Scattering device for vinasse mixing machine

By introducing anti-clogging and dispersing mechanisms into the mixing machine, the problem of discharge port blockage was solved, enabling rapid material feeding and efficient dispersing, thereby improving production efficiency and reducing labor intensity.

CN223915521UActive Publication Date: 2026-02-17WUHAN TIANLONG HUANGHELOU WINE
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Patent Information

Application Number
CN202423288669.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-02-17
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing mixing machines are prone to blockage at the discharge port, leading to reduced production efficiency and increased labor intensity.

Method used

A dispersing device including an anti-blocking mechanism and a dispersing mechanism was designed. The anti-blocking mechanism uses a drive motor to drive a rotating rod and a striking block to strike the feed pipe to prevent blockage. The dispersing mechanism uses a motor to drive a rotating rod and a rotating roller to initially and further disperse the material.

Benefits of technology

It effectively prevents blockage of the feed pipe, improves the feeding speed and dispersing efficiency of materials, reduces manual intervention, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a scattering device for a vinasse mixing machine, which comprises a mixing and scattering cylinder, supporting seats are fixed at the left end and the right end of the lower surface of the mixing and scattering cylinder, an upper cover is fixed on the upper surfaces of the supporting seats, the upper surface of the upper cover is communicated with a feeding cylinder, and the middle of the lower surface of the mixing and scattering cylinder is communicated with a discharging pipe. An anti-blocking mechanism used for preventing the discharging pipe from being blocked is arranged at the bottom of the left side of the supporting seat at the right end, and a scattering mechanism is arranged at the top of the right side of the mixing and scattering barrel. The anti-blocking mechanism comprises a supporting block arranged at the bottom of the left side of the right end supporting base. According to the scattering device for the vinasse mixing machine, the arranged anti-blocking mechanism can adjust the position of the beating block, so that the beating block can beat the discharging pipe after making contact with the discharging pipe, materials in the discharging pipe are vibrated to rapidly move downwards, blocking is prevented, and then workers can conveniently collect the materials so as to conveniently conduct scattering treatment again.
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Description

Technical Field

[0001] This utility model relates to the field of mixing machine technology, specifically a dispersing device for a mixing machine. Background Technology

[0002] A trough mixer is a machine used to mix powdery and granular materials. It can mix different types and particle sizes of materials evenly to meet the needs of industrial production. Trough mixers are widely used in the food, pharmaceutical, chemical, and building materials industries.

[0003] A search revealed Chinese Patent Publication No. CN218842097U, which discloses a scavenging machine, comprising a frame, a drive unit, and a scavenging drum. The scavenging drum is mounted on the frame, and the drive unit drives the scavenging drum to rotate. A feeding hopper is provided at the inlet of the scavenging drum, which is located on the frame. A discharge plate is provided at the outlet of the scavenging drum, which is located on the crossbeam of the frame. This utility model provides a scavenging machine that, through the configuration of a frame, drive unit, and scavenging drum, with the scavenging drum mounted on the frame... The drum is driven by a drive unit to rotate, which frees up manual labor and is easy to operate. The feed hopper is located at the feed inlet of the drum and is mounted on the frame for easy installation. The discharge plate is located at the discharge outlet of the drum and is mounted on the crossbeam of the frame. The discharge plate is designed to collect the broken-up lees. However, when the lees pass through the discharge outlet of the drum, blockage may occur, requiring workers to knock them out. This reduces the production efficiency of the lees, increases labor intensity, and reduces practicality. Utility Model Content

[0004] The purpose of this utility model is to address the shortcomings of the prior art by providing a dispersing device for a mixing machine, including a mixing and dispersing cylinder. Support seats are fixed at both ends of the lower surface of the mixing and dispersing cylinder, and a top cover is fixed on the upper surface of the support seats. A feed cylinder is connected to the upper surface of the top cover, and a discharge pipe is connected to the middle of the lower surface of the mixing and dispersing cylinder. An anti-blocking mechanism for preventing the discharge pipe from being blocked is provided at the bottom of the left side of the support seat on the right end, and a dispersing mechanism is provided at the top of the right side of the mixing and dispersing cylinder.

