Piping emergency rescue film bag recovery equipment
By setting Velcro hooks or nails on the outer peripheral wall of the roller of the membrane bag recycling equipment, and using the power mechanism to drive the roller to wrap, the safety hazards and low efficiency during membrane bag recycling are solved, and efficient and safe membrane bag recycling is achieved.
Patent Information
- Application Number
- CN202422228543.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-09-11
AI Technical Summary
The prior art has problems of safety hazards and low coiling efficiency when recycling membrane bags.
A pipe surge rescue membrane bag recycling equipment is designed. By setting Velcro hooks or staples on the outer peripheral wall of the drum, these hooks or staples hooks are used to hang the ends of the membrane bag, and the drum is driven by the power mechanism to wrap.
It effectively avoids the occurrence of hand-wrap safety accidents, improves the efficiency of winding, and reduces the structural weight and energy consumption through the hollow structure roller.
Smart Images

Figure CN222975791U_ABST
Abstract
Description
Technical Field:
[0001] This application relates to the technical field of piping emergency rescue, in particular to a membrane bag recycling device for piping emergency rescue. Background Art:
[0002] The utility model patent with the application number CN201922195111.3 - a geomembrane laying device, includes: a bottom plate, the bottom plate is horizontally arranged; a roller shaft, the roller shaft is vertically connected to the bottom plate, a roller is sleeved outside the roller shaft, and the roller is used for winding the geomembrane.
[0003] This patent uses a roller to wind and recycle the membrane bag. However, when winding the membrane bag, it is necessary to manually press the end of the membrane bag on the outer peripheral surface of the roller, and then continue to rotate the roller for winding. When the wound membrane bag presses the end, the worker then releases it, which is very likely to wind the hand into the membrane bag, there are certain safety hazards, and due to manual operation problems, the winding may not be successful at one time and requires multiple tests, resulting in a low winding efficiency. Utility Model Content:
[0004] To solve the above - mentioned technical problems, the present utility model provides a membrane bag recycling device for piping emergency rescue, and the technical problem to be solved is: there are certain safety hazards and low winding efficiency when the membrane bag is wound and recycled. To solve the above - mentioned technical problems, the technical solution adopted by the present utility model is:
[0005] The membrane bag recycling device for piping emergency rescue includes:
[0006] A carrier;
[0007] A recycling rack, the recycling rack is connected to the carrier;
[0008] Connecting plate A and connecting plate B, connecting plate A and connecting plate B are respectively arranged on both sides of the recycling rack in a fixed - structure manner;
[0009] A rotating shaft and a roller, the rotating shaft is arranged on both sides of the roller in a fixed - structure manner, and the roller is connected to connecting plate A and connecting plate B in a rotating - structure manner through the rotating shaft;
[0010] A magic - tape hook surface or hanging nails, the magic - tape hook surface or a number of hanging nails are arranged on the outer peripheral surface of the roller in a fixed - structure manner;
[0011] A power mechanism for driving the sleeve to rotate.
[0012] Further, the carrier is a crawler chassis, a slewing drive is arranged on the crawler chassis in a fixed - structure manner, a support seat is arranged on the upper end surface of the slewing drive in a fixed - structure manner, and the support seat is connected to the recycling rack in a fixed - structure manner.
[0013] Further, the recycling rack includes a fixed rod connected to the support base. Telescopic rods are sleeved on both sides of the fixed rod in a sliding and telescopic structure. The left telescopic rod is connected to connecting plate B, and the right telescopic rod is connected to connecting plate A.
[0014] Further, a bearing seat is provided on connecting plate A in a fixed structure. A sleeve is sleeved in the bearing seat in a fixed structure. The right rotating shaft is connected to the sleeve through a locking structure.
[0015] Further, the locking structure includes a pin hole A opened on the side wall of the sleeve and a pin hole B opened on the right rotating shaft. The pin hole A and the pin hole B are connected by a pin shaft.
