Chemical tank transportation device for chemical industry
By designing the load-bearing plate and limiting plate structure of the chemical tank transport device, the problem of the inability to quickly adjust the traditional device was solved, and flexible fixing and stable transport of tanks of different sizes were achieved.
Patent Information
- Application Number
- CN202520527859.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-03-25
AI Technical Summary
Traditional chemical tank transport equipment has difficulty in quickly adjusting its positioning structure to accommodate tanks of different sizes and specifications, resulting in inconvenience in transportation.
A chemical tank transport device was designed, including a bearing plate, a limiting plate, and an abutment structure. The tank can be adjusted and fixed by components such as sliding grooves, locking grooves, rotating screws, and clamping plates, and can adapt to various sizes and specifications.
It enables the adjustment of fixed space according to the tank size, improving the flexibility and stability of transportation and adapting to the transportation needs of tanks of various sizes.
Smart Images

Figure CN223791517U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of object conveying technology, and in particular to a chemical tank conveying device for chemical industry. Background Technology
[0002] Chemical tank transport equipment is widely used in the chemical industry to ensure the safe handling and transfer of chemical tanks. With the rapid development of the chemical industry and the continuous expansion of chemical product production scale, higher demands are placed on the efficiency and safety of chemical tank transport. Traditional chemical tank transport equipment mainly relies on simple support structures or manual trolleys, which, while improving transport convenience, also promote work efficiency and, to some extent, reduce the risks of manual operation.
[0003] Currently, to meet the needs of chemical tank transportation, the industry commonly employs various methods to ensure tank stability and ease of transport. For example, tanks are placed on transport vehicles using securing straps, or the tanks are secured at both ends using rigid components.
[0004] However, the aforementioned traditional methods generally suffer from inconvenience in adjustment, especially when dealing with chemical tanks of different sizes and specifications. They cannot quickly adjust the positioning structure to adapt to specific needs, making transportation difficult. Utility Model Content
[0005] In view of the technical problems of the prior art, this utility model provides a chemical tank transportation device for chemical industry.
[0006] To solve the above-mentioned technical problems, this utility model provides the following technical solution:
[0007] A chemical tank transport device for chemical applications includes: a support plate and a limiting plate; the limiting plate includes: a fixed plate, a sliding plate, and a fixing block; the fixed plate and the sliding plate are disposed at both ends of the support plate; the fixing block is connected to the sliding plate; sliding grooves are formed on both sides of the support plate; a sliding block is provided on one side of the fixing block; the sliding block can slide within the sliding groove; the fixing block further includes: an abutment plate; the sliding plate passes through the sliding groove; the abutment plate is disposed below the sliding block; a slot is formed on the side of the sliding block near the abutment plate; a locking block is provided on the side of the abutment plate near the sliding block; the locking block can move within the slot.
[0008] The fixing block also includes: a rotating screw, a clamping plate, and a gripping rod; the sliding block has a screw groove on the side near the contact plate; the rotating screw can rotatably extend into the screw groove; the clamping plate is connected to the rotating screw; the clamping plate is located on the side of the contact plate away from the sliding groove; the gripping rod is connected to the rotating screw.
[0009] It also includes: support rods and abutment structure; several support rods are set on the side of the fixed plate away from the bearing plate; several support rods are set on the side of the sliding plate away from the bearing plate; the two ends of the abutment structure are sleeved on the support rods; the abutment structure moves on the support rods.
[0010] The contact structure includes: a telescopic cylinder, a telescopic rod, and a sleeve block; there are two sleeve blocks; the telescopic rod can slide into the telescopic cylinder; the telescopic rod is connected to one of the sleeve blocks, and the telescopic cylinder is connected to the other sleeve block.
[0011] One sleeve is fitted onto the support rod at the fixed plate, and the other sleeve is fitted onto the support rod at the sliding plate; the line connecting the two sleeves is parallel to the sliding groove.
[0012] The contact structure also includes: a clamping screw; a fixing opening on the sleeve block; the fixing opening being larger than the cross-section of the support rod; a threaded opening on the side of the sleeve block away from the support rod at the fixing opening; the threaded opening being connected to the fixing opening; and the clamping screw being rotatably inserted into the threaded opening.
