A granulator mobile device

By designing a mobile pellet mill, the problem of limited operating space for pellet mill equipment was solved, enabling convenient and efficient maintenance, reducing safety hazards, and simplifying the structure.

CN224551206UActive Publication Date: 2026-07-24YICHUN FORESTRY MEIXI FORESTRY BUREAU CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YICHUN FORESTRY MEIXI FORESTRY BUREAU CO LTD
Filing Date
2025-08-05
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

The existing pellet mill equipment is floor-mounted and cannot be moved, which results in limited operating space, inconvenient maintenance, and safety hazards.

Method used

A pellet mill mobile device including a base, slide rail, transfer platform and drive unit is designed. The drive unit enables the transfer platform and the equipment body to move between working position and maintenance position, realizing convenient equipment switching.

Benefits of technology

It improves the convenience of equipment maintenance, reduces safety hazards, simplifies the structure, reduces the failure rate, and improves maintenance efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224551206U_ABST
    Figure CN224551206U_ABST
Patent Text Reader

Abstract

A kind of granulator mobile device relates to the technical field of granulator.To solve the problem that the operation space of existing granulator equipment is limited, resulting in very inconvenient maintenance.The utility model discloses a base, slide rail, transfer platform and driving device, slide rail is fixedly installed on base, specifically can be connected by the mode of welding, transfer platform is movably installed on slide rail, and the moving mode has rolling, sliding and the like, equipment body is fixedly installed on transfer platform, equipment body can be installed on transfer platform by bolt, driving device is connected with transfer platform, when needing to maintain equipment body, transfer platform and equipment body are moved from working position to maintenance position by driving device, the space of maintenance position is larger, and the maintenance of equipment body is more convenient, and the whole process does not need manual operation, reduces security risk, and maintenance efficiency is higher.
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Description

Technical Field

[0001] This utility model relates to the field of granulator technology, and specifically to a granulator mobile device. Background Technology

[0002] Granulators can be used in various industries. Depending on the needs, granulators are divided into various styles and specifications. Some are dedicated to granulation, while others are mainly for mixing and other functions. They can mix one or more materials and process them into granules of various specifications according to the requirements before discharging them.

[0003] The existing pellet mill equipment is floor-mounted, which is quite heavy and cannot be moved after installation. When used with a material distribution platform, the limited operating space makes the maintenance of the pellet mill equipment extremely inconvenient. If manual movement is required, there are safety hazards, which is time-consuming, labor-intensive, and extremely labor-intensive. Utility Model Content

[0004] The purpose of this invention is to solve the problem of inconvenient maintenance caused by limited operating space in pellet mill equipment. Therefore, it provides a pellet mill mobile device.

[0005] The technical solution of this utility model is: a pellet mill mobile device, comprising: a base;

[0006] The slide rail is fixedly installed on the base;

[0007] The transfer platform is movably installed on the slide rail, and the equipment body is fixedly installed on the transfer platform;

[0008] A drive unit is connected to the transfer platform, and the drive unit is used to drive the transfer platform to move between the working position and the maintenance position on the slide rail.

[0009] Furthermore, the driving device is a linear driving device.

[0010] Furthermore, the linear drive device includes at least one hydraulic cylinder, which is mounted on the bottom surface of the transfer platform, and baffles are respectively provided on both sides of the base for abutting against the piston rod of the hydraulic cylinder.

[0011] Furthermore, the hydraulic cylinder is a dual-piston hydraulic cylinder.

[0012] Furthermore, the top surface of the baffle is higher than the bottom surface of the transfer platform.

[0013] Furthermore, the slide rail has two symmetrically arranged rails, and the bottom surface of the transfer platform is rotatably connected to a plurality of rollers distributed in a rectangular array, with the plurality of rollers being rolled on the two slide rails.

[0014] Furthermore, the base includes a fixed seat and a movable seat that are detachably connected, the working position is located on the slide rail of the fixed seat, and the maintenance position is located on the slide rail of the movable seat.

[0015] Furthermore, the fixed base and the movable base each include two longitudinal H-beams and two transverse H-beams that are distributed in parallel at intervals, with the two longitudinal H-beams connected between the two transverse H-beams.

