A building vibrating feeder vibration adjusting device
By designing a guide frame and a protective frame on the vibrating feeder, and adjusting the angle of the guide frame by rotating the knob, the problem of unguided material drop points is solved, improving the practicality of the construction vibrating feeder and the accuracy of material conveying.
Patent Information
- Application Number
- CN202521993842.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-09-17
AI Technical Summary
Existing vibrating feeders for construction lack a material drop adjustment mechanism, which makes it impossible to guide the material drop point according to demand, reducing the practicality of the equipment.
A vibration adjustment device including a guide frame and a protective frame was designed. By rotating the torsion bar, the screw and connecting plate are driven to adjust the angle of the guide frame. Combined with the sliding rod and fixing components, the device can accurately guide the material landing point and prevent splashing.
It enables precise guidance of material drop points according to different material drop requirements, improves the practicality of the vibrating feeder, and provides protection against material splashing.
Smart Images

Figure CN224677341U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of vibrating feeder technology, specifically a vibration adjustment device for a building vibrating feeder. Background Technology
[0002] A vibrating feeder is a mechanical device that uses vibration to uniformly, continuously, or quantitatively transport block, granular, or powdery materials from storage silos or other storage equipment to subsequent processing equipment (such as crushers, screening machines, conveyor belts, etc.). It is widely used in crushing, screening, and conveying processes in many industries such as construction, metallurgy, chemical, and food.
[0003] In real life, when construction vibrating feeders are vibrating to feed materials, most vibrating feeders do not have a material drop adjustment mechanism. As a result, after the material on the vibrating feeder vibrates and falls from its drop port, it is impossible to guide the material drop point according to different material drop requirements, which reduces the practicality of the vibrating feeder. Therefore, a vibration adjustment device for construction vibrating feeders is needed. Utility Model Content
[0004] The purpose of this utility model is to provide a vibration adjustment device for a construction vibrating feeder, so as to solve the problems mentioned in the background art. To solve the above technical problems, this utility model is achieved through the following technical solution:
[0005] This utility model relates to a vibration adjustment device for a construction vibrating feeder, comprising:
[0006] A vibrating feeder frame, wherein a connecting frame is engaged on one side of the vibrating feeder frame;
[0007] An adjusting component includes a horizontal plate, one side of which is fixedly disposed at the bottom end of a connecting frame. A lead screw is provided through the top of the horizontal plate, and a knob is fixedly disposed at the bottom end of the lead screw. A connecting plate is rotatably disposed at the top of the lead screw, and connecting blocks are fixedly disposed on both sides of the top of the connecting plate. A support rod is rotatably disposed on the opposite side of the two connecting blocks.
[0008] The guide frame has its middle sections on both sides rotatably mounted on opposite sides of two support rods, and a protective frame is fixedly mounted on the top of the guide frame.
[0009] Furthermore, the adjusting component also includes two slide rods, the top ends of which are fixedly disposed on both sides of the bottom end of the connecting plate, and the top ends of the two slide rods respectively penetrate through both sides of the top end of the horizontal plate.
[0010] Furthermore, the length of the slide bar is longer than the length of the lead screw.
[0011] Furthermore, two connecting seats are fixedly provided at the top of one side of the connecting frame, and the opposite sides of the two connecting seats are respectively connected to one end bearing of the two sides of the guide frame.
[0012] Furthermore, the length of the inner wall of the guide frame is longer than the width of the inner wall of the vibrating feeder frame.
[0013] Furthermore, it also includes a fixing component, which includes two fixing seats. The opposite sides of the two fixing seats are respectively fixedly installed on both sides of the vibrating feeder frame. Each of the opposite sides of the two fixing seats is threaded with a locking screw, and one end of the locking screw is threadedly connected to one side of the vibrating feeder frame.
[0014] Furthermore, the fixing component also includes four positioning posts, one end of each of the four positioning posts is fixedly disposed at both ends of the other side of the connecting frame, and the other end of each of the four positioning posts is engaged and connected to one side of the vibrating feeder frame.
[0015] This utility model has the following beneficial effects:
[0016] This invention features a guide frame and a protective frame. Rotating the knob moves the connecting plate downwards via a lead screw, which in turn moves the material feeding end of the guide frame downwards via two support rods. Once the guide frame reaches a suitable angle, the material on the vibrating feeder frame falls along the feed inlet onto the guide frame and is then guided downwards. This method allows for guidance of material landing points according to different feeding requirements, thus improving the practicality of the vibrating feeder. Simultaneously, the protective frame also protects the guide frame from splashing material falling onto it. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments 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.