[0005] The anti-clogging mechanism includes a support plate located at the bottom left side of the right end support base. A drive motor is fixed to the back of the support plate, and a rotating rod is rotatably connected to the front of the support plate via a bearing. The output shaft of the drive motor passes through and extends to the front side of the support plate and is fixed to the rotating rod. A rotating gear is fixed to the outer surface of the rotating rod, and a toothed plate is meshed with the upper surface of the rotating gear. A drive block is fixed to the left side of the toothed plate, and a striking block is fixed to the top left side of the drive block. An electromagnetic switch valve is fixed to the lower surface of the feed pipe.

[0006] Furthermore, the two support seats are symmetrically distributed on the left and right sides of the vertical central axis of the mixing and dispersing cylinder, and the feed cylinder is connected to the inner cavity of the mixing and dispersing cylinder.

[0007] Furthermore, a telescopic sleeve rod is fixed at the bottom between the support plate and the driving block on the opposite side. The telescopic sleeve rod includes a fixed rod and a moving rod nested together.

[0008] Furthermore, the striking block moves horizontally in a straight line on the upper side of the support plate, and the toothed plate is located on the front side of the right end support seat.

[0009] Furthermore, the dispersing mechanism includes a No. 1 motor located at the top right side of the mixing and dispersing cylinder. The output shaft of the No. 1 motor passes through and extends into the inner cavity of the mixing and dispersing cylinder and is fixed with a rotating rod. A No. 2 motor is fixed at the left end of the lower surface of the mixing and dispersing cylinder. Support blocks are fixed at both ends of the bottom wall of the mixing and dispersing cylinder. The output shaft of the No. 2 motor passes through and extends to the upper side of the left end support block and is fixed with a shaft. Rotating rollers are fixed at both ends of the outer surface of the shaft. Two rotating sleeves are rotatably connected to the outer surface of the rotating rollers through sealed bearings. Multiple dispersing rods are fixed to the outer surfaces of the rotating sleeves and the rotating rods.

[0010] Furthermore, multiple dispersing rods are evenly distributed on the outer surface of the rotating sleeve and the rotating rod, and the rotating rollers at the left and right ends are staggered.

[0011] Furthermore, a linkage rod is rotatably connected to the right end of the lower surface of the mixing and dispersing cylinder via a bearing. The linkage rod is connected to the No. 2 motor via a belt drive. The upper surface of the linkage rod extends through and to the upper side of the right end support block and is fixed to the right end shaft. The shaft is rotatably connected to the support block via a bearing.

[0012] Compared with the prior art, the technical solution of this application has the following beneficial effects:

[0013] 1. The dispersing device for the mixing machine is equipped with an anti-clogging mechanism that can adjust the position of the striking block. After the striking block contacts the feeding pipe, it can strike the feeding pipe, causing the material in the feeding pipe to move down quickly due to vibration, preventing blockage and making it easier for workers to collect the material for further dispersing.

[0014] 2. The dispersing device used in the mixing machine is equipped with a dispersing mechanism that can initially disperse the material and then further disperse it, resulting in a better dispersing effect and improving the dispersing efficiency. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the anti-clogging mechanism of this utility model;

[0017] Figure 3 This is a schematic diagram of the support block and drive motor structure of this utility model;

[0018] Figure 4 This is a schematic diagram of the disintegration mechanism of this utility model. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings. 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 scope of the present utility model.

