A shuttle receiving well

By designing a shuttle-shaped receiving well and equipping it with climbing components and a waterproof cover, the problems of poor streamline and high water resistance of existing rectangular receiving wells are solved, achieving a low water resistance ratio and a dry interior, making it suitable for underwater environments.

CN119411631BActive Publication Date: 2026-04-10CCCC FOURTH HARBOR ENG CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

The existing pipe jacking receiving wells are rectangular in shape, have poor streamlined design, and have a high water resistance ratio, making them unsuitable for use as underwater receiving wells.

Method used

Design a shuttle-shaped receiving well that combines a climbing assembly and a top cover component. The shuttle-shaped structure is equipped with a support plate and climbing assembly to facilitate installation and transportation. A waterproof structure is provided on the top cover component to prevent rainwater and floating objects from entering.

Benefits of technology

It achieves a streamlined shuttle-shaped receiving well with a water resistance ratio of less than 15%, making it suitable for underwater environments. It also has a ventilation function to keep the well dry and clean.

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Abstract

The present application belongs to the technical field of receiving well, and particularly relates to a shuttle-shaped receiving well, which comprises a receiving well main body, a bottom plate arranged at the bottom of the receiving well main body, a top pipe insertion hole arranged on the side of the receiving well main body and communicated with a top pipe, a support plate arranged in the receiving well main body, a climbing assembly arranged on the support plate, an upper cover component arranged on the upper end of the receiving well main body, and a shuttle-shaped structure of the receiving well main body. The shuttle-shaped structure of the receiving well main body has good streamline and a water resistance ratio of 3%, which meets the requirement that the water resistance ratio is not greater than 15%. In addition, the receiving well main body can also be used as a ventilation well, and the upper opening of the receiving well main body is provided with an upper cover component to prevent rainwater, floating objects and the like from falling into the receiving well main body, so that the cleanliness and relative dryness of the receiving well main body are maintained.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of receiving wells, and particularly relates to a shuttle-shaped receiving well. BACKGROUND

[0002] The existing receiving well for pipe jacking is rectangular in shape, poor in streamline, and high in water resistance, and is not suitable for underwater receiving wells.

[0003] For example, patent application No. CN202310705891.X discloses a system and method for reinforcing the end of a pipe jacking receiving well near an existing subway tunnel. The system comprises a pipe jacking pipeline, MJS method piles for reinforcing the starting well and the receiving well of the pipe jacking pipeline, a receiving well arranged on one side of the MJS method piles, a bored pile arranged on the surface of the receiving well, and a rotary jet pile arranged on the surface of the bored pile. The method comprises the following steps: arranging the site, cleaning the pavement obstacles, excavating the slurry discharge trench, installing the equipment, positioning the pile machine, measuring and laying the line, centering the MJS pile machine, lowering the drill rod into the guide hole to the designed depth, and reaching the predetermined depth with the drill bit. After the drill bit reaches the predetermined depth, the construction is started, the drill rod is disassembled, and the drill rod is flushed and maintained. However, the receiving well for pipe jacking is rectangular in shape, poor in streamline, and high in water resistance, and is not suitable for underwater receiving wells. SUMMARY

[0004] The application aims to provide a shuttle-shaped receiving well to solve the problems in the prior art, and the specific technical scheme is as follows.

[0005] The shuttle-shaped receiving well comprises a receiving well main body, a bottom plate arranged at the bottom of the receiving well main body, a pipe jacking hole arranged on the side of the receiving well main body and connected with a pipe jacking pipeline, a support plate arranged in the receiving well main body, a climbing assembly arranged on the support plate, a shuttle-shaped structure of the receiving well main body, and an upper cover component arranged at the upper end of the receiving well main body.

[0006] Further, the climbing assembly comprises four climbing supports, the four climbing supports are fixed on the support plate, adjacent two climbing supports are fixedly connected through a connecting plate, a footrest table is arranged on the climbing support, the upper surface of the footrest table is treated to prevent slipping, and handrails are fixed on the two sides of the climbing support.

[0007] Further, a snap ring is arranged at the upper end of each of the four climbing supports, and the snap ring is buckled with the end of a fall arrester.