[0016] Furthermore, a reinforcing plate is connected to the web of the longitudinal I-beam, the top and bottom surfaces of the reinforcing plate are respectively connected to the flanges of the transverse I-beam, and the side surface of the reinforcing plate is connected to the web of the transverse I-beam.

[0017] Furthermore, the fixed seat and the movable seat are connected by a U-shaped plate. There are two symmetrically distributed U-shaped plates. The inner wall of one side of each U-shaped plate abuts against the web of the transverse I-beam on the fixed seat, and the inner wall of the other side abuts against the web of the transverse I-beam on the movable seat.

[0018] Compared with the prior art, this utility model has the following advantages:

[0019] 1. The pellet mill mobile device provided by this utility model allows the transfer platform and the equipment body to be moved from the working position to the maintenance position by a drive device when maintenance is required. The maintenance position has a large space, making maintenance of the equipment body more convenient. Moreover, no manual operation is required throughout the process, reducing safety hazards and increasing maintenance efficiency.

[0020] 2. The pellet mill mobile device provided by this utility model adopts a linear drive method and does not require a transmission mechanism. It can directly apply the thrust or pull force to the main body of the equipment, which makes the structure simpler, the failure rate lower, and there is no force loss, resulting in better performance. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0022] Figure 2 yes Figure 1 A diagram of the other side;

[0023] Figure 3 yes Figure 1 The front view;

[0024] Figure 4 yes Figure 1 Exploded view;

[0025] Figure 5 yes Figure 1 Schematic diagram of the bottom structure of the transshipment platform;

[0026] Figure 6 yes Figure 4 A schematic diagram of the explosion of the moving base.

[0027] In the diagram: 1. Base; 2. Slide rail; 3. Transfer platform; 4. Equipment body; 5. Drive unit; 6. Baffle; 7. Roller; 8. Fixed seat; 9. Moving seat; 10. Longitudinal I-beam; 11. Transverse I-beam; 12. Reinforcing plate; 13. U-shaped plate. Detailed Implementation

[0028] Specific implementation method one: Combining Figures 1 to 3 This embodiment includes a base 1, a slide rail 2, a transfer platform 3, and a drive device 5. The slide rail 2 is fixedly installed on the base 1, specifically by welding. The transfer platform 3 is movably installed on the slide rail 2, and the movement can be rolling, sliding, etc. The equipment body 4 is fixedly installed on the transfer platform 3, and the equipment body 4 can be installed on the transfer platform 3 by bolts. The drive device 5 is connected to the transfer platform 3 and is used to drive the transfer platform 3 to move between the working position and the maintenance position on the slide rail 2. When the equipment body 4 is in the working position, it is used in conjunction with the material distribution platform. When the equipment body 4 is in the maintenance position, it is away from the powder platform, and the operating space is larger.

[0029] When the granulator mobile device of this embodiment needs to maintain the equipment body 4, the transfer platform 3 and the equipment body 4 can be moved from the working position to the maintenance position by the drive device 5. The maintenance position has a large space, making the maintenance of the equipment body 4 more convenient. Moreover, no manual operation is required throughout the process, reducing safety hazards and increasing maintenance efficiency.

[0030] Specific Implementation Method Two: Combining Figure 5 This embodiment differs from specific embodiment one in that the drive device 5 is a linear drive device. Choosing a linear drive eliminates the need for a transmission mechanism, allowing the thrust or pull force to be directly applied to the equipment body 4. This results in a simpler structure, a lower failure rate, and no force loss, leading to better performance. The drive device 5 can also be a rotary drive device 5, which drives the transfer platform 3 through a transmission mechanism, such as a motor via a rack and pinion or a crank-connecting rod. Other components and connections are the same as in specific embodiment one.