[0020] Please see Figure 1 In this embodiment, a dispersing device for a mixing machine includes a mixing and dispersing cylinder 1. Support seats 2 are fixed at both ends of the lower surface of the mixing and dispersing cylinder 1. A top cover 3 is fixed on the upper surface of the support seat 2. A feed cylinder 4 is connected to the upper surface of the top cover 3. A discharge pipe 5 is connected to the middle of the lower surface of the mixing and dispersing cylinder 1. An anti-blocking mechanism 6 is provided at the bottom of the left side of the right support seat 2 to prevent the discharge pipe 5 from being blocked. A dispersing mechanism 7 is provided at the top of the right side of the mixing and dispersing cylinder 1.

[0021] In this embodiment, two support bases 2 are symmetrically distributed on the left and right sides of the vertical central axis of the mixing and dispersing cylinder 1, and the feed cylinder 4 is connected to the inner cavity of the mixing and dispersing cylinder 1.

[0022] Please see Figures 2 to 3To prevent blockage in the feed pipe 5, the anti-blocking mechanism 6 in this embodiment includes a support plate 601 located at the bottom left side of the right support base 2. A drive motor 602 is fixed to the back of the support plate 601, and a rotating rod 603 is rotatably connected to the front of the support plate 601 via a bearing. The output shaft of the drive motor 602 passes through and extends to the front of the support plate 601 and is fixed to the rotating rod 603. A rotating gear 604 is fixed to the outer surface of the rotating rod 603, and a toothed plate 605 is meshed with the upper surface of the rotating gear 604. By starting the drive motor 602, the output shaft of the drive motor 602 rotates and drives the rotating rod 603 to rotate. The rotation of the rotating rod 603... The rotating gear 604 fixed on its surface rotates, causing the toothed plate 605 meshing with the rotating gear 604 to move to the left. A driving block 606 is fixed to the left side of the toothed plate 605, and a striking block 607 is fixed to the top of the left side of the driving block 606. The movement of the toothed plate 605 drives the driving block 606 to move, and the movement of the driving block 606 causes the striking block 607 to move. After the striking block 607 contacts the feed pipe 5, it can strike it. The material in the feed pipe 5 is vibrated and moves down quickly to prevent blockage. An electromagnetic switch valve 608 is fixed to the lower surface of the feed pipe 5. By opening the electromagnetic switch valve 608, the material can flow out through the feed pipe 5.

[0023] In this embodiment, a telescopic sleeve rod is fixed at the bottom between the support plate 601 and the driving block 606 on opposite sides. The telescopic sleeve rod includes a fixed rod and a moving rod nested together. The striking block 607 moves horizontally and linearly on the upper side of the support plate 601. The toothed plate 605 is located on the front side of the right end support seat 2.

[0024] Understandably, the output shaft of the drive motor 602 reverses, causing the toothed plate 605 to drive the drive block 606 to move to the right, which in turn causes the striking block 607 to move to the right. Then, the output shaft of the drive motor 602 can be rotated in the forward direction again to strike again.

[0025] It should be noted that by adjusting the position of the striking block 607, the material in the discharge pipe 5 can be struck after the striking block 607 comes into contact with the discharge pipe 5. The material in the discharge pipe 5 is vibrated and moves down quickly to prevent blockage, thus making it easier for workers to collect.

