Ultrahigh pipeline hoisting device

By designing a device for lifting ultra-high pipes, the combination of lifting belt and wire rope, combined with a hoist and dynamic warning light, the problem of difficulty in lifting the duct in the design of super-large deep and super-large open pipelines is solved, and convenient, efficient and safe pipeline installation is achieved.

CN222989527UActive Publication Date: 2025-06-17CHINA CONSTR SECOND ENG BUREAU LTD
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Patent Information

Application Number
CN202421991864.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-06-17
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

The prior art is difficult to meet the pipeline design requirements of super-large depth and super-large openings, especially when lifting air ducts, there is a problem of excessive height affecting convenience.

Method used

A super-high pipe lifting device is designed to wrap and fix the air duct through the lifting belt, connect it with the lifting belt by using a steel wire rope, and wind the wire rope through a winch to achieve lifting and installation of the air duct. The overall structure of the device is easy to operate, can be reused and convenient to install, and can adapt to the pipeline installation needs of super-large depth and super-large space.

Benefits of technology

It realizes convenient improvement and installation of air ducts, adapts to the needs of super-large depth and super-large space, improves lifting efficiency and safety, and improves operational safety through dynamic warning lights.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an ultrahigh pipeline hoisting device, and particularly relates to the technical field of pipeline hoisting. The hoisting assembly comprises two winches mounted at the top of the structural plate, a steel wire rope provided with a lifting hook is wound outside each winch, the bottom end of each steel wire rope penetrates through the structural plate and extends to the bottom of the structural plate, and a hoisting belt used for fixing an air pipe is mounted at the bottom end of each steel wire rope; a functional assembly used for enhancing the warning effect and safety is arranged outside the steel wire rope. The air pipe is wound and fixed through the lifting belt, then the steel wire rope is connected with the lifting belt, meanwhile, the steel wire rope is wound through the winch, and therefore the air pipe can be lifted and installed, and the whole structure is easy to operate, capable of being used repeatedly, convenient and fast to install and capable of meeting the pipeline installation requirements of ultra-large depth and ultra-large space.
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Description

Technical Field

[0001] The utility model relates to the technical field of pipeline hoisting, in particular to a super-high pipe pipeline hoisting device. Background Art

[0002] Pipeline hoisting is an important engineering step, which usually involves the process of lifting large pipes or pipeline sections using lifting machinery and installing them to the designated location. Pipeline hoisting is a critical stage in the construction project, which requires precise planning and highly technical execution. It is not only related to the quality of the project, but also to the safety of the construction.

[0003] With the development of society, the architectural functions of more and more public buildings are becoming more and more complex, resulting in the existing technology being unable to fully and conveniently meet the design requirements of super-large depths and super-large bays, and there is a problem of excessive height affecting the convenience of hanging air ducts. Utility Model Content

[0004] In order to overcome the above-mentioned defects of the prior art, the utility model provides an ultra-high pipe lifting device, which fixes the air duct by winding it with a lifting belt, and then connects it to the lifting belt with a steel wire rope, and at the same time, reels the steel wire rope with a winch, so that the air duct can be lifted and installed. The overall structure is easy to operate and can be used repeatedly. It is also convenient to install and can adapt to the installation needs of pipelines with super-large depths and super-large spaces, so as to solve the problems arising from the above-mentioned background technology.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an ultra-high-pressure wire hoisting device, comprising a hoisting assembly for installing a duct;

[0006] The hoisting assembly includes two winches installed on the top of the structural plate, each winch is wound with a steel wire rope equipped with a hook, the bottom end of the steel wire rope passes through the structural plate and extends to the bottom of the structural plate, and the bottom end of the steel wire rope is installed with a hoisting belt for fixing the air duct;

[0007] The steel wire rope is provided with a functional component on the outside for enhancing the warning effect and safety.