[0018] Figure 1 This is a schematic diagram of the overall structure of the present invention and its connection with the vibrating feeder frame;
[0019] Figure 2 This is a schematic diagram of the overall structure of this utility model;
[0020] Figure 3 This is a schematic diagram of the connection structure between the connecting frame and the adjusting component of this utility model;
[0021] Figure 4 This is a schematic diagram of the connection structure between the connecting frame and the fixing component of this utility model.
[0022] The attached diagram lists the components represented by each number as follows:
[0023] 11. Vibrating feeder frame; 21. Connecting frame; 22. Connecting seat; 31. Horizontal plate; 32. Lead screw; 33. Rotary knob; 34. Connecting plate; 35. Connecting block; 36. Support rod; 37. Slide rod; 41. Fixed seat; 42. Locking screw; 43. Positioning column; 51. Guide frame; 61. Protective frame. Detailed Implementation
[0024] 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.
[0025] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.
[0026] Please see Figure 1-4 As shown, this utility model is a vibration adjustment device for a construction vibrating feeder, comprising:
[0027] A vibrating feeder frame 11 is provided with a connecting frame 21 on one side;
[0028] The vibrating feeder frame 11 is used for material vibration conveying. It mainly uses a vibrator (eccentric block or electromagnetic device) to generate centrifugal force, which drives the trough to vibrate periodically. Under the combined action of gravity and inertial force, the material moves in a parabolic motion or slides along the trough to achieve forward conveying.
[0029] The adjusting component includes a horizontal plate 31. One side of the horizontal plate 31 is fixedly installed at the bottom end of the connecting frame 21. A lead screw 32 is provided through the top end of the horizontal plate 31. A knob 33 is fixedly installed at the bottom end of the lead screw 32. A connecting plate 34 is rotatably installed at the top end of the lead screw 32. Connecting blocks 35 are fixedly installed on both sides of the top end of the connecting plate 34. Support rods 36 are rotatably installed on the opposite side of the two connecting blocks 35.
[0030] The lead screw 32 is threadedly engaged with the cross plate 31, and the outer wall of the knob 33 is provided with anti-slip threads to increase the friction between the hand and the knob 33, making it easier to rotate the knob 33;
[0031] The guide frame 51 has its middle parts on both sides rotatably set on the opposite side of the two support rods 36, and a protective frame 61 is fixedly provided at the top of the guide frame 51.
[0032] The guide frame 51 is used to guide the landing point of the material falling from the vibrating feeder frame 11, and the protective frame 61 is used to protect the material falling into the guide frame 51 from splashing.
[0033] The adjusting component also includes two slide rods 37, the top ends of which are fixedly mounted on both sides of the bottom end of the connecting plate 34, and the top ends of the two slide rods 37 pass through both sides of the top end of the horizontal plate 31.
[0034] The slide bar 37 is used to guide the connecting plate 34 to move up and down. The slide bar 37 is in sliding engagement with the horizontal plate 31.
[0035] The length of slide bar 37 is longer than the length of lead screw 32;
[0036] This ensures that the slide bar 37 remains in contact with the horizontal plate 31 as the lead screw 32 moves up and down along the horizontal plate 31.
[0037] Two connecting seats 22 are fixedly provided at the top of one side of the connecting frame 21, and the opposite sides of the two connecting seats 22 are respectively connected to the bearings at one end of the two sides of the guide frame 51.
[0038] The connecting seat 22 is used to support the rotation of the guide frame 51.
[0039] The length of the inner wall of the guide frame 51 is longer than the width of the inner wall of the vibrating feeder frame 11;
[0040] The material drop port of the vibrating feeder frame 11 is located directly above the top of the guide frame 51 and to the left of the protective frame 61. The inner bottom end of the guide frame 51 is inclined.
[0041] Working principle: Rotating the knob 33 causes the lead screw 32 to rotate, which in turn moves the lead screw 32 downward. The downward movement of the lead screw 32 causes the connecting plate 34 to move downward, which in turn moves the two connecting blocks 35 downward. This, in turn, causes the material guide frame 51 to rotate downward through the two support rods 36. Once the material guide frame 51 has rotated to a suitable angle, material is added to the vibrating feeder frame 11. Under the action of the vibrating feeder frame 11, the material above it falls along the material drop port of the vibrating feeder frame 11 onto the material guide frame 51 and is guided downward along the material guide frame 51. In this way, the material drop point can be guided according to different material drop requirements, thereby improving the practicality of the vibrating feeder. At the same time, under the action of the protective frame 61, the material guide frame 51 can also protect the material falling onto the material guide frame 51 from splashing.
