Oil drum rotating equipment
By introducing a limiting mechanism and an elastic buffer component into the oil drum rotating device, the problem of axial displacement of the oil drum during rotation is solved, achieving stable operation of the equipment and reducing noise.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- STARLIGHT NEW CHEM MATERIALS
- Filing Date
- 2025-05-15
- Publication Date
- 2026-04-17
AI Technical Summary
The existing oil drum rotating equipment lacks a limiting structure, which makes the oil drum prone to axial displacement during rotation, potentially leading to it falling off or colliding.
An oil drum rotation device is designed, which uses first and second limiting mechanisms to limit the axial direction of the oil drum and is equipped with an elastic buffer assembly to reduce rigid contact. The device includes a support, axle, limiting wheel and elastic buffer assembly to prevent excessive displacement of the oil drum during rotation.
It effectively prevents oil drums from falling off or colliding during rotation, improves equipment stability, reduces vibration and noise, and extends equipment service life.
Smart Images

Figure CN224127090U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of mixing equipment, and specifically relates to an oil drum rotating device. Background Technology
[0002] When mixing materials in an oil drum, the drum needs to be rotated to improve mixing efficiency. In existing technology, an oil drum rotator is typically used to drive the drum's rotation. This rotator usually consists of two parallel, horizontally placed shafts, one of which is connected to a rotary drive motor. After the oil drum is placed horizontally on the two shafts, the motor drives the shafts to rotate, thus rotating the drum. While existing equipment can effectively rotate the oil drum, the lack of an axial restraint structure makes it prone to axial displacement during rotation. This can lead to the oil drum detaching from the equipment or colliding with it. Utility Model Content
[0003] To overcome the shortcomings and problems of existing technologies and to solve the problem that excessive axial displacement of oil drums is easily generated during rotation due to the lack of limiting structure in existing equipment, this utility model provides an oil drum rotation device.
[0004] This utility model is achieved through the following technical solution:
[0005] An oil drum rotating device includes a frame and a body mounted on the frame. A first rotating shaft and a second rotating shaft are provided on one side of the body. A first limiting mechanism is provided between one end of the first rotating shaft and the second rotating shaft, and a second limiting mechanism is provided between the other ends of the first rotating shaft and the second rotating shaft. The first rotating shaft is also connected to a rotating drive device. The first limiting mechanism is hinged to the body. The body is also provided with a fixing mechanism for fixing the first limiting mechanism.
[0006] Both the first limiting mechanism and the second limiting mechanism include a support member, the support member is connected to an axle, the axle is provided with a limiting wheel, and an elastic buffer component is also provided between the support member and the axle.
[0007] The support component of the first limiting mechanism is hinged to the frame.
[0008] The elastic buffer assembly includes an upper connector and a lower connector. Both the upper connector and the lower connector are provided with a movable rod on the side near the support. A spring is sleeved on the movable rod. The end of the movable rod passes through the support and is connected to an anti-detachment component. The spring is located between the support and the upper connector and between the support and the lower connector. The axle is located between the upper connector and the lower connector.
[0009] The fixing mechanism includes a connecting shaft and a locking block. The connecting shaft and the locking block are both mounted on the frame and are located on both sides of the first limiting mechanism. The locking block has a locking groove, and the connecting shaft is connected to a locking element. The locking element is locked into the locking groove by rotation.
[0010] The rotary drive device is a rotary drive motor.
[0011] The beneficial effects of this utility model are as follows:
[0012] The first and second limiting mechanisms in this invention can limit the axial direction of the oil drum, effectively preventing the oil drum from falling off the equipment or colliding with the equipment due to excessive axial displacement during the rotation of the oil drum.
[0013] The elastic buffer component in this invention prevents the oil drum from making rigid contact with the limiting wheel when axial movement occurs. Because the oil drum is large and heavy, the elastic buffer component reduces the impact of the oil drum on the first and second limiting mechanisms, improving the stability of equipment operation while reducing vibration and noise. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0015] Figure 2 This is a schematic diagram of the second limiting mechanism of this utility model;
[0016] Figure 3 This is a schematic diagram of the second limiting mechanism of this utility model;
[0017] Figure 4 This is a schematic diagram of the fixing mechanism of this utility model;
[0018] Figure 5 This is a schematic diagram of the fixing mechanism of this utility model.
