A cartridge rotation structure

CN224797646UActive Publication Date: 2026-09-25CHANGZHOU ZHIYANG MASCH EQUIP CO LTD
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Patent Information

Application Number
CN202522492438.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-24
Publication Date
2026-09-25
Estimated Expiration
2035-11-24

AI Technical Summary

Technical Problem

[0003]现有料筒多存在结构设计缺陷:部分料筒采用固定安装方式,无法实现翻转,导致物料倾倒时需借助额外工具,操作费力且易残留;另一部分可翻转的料筒,其限位结构设计不合理,要么翻转后固定不稳易发生晃动,存在安全隐患,要么解锁过程繁琐,需多步操作,影响使用效率,为此,提出一种料筒旋转结构

Benefits of technology

该实用新型通过在料筒两侧设置第一连接轴和第二连接轴,并与底架上的支撑件活动连接,实现了料筒以连接轴为圆心的翻转,具有便于倾倒物料的好处,解决了料筒固定无法翻转导致物料倾倒困难的问题;通过限位器、限位杆、弹性复位件等组成的限位结构,实现了对料筒旋转状态的稳定限位与快速解锁,具有操作便捷、限位可靠的好处,解决了料筒翻转后固定不稳或解锁繁琐的问题。

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Abstract

The utility model discloses a material cylinder rotation structure, include: chassis and material cylinder, the outside both sides of material cylinder are welded with first connecting shaft and second connecting shaft, the outside of chassis is located the outside of first connecting shaft and second connecting shaft and is welded with support piece, stopper is set up in the lower end one side of first connecting shaft, the inside of first side plate and second side plate are arranged respectively with the lower part both sides of stopper in the inside of chassis, the inside mounting of first side plate has the casing, the inside mounting of casing has the limit rod, the inside one side of limit rod is installed with inner plate and elastic reset piece from inside to outside in proper order, the inner plate is fixedly connected with limit rod, limit groove is set up in the one side of stopper outside close to limit rod. The utility model realizes material cylinder steady upset and is convenient for to pour, and the limit structure is reliable and is convenient for to unlock, solves and solves the problem of difficult and fixed, unlocking.
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Description

Technical Field

[0001] This utility model relates to the field of material storage and transfer, and in particular to a rotating cylinder structure. Background Technology

[0002] Material cylinders are commonly used equipment for material storage and transfer, and are widely used in industrial production, agricultural processing and other fields. Their structural rationality directly affects the efficiency of material loading and unloading and the convenience of operation.

[0003] Existing material cylinders often have structural design flaws: some material cylinders are fixed and cannot be rotated, requiring additional tools to pour materials, which is laborious and prone to leaving residue; other rotating material cylinders have unreasonable limiting structure designs, either they are unstable after rotation and are prone to shaking, posing a safety hazard, or the unlocking process is cumbersome and requires multiple steps, affecting the efficiency of use. Therefore, a rotating material cylinder structure is proposed. Utility Model Content

[0004] In view of the shortcomings of the prior art, this utility model provides a rotating barrel structure to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a rotating barrel structure, comprising: The base frame and the material cylinder are provided. A first connecting shaft and a second connecting shaft are welded to the outer sides of the material cylinder, respectively. Support members are welded to the outer sides of the base frame, located outside the first and second connecting shafts, and the first and second connecting shafts are movably connected to the support members. A limiter is provided on one side of the lower end of the first connecting shaft. The base frame has a first side plate and a second side plate respectively provided on both sides of the lower part of the limiter. A housing is installed inside the first side plate. A limit rod is installed inside the housing. An inner plate and an elastic reset member are installed sequentially from the inside to the outside on the inner side of the housing. The inner plate is fixedly connected to the limit rod. The limiting groove is located on the outside of the limiter, near the limiting rod, and is integrally formed with the limiter. This allows the material cylinder to rotate stably around the connecting shaft, facilitating the pouring of internal materials. At the same time, the limiting structure can quickly limit and unlock the material cylinder, ensuring its stable placement in a non-poured state, thus improving operational convenience and reliability.

[0006] Preferably, a limiting member is provided at one end of the first connecting shaft and the second connecting shaft outside the support member, and the limiting member is welded and fixed to the first connecting shaft and the second connecting shaft. The limiting member is used to prevent the first connecting shaft and the second connecting shaft from axially shifting in the support member.

[0007] Preferably, the housing and the first side plate are connected by a threaded connection, and a pulling member is installed at the end of the limiting rod away from the limiting device, and the pulling member and the limiting rod are connected by a threaded connection.

[0008] Preferably, a toggle member is provided on the outer side of the housing near the pull member. The toggle member is distributed circumferentially along the end of the housing and is fixedly connected to the housing to increase friction and facilitate rotation of the housing for assembly and disassembly.

[0009] Preferably, the lower end of the base frame is equipped with four locking pulleys in a rectangular array, and the locking pulleys are connected to the base frame to facilitate the movement and fixation of the base frame.