[0016] Further, the power mechanism includes a motor, a chain, a driven gear, and a driving gear. The motor is connected to the recycling rack in a fixed structure. The output shaft of the motor is connected to the driving gear in a fixed structure. The driving gear is connected to the driven gear through a chain. The driven gear is provided outside the sleeve in a fixed structure.
[0017] Further, a fastening member is provided on connecting plate B in a fixed structure. The fastening member includes a box body. The box body is provided with a through hole for the rotating shaft to pass through. A bearing for supporting the rotating shaft is provided in a rotating structure inside the box body around the through hole.
[0018] Further, the drum is provided with a hollow structure. A jack is opened on the side wall of the drum to communicate with the inside. One end of the hanging nail is inserted into the jack in a fixed structure;
[0019] A retaining piece is provided on the hanging nail outside the jack in a fixed structure. The retaining piece is attached to the side wall of the drum.
[0020] The beneficial effects of the present utility model are:
[0021] By providing a magic hook surface or hanging nails on the outer peripheral wall of the drum, only the end of the geomembrane needs to be placed on the hook surface or the hanging nails, and the geomembrane can be hooked. Continuing to rotate can complete the winding work, avoiding the occurrence of safety accidents of getting entangled in hands and improving the winding efficiency.
[0022] The recycling rack is set as a telescopic structure, which can match drums of different widths and expand the scope of application.
[0023] Through the cooperation of the box body and the bearing, not only the rotating shaft on one side is limited, preventing it from being pulled out of the fastening member by the film bag, but also the bearing can be used to reduce the rotational friction and improve the service life.
[0024] The drum is set as a hollow structure, reducing the structural weight and the energy consumption of the vehicle. Brief Description of the Drawings:
[0025] Figure 1 It is a three-dimensional structural schematic diagram of the present utility model.
[0026] Figure 2 It is a schematic assembly diagram of the recovery rack, rotating shaft, drum, locking structure and power mechanism of the present utility model.
[0027] Figure 3 It is a three-dimensional structure schematic diagram of the hanging nail and the retaining piece of the present utility model.
[0028] In the figure:
[0029] 1. Recovery rack, 2. Sleeve, 3. Fastening piece, 4. Rotating shaft, 5. Drum, 6. Hanging nail, 7. Support seat, 8. Connecting plate A, 9. Connecting plate B, 10. Carrier, 11. Pin hole A, 12. Pin hole B, 13. Pin shaft, 14. Bearing seat, 15. Motor, 16. Driving gear, 17. Driven gear, 18. Bearing, 19. Retaining piece. Specific implementation manner:
[0030] To make the purpose, technical solution and advantages of the implementation of the present utility model clearer, the present utility model will now be further described in detail with reference to the accompanying drawings and the following embodiments, so that the public can better master the implementation method of the present utility model. The specific implementation scheme of the present utility model is as follows:
[0031] The pipe bursting emergency rescue film bag recovery device includes a carrier; a recovery rack 51 is arranged on one side of the carrier 10, the recovery rack 1 is connected to the carrier, connecting plates A 8 and B 9 are respectively arranged on both sides of the recovery rack 1 in a fixed structure manner, a sleeve 2 is arranged on the connecting plate A 8 in a rotating structure manner, and a fastening piece 3 is arranged on the connecting plate B 9 in a fixed structure manner; rotating shafts 4 are arranged on both sides of the drum 5 in a fixed structure manner, the left rotating shaft 4 is rotatably connected to the fastening piece 3, the right rotating shaft 4 is sleeved and connected to the sleeve 2, and the rotating shaft 4 and the sleeve 2 are connected through a locking structure; a magic tape hook surface or a hanging nail 6 is arranged on the outer peripheral surface of the drum 5 in a fixed structure manner, and a power mechanism for driving the sleeve 2 to rotate is also arranged. By arranging a magic tape hook surface or a hanging nail on the outer peripheral wall of the drum 5, only the end of the geomembrane needs to be placed on the hook surface or the hanging nail, and the geomembrane is hooked, and then the winding work can be completed by continuous rotation, avoiding the occurrence of safety accidents of getting entangled hands and improving the winding efficiency.