[0008] Further, the upper cover component comprises a lower steel structure support fixed on the upper end of the receiving well body through a support rod, a left steel structure support and a right steel structure support are slidingly connected to the upper end of the lower steel structure support, a connecting rod is fixed in the middle of the lower steel structure support, a gear is rotatably connected to the connecting rod, a rack one and a rack two are rotatably connected to the two sides of the gear, the end of the rack one is fixed on the left steel structure support, the end of the rack two is fixed on the right steel structure support, a left half cover is fixed on the upper end of the left steel structure support, and a right half cover is fixed on the upper end of the right steel structure support.

[0009] Further, the end of each of the left steel structure support and the right steel structure support is provided with a bottom rod abutting against the lower side of the end of the lower steel structure support.

[0010] Further, the end of the left half cover is provided with an upper butt joint plate one and a lower water receiving plate, the end of the right half cover is provided with an upper butt joint plate two and a plug-in plate one, the end of the upper butt joint plate one is butted with the end of the upper butt joint plate two, the plug-in plate one is plugged between the upper butt joint plate one and the lower water receiving plate, and the cross section of the lower water receiving plate is a downward concave groove shape.

[0011] Further, the outer side of the right half cover is provided with a plug-in rod, the outer side of the left half cover is provided with a plug-in plate two, the plug-in rod is plugged into the plug-in plate two, and the end of the plug-in rod is provided with a nut.

[0012] The left half cover and the right half cover are both provided with ventilation holes, and the ventilation holes are downwardly open.

[0013] Further, the receiving well body is provided with a transportation component, the transportation component comprises a steel frame fixed on the inner wall of the receiving well body, two rotating shafts one and two rotating shafts two are rotatably connected to the steel frame, a conveying belt one is arranged between the two rotating shafts one, a conveying belt two is arranged between the two rotating shafts two, a supporting plate is arranged on the conveying belt one and the conveying belt two, a transmission wheel is rotatably connected to the steel frame, a chain is arranged between the rotating shaft one and the transmission wheel, the transmission wheel is in gear transmission with the gear of the rotating shaft two, a supporting table is arranged at the bottom of the steel frame, and guide plates are arranged on the two sides of the supporting table.

[0014] Further, the edge of the supporting table is slidingly connected with the edge of the rotating disc, the upper surface of the supporting table is flush with the upper surface of the rotating disc, a central column is rotatably connected to the lower end of the rotating disc, one end of a supporting rod one is rotatably connected with the central column, the other end of the supporting rod one is fixed on the bottom of the supporting table, the central column is in threaded connection with a supporting column, one end of a supporting rod two is rotatably connected with the central column, the other end of the supporting rod two is fixed on a sliding plate one, the edge of the sliding plate one is slidingly connected with the edge of the rotating disc, the sliding plate one is slidingly connected with a sliding plate two, the inner wall of the sliding plate two is slidingly connected with the two sides of a trolley, inner wheels are rotatably connected to the two sides of the trolley, the inner wheels rotate on the sliding plate two, outer wheels are rotatably connected to the two sides of the trolley, the outer wheels rotate on the sliding plate one, handles are arranged on the two sides of the trolley, universal wheels are arranged at the front end of the sliding plate two, the universal wheels slide on a bottom plate, and the lower end of the supporting column abuts against the bottom plate.

[0015] Further, a plurality of connecting steel bars are arranged side by side on the steel frame, a plurality of clamping grooves are arranged at the end of the steel frame, a long plate is clamped in the clamping grooves, and a plurality of protrusions are arranged on the inner surface of the long plate.

[0016] The present application has the advantages of:

[0017] 1. The receiving well body has a shuttle-shaped structure, good streamline, and a water resistance ratio of 3%, meeting the requirement that the water resistance ratio is not greater than 15%. In addition, the receiving well body can also be used as a ventilation well. An upper cover part is arranged at the upper opening of the receiving well body to prevent rainwater, floating objects and the like from falling into the receiving well body, so as to keep the receiving well body clean and relatively dry.