[0010] Preferably, a handrail is installed on one side of the upper end of the base frame, and the handrail is welded to the base frame to facilitate the pushing and pulling movement of the base frame.

[0011] In summary, compared with the prior art, this utility model provides a rotating barrel structure with the following advantages: This utility model achieves the rotation of the material cylinder around the connecting shaft by setting a first connecting shaft and a second connecting shaft on both sides of the cylinder and movably connecting them to the support on the base frame. This facilitates the pouring of materials and solves the problem of the material cylinder being fixed and unable to rotate, making it difficult to pour materials. The limiting structure composed of limiters, limit rods, and elastic reset components achieves stable limiting and quick unlocking of the rotating state of the material cylinder. This provides the advantages of convenient operation and reliable limiting, and solves the problems of unstable fixing or cumbersome unlocking after the material cylinder is rotated. Attached Figure Description

[0012] Figure 1 This is a three-dimensional view of the overall structure of the utility model.

[0013] Figure 2 This is a schematic diagram of the material cylinder in the flipped state of this utility model.

[0014] Figure 3 This is a cross-sectional view of the shell structure of this utility model.

[0015] Explanation of reference numerals in the attached figures: 1. Base frame; 2. Material cylinder; 3. Handrail; 4. Support; 5. First connecting shaft; 6. Limiting component; 7. Second connecting shaft; 8. Limiter; 9. First side plate; 10. Second side plate; 11. Locking pulley; 12. Housing; 13. Actuating component; 14. Limiting rod; 15. Inner plate; 16. Elastic reset component; 17. Pulling component. Detailed Implementation

[0016] This utility model provides a technical solution, a rotating barrel structure; please refer to [link / reference]. Figures 1-3 ,include: The base frame 1 and the material cylinder 2 are provided. A first connecting shaft 5 and a second connecting shaft 7 are welded to the outer sides of the material cylinder 2, respectively. Support members 4 are welded to the outer sides of the base frame 1, which are located outside the first connecting shaft 5 and the second connecting shaft 7. The first connecting shaft 5 and the second connecting shaft 7 are movably connected to the support members 4. The limiter 8 is located on one side of the lower end of the first connecting shaft 5. The base frame 1 has a first side plate 9 and a second side plate 10 respectively located on both sides of the lower part of the limiter 6. The first side plate 9 has a housing 12 installed inside. The housing 12 has a limit rod 14 installed inside. The limit rod 14 is located on one side inside the housing 12 and has an inner plate 15 and an elastic reset member 16 installed from the inside to the outside. The inner plate 15 is fixedly connected to the limit rod 14. The limiting groove is formed on the outside of the limiter 8 near the limit rod 14, and the limiting groove is integrally formed with the limiter 8.

[0017] Please see Figure 1 and Figure 2 A limiting member 6 is provided at one end of the first connecting shaft 5 and the second connecting shaft 7 outside the support member 4, and the limiting member 6 is welded and fixed to the first connecting shaft 5 and the second connecting shaft 7. The limiting member 6 is used to prevent the first connecting shaft 5 and the second connecting shaft 7 from axially shifting in the support member 4.

[0018] Please see Figure 3 The housing 12 is connected to the first side plate 9 by a threaded connection. The end of the limiting rod 14 away from the limiting device 8 is equipped with a pull member 17, and the pull member 17 is connected to the limiting rod 14 by a threaded connection.

[0019] Please see Figure 3 A toggle member 13 is provided on the outer side of the housing 12 near the pull member 17. The toggle member 13 is distributed circumferentially along the end of the housing 12 and is fixedly connected to the housing 12. The toggle member 13 is used to increase friction, thereby facilitating the rotation of the housing 12 to disassemble and assemble it.

[0020] Please see Figure 1 and Figure 2 The lower end of the base frame 1 is equipped with four locking pulley components 11 in a rectangular array, and the locking pulley components 11 are connected to the base frame 1. The locking pulley components 11 facilitate the movement and fixation of the base frame 1.

[0021] Please see Figure 1 and Figure 2 A handrail 3 is installed on one side of the upper end of the base frame 1, and the handrail 3 is welded to the base frame 1 to facilitate the pushing and pulling movement of the base frame 1.