[0019] In the diagram: 100-Frame, 200-Body, 210-First rotating shaft, 220-Second rotating shaft, 230-Rotation drive device, 300-First limiting mechanism, 400-Second limiting mechanism, 410-Support component, 420-Axle, 421-Limiting wheel, 430-Elastic buffer assembly, 431-Upper connector, 432-Lower connector, 433-Moving rod, 434-Spring, 435-Anti-detachment component, 500-Fixing mechanism, 510-Connecting rotating shaft, 520-Card block, 521-Card slot, 530-Card component. Detailed Implementation
[0020] To facilitate understanding by those skilled in the art, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0021] like Figure 1 As shown, an oil drum rotating device includes a frame 100 and a body 200 mounted on the frame 100. A first rotating shaft 210 and a second rotating shaft 220 are provided on one side of the body 200. The first rotating shaft 210 and the second rotating shaft 220 together support the oil drum. The first rotating shaft 210 is connected to a rotary drive device 230, which is a rotary drive motor. When the rotary drive motor drives the first rotating shaft 210 to rotate, the first rotating shaft 210 can drive the oil drum to rotate. A first limiting mechanism 300 is provided between one end of the first rotating shaft 210 and the second rotating shaft 220, and a second limiting mechanism 400 is provided between the other ends of the first rotating shaft 210 and the second rotating shaft 220. The first limiting mechanism 300 and the second limiting mechanism 400 together limit the axial direction of the oil drum, preventing excessive axial displacement of the oil drum during rotation, which could lead to it falling off the device or colliding with it.
[0022] like Figure 2 , 3 As shown, both the first limiting mechanism 300 and the second limiting mechanism 400 include a support member 410. The support member 410 is connected to an axle 420, and a limiting wheel 421 is provided on the axle 420. During the operation of the equipment, if the oil drum undergoes axial displacement, it will come into contact with the limiting wheel 421, causing the limiting wheel 421 to rotate and prevent friction with the oil drum. The support member 410 is used to support the limiting wheel 421 and other components. An elastic buffer assembly 430 is also provided between the support member 410 and the axle 420. The elastic buffer assembly 430 is used to prevent the oil drum from making rigid contact with the limiting wheel 421, reducing the impact of the oil drum on the first limiting mechanism 300 and the second limiting mechanism 400, while also reducing noise and vibration, and improving the durability and stability of the equipment.
[0023] like Figure 2 , 3As shown, the elastic buffer assembly 430 includes an upper connector 431 and a lower connector 432, which are used to connect an axle 420. The axle 420 is located between the upper connector 431 and the lower connector 432. Each of the upper connector 431 and the lower connector 432 has a movable rod 433 on the side near the support member 410. A spring 434 is sleeved on the movable rod 433. The end of the movable rod 433 passes through the support member 410 and is connected to an anti-detachment member 435. The spring 434 is located between the support member 410 and the upper connector 431, and between the support member 410 and the lower connector 432. When the limiting wheel 421 is pressed by the oil drum, the limiting wheel 421 applies pressure to the upper connecting member 431 and the lower connecting member 432 through the wheel axle 420. The upper connecting member 431 and the lower connecting member 432 are pressed against the support member 410. During this process, the spring 434 provides elastic buffering performance for the upper connecting member 431 and the lower connecting member 432, while the movable rod 433 connects the upper connecting member 431 and the lower connecting member 432 to the support member 410 and guides the movement direction of the upper connecting member 431 and the lower connecting member 432. The anti-detachment member 435 can prevent the movable rod 433 from detaching from the support member 410.
[0024] like Figure 4 , 5 As shown, the support member 410 of the first limiting mechanism 300 is hinged to the frame 100. When placing or removing the oil drum on the equipment, the first limiting mechanism 300 is flipped to one side of the machine body 200 to facilitate the operation. The body 200 is also provided with a fixing mechanism 500 for fixing the first limiting mechanism 300. The fixing mechanism 500 includes a connecting shaft 510 and a locking block 520. The connecting shaft 510 and the locking block 520 are both provided on the frame 100 and are located on both sides of the first limiting mechanism 300. The locking block 520 is provided with a locking groove 521. The connecting shaft 510 is connected to a locking member 530. The locking member 530 is locked in the locking groove 521 by rotation. When it is necessary to keep the first limiting mechanism 300 in a limited state, the locking member 530 is locked into the locking groove 521. The locking member 530 can prevent the first limiting mechanism 300 from flipping and realize the fixing of the first limiting mechanism 300. When it is necessary to flip the first limiting mechanism 300, the locking member 530 can be opened.
