1, with its outlet located at the left end. An outlet bin 2 is also located at the left end of the storage bin 1, with its inlet coinciding with the outlet. The upper surface of the outlet bin 2 is open. An outlet baffle 3 is vertically positioned, with its first end hinged to the front side wall of the left end of the outlet bin 2. The outlet baffle 3 has the freedom to rotate within the outlet bin 2. An adjusting baffle 7 is vertically positioned, with its first end located at the second end of the outlet baffle 3. The adjusting baffle 7 is positioned in front of the outlet baffle 3 and away from the rear side wall of the outlet bin 2. The adjusting baffle 7 has the freedom to move relative to the outlet baffle 3, allowing for easy pulling and changing of its position. This enables adjustment of the width of the feeding channel 4 formed by the outlet baffle 3 and the rear side wall of the outlet bin 2, thereby adjusting the material conveying capacity.
[0026] As a specific embodiment of the outlet flow regulating vibratory feeding device provided by this utility model, please refer to Figures 1 to 4 The front side wall of the outlet compartment 2 is provided with a relief groove 6 suitable for the second end of the adjusting baffle 7 to pass through, and the adjusting baffle 7 and the relief groove 6 are in clearance fit.
[0027] For details, please refer to Figures 1 to 4 A clearance groove 6 is provided on the front side wall of the outlet compartment 2. The second end of the adjusting baffle 7 passes through the clearance groove 6. There is a movable gap between the adjusting baffle 7 and the side wall of the clearance groove 6. The adjusting baffle 7 has a degree of freedom of movement relative to the outlet baffle 3, which facilitates the adjustment of the position of the adjusting baffle 7. Pulling the adjusting baffle 7 adjusts the angle of the outlet baffle 3.
[0028] As a specific embodiment of the outlet flow regulating vibratory feeding device provided by this utility model, please refer to Figures 1 to 4 The second end of the outlet baffle 3 is provided with a mounting base 5, and the mounting base 5 is provided with a mounting groove. The mounting groove is provided through the upper and lower end faces of the mounting base 5. The first end of the adjusting baffle 7 is provided with a mounting post 17. The mounting post 17 is set vertically and passes through the mounting groove. The mounting post 17 and the mounting base 5 are in clearance fit.
[0029] For details, please refer to Figures 1 to 4 The mounting base 5 is located at the second end of the outlet baffle 3 and on the side wall of the outlet baffle 3 near the front side wall of the outlet chamber 2. The mounting groove is provided through the upper and lower end faces of the mounting base 5. The mounting column 17 is located at the first end of the adjusting baffle 7. The mounting column 17 passes through the mounting groove and there is an installation gap between the mounting groove and the mounting column 17. The mounting column 17 is rotatable relative to the mounting groove, which facilitates the adjustment of the position of the adjusting baffle 7.
[0030] As a specific embodiment of the outlet flow regulating vibratory feeding device provided by this utility model, please refer to Figures 1 to 4There are two sets of mounting bases 5, and the two sets of mounting bases 5 are set on the same vertical line.
[0031] For details, please refer to Figures 1 to 4 The mounting base 5 is provided in two sets, and the two sets of mounting base 5 are arranged on the same vertical line from top to bottom to increase the stability of the device and prevent the mounting column 17 from detaching from the mounting base 5 during use.
[0032] As a specific embodiment of the outlet flow regulating vibratory feeding device provided by this utility model, please refer to Figures 1 to 4 The upper and lower ends of the mounting column 17 pass through two sets of mounting seats 5 respectively, and the adjusting baffle 7 is located between the two sets of mounting seats 5.
[0033] For details, please refer to Figures 1 to 4 The upper end of the mounting column 17 passes through the upper mounting seat 5, and the lower end of the mounting column 17 passes through the lower mounting seat 5. The adjusting baffle 7 is located in the middle of the mounting column 17, between the two sets of mounting seats 5. The width of the adjusting baffle 7 is less than the distance between the two sets of mounting seats 5, which increases the stability of the device and prevents the mounting column 17 from detaching from the mounting seat 5 during use.
[0034] As a specific embodiment of the outlet flow regulating vibratory feeding device provided by this utility model, please refer to Figures 1 to 4 The lower end of the adjusting baffle 7 is provided with a positioning slot 8, and there are multiple sets of positioning slots 8. The bottom of the positioning slot 8 is covered by the bottom of the clearance slot 6.