[0031] Specific implementation method three: Combining Figure 1 , Figure 5This embodiment differs from Embodiment 2 in that the linear drive device includes at least one hydraulic cylinder. The hydraulic cylinder is mounted on the bottom surface of the transfer platform 3. Baffles 6 are provided on both sides of the base 1 to abut against the piston rod of the hydraulic cylinder. The hydraulic cylinder requires a hydraulic pump to provide pressure through oil pipes. Since this is common knowledge, the hydraulic pump is not shown in the accompanying drawings of this embodiment. The hydraulic drive method provides greater thrust, making it more effective at pushing the equipment body 4. The linear drive device can also be a linear motor, an electric actuator, etc. Other components and connections are the same as in Embodiment 2.

[0032] Specific implementation method four: Combination Figure 5 This embodiment differs from Specific Embodiment Three in that the hydraulic cylinder is a double-piston hydraulic cylinder. Both sides of the double-piston hydraulic cylinder have piston rods. After the piston rods extend, they abut against the baffle 6, and the resulting reaction force propels the transfer platform 3 to move on the slide rail 2. Only one double-piston hydraulic cylinder is needed to achieve the reciprocating motion of the transfer platform 3. Of course, the hydraulic cylinder can also be a single-piston hydraulic cylinder, requiring at least two, with the two single-piston hydraulic cylinders extending in opposite directions. Other components and connections are the same as in Specific Embodiment Three.

[0033] Specific Implementation Method Five: Combining Figures 1 to 3 This embodiment differs from Specific Embodiment Three in that the top surface of the baffle 6 is higher than the bottom surface of the transfer platform 3, effectively limiting the height of the baffle 6. The baffle 6 can limit the transfer platform 3, preventing it from detaching from the guide rail. It generates a counter-thrust force and also provides a limiting effect, resulting in better practical performance. Other components and connections are the same as in Specific Embodiment One.

[0034] Specific Implementation Method Six: Combination Figure 1 , Figure 5 This embodiment differs from specific embodiment one in that it has two symmetrically arranged slide rails 2. The bottom surface of the transfer platform 3 is rotatably connected to multiple rollers 7 distributed in a rectangular array. These rollers 7 are rolled on the two slide rails 2. In this embodiment, the transfer platform 3 moves by rolling, which results in a smaller contact area and less friction, making it easier to move. The transfer platform 3 can also move by sliding, with a slider connected to its ground and slidably mounted on the slide rail 2. Other components and connections are the same as in specific embodiment one.

[0035] Specific implementation method seven: Combining Figure 4This embodiment differs from Specific Embodiment 1 in that the base 1 includes a detachably connected fixed base 8 and a movable base 9. The working position is located on the slide rail 2 of the fixed base 8, and the maintenance position is located on the slide rail 2 of the movable base 9. It should be noted that the fixed base 8 is stationary, while the movable base 9 is movable. When the device body 4 needs to be moved, the movable base 9 is docked and connected to the fixed base 8. After the device body 4 returns to its original position, the movable base 9 is detached from the fixed base 8 and placed in another location, avoiding the movable base 9 occupying space on the device body 4, thus improving space utilization. Other components and connections are the same as in any one of Specific Embodiments 1 to 6.

[0036] Specific implementation method eight: Combination Figure 6 This embodiment differs from specific embodiment seven in that the fixed base 8 and the movable base 9 each include two parallel, spaced-apart longitudinal H-beams 10 and two transverse H-beams 11. The two longitudinal H-beams 10 are connected between the two transverse H-beams 11. The fixed base 8 and the movable base 9 have the same structure. The longitudinal H-beams 10 and the transverse H-beams 11 are connected by welding. The H-beams have high strength and can withstand the weight of the equipment body 4. Other components and connections are the same as in specific embodiment seven.

[0037] Specific Implementation Method Nine: Combining Figure 6 This embodiment differs from specific embodiment eight in that a reinforcing plate 12 is connected to the web of the longitudinal I-beam 10. The top and bottom surfaces of the reinforcing plate 12 are connected to the flanges of the transverse I-beam 11, and the side surfaces of the reinforcing plate 12 are connected to the web of the transverse I-beam 11. The reinforcing plate 12 is also connected by welding, which increases the contact area and further strengthens the beam. Other components and connections are the same as in specific embodiment eight.