[0008] In a preferred embodiment, the functional component includes a fixed ring sleeved on the outside of the bottom end of the wire rope, a fixed bracket is installed on the side of the fixed ring away from the wire rope, two fixing parts are installed on the side of the fixed bracket away from the fixed ring, and a movable shaft movably connected by a bearing is installed between the two fixing parts; a linkage shaft is provided on the side away from the two fixing parts, and the linkage shaft passes through the fixing parts and is fixed together with the movable shaft, a linkage plate is sleeved on the outside of the linkage shaft, and a warning light is installed on the bottom end of the linkage plate, and the linkage plate connected to the linkage shaft is driven to rotate in an arc by the operation of the movable shaft, thereby realizing dynamic illumination of the warning light, thereby being able to warn people more conspicuously and improving work safety.

[0009] In a preferred embodiment, a secondary bevel gear is sleeved outside the movable shaft. A primary bevel gear is meshed with one side of the secondary bevel gear close to the fixed bracket. The primary bevel gear is movably connected to the fixed bracket through a rotating shaft. Through the meshing of the primary bevel gear and the secondary bevel gear, the movable shaft can be driven to drive the linkage shaft and the linkage plate to rotate, achieving the effect of rotating the warning light.

[0010] In a preferred embodiment, an installation hole is formed inside one end of the fixed bracket close to the fixed ring. A micro reversible motor is installed inside the installation hole. The output shaft of the micro reversible motor penetrates through the fixed bracket and is fixed to the rotating shaft on the primary bevel gear. Through the connection between the micro reversible motor and the primary bevel gear, the micro reversible motor can drive the primary bevel gear to drive the secondary bevel gear to rotate, and the secondary bevel gear drives the movable shaft to rotate, thereby achieving the effect of rotating and adjusting the warning light.

[0011] In a preferred embodiment, two sets of support members for supporting the air duct are provided at the bottom of the structural plate; each set of support members includes two channel steel bases connected to the structural plate by bolts. A channel steel frame is provided at the bottom of the two channel steel bases. Through wire suspenders are provided at the top of both ends of the channel steel frame. The top and bottom ends of the through wire suspenders are respectively fixed to the channel steel frame and the channel steel base by nuts. The through wire suspenders are fixed by the channel steel bases, and then the channel steel frame is fixed by the through wire suspenders, and finally the air duct is fixed by the channel steel frame.

[0012] In a preferred embodiment, the cross-section of the fixed bracket is set to be T-shaped. By setting the fixed bracket to be T-shaped, it is convenient to connect the fixed ring and install the movable shaft.

[0013] The technical effects and advantages of the present utility model:

[0014] 1. The air duct is wound and fixed by a lifting belt, and then connected to the lifting belt by a steel wire rope. At the same time, the steel wire rope is wound by a winch, so that the air duct can be lifted and installed. The overall structure is easy to operate, can be reused, and is convenient to install, and can meet the pipeline installation requirements of ultra-large depth and ultra-large space;

[0015] 2. The micro reversible motor drives the primary bevel gear to rotate. The primary bevel gear drives the linkage shaft connected to the movable shaft to rotate through the meshed secondary bevel gear. The linkage shaft drives the warning light on the linkage plate to perform a small-range reciprocating motion. The resulting dynamic light and shadow can effectively attract people's attention, achieve the effect of reminding people of the environment around the mirror body, prevent accidents due to negligence, and improve the operation safety. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1Schematic diagram of the overall structure of the present utility model;

[0017] Figure 2 Side view of the through-thread hanging rod of the present utility model;

[0018] Figure 3 Side view of the fixed bracket of the present utility model;

[0019] Figure 4 For the present utility model Figure 3 Enlarged view of part A;

[0020] Figure 5 Separation structure diagram of the linkage shaft, linkage plate and main body of the fixed bracket of the present utility model.