[0018] 2. The support plate plays a role in reinforcing the receiving well body. A climbing assembly is arranged on the support plate to facilitate the climbing of workers to enter and exit the receiving well body. In addition, the climbing assembly is convenient for installation and fixation with a hoisting machine, facilitating the installation, transportation and transfer of the receiving well body. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 The figure is a schematic diagram of the overall structure of the present application Figure 1 ;

[0020] Figure 2 The figure is a schematic diagram of the overall structure of the present application Figure 2 ;

[0021] Figure 3 The figure is a schematic diagram of the overall structure of the present application Figure 3 ;

[0022] Figure 4 The figure is a schematic diagram of the overall structure of the present application Figure 4 ;

[0023] Figure 5 The figure is a schematic diagram of the receiving well body structure of the present application Figure 1 ;

[0024] Figure 6 The figure is a schematic diagram of the receiving well body structure of the present application Figure 2 ;

[0025] Figure 7 The figure is a schematic diagram of the climbing assembly structure of the present application Figure 1 ;

[0026] Figure 8 The figure is a schematic diagram of the climbing assembly structure of the present application Figure 2 ;

[0027] Figure 9 The figure is a schematic diagram of the upper cover part structure of the present application Figure 1 ;

[0028] Figure 10 The figure is a schematic diagram of the upper cover part structure of the present application Figure 2 ;

[0029] Figure 11 Fig. 1 is a perspective view of a conventional transportable container; Figure 10 Fig. 2 is an enlarged view of a portion of Fig. 1;

[0030] Figure 12 Fig. 3 is a schematic view of a structure of an upper cover member of the present application; Figure 3

[0031] Figure 13 Fig. 4 is a schematic view of a structure of an upper cover member of the present application; Figure 4

[0032] Figure 14 Fig. 5 is a schematic view of a structure of a transport member of the present application; Figure 1

[0033] Figure 15 Fig. 6 is a schematic view of a structure of a transport member of the present application; Figure 2

[0034] Figure 16 Fig. 7 is a schematic view of a structure of a transport member of the present application; Figure 3

[0035] Figure 17 Fig. 8 is an enlarged view of a portion of Fig. 7; Figure 16

[0036] Figure 18 Fig. 9 is a schematic view of a structure of a transport member of the present application; Figure 4

[0037] Figure 19 Fig. 10 is an enlarged view of a portion of Fig. 9; Figure 18

[0038] Figure 20 Fig. 11 is a schematic view of a structure of a transport member of the present application; Figure 5

[0039] Legend in the drawing:

[0040] ​​​​​​​​​1. Receiving well body; 2. Climbing assembly; 201. Climbing bracket; 202. Footrest; 203. Handrail; 204. Connecting plate; 205. Clamping ring; 206. Fall arrestor; 3. Top cover component; 301. Left half cover; 302. Right half cover; 303. Upper connecting plate one; 304. Lower water receiving plate; 305. Upper connecting plate two; 306. Insertion plate one; 307. Lower steel structure support; 308. Support rod; 309. Connecting rod; 310. Left steel structure support; 311. Right steel structure support; 312. Gear; 313. Rack one; 314. Rack two; 315. Bottom rod; 316. Ventilation hole; 317. Insertion rod; 318. Insertion plate two; 319. Screw 319 Mother; 4 Transport Components; 401 Steel Frame; 402 Rotating Shaft 1; 403 Rotating Shaft 2; 404 Chain; 405 Drive Wheel; 406 Conveyor Belt 1; 407 Pallet; 408 Support Platform; 409 Guide Plate; 410 Connecting Steel Rod; 411 Slot; 412 Long Plate; 413 Protrusion; 414 Turntable; 415 Center Column; 416 Support Column; 417 Support Rod 1; 418 Support Rod 2; 419 Slide Plate 1; 420 Slide Plate 2; 421 Trolley; 422 Inner Wheel; 423 Outer Wheel; 424 Caster Wheel; 425 Handle; 426 Conveyor Belt 2; 5 Support Plate; 6 Top Pipe Insertion Hole; 7 Base Plate. Detailed Implementation

[0041] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0042] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0043] Example 1

[0044] like Figures 1-20 As shown, a shuttle-shaped receiving well includes a receiving well body 1, a bottom plate 7 at the bottom of the receiving well body 1, a jacking pipe connection 6 provided on its side, a support plate 5 inside the receiving well body 1, a climbing component 2 mounted on the support plate 5, the receiving well body 1 having a shuttle-shaped structure, and an upper cover component 3 mounted on the upper end of the receiving well body 1;

[0045] The working principle of the above technical solution is as follows: The main body 1 of the receiving well is installed in the water area. Its lower half is buried deep underwater and is connected to the jacking pipe through the jacking pipe insertion hole 6 set on its side. Its upper half is located in the water, and its upper opening is located above the water surface. Since the main body 1 of the receiving well has a spindle-shaped structure and good streamline, the water resistance ratio is 3%, which meets the requirement that the water resistance ratio is not greater than 15%. In addition, the main body 1 of the receiving well can also serve as a ventilation well. Its upper opening is equipped with a cover component 3 to prevent rainwater, floating objects, etc. from falling into the main body 1 of the receiving well, and to keep the inside of the main body 1 of the receiving well clean and relatively dry.

