Universal transfer tool combination for rubber barrel body

By combining lifting tools and transfer frames, the problem of wear and deformation of large-sized rubber cylinders during lifting and transfer was solved, achieving an efficient and safe transfer process and improving loading and unloading efficiency and quality.

CN223973035UInactive Publication Date: 2026-03-06CHONGQING QIANWEI SCI & TECH GRP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2026-03-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Large-sized rubber cylinders are prone to surface wear during hoisting and transportation, and transportation is inconvenient. Existing technologies cannot guarantee the quality and efficiency of transportation.

Method used

The tool combination includes a lifting device and a transfer frame. The lifting device is connected to the rubber cylinder through the connecting part and fixed by the fixing part and the support plate. Combined with the upper and lower frames, a stable transfer structure is formed to ensure that the rubber cylinder is fixed in posture during the transfer process and reduce the probability of deformation.

Benefits of technology

It improves the efficiency of loading and unloading rubber cylinders, reduces the risk of wear, has good versatility in specifications and safety, and ensures the quality of transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a general transfer tool combination for rubber barrels, which comprises a lifting appliance and a transfer frame, the lifting appliance comprises a connecting part and a fixing part connected with the connecting part into a whole, and the fixing part is provided with an axial lifting connecting hole; the transfer frame comprises an upper frame and a lower frame which are in up-and-down close fit, the lower frame comprises a lower frame body and a bearing groove supported on the lower frame body, the upper frame comprises an upper frame body and an upper covering groove, and the bearing groove and the upper covering groove define a cylindrical space matched with a rubber barrel body; the bearing groove is provided with at least two supporting plates, a plurality of sets of positioning holes distributed in the length direction of the bearing groove are formed in the bearing groove, the supporting plates can be fixed in the bearing groove through the positioning holes, and the supporting plates are provided with positioning structures matched with the fixing parts. Meanwhile, through cooperation of the special lifting appliance and the transfer frame, the transfer loading and unloading efficiency of the rubber barrel can be improved, meanwhile, damage to the rubber barrel in the transfer process can be reduced or avoided, and the transfer and storage quality of the rubber barrel can be guaranteed.
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Description

Technical Field

[0001] This utility model belongs to the field of special object transport tools, specifically relating to a universal transfer tool assembly for rubber cylinders. Background Technology

[0002] Gel products are widely used in various fields due to their high elasticity and lightweight properties. In certain specialized fields, gels are used to manufacture large-sized gel cylinders, typically exceeding two meters in length and half a meter in diameter. The applicant's research revealed that using traditional hoisting and transport tools for such cylinders can easily cause surface wear during operation, thus affecting surface quality. Therefore, ensuring the quality and efficiency of transporting these products is a pressing issue that needs to be addressed. Utility Model Content

[0003] In view of this, the present invention provides a universal transfer tool assembly for rubber cylinders to solve the problems in the prior art, such as the inconvenience of lifting and transferring large-sized rubber cylinders and the easy deformation during the transfer process.

[0004] The technical solution is as follows:

[0005] A universal transfer tool assembly for rubber tubes, the key feature of which is that it includes:

[0006] The lifting device includes a connecting part for connecting to a rubber cylinder body, and a fixing part integrally connected to the connecting part, the fixing part having an axial lifting connection hole;

[0007] The transfer frame includes an upper frame and a lower frame that fit together tightly. The lower frame includes a lower frame and a receiving groove supported on the lower frame. The upper frame includes an upper frame and an upper cover groove. The receiving groove and the upper cover groove together form a cylindrical space that is adapted to the rubber cylinder body.

[0008] The receiving groove is equipped with at least two support plates, and the receiving groove has multiple sets of positioning holes distributed along its length. The support plates can be fixed in the receiving groove through the positioning holes, and the support plates have positioning structures that cooperate with the fixing part.

[0009] Using the above solution, the rubber cylinder is connected and fixed to the lifting device during use. Then, it is lifted as a whole and placed on the lower frame using lifting power. The fixing part and support plate are used to fix it in place. Finally, the upper frame and lower frame are tightly fitted together. At this time, the rubber cylinder is relatively fixed in the position of the transfer frame. This will not cause wear to the rubber cylinder when it is moved by the transfer frame, and it can effectively support it throughout the process, greatly reducing the probability of deformation. After the transfer reaches the destination, the upper frame can be removed, and the rubber cylinder can be quickly lifted out by the lifting device, which improves the loading and unloading efficiency. The support plate and positioning hole structure can adapt to products of various lengths and specifications, and has better versatility.