[0013] The contact structure also includes: a contact rod and a connecting rod; the contact rod is connected to the connecting rod; there are two connecting rods; one connecting rod is connected to the telescopic cylinder, and the other connecting rod is connected to the telescopic rod.
[0014] The beneficial effects of this utility model are: Attached Figure Description
[0015] Figure 1 : A schematic diagram of the structure of this utility model;
[0016] Figure 2 : A partial structural schematic diagram of this utility model;
[0017] Figure 3 : Exploded view of the fixed block;
[0018] Figure 4 : A schematic diagram of the structure when the sleeve block is connected to the support rod.
[0019] In the diagram: 1. Bearing plate; 11. Sliding groove; 2. Limiting plate; 21. Fixing plate; 22. Sliding plate; 23. Fixing block; 231. Sliding block; 2311. Slot; 2312. Screw groove; 232. Abutting plate; 2321. Locking block; 233. Rotating screw; 234. Pressing plate; 235. Holding rod; 3. Support rod; 4. Abutting structure; 41. Telescopic cylinder; 42. Telescopic rod; 43. Sleeve block; 431. Fixing port; 432. Screw port; 44. Pressing screw; 45. Abutting rod; 46. Connecting rod. Detailed Implementation
[0020] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.
[0021] according to Figure 1-4 This utility model provides a chemical tank transportation device for chemical industry, including: a bearing plate 1, a limiting plate 2, a support rod 3, and an abutment structure 4.
[0022] The limiting plate 2 includes: a fixed plate 21, a sliding plate 22, and a fixed block 23; the fixed plate 21 and the sliding plate 22 are disposed at both ends of the support plate 1; the fixed block 23 is connected to the sliding plate 22; sliding grooves 11 are opened on both sides of the support plate 1; a sliding block 231 is provided on one side of the fixed block 23; the sliding block 231 can slide within the sliding groove 11; the fixed block 23 also includes: an abutment plate 232; the sliding plate 22 passes through the sliding groove 11; the abutment plate 232 is disposed below the sliding block 231; a slot 2311 is opened on the side of the sliding block 231 near the abutment plate 232; a locking block 2321 is provided on the side of the abutment plate 232 near the sliding block 231; the locking block 2321 can move within the slot 2311. This utility model also includes side plates, which are disposed on both sides of the support plate 1 to prevent the tank from falling off the sides. The side plates are rotatable.
[0023] When the tank needs to be transported, the side plate is rotated to unfold outwards. Then, according to the size of the tank, the sliding block 231 slides within the sliding groove 11, causing the fixed block 23 to move to a certain position, and the sliding plate 22 to move to a certain position as well. Then, the contact plate 232 is inserted into the slot 2311, causing the contact plate 232 to move closer to the sliding block 231 until it abuts against the bottom of the support plate 1, thus securing the contact plate 232 to the support plate 1. This fixes the contact plate 232 to the support plate 1, thus fixing the fixed block 23 to the support plate 1, and thus fixing the sliding plate 22 to the support plate 1. The tank is placed between the fixed plate 21 and the sliding plate 22, allowing the tank placement space to be adjusted and fixed as needed, making it suitable for transporting tanks of various sizes.
[0024] The fixing block 23 also includes: a rotating screw 233, a clamping plate 234, and a gripping rod 235; the sliding block 231 has a screw groove 2312 on the side near the contact plate 232; the rotating screw 233 can rotatably extend into the screw groove 2312; the clamping plate 234 is connected to the rotating screw 233; the clamping plate 234 is located on the side of the contact plate 232 away from the sliding groove 11; the gripping rod 235 is connected to the rotating screw 233.
[0025] The fixing effect of the contact plate 232 may not be good enough by using only the locking block 2321 and the locking groove 2311. This utility model also provides a rotating screw 233 and a pressing plate 234. When it is necessary to fix the contact plate 232, rotate the handle 235 to make the rotating screw 233 rotate and screw into the screw groove 2312, so that the pressing plate 234 moves closer to the contact plate 232 and gradually presses the contact plate 232, so that the contact plate 232 is fixed better and the stability of the overall structure is guaranteed.