[0046] The base plate 7 prevents water from seeping into the receiving well body 1 from the ground.

[0047] The support plate 5 serves to reinforce the main body 1 of the receiving well. The climbing component 2 installed on the support plate 5 facilitates the workers to climb in and out of the main body 1 of the receiving well.

[0048] The climbing component 2 not only facilitates climbing for workers, but also facilitates the installation and fixation of the hoisting machine, and the installation, transportation and relocation of the receiving well body 1.

[0049] Example 2

[0050] like Figures 1-20 As shown, the climbing component 2 includes four climbing supports 201, all of which are fixed on the support plate 5. Two adjacent climbing supports 201 are fixedly connected by a connecting plate 204. A footrest 202 is provided on the climbing support 201, and the upper surface of the footrest 202 is treated with anti-slip treatment. Handrails 203 are fixed on both sides of the climbing support 201.

[0051] Each of the four climbing supports 201 is equipped with a retaining ring 205 at its upper end, and the retaining ring 205 is connected to the end of the fall arrester 206 by a snap fastening.

[0052] The working principle of the above technical solution is as follows: the staff can hold on to the handrail 203 and step on the foot platform 202 to enter the receiving well body 1. The upper surface of the foot platform 202 is treated with anti-slip to prevent the staff from slipping during the descent.

[0053] When workers climb using climbing component 2, one end of fall arrestor 206 can be fastened to shackle 205, and the other end of fall arrestor 206 can be fastened to the worker's body. If a worker falls accidentally, fall arrestor 206 can be quickly locked to prevent the worker from falling.

[0054] Since the retaining ring 205 is located between the two handrails 203, it can keep the fall arrestor 206 in the middle of the two handrails 203. In the event of an accidental fall, it can keep the worker in the middle of the two handrails 203 and prevent him from hitting the handrails 203.

[0055] The clamping ring 205 not only fixes the end of the fall arrester 206, but also connects with the hoisting machine, facilitating the receiving well body installation, transportation and transfer, and ensuring the stability and reliability of the movement.

[0056] Embodiment three

[0057] As shown in Figures 1-20 The upper cover part 3 includes a lower steel structure support 307 fixed on the upper end of the receiving well body 1 through a support rod 308, a left steel structure support 310 and a right steel structure support 311 slidingly connected to the upper end of the lower steel structure support 307, a connecting rod 309 fixed in the middle of the lower steel structure support 307, a gear 312 rotatably connected to the connecting rod 309, a rack one 313 and a rack two 314 rotatably connected to the two sides of the gear 312, the end of the rack one 313 fixed on the left steel structure support 310, the end of the rack two 314 fixed on the right steel structure support 311, a left half cover 301 fixed on the upper end of the left steel structure support 310, and a right half cover 302 fixed on the upper end of the right steel structure support 311;

[0058] The right half cover 302 is provided with a plug rod 317 outside, and the left half cover 301 is provided with a plug plate two 318 outside, the plug rod 317 is plugged into the plug plate two 318, and the end of the plug rod 317 is provided with a nut 319;

[0059] The left steel structure support 310 and the right steel structure support 311 are both provided with a bottom rod 315 at the end, and the bottom rod 315 abuts against the lower side of the end of the lower steel structure support 307;

[0060] The working principle of the above technical scheme is that the left half cover 301 and the right half cover 302 can block rainwater, floating objects and the like from entering the receiving well body 1, when the receiving well body 1 is used as a ventilation well, the cleanliness and relative dryness inside the receiving well body 1 are maintained, when the receiving well body 1 needs to be overhauled, the left half cover 301 and the right half cover 302 need to be opened, the nut 319 is removed, the left half cover 301 is pulled to one end, the left steel structure support 310 slides to one end on the lower steel structure support 307, the rack one 313 moves with the left steel structure support 310, the gear 312 rotates on the connecting rod 309, the rack two 314 moves to the other end, the right steel structure support 311 and the right half cover 302 move to the other end, and then the left half cover 301 and the right half cover 302 slide to the two ends, so that the upper opening of the receiving well body 1 is exposed, and the staff can enter the receiving well body 1 through the climbing assembly 2 to overhaul;