[0010] Preferably, the support plate is a fan-shaped plate structure adapted to the receiving groove, with a fixing groove at its center. The fixing part is adapted to the fixing groove and is fixedly connected to the support plate by a clamping block. This design improves the stability and reliability of the lifting equipment, preventing deformation caused by lifting skewing.

[0011] Preferably, the connecting part is disc-shaped, the fixing part protrudes along the axial direction of the connecting part, the fixing part has a lifting part extending radially therefrom, and the end of the lifting part has a radial lifting connection hole. This design can meet the lifting requirements of various forms and spaces, offering better versatility and adaptability.

[0012] Preferably, the support plate has fixing holes that correspond one-to-one with the positioning holes. The direction of the fixing holes is perpendicular to the extension direction of the lifting part. A pad is provided on the outer side of the receiving groove corresponding to the position of the positioning hole. The fixing screw passes through the pad and the receiving groove in sequence and then connects to the fixing hole. The inner side of the pad is an arc surface adapted to the receiving groove. This design better ensures the support plate's stability.

[0013] Preferably, both the lower and upper frames have positioning posts at their top four corners and positioning holes at their bottom four corners that correspond to the positioning posts. This design facilitates the stacking of the transfer frame, saves stacking space, and prevents tipping or sliding during storage and transfer.

[0014] Preferably, the positioning column has an integral lifting connection screw hole. Using the above solution, lifting rings and other components can be quickly connected via the integral lifting connection screw hole, facilitating rapid overall lifting. The positioning column is multi-functional, simplifying the structure and making implementation easier.

[0015] Preferably, the lower frame has side supports at both ends, with intermediate supports evenly distributed between the two side supports. The receiving groove is supported on the intermediate supports, and the side supports at least partially cover the ends of the receiving groove. The receiving groove also has notches for the fixing part to be exposed. This design improves the support strength of the receiving groove and the overall stability of the lower frame. Furthermore, the side supports provide end coverage, preventing the end from slipping out even if the support plate detaches, thus ensuring its safety and reliability.

[0016] Preferably, both the lower and upper frames include two axially symmetrically arranged trusses, each truss comprising at least two vertically aligned square tubes, with the uppermost and lowermost tubes having corresponding tight-fitting holes. This design improves the support strength of the upper and lower frames, as well as their stability when stacked.

[0017] Preferably, both the inner sides of the receiving groove and the upper covering groove are coated with a flexible non-stick material. This approach further reduces wear on the surface of the rubber cartridge and effectively prevents adhesion caused by long-term storage.

[0018] Preferably, the multiple sets of positioning holes are symmetrically arranged relative to the central radial section of the receiving groove. This design ensures the centering of the rubber cylinder within the receiving groove, thereby guaranteeing hoisting stability and safety and preventing skewing.

[0019] Compared with the prior art, the beneficial effects of this utility model are:

[0020] The universal transfer tool combination for rubber cylinders provided by this utility model has good versatility in specifications. At the same time, by cooperating with special lifting tools and transfer frames, it can not only improve the efficiency of transfer and unloading of rubber cylinders, but also reduce the damage to the rubber cylinders during the transfer process, which is conducive to ensuring the quality of transfer and storage. Attached Figure Description

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

[0022] Figure 2 for Figure 1 Sectional view;

[0023] Figure 3 for Figure 1 Bottom view;

[0024] Figure 4 for Figure 1 Side view;

[0025] Figure 5 This is a schematic diagram of the lower frame structure;

[0026] Figure 6 This is a schematic diagram of the support plate structure;

[0027] Figure 7 This is a sectional view of the support plate;

[0028] Figure 8 This is a schematic diagram of the lower frame structure (excluding the side supports);

[0029] Figure 9 for Figure 8 Side view;

[0030] Figure 10 This is a schematic diagram of the inner structure of the lifting device;

[0031] Figure 11 This is a schematic diagram of the outer structure of the lifting device;

[0032] Figure 12 for Figure 11 Axonometric drawing;

[0033] Figure 13 This is a schematic diagram of the upper frame structure;

[0034] Figure 14 for Figure 13 Axonometric drawing. Detailed Implementation

[0035] The present invention will now be described in further detail with reference to the accompanying drawings.