[0022] This solution: When it is necessary to pour the material inside the hopper 2, the operator first grasps the pull member 17 installed on the end of the limit rod 14 away from the limiter 8. The pull member 17 is connected to the limit rod 14 by a threaded connection and applies force in the direction away from the limiter 8. Since the limit rod 14 passes through the inside of the housing 12, and the housing 12 is connected to the first side plate 9 by a threaded connection, and the first side plate 9 is located inside the base frame 1 on the lower side of the limiter 6, the pulling force will drive the limit rod 14 to move axially along the housing 12. The inner plate 15, which is fixedly connected to the limit rod 14, simultaneously squeezes the elastic reset member 16 sleeved on the outside of the limit rod 14, putting it in a compressed state. As the limit rod 14 moves, the end near the limiter 8 gradually disengages. After leaving the limiting groove outside the limiter 8, which is integrally formed with the limiter 8, the material cylinder 2 loses its rotational constraint. Since the first connecting shaft 5 and the second connecting shaft 7 welded to the outside of the material cylinder 2 are movably connected to the support member 4 welded to the outside of the base frame 1, the operator can push the material cylinder 2 to rotate around the two shafts. When rotating, the limiting member 6 outside the first connecting shaft 5 and the second connecting shaft 7 is welded and fixed to the two shafts and fits against the end of the support member 4 to prevent axial displacement. After the material is poured out, the material cylinder 2 is pushed back to reset. When the limiter 8 and the limiting rod 14 are coaxially aligned, the pulling member 17 is released, and the elastic reset member 16 releases the thrust. Through the inner plate 15, the limiting rod 14 is driven back into the limiting groove to re-limit the material cylinder 2. When disassembling the cylinder 2, repeat the initial tilting steps: pull the puller 17 outward to move the limit rod 14 inside the housing 12, and compress the elastic reset member 16 with the inner plate 15 until the end of the limit rod 14 near the limiter 8 is completely retracted into the housing 12, ensuring no interference; then the operator supports the two sides of the cylinder 2 and tilts the cylinder 2 away from the limit rod 14, so that the limiter 8 fixed on one side of the lower end of the first connecting shaft 5 deviates from the extension trajectory of the limit rod 14. At this time, release the puller 17, and the elastic reset member 16 will push the limit rod 14 to reset without contacting the limiter 8; then lift the cylinder 2 upward, and the first connecting shaft 5 and the second connecting shaft 7 slide upward along the inner wall of the support member 4, gradually moving away from the support range of the support member 4. After the two shafts are completely removed from the support member 4, remove the cylinder 2 from above the base frame 1 to complete the disassembly. When the entire device needs to be moved, the operator holds the handrail 3 welded to one side of the upper part of the base frame 1 with both hands. The handrail 3 is firmly connected to the base frame 1, providing a stable point of force application to apply pushing and pulling force in the target direction. Because the lower end of the base frame 1 is equipped with four locking pulley components 11 in a rectangular array, and the locking pulley components 11 are connected to the base frame 1, under the action of force, the pulleys of the locking pulley components 11 roll along the ground, driving the base frame 1 and the material cylinder 2, support component 4 and other components above to move synchronously. The rectangular array installation method can ensure that the device is subjected to balanced force and avoid tilting due to the shift of the center of gravity. After the device is moved to the preset position, the operator operates the locking mechanism of each locking pulley component 11 one by one, such as locking pedal or knob, to lock the pulley and fix the device in the current position, providing a safe and stable environment for subsequent operations such as material dumping and material cylinder disassembly.

Claims

1. A rotating barrel structure, characterized in that, include: The base frame (1) and the material cylinder (2) are provided. A first connecting shaft (5) and a second connecting shaft (7) are welded to the outer sides of the material cylinder (2) respectively. Support members (4) are welded to the outer sides of the base frame (1) and the outer sides of the first connecting shaft (5) and the second connecting shaft (7). The first connecting shaft (5) and the second connecting shaft (7) are movably connected to the support members (4). The limiter (8) is located on one side of the lower end of the first connecting shaft (5). The base frame (1) is provided with a first side plate (9) and a second side plate (10) on both sides of the lower part of the limiter (6). The first side plate (9) is equipped with a housing (12). The housing (12) is equipped with a limit rod (14). The limit rod (14) is located on one side of the housing (12) and is equipped with an inner plate (15) and an elastic reset member (16) from the inside to the outside. The inner plate (15) is fixedly connected to the limit rod (14). The limiting groove is opened on the side of the limiter (8) near the limiting rod (14), and the limiting groove is integrally formed with the limiter (8).

2. The rotating barrel structure according to claim 1, characterized in that: A limiting member (6) is provided at one end of the first connecting shaft (5) and the second connecting shaft (7) outside the support member (4), and the limiting member (6) is welded and fixed to the first connecting shaft (5) and the second connecting shaft (7).

3. The rotating barrel structure according to claim 1, characterized in that: The housing (12) is connected to the first side plate (9) by a threaded connection. The end of the limiting rod (14) away from the limiting device (8) is equipped with a pull member (17), and the pull member (17) is connected to the limiting rod (14) by a threaded connection.

4. The rotating barrel structure according to claim 1, characterized in that: A toggle member (13) is provided on the outer side of the housing (12) near the pull member (17). The toggle member (13) is distributed circumferentially along the end of the housing (12) and is fixedly connected to the housing (12).

5. The rotating barrel structure according to claim 1, characterized in that: The lower end of the base frame (1) is equipped with four locking pulley components (11) in a rectangular array, and the locking pulley components (11) are connected to the base frame (1).

6. The rotating barrel structure according to claim 1, characterized in that: A handrail (3) is installed on one side of the upper end of the base frame (1), and the handrail (3) is welded to the base frame (1).