[0035] For details, please refer to Figures 1 to 4 The positioning slot 8 is set on the lower edge of the adjusting baffle 7. Multiple sets of positioning slots 8 are set along the length of the adjusting baffle 7. The opening of the positioning slot 8 is downward and the clearance slot 6 has an upward opening. The positioning slot 8 and the clearance slot 6 cooperate with each other. The bottom of the positioning slot 8 is covered by the bottom of the clearance slot 6 to lock the position of the adjusting baffle 7, thereby increasing the stability of the device during use.
[0036] For further details, please refer to Figures 1 to 4 When the angle of the outlet baffle 3 needs to be adjusted, hold the second end of the adjusting baffle 7 and lift the adjusting baffle 7 upward. The adjusting baffle 7 moves upward as a whole, the positioning slot 8 disengages from the relief slot 6, and the lower edge of the adjusting baffle 7 moves away from the mounting base 5 located below, thus releasing the lock on the adjusting baffle 7. Pull the adjusting baffle 7 to adjust the position and angle of the outlet baffle 3. When adjusted to the specified position, put down the adjusting baffle 7, and another set of positioning slots 8 covers the relief slot 6 to lock the adjusting baffle 7.
[0037] As a specific embodiment of the outlet flow regulating vibratory feeding device provided by this utility model, please refer to Figures 1 to 4A spring connecting assembly is provided at the second end of the adjusting baffle 7.
[0038] For details, please refer to Figures 1 to 4 The spring connection assembly is set at the second end of the adjusting baffle 7 to increase the stability of the adjusting baffle 7 during locking and to prevent the adjusting baffle 7 from disengaging from the relief groove 6 during the use of the device.
[0039] As a specific embodiment of the outlet flow regulating vibratory feeding device provided by this utility model, please refer to Figures 1 to 4 The spring connection assembly includes an upper connector, a connecting spring 12, and a lower connector. The upper connector is located at the second end of the adjusting baffle 7, and the lower connector is located on the ground. The connecting spring 12 connects the upper connector and the lower connector.
[0040] For details, please refer to Figures 1 to 4 The spring connection assembly includes an upper connector, a connecting spring 12, and a lower connector. The upper connector is provided at the second end of the adjusting baffle 7, the connecting spring 12 is provided at the lower end of the upper connector, and the lower connector is provided at the lower end of the connecting spring 12. The connecting spring 12 exerts a downward force on the adjusting baffle 7.
[0041] As a specific embodiment of the outlet flow regulating vibratory feeding device provided by this utility model, please refer to Figures 1 to 4 The upper connecting member includes an upper connecting seat 9 and an upper hinge shaft 10. The upper end face of the upper connecting seat 9 is provided with an upper connecting groove, which is covered on the outer side of the lower edge of the adjusting baffle 7. The upper hinge shaft 10 passes through the upper connecting seat 9 and the adjusting baffle 7.
[0042] For details, please refer to Figures 1 to 4 The upper connecting member includes an upper connecting seat 9 and an upper hinge shaft 10. An upper connecting groove is provided on the upper end face of the upper connecting seat 9. The upper connecting seat 9 covers the outer side of the lower edge of the adjusting baffle 7. The upper hinge shaft 10 passes through the left side wall of the upper connecting seat 9, the adjusting baffle 7, and the right side wall of the upper connecting seat 9 in sequence. The upper connecting seat 9 is hinged to the second end of the adjusting baffle 7. The adjusting baffle 7 is hinged to the upper connecting seat 9 to facilitate the adjustment of the position of the adjusting baffle 7. An upper fixing post 11 is provided at the upper end of the connecting spring 12. The upper fixing post 11 is provided on the lower end face of the upper connecting seat 9.
[0043] As a specific embodiment of the outlet flow regulating vibratory feeding device provided by this utility model, please refer to Figures 1 to 4The lower connector includes a lower fixed seat 16, a lower connecting seat 14, and a lower hinge shaft 15. The lower fixed seat 16 is set on the ground, and the lower connecting seat 14 is set on the upper end face of the lower fixed seat 16. The upper end face of the lower connecting seat 14 is provided with a lower connecting groove. The lower end of the connecting spring 12 is provided with a lower fixed post 13, which passes through the lower connecting groove. The lower hinge shaft 15 passes through the lower connecting seat 14 and the lower fixed post 13.