[0021] Reference numerals are: 1, winch; 2, steel wire rope; 3, structural plate; 4, lifting belt; 5, fixing ring; 6, fixed bracket; 7, fixing piece; 8, movable shaft; 9, linkage shaft; 10, linkage plate; 11, warning light; 12, secondary bevel gear; 13, primary bevel gear; 14, mounting hole; 15, micro reversible motor; 16, channel steel base; 17, channel steel frame; 18, through-thread hanging rod. Detailed implementation manners

[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0023] Referring to the attached Figures 1-5 description, the present utility model provides an ultra-high pipeline lifting device, including a lifting assembly for installing an air duct;

[0024] As Figure 1 shown, the lifting assembly includes two winches 1 installed on the top of the structural plate 3. A steel wire rope 2 with a hook is wound around each winch 1. The bottom end of the steel wire rope 2 penetrates through the structural plate 3 and extends to the bottom of the structural plate 3. A lifting belt 4 for fixing the air duct is installed at the bottom end of the steel wire rope 2; A functional assembly for enhancing the warning effect and safety is provided outside the steel wire rope 2.

[0025] As Figure 1 、 3As shown in Figures 4 and 5, the functional component includes a fixing ring 5 sleeved outside the bottom end of the steel wire rope 2. A fixing bracket 6 is installed on one side of the fixing ring 5 away from the steel wire rope 2. Two fixing members 7 are installed on one side of the fixing bracket 6 away from the fixing ring 5. An activity shaft 8 connected movably through a bearing is installed between the two fixing members 7. Linkage shafts 9 are provided on the sides of the two fixing members 7 away from each other. The linkage shafts 9 penetrate through the fixing members 7 and are fixed together with the activity shaft 8. A linkage plate 10 is sleeved outside the linkage shafts 9. A warning light 11 is installed at the bottom end of the linkage plate 10. By the rotation of the activity shaft 8, the linkage plate 10 connected to the linkage shaft 9 is driven to rotate in an arc shape, thereby realizing the dynamic irradiation of the warning light 11, and thus can more prominently warn people and improve the operation safety.

[0026] As Figure 4 and 5 shown, a driven bevel gear 12 is sleeved outside the activity shaft 8. A main bevel gear 13 is engaged with one side of the driven bevel gear 12 close to the fixing bracket 6. The main bevel gear 13 is connected movably with the fixing bracket 6 through a rotating shaft. Through the engagement of the main bevel gear 13 and the driven bevel gear 12, the activity shaft 8 can be driven to drive the linkage shaft 9 and the linkage plate 10 to rotate, realizing the effect of rotating the warning light 11. An installation hole 14 is opened inside one end of the fixing bracket 6 close to the fixing ring 5. A micro positive and negative motor 15 is installed inside the installation hole 14. The output shaft of the micro positive and negative motor 15 penetrates through the fixing bracket 6 and is fixed together with the rotating shaft on the main bevel gear 13. Through the connection of the micro positive and negative motor 15 and the main bevel gear 13, the micro positive and negative motor 15 can drive the main bevel gear 13 to drive the driven bevel gear 12 to rotate, and drive the activity shaft 8 to rotate by means of the driven bevel gear 12, thereby realizing the effect of rotating and adjusting the warning light 11.

[0027] As Figure 1 and 2 shown, two groups of supporting members for supporting the air duct are provided at the bottom of the structural plate 3. Each group of supporting members includes two channel steel bases 16 connected to the structural plate 3 through bolts. A channel steel frame 17 is provided at the bottom of the two channel steel bases 16. Wire-through suspenders 18 are provided at the tops of both ends of the channel steel frame 17. The top and bottom ends of the wire-through suspenders 18 are fixed to the channel steel frame 17 and the channel steel bases 16 respectively through nuts. The wire-through suspenders 18 are fixed through the channel steel bases 16, and then the channel steel frame 17 is fixed by means of the wire-through suspenders 18, and finally the air duct is fixed by means of the channel steel frame 17.

[0028] As Figures 3-5 shown, the cross section of the fixing bracket 6 is set to be T-shaped. By setting the fixing bracket 6 to be T-shaped, it is convenient to connect the fixing ring 5 and install the activity shaft 8.