[0042] Please see Figure 1-4 As shown, this embodiment, based on the above embodiment, further includes:
[0043] The fixing component includes two fixing seats 41. The opposite sides of the two fixing seats 41 are respectively fixedly installed on both sides of the vibrating feeder frame 11. The opposite sides of the two fixing seats 41 are threaded with locking screws 42, and one end of the locking screws 42 is threadedly connected to one side of the vibrating feeder frame 11.
[0044] The locking screw 42 is used for connection and fixation. Both sides of the vibrating feeder frame 11 are provided with screw holes that are compatible with the locking screw 42.
[0045] The fixing component also includes four positioning posts 43. One end of each of the four positioning posts 43 is fixedly installed at both ends of the other side of the connecting frame 21, and the other end of each of the four positioning posts 43 is engaged and connected to one side of the vibrating feeder frame 11.
[0046] The positioning post 43 is used for the installation and positioning of the connecting frame. Two positioning holes that are adapted to the positioning post 43 are symmetrically opened on one side of the vibrating feeder frame 11, and the positioning holes and the screw holes are not on the same horizontal plane.
[0047] Working principle: Rotate the two locking screws 42 respectively until the locking screws 42 are separated from the vibrating feeder frame 11. Then move the connecting frame 21 to the right until the positioning column 43 is separated from the vibrating feeder frame 11. During installation, similarly align the positioning column 43 on one side of the connecting frame 21 and engage it with the vibrating feeder frame 11. Then tighten the locking screws 42. This method facilitates the disassembly and assembly of the entire adjustment device, and the disassembly and assembly process is time-saving and labor-saving, greatly improving the convenience of maintenance of the adjustment device.
[0048] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A vibration adjustment device for a construction vibrating feeder, characterized in that, include: A vibrating feeder frame (11) is provided with a connecting frame (21) on one side; The adjusting component includes a horizontal plate (31), one side of which is fixedly disposed at the bottom end of the connecting frame (21). A lead screw (32) is provided through the top end of the horizontal plate (31), and a knob (33) is fixedly disposed at the bottom end of the lead screw (32). A connecting plate (34) is rotatably disposed at the top end of the lead screw (32). Connecting blocks (35) are fixedly disposed on both sides of the top end of the connecting plate (34), and support rods (36) are rotatably disposed on the opposite sides of the two connecting blocks (35). The guide frame (51) has its middle parts on both sides rotatably set on the opposite side of the two support rods (36), and a protective frame (61) is fixedly provided at the top of the guide frame (51).
2. The vibration adjustment device for a building vibrating feeder according to claim 1, characterized in that: The adjusting component also includes two slide rods (37), the top ends of the two slide rods (37) are respectively fixedly installed on both sides of the bottom end of the connecting plate (34), and the top ends of the two slide rods (37) respectively penetrate through both sides of the top end of the horizontal plate (31).
3. The vibration adjustment device for a building vibrating feeder according to claim 2, characterized in that: The length of the slide bar (37) is longer than the length of the lead screw (32).
4. The vibration adjustment device for a building vibrating feeder according to claim 1, characterized in that: Two connecting seats (22) are fixedly provided at the top of one side of the connecting frame (21), and the opposite sides of the two connecting seats (22) are respectively connected to the bearings at one end of the guide frame (51).
5. The vibration adjustment device for a building vibrating feeder according to claim 1, characterized in that: The length of the inner wall of the guide frame (51) is longer than the width of the inner wall of the vibrating feeder frame (11).
6. The vibration adjustment device for a building vibrating feeder according to claim 1, characterized in that: It also includes a fixing component, which includes two fixing seats (41). The opposite sides of the two fixing seats (41) are respectively fixedly installed on both sides of the vibrating feeder frame (11). The opposite sides of the two fixing seats (41) are threaded with locking screws (42), and one end of the locking screws (42) is threadedly connected to one side of the vibrating feeder frame (11).
7. The vibration adjustment device for a building vibrating feeder according to claim 6, characterized in that: The fixing component also includes four positioning posts (43), one end of each of the four positioning posts (43) is fixedly set at both ends of the other side of the connecting frame (21), and the other end of each of the four positioning posts (43) is engaged and connected to one side of the vibrating feeder frame (11).