[0061] After the maintenance is completed, the staff comes out of the receiving well body 1 and pulls the left half cover 301 towards the middle of the receiving well body 1. This causes the left steel structure support 310 to slide towards the middle on the lower steel structure support 307. This causes the rack 1 313 to move with the left steel structure support 310, which in turn causes the gear 312 to rotate. This causes the rack 2 314 to move in the opposite direction, causing the right steel structure support 311 to slide towards the middle on the lower steel structure support 307. This causes the left half cover 301 and the right half cover 302 to move together until the ends of the left half cover 301 and the right half cover 302 are engaged. At this time, the bottom rod 315 is inserted into the bottom of the insertion rod 317 to increase the firmness between the left steel structure support 310 and the lower steel structure support 307. The insertion rod 317 on the outside of the right half cover 302 is inserted into the insertion plate 2 318, and the end of the insertion rod 317 is threadedly fixed with the nut 319.

[0062] Simply pull the left half cover 301 and the right half cover 302 will move in tandem. The opening and closing of the upper cover component 3 is convenient and quick. The opening method is to open from the middle of the receiving well body 1 to both ends. The opening area of ​​the upper cover component 3 can be set according to actual needs.

[0063] Example 4

[0064] like Figures 1-20 As shown, the left half cover 301 is provided with an upper connecting plate 303 and a lower water receiving plate 304 at its end, and the right half cover 302 is provided with an upper connecting plate 305 and a plug-in plate 306 at its end. The end of the upper connecting plate 303 is connected to the end of the upper connecting plate 305, and the plug-in plate 306 is inserted between the upper connecting plate 303 and the lower water receiving plate 304. The lower water receiving plate 304 has a downward groove shape in its cross section.

[0065] The working principle of the above technical solution is as follows: When the left half cover 301 and the right half cover 302 move to both ends and open, the upper docking plate 1 303 separates from the upper docking plate 2 305, and the plug plate 1 306 is pulled out from between the upper docking plate 1 303 and the lower water receiving plate 304.

[0066] When the left half cover 301 and the right half cover 302 move towards the middle to close, the plug-in plate 306 is plugged between the upper docking plate 303 and the lower water receiving plate 304, and the end of the upper docking plate 303 is docked with the end of the upper docking plate 305.

[0067] The upper connecting plate 303 has its end tilted upwards, and the lower water receiving plate 304 has its end tilted downwards, so that the plug-in plate 306 can be inserted between the upper connecting plate 303 and the lower water receiving plate 304.

[0068] The ends of the first upper connecting plate 303 and the second upper connecting plate 305 are inclined upwards to reduce rainwater from entering between the ends of the first upper connecting plate 303 and the second upper connecting plate 305.

[0069] When a small amount of rainwater enters between the end of the upper connecting plate 303 and the upper connecting plate 305, the rainwater slides down the water receiving plate 304 from the plug plate 306. Since the cross-section of the lower water receiving plate 304 is a downward groove, the rainwater flows out to both ends in the groove of the lower water receiving plate 304, thereby preventing rainwater from dripping into the receiving well body 1 from the joint of the left half cover 301 and the right half cover 302.

[0070] Example 5

[0071] like Figures 1-20 As shown, both the left half cover 301 and the right half cover 302 are provided with ventilation holes 316, which open downwards.

[0072] The working principle of the above technical solution is as follows: the ventilation hole 316 opens downwards, which serves to ventilate while preventing rainwater from entering the main body 1 of the receiving well.