[0026] Please see Figure 4To improve the material dispersing efficiency, the dispersing mechanism 7 in this embodiment includes a first motor 701 located at the top right side of the mixing and dispersing cylinder 1. The output shaft of the first motor 701 passes through and extends into the inner cavity of the mixing and dispersing cylinder 1 and is fixed with a rotating rod 702. The rotation of the output shaft of the first motor 701 drives the rotating rod 702 to rotate. The rotation of the rotating rod 702 causes multiple dispersing rods 708 fixed on its surface to rotate. At this time, the material is poured in through the feed cylinder 4. The material entering the feed cylinder 4 will fall onto the outer surface of the rotating rod 702. At this time, the rotating rod 702 and the dispersing rods 708 on its surface can perform initial dispersing of the material. A second motor 703 is fixed to the left end of the lower surface of the mixing and dispersing cylinder 1. Support blocks 704 are fixed to both ends of the bottom wall of the mixing and dispersing cylinder 1. The output shaft of the second motor 703 passes through and extends to the upper side of the left support block 704 and is fixed with a shaft. 705. Rotating rollers 706 are fixed to both ends of the outer surface of shaft 705. The rotation of motor 703 causes the left shaft 705 to rotate, and through belt transmission, the right drive rod drives the right shaft 705 to rotate. The rotation of the two shafts 705 drives the rotating rollers 706 fixed on their left and right sides to rotate. Two rotating sleeves 707 are rotatably connected to the outer surface of the rotating rollers 706 through sealed bearings. Multiple dispersing rods 708 are fixed to the outer surface of the rotating sleeves 707 and the rotating rods 702. The rotation of the rotating rollers 706 causes the multiple rotating sleeves 707 to make horizontal circular motion with the rotation of the rotating rollers 706. The material falls downwards and is then dispersed again by the rotation of the multiple rotating rollers 706. After the material accumulates to a certain height, the rotating sleeves 707 rotate under the pressure of the material and drive the dispersing rods 708 on the surface to rotate, thereby further dispersing the material.

[0027] Among them, multiple dispersing rods 708 are evenly distributed on the outer surface of rotating sleeve 707 and rotating rod 702, and rotating rollers 706 at the left and right ends are staggered.

[0028] In this embodiment, a linkage rod is rotatably connected to the right end of the lower surface of the mixing and dispersing cylinder 1 via a bearing. The linkage rod is connected to the second motor 703 via a belt drive. The upper surface of the linkage rod extends through and to the upper side of the right end support block 704 and is fixed to the right end shaft 705. The shaft 705 and the support block 704 are rotatably connected via a bearing.

[0029] It should be noted that the material can be initially broken down, and then further broken down, resulting in a better material breaking down effect and improving the material breaking down efficiency.

[0030] The working principle of the above embodiments is as follows:

[0031] (1) When dispersing the material, firstly, start motor 701 and motor 703. The output shaft of motor 701 rotates, driving the rotating rod 702 to rotate. The rotation of the rotating rod 702 causes multiple dispersing rods 708 fixed on its surface to rotate. The rotation of motor 703 causes the left end shaft 705 to rotate, and through belt transmission, the right end drive rod drives the right end shaft 705 to rotate. The rotation of the two shafts 705 drives the rotating rollers 706 fixed on their left and right sides to rotate. The rotation of the rotating rollers 706 causes... Multiple rotating sleeves 707 move horizontally in a circular motion as the rotating rollers 706 rotate. At this time, the material is poured in through the feed cylinder 4. The material entering the feed cylinder 4 will fall onto the outer surface of the rotating rod 702. At this time, the rotating rod 702 and the dispersing rod 708 on its surface can initially disperse the material. The material falls downward and is then dispersed again as the multiple rotating rollers 706 rotate. After the material accumulates to a certain height, the rotating sleeves 707 rotate under the pressure of the material and drive the dispersing rods 708 on their surface to rotate, thereby further dispersing the material.

[0032] (2) After the material is broken up, the material can flow out through the feed pipe 5 by opening the solenoid switch valve 608. In order to prevent the material from blocking, the drive motor 602 can be started. The output shaft of the drive motor 602 rotates and drives the rotating rod 603 to rotate. The rotation of the rotating rod 603 causes the rotating gear 604 fixed on its surface to rotate, thereby causing the toothed plate 605 meshing with the rotating gear 604 to move to the left. The movement of the toothed plate 605 drives the drive block 606 to move. The movement of the drive block 606 causes the striking block 607 to move. After the striking block 607 contacts the feed pipe 5, it can strike it. The material in the feed pipe 5 is vibrated and moves down quickly to prevent blockage. At this time, the output shaft of the drive motor 602 reverses, causing the toothed plate 605 to drive the drive block 606 to move to the right, which in turn causes the striking block 607 to move to the right. Then, the output shaft of the drive motor 602 can be rotated forward again to strike again.