[0036] refer to Figures 1 to 14 The universal transfer tool assembly for rubber cylinders shown in this application has a generally cylindrical structure for the rubber cylinder 600, which is usually more than two meters long and more than half a meter in diameter. The tool assembly mainly includes a lifting device 100 and a transfer frame 200. The lifting device includes a connecting part 110 for connecting with the rubber cylinder and a fixing part 120 integrated with the connecting part 110. The fixing part 120 has an axial lifting connection hole 121, and the connecting part 110 has a connecting screw hole corresponding to the rubber cylinder.

[0037] The transfer frame 200 includes an upper frame 400 and a lower frame 300 that fit together tightly. The lower frame 300 includes a lower frame 310 and a receiving groove 320 supported on the lower frame 310. The upper frame 400 includes an upper frame 410 and an upper covering groove 420. Both the receiving groove 320 and the upper covering groove 420 have arc-shaped cross sections. Together, they form a cylindrical space that adapts to the rubber cylinder 600, thereby circumferentially covering the rubber cylinder 600.

[0038] In this application, the receiving groove 320 is provided with at least two support plates 500. The receiving groove 320 has multiple sets of positioning holes 321 distributed along its length direction. The support plates 500 can be fixed in the receiving groove 320 through the positioning holes 321. The support plates 500 have positioning structures that cooperate with the fixing part 120.

[0039] For details, please refer to the following: Figure 6 and Figure 7 The support plate 500 is a fan-shaped plate structure adapted to the receiving groove 320. It has a fixing groove 510 at its center. The fixing part 120 is adapted to the fixing groove 510 and can be fixedly connected to the support plate 500 by the clamping block 520, as shown in the figure. In order to improve its installation stability, when the fixing part 120 is inserted into the fixing groove 510, it will be higher than the upper surface of the support plate 500. Therefore, in this embodiment, the clamping block 520 adopts a Z-shaped structure.

[0040] Furthermore, in this embodiment, the connecting part 110 is disc-shaped, the fixing part 120 protrudes along the axial direction of the connecting part 110, the fixing part 120 has a lifting part 130 extending radially thereon, the top of the lifting part 130 has a radial lifting connection hole 131, and the connecting part 110 and the fixing part 120 are connected in a detachable manner, a shoulder 122 is formed between the connecting part 110 and the fixing part 120, and the upper end of the pressing block 520 just presses on the shoulder 122.

[0041] The support plate 500 has fixing holes 530 that correspond one-to-one with the positioning holes 321. The direction of the fixing holes 530 is perpendicular to the extension direction of the lifting part 130. In other words, the axial direction of the fixing holes 530 is parallel to the upper surface of the receiving groove 320. The outer side of the receiving groove 320 has a pad 322 corresponding to the position of the positioning hole 321. The fixing screw 323 passes through the pad 322 and the receiving groove 320 in sequence and then connects to the fixing hole 530. The inner side of the pad 322 is an arc surface that is adapted to the receiving groove 320.

[0042] To improve the ease of installation and stability of the support plate 500, the main body of the support plate 500 adopts a hollow structure with evenly distributed weight-reducing grooves. At the same time, the positioning holes 321 are symmetrically arranged with respect to the middle axis section of the receiving groove 320, that is, the positioning holes 321 are located on both sides of the receiving groove 320 and close to the top, which is more conducive to single-person assembly operation.

[0043] In addition, in this embodiment, multiple sets of positioning holes 321 are symmetrically arranged relative to the middle radial section of the receiving groove 320, that is, the two support plates can be symmetrically installed in the receiving groove 320 to ensure that after the rubber cylinder is fixed, the distance from its two ends to the corresponding end of the receiving groove is the same, which can ensure the overall stability and reduce the risk of hoisting.

[0044] To facilitate stacking and storage, and to prevent slippage, both the lower frame 310 and the upper frame 410 have positioning posts 210 at their top corners and positioning holes 220 at their bottom corners that correspond to the positioning posts 210. This ensures that during stacking, the positioning holes 220 at the bottom corners of the lower frame 310 can be inserted precisely into the corresponding positioning posts 210 at the corners of the upper frame 410. Furthermore, the positioning posts 210 have integral lifting connection screw holes 211.

[0045] In this application, the lower frame 310 and the upper frame 410 have largely the same structure, both including two axially symmetrically arranged trusses 230. The truss 230 includes at least two vertically aligned longitudinal square tubes 231, with the uppermost and lowermost longitudinal square tubes 231 having corresponding tight-fitting holes 232. To improve the connection strength, reinforcing blocks 240 are usually provided on the longitudinal square tubes 231 at the positions corresponding to the tight-fitting holes 232. In this way, when the lower frame 310 and the upper frame 410 are connected, the strength of the bolt connection can be effectively guaranteed.