[0025] Working process: When using the equipment, place the oil drum horizontally on the first rotating shaft 210 and the second rotating shaft 220. Then, start the rotary drive device 230, which drives the first rotating shaft 210 to rotate, thereby rotating the oil drum and mixing the materials inside. During the rotation of the oil drum, the first limiting mechanism 300 and the second limiting mechanism 400 limit the axial ends of the oil drum, effectively preventing excessive axial displacement. When the oil drum comes into contact with the first limiting mechanism 300 and the second limiting mechanism 400, the elastic buffer mechanism 430 provides a certain buffer space for the limiting wheel 421, avoiding rigid contact between the oil drum and the first limiting mechanism 300 and the second limiting mechanism 400, reducing the possibility of equipment damage, and also reducing the vibration and noise generated when the oil drum contacts the limiting wheel 421. When picking up or placing oil drums, open the locking piece 530 of the fixing mechanism 500, and then flip the first limiting mechanism 300 to one side of the frame 100. This can prevent the first limiting mechanism 300 from obstructing the picking up or placing of oil drums. When the equipment is working, flip the first limiting mechanism 300 onto the frame 100 and connect the locking piece 530 to the slot 521. The first limiting mechanism 300 is limited by the locking piece 530 and will not flip, so the equipment can work normally.
[0026] The above embodiments are preferred implementations of this utility model and are not intended to limit this utility model. Any obvious substitutions are within the protection scope of this utility model without departing from its inventive concept.
Claims
1. A drum rotating apparatus comprising a frame (100) and a machine body (200) provided on the frame (100), characterized in that: The body (200) has a first rotating shaft (210) and a second rotating shaft (220) on one side. A first limiting mechanism (300) is provided between one end of the first rotating shaft (210) and the second rotating shaft (220). A second limiting mechanism (400) is provided between the other ends of the first rotating shaft (210) and the second rotating shaft (220). The first rotating shaft (210) is also connected to a rotary drive device (230). The first limiting mechanism (300) is hinged to the body (200). The body (200) is also provided with a fixing mechanism (500) for fixing the first limiting mechanism (300).
2. A drum rotating apparatus according to claim 1, characterized by: The first limiting mechanism (300) and the second limiting mechanism (400) both include a support member (410), the support member (410) is connected to a wheel axle (420), the wheel axle (420) is provided with a limiting wheel (421), and an elastic buffer assembly (430) is also provided between the support member (410) and the wheel axle (420).
3. A drum rotating apparatus according to claim 2, wherein: The support member (410) of the first limiting mechanism (300) is hinged to the frame (100).
4. A drum rotating apparatus according to claim 3, wherein: The elastic buffer assembly (430) includes an upper connector (431) and a lower connector (432). Both the upper connector (431) and the lower connector (432) are provided with a movable rod (433) on the side near the support member (410). A spring (434) is sleeved on the movable rod (433). The end of the movable rod (433) passes through the support member (410) and is connected to an anti-detachment member (435). The spring (434) is located between the support member (410) and the upper connector (431) and between the support member (410) and the lower connector (432). The axle (420) is located between the upper connector (431) and the lower connector (432).
5. A drum rotating apparatus according to claim 1, characterized by: The fixing mechanism (500) includes a connecting shaft (510) and a locking block (520). The connecting shaft (510) and the locking block (520) are both mounted on the frame (100) and are located on both sides of the first limiting mechanism (300). The locking block (520) is provided with a locking groove (521). The connecting shaft (510) is connected to a locking member (530). The locking member (530) is locked in the locking groove (521) by rotation.
6. A drum rotating apparatus according to any one of claims 1 to 5, wherein: The rotary drive device (230) is a rotary drive motor.