[0033] The embodiments described above merely illustrate the implementation of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be defined by the appended claims.

Claims

1. A dispersing device for a mixing machine, comprising a mixing and dispersing cylinder (1), characterized in that: The mixing and dispersing cylinder (1) has support seats (2) fixed at both ends of its lower surface. The upper surface of the support seat (2) is fixed with a cover (3). The upper surface of the cover (3) is connected to a feed cylinder (4). The middle part of the lower surface of the mixing and dispersing cylinder (1) is connected to a discharge pipe (5). The bottom of the left side of the support seat (2) at the right end is provided with an anti-blocking mechanism (6) to prevent the discharge pipe (5) from being blocked. The top of the right side of the mixing and dispersing cylinder (1) is provided with a dispersing mechanism (7). The anti-blocking mechanism (6) includes a support plate (601) located at the bottom left side of the right end support base (2). A drive motor (602) is fixed on the back of the support plate (601). A rotating rod (603) is rotatably connected to the front of the support plate (601) via a bearing. The output shaft of the drive motor (602) passes through and extends to the front side of the support plate (601) and is fixed to the rotating rod (603). A rotating gear (604) is fixed on the outer surface of the rotating rod (603). A toothed plate (605) is meshed with the upper surface of the rotating gear (604). A drive block (606) is fixed on the left side of the toothed plate (605). A striking block (607) is fixed on the top left side of the drive block (606). An electromagnetic switch valve (608) is fixed on the lower surface of the feed pipe (5).

2. The dispersing device for a mixing machine according to claim 1, characterized in that: The two support seats (2) are symmetrically distributed on the left and right sides of the vertical central axis of the mixing and dispersing cylinder (1), and the feed cylinder (4) is connected to the inner cavity of the mixing and dispersing cylinder (1).

3. The dispersing device for a mixing machine according to claim 1, characterized in that: A telescopic sleeve rod is fixed at the bottom between the support plate (601) and the drive block (606) on opposite sides. The telescopic sleeve rod includes a fixed rod and a moving rod nested together.

4. The dispersing device for a mixing machine according to claim 1, characterized in that: The striking block (607) moves horizontally in a straight line on the upper side of the support plate (601), and the toothed plate (605) is located on the front side of the right end support seat (2).

5. A dispersing device for a mixing machine according to claim 1, characterized in that: The dispersing mechanism (7) includes a first motor (701) located at the top right side of the mixing and dispersing cylinder (1). The output shaft of the first motor (701) passes through and extends into the inner cavity of the mixing and dispersing cylinder (1) and is fixed with a rotating rod (702). A second motor (703) is fixed at the left end of the lower surface of the mixing and dispersing cylinder (1). Support blocks (704) are fixed at both ends of the bottom wall of the mixing and dispersing cylinder (1). The output shaft of the second motor (703) passes through and extends to the upper side of the left end support block (704) and is fixed with a shaft (705). Rotating rollers (706) are fixed at both ends of the outer surface of the shaft (705). Two rotating sleeves (707) are rotatably connected to the outer surface of the rotating rollers (706) through sealed bearings. Multiple dispersing rods (708) are fixed on the outer surfaces of the rotating sleeves (707) and the rotating rods (702).

6. A dispersing device for a mixing machine according to claim 5, characterized in that: Multiple dispersing rods (708) are evenly distributed on the outer surfaces of the rotating sleeve (707) and the rotating rod (702), and the rotating rollers (706) at the left and right ends are staggered.

7. A dispersing device for a mixing machine according to claim 5, characterized in that: The right end of the lower surface of the mixing and dispersing cylinder (1) is rotatably connected to a linkage rod via a bearing. The linkage rod is connected to the second motor (703) via a belt drive. The upper surface of the linkage rod extends through and to the upper side of the right end support block (704) and is fixed to the right end shaft (705). The shaft (705) and the support block (704) are rotatably connected via a bearing.

Citation Information

Patent Citations

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    CN218842097U