[0026] Several support rods 3 are arranged on the side of the fixed plate 21 away from the bearing plate 1; several support rods 3 are arranged on the side of the sliding plate 22 away from the bearing plate 1; the two ends of the abutting structure 4 are sleeved on the support rods 3; the abutting structure 4 moves on the support rods 3. The abutting structure 4 includes: a telescopic cylinder 41, a telescopic rod 42, and a sleeve block 43; there are two sleeve blocks 43; the telescopic rod 42 can slide into the telescopic cylinder 41; the telescopic rod 42 is connected to one of the sleeve blocks 43, and the telescopic cylinder 41 is connected to the other sleeve block 43. One sleeve block 43 is sleeved on the support rod 3 at the fixed plate 21, and the other sleeve block 43 is sleeved on the support rod 3 at the sliding plate 22; the line connecting the two sleeve blocks 43 is parallel to the sliding groove 11. The contact structure 4 also includes: a clamping screw 44; a fixing opening 431 on the sleeve block 43; the fixing opening 431 is larger than the cross-section of the support rod 3; a threaded opening 432 is opened on the side of the fixing opening 431 away from the support rod 3 on the sleeve block 43; the threaded opening 432 is connected to the fixing opening 431; the clamping screw 44 can rotatably extend into the threaded opening 432. The contact structure 4 also includes: a contact rod 45 and a connecting rod 46; the contact rod 45 is connected to the connecting rod 46; there are two connecting rods 46; one connecting rod 46 is connected to the telescopic cylinder 41, and the other connecting rod 46 is connected to the telescopic rod 42.
[0027] Sometimes, multiple tanks need to be transported, which may require stacking them. Without restraint at the top, the tanks could wobble and fall off. The abutment rod 45 of this invention abuts against the tank to limit its position. When limiting is needed, the telescopic cylinder 41 and telescopic rod 42 are moved according to the position of the tank, causing the sleeve block 43 to move along the support rod 3 until the telescopic cylinder 41 and telescopic rod 42 reach a certain position. As the telescopic cylinder 41 and telescopic rod 42 move, they drive the connecting rod 46 to move, causing the abutment rod 45 to move to the appropriate position, thus limiting the tank's position. The telescopic rod 42 can slide into the telescopic cylinder 41, allowing the abutment structure 4 to be adjusted according to the positions of the fixed plate 21 and the sliding plate 22, avoiding interference. The sleeve block 43 has a fixing opening 431 larger than the cross-section of the support rod 3, making it easier for the sleeve block 43 to move on the support rod 3. Simultaneously, a threaded opening 432 is also provided on one side of the fixing opening 431, allowing the clamping screw 44 to be screwed into the threaded opening 432 to abut against the support rod 3, thus securing the support rod 3 and the sleeve block 43 together. This allows the abutting structure 4 to be fixed to the support rod 3 at any position, making it adaptable to tanks of various sizes and widely applicable. The abutting rod 45 is also composed of a movable sleeve block and rod, facilitating adjustment along with the telescopic cylinder 41 and the telescopic rod 42 to prevent interference.
[0028] Working principle and usage process of this utility model:
[0029] When the tank needs to be transported, first rotate the side plate to unfold it outwards. Then, according to the size of the tank, slide the sliding block 231 in the sliding groove 11, causing the fixed block 23 to move to a certain position and the sliding plate 22 to move to a certain position. Then, rotate the handle 235 to rotate the screw 233 and screw it into the screw groove 2312, causing the pressure plate 234 to move closer to the contact plate 232. The pressure plate 234 gradually presses the contact plate 232, causing the locking block 2321 of the contact plate 232 to extend into the locking groove 2311 of the sliding block 231, while simultaneously causing the contact plate 232 to move into the groove 2311 of the sliding block 231. Plate 232 abuts against the bearing plate 1, so that the abutting plate 232 is pressed tightly, and the fixing block 23 and the sliding plate 22 are fixed. Then, the tank is placed between the fixing plate 21 and the sliding plate 22 as required. Then, the telescopic cylinder 41 and the telescopic rod 42 are moved so that they approach the tank until they abut against the tank. Then, the clamping screw 44 is screwed into the screw hole 432 of the sleeve block 43 so that the clamping screw 44 enters the fixing hole 431 and abuts against the support rod 3, so that the support rod 3 and the sleeve block 43 are pressed tightly, so that the abutting structure 4 is fixed. Then, the side plate is restored to its position and fixed, and transportation can begin.