[0073] Example 6

[0074] like Figures 1-20 As shown, the receiving well body 1 is provided with a transport component 4. The transport component 4 includes a steel frame 401, which is fixed to the inner wall of the receiving well body 1. Two rotating shafts 402 and two rotating shafts 403 are rotatably connected to the steel frame 401. A conveyor belt 406 is provided between the two rotating shafts 402 and a conveyor belt 426 is provided between the two rotating shafts 403. Both the first and second conveyor belts 406 and the second conveyor belt 426 are provided with a support plate 407. A drive wheel 405 is rotatably connected to the steel frame 401. A chain 404 is provided between the rotating shafts 402 and the drive wheel 405. The drive wheel 405 and the second rotating shaft 403 are engaged by gears. A support platform 408 is provided at the bottom of the steel frame 401. Guide plates 409 are provided on both sides of the support platform 408.

[0075] The edge of the support platform 408 is slidably connected to the edge of the turntable 414. The upper surface of the support platform 408 is flush with the upper surface of the turntable 414. A central column 415 is rotatably connected to the lower end of the turntable 414. The central column 415 is rotatably connected to one end of the first support rod 417. The other end of the first support rod 417 is fixed to the bottom of the support platform 408. The central column 415 is threadedly connected to the support column 416. The central column 415 is rotatably connected to one end of the second support rod 418. The other end of the second support rod 418 is fixed to the first sliding plate 419. The edge of the first sliding plate 419 is flush with the edge of the turntable 414. The sliding connection is as follows: Slide 1 419 and Slide 2 420 are slidably connected. The inner wall of Slide 2 420 is slidably connected to both sides of the trolley 421. Inner wheels 422 are rotatably connected to both sides of the trolley 421. The inner wheels 422 rotate on Slide 2 420. Outer wheels 423 are rotatably connected to both sides of the trolley 421. The outer wheels 423 rotate on Slide 1 419. Handles 425 are provided on both sides of the trolley 421. A universal wheel 424 is provided at the front end of Slide 2 420. The universal wheel 424 slides on the base plate 7. The lower end of the support column 416 abuts against the base plate 7.

[0076] The working principle of the above technical solution is as follows: when the maintenance equipment and construction waste in the receiving well body 1 need to be transported out of the receiving well body 1, the front end of the sliding plate two 420 is pulled forward to move, the sliding plate two 420 and the sliding plate one 419 slide relative to each other, the combined length of the sliding plate two 420 and the sliding plate one 419 is increased, the front end of the sliding plate two 420 is rotated, and under the action of the universal wheel 424, the sliding plate two 420 rotates as a whole, driving the sliding plate one 419 to rotate with the sliding plate two 420, the fixed support rod two 418 at the bottom of the sliding plate one 419 rotates with the center column 415, the edge of the sliding plate one 419 slides relative to the edge of the rotating disc 414, driving the sliding plate two 420 and the sliding plate one 419 to rotate as a whole, so that the trolley 421 on the sliding plate two 420 and the sliding plate one 419 can reach any position at the bottom of the receiving well body 1, and is suitable for transportation work in a large receiving well;

[0077] The sliding plate two 420 is rotated, driving the sliding plate two 420 and the sliding plate one 419 to rotate as a whole, and the orientation of the sliding plate two 420 and the sliding plate one 419 is adjusted to the construction waste, the sliding plate two 420 is pulled forward, the sliding plate two 420 and the sliding plate one 419 slide relative to each other, the front end of the sliding plate two 420 is moved to the construction waste, the trolley 421 is moved from the sliding plate one 419 to the front end of the sliding plate two 420, and then the trolley 421 is moved to the vicinity of the construction waste, so that the construction waste can be conveniently loaded into the trolley 421;

[0078] When the trolley 421 is on the sliding plate one 419, the outer wheels 423 at both ends of the trolley 421 slide on the upper surface of the sliding plate one 419, and the outer sides of the two outer wheels 423 are tightly attached to the inner wall of the sliding plate one 419, when the trolley 421 is moved from the sliding plate one 419 to the sliding plate two 420, the inner wheels 422 at the bottom of the trolley 421 slide on the upper surface of the sliding plate two 420, and the two sides of the trolley 421 are tightly attached to the inner wall of the sliding plate two 420, so that when the combined length of the sliding plate one 419 and the sliding plate two 420 changes, the trolley 421 does not jam or deviate during movement, ensuring the stability of the movement and transportation of the trolley 421;

[0079] After the construction waste is loaded into the trolley 421, the trolley 421 loaded with the construction waste is slid to the rotating disc 414, the trolley 421 is rotated, driving the rotating disc 414 to rotate on the center column 415, so that the trolley 421 faces the steel frame 401, after the angle adjustment of the trolley 421 is completed, the trolley 421 is moved forward, and the trolley 421 is moved to the support table 408, and the outer sides of the two outer wheels 423 are tightly attached to the guide plate 409;