[0032] It should be noted that the carrier 10 is a crawler chassis, a slewing drive is arranged on the crawler chassis in a fixed structure manner, a support seat 7 is arranged on the upper end surface of the slewing drive in a fixed structure manner, and the support seat 7 is connected to the recovery rack 1 in a fixed structure manner. The device is transported to a predetermined position through the crawler chassis, and then the recovery rack 1 is driven to rotate through the slewing drive, expanding the range of activities.
[0033] Specifically, the recycling rack 1 includes a fixed rod connected to the support base 7. Telescopic rods are sleeved on both sides of the fixed rod in a sliding and telescopic structure. The left telescopic rod is connected to the connecting plate B9, and the right telescopic rod is connected to the connecting plate A8. Setting the recycling rack as a telescopic structure can match drums 5 of different widths and expand the scope of application. Spring pins are provided on the telescopic rods to lock the telescopic rods.
[0034] It should be elaborated that the locking structure includes a pin hole A11 opened on the side wall of the sleeve 2 and a pin hole B12 opened on the right rotating shaft 4. The pin hole A11 and the pin hole B12 are connected by a pin shaft 13.
[0035] Furthermore, a bearing seat 14 is arranged outside the sleeve 2, and the bearing seat 14 is connected to the connecting plate A8 in a fixed structure manner to ensure smoother rotation of the sleeve 2.
[0036] Specifically, the fastening member 3 includes a box body. The box body is provided with a through hole for the rotating shaft 4 to pass through. A bearing 18 for supporting the rotating shaft 4 is arranged in the box body around the through hole in a rotating structure manner. Through the cooperation of the box body and the bearing 18, not only is the rotating shaft 4 on one side limited to prevent it from being pulled out of the fastening member 3 by the film bag, but also the rotating friction can be reduced by using the bearing, thereby improving the service life.
[0037] The drum 5 is provided with a hollow structure to reduce the structural weight and the energy consumption of the vehicle. A jack is opened on the side wall of the drum 5 to communicate with the inside. One end of the hanging nail 6 is inserted into the jack in a fixed structure manner, and a retaining piece 19 is fixedly arranged on the hanging nail outside the jack. The retaining piece 19 is attached to the side wall of the drum 5 to prevent the hanging nail 6 from being pressed into the drum 5 under the pressure of the geomembrane, thereby improving the structural stability.
[0038] It should be noted that a power mechanism for driving the sleeve 2 to rotate is also provided. The power mechanism includes a motor 15, a chain, a driven gear 17, and a driving gear 16. The motor 15 is connected to the recycling rack 51 in a fixed structure manner. The output shaft of the motor 15 is connected to the driving gear 16 in a fixed structure manner. The driving gear 16 is connected to the driven gear 17 through a chain. The driven gear 17 is fixedly arranged outside the sleeve 2.
[0039] The working principle and process of the present utility model are as follows:
[0040] First, the equipment is transported to the upper part of the dam through the crawler chassis. The telescopic rod is pulled out in the fixed rod, and the telescopic rod is fixed by the spring pin. Then, the drum 5 is installed. First, the left rotating shaft 4 is placed in the through hole of the box body, and then the sleeve 2 is aligned. The right rotating shaft 4 is placed in the sleeve 2. The pin shaft 13 is inserted into the pin hole A11 and the pin hole B12 to fix the sleeve 2 and the rotating shaft 4. The installation and disassembly are simple and fast.
[0041] Place one end of the geomembrane on the roller 5 below the recycling rack 1. The geomembrane is hooked by the hook surface of the magic tape or the hanging nail 6. Start the motor 15. The motor 15 drives the driving gear 16 to rotate. The driving gear 16 drives the driven gear 17 to rotate through the chain. The driven gear 17 drives the rotating shaft 4 to rotate through the sleeve 2. The rotating shaft 4 drives the roller 5 to wind and recycle the membrane bag.