[0044] For details, please refer to Figures 1 to 4 The lower connector includes a lower fixed seat 16, a lower connecting seat 14, and a lower hinge shaft 15. A lower fixed post 13 is provided at the lower end of the connecting spring 12. The lower connecting seat 14 is provided on the upper end face of the lower fixed seat 16. The lower connecting groove is provided on the upper end face of the lower connecting seat 14. The lower fixed post 13 passes through the lower connecting groove. The lower hinge shaft 15 passes through the left side wall of the lower connecting seat 14, the lower fixed post 13, and the right side wall of the lower connecting seat 14. The lower fixed post 13 is hinged to the lower connecting seat 14, which facilitates the adjustment of the position of the adjusting baffle 7.
[0045] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements 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. An exit flow regulating vibrating feeder apparatus comprising a storage bin, characterized by, The discharge port of the storage bin is provided with a flow regulating assembly for adjusting the flow of the discharge port, the flow regulating assembly comprises an outlet bin, an outlet baffle and a regulating baffle, the outlet bin is arranged on the discharge port, the outlet baffle is arranged in the outlet bin, the first end of the outlet baffle is hingedly arranged on the front side wall of the outlet bin, the outlet baffle and the rear side wall of the outlet bin enclose a feeding channel suitable for material passing through, the first end of the outlet baffle is arranged close to the discharge port, the first end of the regulating baffle is arranged on the second end of the outlet baffle, the regulating baffle is rotationally connected with the outlet baffle, the position of the regulating baffle is adjusted, the distance between the outlet baffle and the rear side wall of the outlet bin is adjusted, and the conveying amount of the material is adjusted.
2. A vibrating feeder device for regulating the flow of an outlet as claimed in claim 1, characterized in that, The front side wall of the outlet bin is provided with a gap slot suitable for the second end of the regulating baffle to pass through, and the regulating baffle and the gap slot are in clearance fit.
3. A vibrating feeder device for regulating the flow of an outlet as claimed in claim 2, wherein, The second end of the outlet baffle is provided with a mounting seat, the mounting seat is provided with a mounting groove, the mounting groove is arranged through the upper and lower end faces of the mounting seat, the first end of the regulating baffle is provided with a mounting column, the mounting column is vertically arranged, the mounting column is arranged in the mounting groove, and the mounting column and the mounting seat are in clearance fit.
4. A vibrating feeder device for regulating the flow of an outlet according to claim 3, characterized in that, The mounting seat is provided with two groups, and the two groups of mounting seats are arranged on the same vertical straight line.
5. A vibrating feeder device for regulating the flow of an outlet according to claim 4, characterized in that, The upper and lower ends of the mounting column respectively penetrate the two groups of mounting seats, and the regulating baffle is located between the two groups of mounting seats.
6. A vibrating feeder device for regulating the flow of an outlet as claimed in claim 3, wherein, The lower end of the regulating baffle is provided with a positioning clamping groove, the positioning clamping groove is provided with a plurality of groups, and the groove bottom of the positioning clamping groove is covered on the groove bottom of the gap slot.
7. A vibrating feeder apparatus for regulating the flow of an outlet as defined in claim 6, wherein, The second end of the regulating baffle is provided with a spring connecting assembly.
8. A vibrating feeder apparatus for regulating the flow of an outlet as defined in claim 7, wherein, The spring connecting assembly comprises an upper connecting piece, a connecting spring and a lower connecting piece, the upper connecting piece is arranged at the second end of the regulating baffle, the lower connecting piece is arranged on the ground, and the connecting spring connects the upper connecting piece and the lower connecting piece.
9. A vibrating feeder device for regulating the flow of an outlet according to claim 8, characterized in that, The upper connecting piece comprises an upper connecting seat and an upper hinge shaft, the upper end face of the upper connecting seat is provided with an upper connecting groove, the upper connecting groove is covered on the outer side of the lower edge of the regulating baffle, and the upper hinge shaft penetrates the upper connecting seat and the regulating baffle.
10. A vibrating feeder apparatus for regulating the flow of an outlet as defined in claim 8, wherein, The lower connecting piece comprises a lower fixing seat, a lower connecting seat and a lower hinge shaft, the lower fixing seat is arranged on the ground, the lower connecting seat is arranged on the upper end face of the lower fixing seat, the upper end face of the lower connecting seat is provided with a lower connecting groove, the lower end of the connecting spring is provided with a lower fixing column, the lower fixing column penetrates into the lower connecting groove, and the lower hinge shaft penetrates the lower connecting seat and the lower fixing column.