[0029] Wind pipes are wound and fixed by four lifting straps, and then connected to the lifting straps by steel wire ropes 2. At the same time, the steel wire ropes 2 are wound by a winch 1, so as to lift and adjust the wind pipes;

[0030] After the wind pipes are hoisted to the designated positions, the staff use a boom aerial work platform to install the channel steel frames 17 on the through-threaded hanging rods 18. After ensuring firmness, the wind pipes can be installed on the channel steel frames 17. The overall structure is easy to operate, reusable, and convenient to install, and can meet the pipeline installation requirements of ultra-large depths and ultra-large spaces;

[0031] While hoisting the wind pipes, the main bevel gear 13 is driven to rotate by a micro positive and negative motor 15. The main bevel gear 13 then drives the linkage shaft 9 connected to the movable shaft 8 to rotate by means of the meshing driven bevel gear 12. The linkage shaft 9 then drives the warning lights 11 on the linkage plate 10 to perform a small-range reciprocating motion. The resulting dynamic light and shadow can effectively attract people's attention, achieve the effect of reminding people of the environment around the mirror body, and prevent accidents due to carelessness.

[0032] Finally: The above are only the preferred embodiments of the present invention and are not used to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A super-high-voltage wire hoisting device, characterized in that: Includes hanging assembly for installing air duct; The hoisting assembly comprises two winches (1) installed on the top of the structural plate (3), each winch (1) is wound around a steel wire rope (2) equipped with a hook, the bottom end of the steel wire rope (2) passes through the structural plate (3) and extends to the bottom of the structural plate (3), and a hoisting belt (4) for fixing the air duct is installed at the bottom end of the steel wire rope (2); The steel wire rope (2) is provided with a functional component on the outside for enhancing the warning effect and safety.

2. The ultra-high-voltage wire hoisting device according to claim 1, characterized in that: The functional component comprises a fixing ring (5) sleeved on the outside of the bottom end of the steel wire rope (2); a fixing bracket (6) is installed on the side of the fixing ring (5) away from the steel wire rope (2); two fixing members (7) are installed on the side of the fixing bracket (6) away from the fixing ring (5); a movable shaft (8) movably connected via a bearing is installed between the two fixing members (7); A linkage shaft (9) is provided on the side away from the two fixing members (7), and the linkage shaft (9) passes through the fixing member (7) and is fixed to the movable shaft (8). A linkage plate (10) is sleeved on the outside of the linkage shaft (9), and a warning light (11) is installed at the bottom end of the linkage plate (10).

3. The super-high-voltage wire hoisting device according to claim 2, characterized in that: The movable shaft (8) is sleeved with a slave bevel gear (12) on its exterior, and a main bevel gear (13) is meshed with the slave bevel gear (12) on the side close to the fixed bracket (6), and the main bevel gear (13) is movably connected to the fixed bracket (6) via a rotating shaft.

4. The super-high-voltage wire hoisting device according to claim 3, characterized in that: A mounting hole (14) is provided inside one end of the fixing bracket (6) close to the fixing ring (5), and a micro forward and reverse motor (15) is installed inside the mounting hole (14). The output shaft of the micro forward and reverse motor (15) passes through the fixing bracket (6) and is fixed to the rotating shaft on the main bevel gear (13).

5. The ultra-high-voltage wire hoisting device according to claim 1, characterized in that: The bottom of the structural plate (3) is provided with two groups of supporting members for supporting the air duct; Each group of supporting members comprises two channel steel bases (16) connected to the structural plate (3) by bolts, the bottom of the two channel steel bases (16) is provided with a same channel steel frame (17), the tops of both ends of the channel steel frame (17) are provided with through-wire hangers (18), and the top and bottom ends of the through-wire hangers (18) are respectively fixed to the channel steel frame (17) and the channel steel base (16) by nuts.

6. The super-high-voltage wire hoisting device according to claim 2, characterized in that: The cross section of the fixing bracket (6) is set to be T-shaped.