[0030] In summary, this utility model, by providing a fixed plate and a movable plate, with the movable plate connected to the fixed block, allows the fixed block to move on the bearing plate, thereby enabling the movable plate to be moved. This changes the space between the fixed plate and the movable plate, allowing for adjustments based on the size of the tank to accommodate tanks of various sizes.
[0031] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.
Claims
1. A chemical tank body transport device for chemical industry, characterized in that: Include: Bearing plate (1), limit plate (2); The limit plate (2) comprises: fixed plate (21), sliding plate (22), fixed block (23); The fixed plate (21) and the sliding plate (22) are arranged at both ends of the bearing plate (1); The fixed block (23) is connected with the sliding plate (22); Both sides of the bearing plate (1) are provided with sliding grooves (11); One side of the fixed block (23) is provided with a sliding block (231); The sliding block (231) can slide in the sliding groove (11); The fixed block (23) further comprises: a resisting plate (232); The sliding plate (22) passes through the sliding groove (11); The resisting plate (232) is arranged below the sliding block (231); One side of the sliding block (231) close to the resisting plate (232) is provided with a clamping groove (2311); One side of the resisting plate (232) close to the sliding block (231) is provided with a clamping block (2321); The clamping block (2321) can move in the clamping groove (2311).
2. The chemical tank transportation device for chemical industry according to claim 1, wherein: The fixed block (23) further comprises: a rotating screw (233), a pressing plate (234), and a handle (235); One side of the sliding block (231) close to the resisting plate (232) is provided with a screw groove (2312); The rotating screw (233) can rotate and extend into the screw groove (2312); The pressing plate (234) is connected with the rotating screw (233); The pressing plate (234) is arranged on the side of the resisting plate (232) away from the sliding groove (11); and the handle (235) is connected with the rotating screw (233).
3. The chemical tank transportation device for chemical industry according to claim 1, further comprising: Supporting rods (3) and a resisting structure (4); A plurality of supporting rods (3) are arranged on the side of the fixed plate (21) away from the bearing plate (1); A plurality of supporting rods (3) are arranged on the side of the sliding plate (22) away from the bearing plate (1); The resisting structure (4) is sleeved on the supporting rods (3) at both ends; The resisting structure (4) moves on the supporting rods (3).
4. The chemical tank transportation device for chemical industry according to claim 3, wherein: The resisting structure (4) comprises: a telescopic cylinder (41), a telescopic rod (42), and a sleeve block (43); The number of sleeve blocks (43) is two; The telescopic rod (42) can slide into the telescopic cylinder (41); The telescopic rod (42) is connected with one of the sleeve blocks (43), and the telescopic cylinder (41) is connected with the other sleeve block (43).
5. The chemical tank transportation device for chemical industry according to claim 4, wherein: One of the sleeve blocks (43) is sleeved on the supporting rod (3) at the fixed plate (21), and the other sleeve block (43) is sleeved on the supporting rod (3) at the sliding plate (22). The connecting lines of the two sleeve blocks (43) are parallel to the sliding groove (11).
6. The chemical tank transportation device according to claim 4, wherein: The abutting structure (4) further comprises a pressing screw (44); The sleeve block (43) is provided with a fixing hole (431); The fixing hole (431) is larger than the cross section of the supporting rod (3); The sleeve block (43) is provided with a screw hole (432) on the side away from the supporting rod (3) of the fixing hole (431); The screw hole (432) is in communication with the fixing hole (431); The pressing screw (44) is rotatably inserted into the screw hole (432).
7. The chemical tank transportation device according to claim 6, wherein: The abutting structure (4) further comprises an abutting rod (45) and a connecting rod (46); The abutting rod (45) is connected with the connecting rod (46); The number of the connecting rods (46) is two; One of the connecting rods (46) is connected with the telescopic cylinder (41), and the other connecting rod (46) is connected with the telescopic rod (42).