[0038] Specific Implementation Method Ten: Combining Figure 4 This embodiment differs from specific embodiment nine in that the fixed base 8 and the movable base 9 are connected by a U-shaped plate 13. Two U-shaped plates 13 are symmetrically distributed. One inner wall of each U-shaped plate 13 abuts against the web of the transverse I-beam 11 on the fixed base 8, and the other inner wall abuts against the web of the transverse I-beam 11 on the movable base 9. The U-shaped plates 13 provide a limiting mechanism to prevent separation of the fixed base 8 and the movable base 9. Furthermore, the U-shaped plates 13 are very convenient to install and remove, making them easy to use. Other components and connections are the same as in specific embodiment nine.

[0039] How to use this implementation method:

[0040] First, activate the double-piston hydraulic cylinder. The piston rod on one side extends outward and abuts against the baffle 6 at the fixed seat 8. The resulting thrust pushes the transfer platform 3 and the equipment body 4 to the moving seat 9. At this time, the equipment body 4 is in the maintenance position, and the staff can perform maintenance on the equipment body 4. Then, extend the piston rod on the other side of the double-piston hydraulic cylinder outward and abut against the baffle 6 at the moving seat 9. The resulting thrust pushes the transfer platform 3 and the equipment body 4 back to the fixed seat 8. Remove the U-shaped plate 13 and separate the moving seat 9 from the fixed seat 8.

[0041] The content of this utility model is not limited to the above-described embodiments; a combination of one or more specific embodiments can also achieve the purpose of the utility model.

Claims

1. A pellet mill mobile device, characterized in that, include: Base (1); The slide rail (2) is fixedly installed on the base (1); The transfer platform (3) is movably installed on the slide rail (2), and the equipment body (4) is fixedly installed on the transfer platform (3); A drive device (5) is connected to the transfer platform (3), and the drive device (5) is used to drive the transfer platform (3) to move between the working position and the maintenance position on the slide rail (2).

2. The pelletizing machine mobile device according to claim 1, characterized in that, The driving device (5) is a linear driving device.

3. The pelletizing machine mobile device according to claim 2, characterized in that, The linear drive device (5) includes at least one hydraulic cylinder, which is mounted on the bottom surface of the transfer platform (3). The base (1) has baffles (6) on both sides for contacting the piston rod of the hydraulic cylinder.

4. A pellet mill mobile device according to claim 3, characterized in that, The hydraulic cylinder is a double-piston hydraulic cylinder.

5. A pellet mill mobile device according to claim 3, characterized in that, The top surface of the baffle (6) is higher than the bottom surface of the transfer platform (3).

6. A pelletizing machine mobile device according to claim 1, characterized in that, The slide rail (2) has two symmetrically arranged slide rails, and the bottom surface of the transfer platform (3) is rotatably connected to a plurality of rollers (7) distributed in a rectangular array. The plurality of rollers (7) are rolled on the two slide rails (2).

7. A pellet mill mobile device according to any one of claims 1-6, characterized in that, The base (1) includes a fixed seat (8) and a movable seat (9) that are detachably connected. The working position is located on the slide rail (2) of the fixed seat (8), and the maintenance position is located on the slide rail (2) of the movable seat (9).

8. A pellet mill mobile device according to claim 7, characterized in that, The fixed seat (8) and the movable seat (9) respectively include two longitudinal H-beams (10) and two transverse H-beams (11) distributed in parallel intervals, with the two longitudinal H-beams (10) connected between the two transverse H-beams (11).

9. A pellet mill mobile device according to claim 8, characterized in that, A reinforcing plate (12) is connected to the web of the longitudinal I-beam (10). The top and bottom surfaces of the reinforcing plate (12) are connected to the flanges of the transverse I-beam (11), and the side surface of the reinforcing plate (12) is connected to the web of the transverse I-beam (11).

10. A pellet mill mobile device according to claim 9, characterized in that, The fixed seat (8) and the movable seat (9) are connected by a U-shaped plate (13). There are two symmetrically distributed U-shaped plates (13). The inner wall of one side of each U-shaped plate (13) abuts against the web of the transverse I-beam (11) on the fixed seat (8), and the inner wall of the other side abuts against the web of the transverse I-beam (11) on the movable seat (9).