[0080] The output end of the driving motor is connected to the rotating shaft one 402, the driving motor is started, the rotating shaft one 402 is driven to rotate, the chain 404 is driven to rotate, the transmission wheel 405 is driven to rotate, the rotating shaft two 403 is driven to rotate, the rotating shaft one 402 and the rotating shaft two 403 are driven to rotate, the conveyor belt one 406 and the conveyor belt two 426 are driven, and a plurality of supporting plates 407 are arranged on the conveyor belt one 406 and the conveyor belt two 426. Two supporting plates 407 in the same horizontal position form a group of supporting plates 407, a plurality of groups of supporting plates 407 are arranged between the conveyor belt one 406 and the conveyor belt two 426, a group of supporting plates 407 moves upward and is arranged at the bottom of the two sides of the trolley 421, the trolley 421 loaded with construction waste is lifted upward until the trolley 421 is lifted to the upper opening of the receiving well body 1, and then the trolley 421 is transferred, so that the labor cost of removing the construction waste is reduced, and time and labor are saved.

[0081] Due to the arrangement of a plurality of groups of supporting plates 407, a plurality of trolleys 421 can be placed on the sliding plate two 420 and the sliding plate one 419, a plurality of trolleys 421 can be lifted by the plurality of groups of supporting plates 407 for upward transportation, and a plurality of trolleys 421 can work simultaneously, so that the work efficiency is improved.

[0082] Embodiment seven

[0083] As shown in Figures 1-20 , a plurality of connecting steel rods 410 are arranged side by side on the steel frame 401, a plurality of clamping grooves 411 are arranged at the end of the steel frame 401, a long plate 412 is clamped in the clamping grooves 411, and a plurality of protrusions 413 are arranged on the inner surface of the long plate 412.

[0084] The working principle of the above technical scheme is that a plurality of connecting steel rods 410 are arranged side by side on the steel frame 401, the connecting steel rods 410 not only increase the structural stability of the steel frame 401 as a whole, but also serve as a climbing ladder, and workers can move downward by stepping on the connecting steel rods 410, and the workers can rest their backs on the long plate 412.

[0085] During the downward movement of the workers, the long plate 412 serves as a back support, effectively reducing the risk of falling of the workers, and the plurality of protrusions 413 arranged on the long plate 412 increase the friction between the workers and the long plate 412, preventing the workers from slipping downward.

[0086] The end of the steel frame 401 is provided with a plurality of clamping grooves 411, and the long plate 412 is clamped in the clamping grooves 411 at different positions, so as to change the distance between the connecting steel rods 410 and the long plate 412, and to adaptively adjust the climbing space for workers of different sizes.

[0087] It is to be understood that the present application is described by way of example only, and that modifications or alterations can be made to the features and embodiments described without departing from the spirit and scope of the application. In addition, modifications can be made to the features and embodiments described to accommodate specific situations and materials without departing from the spirit and scope of the application. Accordingly, the application is not limited to the specific embodiments disclosed herein, but rather, the scope of the application includes all embodiments falling within the scope of the claims.