[0042] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "front", "rear", "lower left", "upper right", "outer", "clockwise", "counterclockwise", etc. is the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation on the protection scope of the present invention. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance. Although the present invention has been described based on a limited number of embodiments, those skilled in the art of this technology should understand that within the scope of the present invention thus described, other embodiments can be conceived.
Claims
1. Pipe burst emergency membrane bag recovery equipment, characterized in that: include: Vehicle (10); A recovery rack (1), the recovery rack (1) is connected to a carrier (10); A connecting plate A (8) and a connecting plate B (9), wherein the connecting plate A (8) and the connecting plate B (9) are respectively arranged on both sides of the recovery frame (1) in a fixed structure manner; A rotating shaft (4) and a roller (5), wherein the rotating shaft (4) is arranged on both sides of the roller (5) in a fixed structure manner, and the roller (5) is connected to a connecting plate A (8) and a connecting plate B (9) in a rotating structure manner via the rotating shaft (4); Velcro hook surface or hanging nail (6), the Velcro hook surface or a plurality of hanging nails (6) are arranged on the outer peripheral surface of the drum (5) in a fixed structure manner; A power mechanism is used for driving the sleeve (2) to rotate.
2. The pipe burst emergency membrane bag recovery device according to claim 1 is characterized in that: The carrier (10) is a crawler chassis, a rotary drive is arranged on the crawler chassis in a fixed structure manner, a support seat (7) is arranged on the upper end surface of the rotary drive in a fixed structure manner, and the support seat (7) is connected to the recovery frame (1) in a fixed structure manner.
3. The pipe burst emergency membrane bag recovery device according to claim 2 is characterized in that: The recovery rack (1) comprises a fixed rod connected to a support seat (7), telescopic rods are sleeved on both sides of the fixed rod in a sliding telescopic structure, the left telescopic rod is connected to a connecting plate B (9), and the right telescopic rod is connected to a connecting plate A (8).
4. The pipe burst emergency membrane bag recovery device according to claim 1 is characterized in that: The connecting plate A (8) is provided with a bearing seat (14) in a fixed structure manner, a sleeve (2) is sleeved in the bearing seat (14) in a fixed structure manner, and the right rotating shaft (4) is connected to the sleeve (2) via a locking structure.
5. The pipe burst emergency membrane bag recovery device according to claim 1 is characterized in that: The locking structure comprises a pin hole A (11) formed on the side wall of the sleeve (2) and a pin hole B (12) formed on the right rotating shaft (4). The pin hole A (11) and the pin hole B (12) are connected via a pin shaft (13).
6. The pipe burst emergency membrane bag recovery device according to claim 4 is characterized in that: The power mechanism comprises a motor (15), a chain, a driven gear (17) and a driving gear (16); the motor (15) is connected to the recovery frame (1) in a fixed structure manner; the output shaft of the motor (15) is connected to the driving gear (16) in a fixed structure manner; the driving gear (16) is connected to the driven gear (17) through the chain; and the driven gear (17) is arranged outside the sleeve (2) in a fixed structure manner.
7. The pipe burst emergency membrane bag recovery device according to claim 4 is characterized in that: The connecting plate B (9) is provided with a buckle member (3) in a fixed structure manner, the buckle member (3) comprises a box body, the box body is provided with a through hole for the rotating shaft (4) to pass through, and the box body around the through hole is provided with a bearing (18) for supporting the rotating shaft (4) in a rotating structure manner.
8. The pipe burst emergency membrane bag recovery device according to claim 1 is characterized in that: The drum (5) is a hollow structure, a plug hole connected to the inside is opened on the side wall of the drum (5), and one end of the hanging nail (6) is inserted into the plug hole in a fixed structure manner; The hanging nail outside the insertion hole is provided with a blocking piece (19) in a fixed structure manner, and the blocking piece (19) is in contact with the side wall of the drum (5).
Citation Information
Patent Citations
Geomembrane laying device
CN211714040U