[0046] The lower frame 310 has side supports 311 at both ends, and a middle support 312 is evenly distributed between the two side supports 311. The receiving groove 320 is supported on the middle support 312. The side supports 311 at least partially cover the end of the receiving groove 320, and the receiving groove 320 has a notch 313 for the fixing part 120 to be exposed.

[0047] On the other hand, the bottom of the lower frame 300 has two horizontal square tubes 330 arranged symmetrically with respect to its center. During the transfer process, the forklift can be directly inserted into the horizontal square tubes 330 to achieve rapid on-site transfer.

[0048] In addition, the inner sides of both the receiving groove 320 and the overlying groove 420 are coated with a flexible, non-sticky material similar to felt.

[0049] Finally, it should be noted that the above description is merely a preferred embodiment of the present utility model. Those skilled in the art, under the guidance of the present utility model, can make various similar representations without departing from the spirit and claims of the present utility model, and such modifications all fall within the protection scope of the present utility model.

Claims

1. A universal transfer tool set for a rubber tube, characterized by, The utility model relates to a kind of hoist (100) and transport frame (200), hoist (100) includes the connecting portion (110) for being connected with rubber cylinder body, and the fixed part (120) is integrated with the connecting portion (110), the fixed part (120) has axial hoisting connecting hole (121);Transport frame (200) includes upper and lower tight cooperation upper frame (400) and lower frame (300), wherein lower frame (300) includes lower frame body (310) and the receiving groove (320) supported on the lower frame body (310), upper frame (400) includes upper frame body (410) and upper cover groove (420), the receiving groove (320) and upper cover groove (420) are enclosed to form the cylindrical space adapted to the rubber cylinder body;The receiving groove (320) is provided with at least two support plates (500), the receiving groove (320) has multiple groups of positioning holes (321) distributed along its length direction, the support plate (500) can be fixed in the receiving groove (320) by positioning hole (321), and the support plate (500) has the positioning structure matched with the fixed part (120). The support plate (500) is fan-shaped plate structure adapted to the receiving groove (320), and the fixed groove (510) is in the center position of the support plate (500), the fixed part (120) is adapted to the fixed groove (510), and the support plate (500) is fixedly connected by the pressing block (520). The connecting portion (110) is disc-shaped, the fixed part (120) is protruded along the axial direction of the connecting portion (110), and the fixed part (120) has the hoisting part (130) extending along its radial direction, and the end of the hoisting part (130) has the radial hoisting connecting hole (131). The support plate (500) has the fixed hole (530) corresponding to the positioning hole (321), the direction of the fixed hole (530) is perpendicular to the extension direction of the hoisting part (130), the outside of the receiving groove (320) has the gasket (322) corresponding to the position of the positioning hole (321), the fixed screw (323) is sequentially connected with the fixed hole (530) after passing through the gasket (322) and the receiving groove (320), and the inside of the gasket (322) is arc surface adapted to the receiving groove (320).

2. The universal transfer tool combination of claim 1, wherein: The positioning column (210) has the integral hoisting connecting screw hole (211).

3. The universal transfer tool combination of claim 1 or 2, wherein: The lower frame body (310) has the side support (311) at both ends, the intermediate support (312) is uniformly distributed between the two side supports (311), the receiving groove (320) is supported on the intermediate support (312), the side support (311) at least shields the end of the receiving groove (320), and the receiving groove (320) has the notch (313) for exposing the fixed part (120).

4. The universal transfer tool combination of claim 3, wherein: ​ 5. The universal transfer tool combination of claim 1 or 2, wherein: ​ 6. The universal transfer tool combination of claim 5, wherein: ​ 7. The universal transfer tool combination of claim 1 or 2, wherein: ​ 8. The universal transfer tool combination of claim 7, wherein: The lower frame (310) and the upper frame (410) each comprise two axially symmetrically arranged trusses (230), and each truss (230) comprises at least two vertically arranged longitudinal square tubes (231), wherein the uppermost and lowermost longitudinal square tubes (231) are provided with a corresponding tight-fit hole (232).

9. The universal transfer tool combination of claim 1 or 2, wherein: The inner side of the receiving groove (320) and the overlying groove (420) is attached with a flexible non-stick substance.

10. The universal transfer tool combination of claim 1 or 2, wherein: A plurality of positioning holes (321) are symmetrically arranged with respect to the middle radial section of the receiving groove (320).

Citation Information

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