Claims

1. A shuttle receiving well, characterized in that, The utility model provides a kind of receiving well body (1), receiving well body (1) bottom is equipped with bottom plate (7), receiving well body (1) is communicated with the top pipe by the top pipe insertion hole (6) of its side surface being equipped, receiving well body (1) is equipped with support plate (5) inside, support plate (5) is equipped with climbing assembly (2) on, receiving well body (1) appearance is shuttle-shaped structure, receiving well body (1) upper end is equipped with upper cover component (3); The receiving well body (1) is equipped with a conveying component (4) inside, the conveying component (4) includes a steel frame (401), the steel frame (401) is fixed on the inner wall of the receiving well body (1), two rotating shafts (402) and two rotating shafts (403) are rotatably connected to the steel frame (401), a conveyor belt (406) is arranged between the two rotating shafts (402), a conveyor belt (426) is arranged between the two rotating shafts (403), a supporting plate (407) is arranged on the conveyor belt (406) and the conveyor belt (426), a transmission wheel (405) is rotatably connected to the steel frame (401), a chain (404) is arranged between the rotating shaft (402) and the transmission wheel (405), the transmission wheel (405) is in gear transmission with the rotating shaft (403), a supporting table (408) is arranged at the bottom of the steel frame (401), and a guide plate (409) is arranged on both sides of the supporting table (408). The edge of the supporting table (408) is slidably connected to the edge of the rotating disc (414), the supporting table (408) is flush with the upper surface of the rotating disc (414), the lower end of the rotating disc (414) is rotatably connected to a central column (415), one end of the central column (415) is rotatably connected to a supporting rod (417), the other end of the supporting rod (417) is fixed to the bottom of the supporting table (408), the central column (415) is threadedly connected to a supporting column (416), one end of the central column (415) is rotatably connected to a supporting rod (418), the other end of the supporting rod (418) is fixed to a sliding plate (419), the edge of the sliding plate (419) is slidably connected to the edge of the rotating disc (414), the sliding plate (419) is slidably connected to a sliding plate (420), the inner wall of the sliding plate (420) is slidably connected to both sides of a trolley (421), the inner wheel (422) is rotatably connected to both sides of the trolley (421), the inner wheel (422) is rotatable on the sliding plate (420), the outer wheel (423) is rotatably connected to both sides of the trolley (421), the outer wheel (423) is rotatable on the sliding plate (419), the handle (425) is arranged on both sides of the trolley (421), the universal wheel (424) is arranged at the front end of the sliding plate (420), and the universal wheel (424) is slidably arranged on the bottom plate (7).

2. A shuttle receiver well according to claim 1, characterised in that The climbing assembly (2) includes four climbing supports (201), the four climbing supports (201) are fixed on the support plate (5), and the adjacent two climbing supports (201) are fixedly connected by a connecting plate (204).

3. A shuttle receiver well according to claim 2, wherein, Four climbing supports (201) are provided with snap rings (205) at the upper ends, and the snap rings (205) are buckled with the ends of the fall arresters (206).

4. A shuttle receiver well according to claim 1, wherein, The upper cover part (3) comprises a lower steel structure support (307) fixed on the upper end of the receiving well body (1) through a support rod (308), a left steel structure support (310) and a right steel structure support (311) slidingly connected to the upper end of the lower steel structure support (307), a connecting rod (309) fixed in the middle of the lower steel structure support (307), a gear (312) rotatably connected to the connecting rod (309), a rack one (313) and a rack two (314) rotatably connected to the two sides of the gear (312), the rack one (313) fixed at the end of the left steel structure support (310), the rack two (314) fixed at the end of the right steel structure support (311), a left half cover (301) fixed at the upper end of the left steel structure support (310), and a right half cover (302) fixed at the upper end of the right steel structure support (311).

5. A shuttle receiver well according to claim 4, wherein, The left steel structure support (310) and the right steel structure support (311) are provided with bottom rods (315) at the ends, and the bottom rods (315) abut against the lower side of the end of the lower steel structure support (307).

6. A shuttle receiver well according to claim 5, wherein, The left half cover (301) is provided with an upper butt joint plate one (303) and a lower water receiving plate (304) at the end, the right half cover (302) is provided with an upper butt joint plate two (305) and an insertion plate one (306) at the end, the end of the upper butt joint plate one (303) is butted with the end of the upper butt joint plate two (305), the insertion plate one (306) is inserted between the upper butt joint plate one (303) and the lower water receiving plate (304), and the cross section of the lower water receiving plate (304) is a downward recess.

7. A shuttle receiver well according to claim 6, characterised in that, The right half cover (302) is provided with an insertion rod (317) outside, the left half cover (301) is provided with an insertion plate two (318) outside, the insertion rod (317) is inserted into the insertion plate two (318), and the end of the insertion rod (317) is provided with a nut (319). The left half cover (301) and the right half cover (302) are both provided with ventilation holes (316) upward.

8. A shuttle receiver well according to claim 1, wherein, The steel frame (401) is provided with a plurality of connecting steel rods (410) side by side on the upper end, the end of the steel frame (401) is provided with a plurality of clamping grooves (411), the clamping grooves (411) are clamped with long plates (412), and the inner surfaces of the long plates (412) are provided with a plurality of protrusions (413).

Citation Information

Patent Citations

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    CN116695779A

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    CN202073119U