Container with drainage system

By installing a water collection trough, an L-shaped water baffle, and a foreign object collection mechanism on the top of the container expansion frame, the problem of insufficient drainage at the top of the expansion frame is solved, enabling the orderly discharge of rainwater and the collection of foreign objects, thus improving the user experience and lifespan of the container.

CN223523267UActive Publication Date: 2025-11-07SHANGHAI YANGPIN CONSTR TECH CO LTD
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Patent Information

Application Number
CN202423127290.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-11-07
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

Existing container self-expanding frame structures lack an effective drainage system at the top, causing rainwater to flow everywhere or accumulate, affecting the user experience and shortening the container's lifespan.

Method used

A water collection trough, an L-shaped water baffle, and a foreign object collection mechanism are installed on the top of the container's extended frame structure. Through the inclined design and motor-driven guide plate, rainwater is discharged in an orderly manner and foreign objects are collected to prevent leakage.

Benefits of technology

It effectively prevents rainwater from flowing around and accumulating, improving the comfort and lifespan of the container and ensuring a dry internal environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The container with the drainage system comprises a container body, a space expansion structure is installed on the inner wall of the bottom of the container body in a sliding mode, and an overturning side plate for the space expansion structure to enter and exit and supporting the space expansion structure is rotationally arranged on one side of the container body. The space expansion structure is a C-shaped frame structure provided with a door and window, a ceiling is fixedly connected to the top of the C-shaped frame structure, the top surface of the ceiling is obliquely arranged towards the side away from the container body, and the front side and the two ends of the ceiling are each provided with two drainage structures. Each drainage structure comprises a water receiving groove connected to the lower portion of the front edge of the ceiling and an L-shaped water baffle connected to the corresponding end of the ceiling, the two drainage structures are arranged on the ceiling of the space expansion structure, the water receiving grooves efficiently collect and drain rainwater, the L-shaped water baffles at the two ends accurately prevent the rainwater from permeating from the two sides, it is ensured that the rainwater flows to a drainage area, and the drainage effect is improved. And the leakage risk caused by disordered water flow is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the container field, and specifically, relates to a container with a drainage system. BACKGROUND

[0002] With the continuous development of logistics transportation and temporary building demand, the application scene of the container is increasingly widespread. The traditional container space is fixed, and it is difficult to meet the requirements of space flexible change in some special scenes. For example, in the scenes such as temporary housing, mobile warehouse or temporary commercial exhibition, sometimes it is necessary to expand the internal space of the container in a limited site to improve the space utilization or meet the temporary increase of functional requirements. Therefore, there is a container that can be expanded at present, a frame structure space is arranged in the container, the side panel of the container is arranged to be connected with the whole rotation, and the side plate can be opened when the space needs to be expanded, the independent frame structure space in the interior is pushed out to expand the usable space. However, the existing independent expansion frame structure generally does not have a drainage function at the top, and in rainy weather, the lack of fixed and effective drainage structure on the top of the frame structure will cause the rainwater to flow everywhere or accumulate on the top of the frame structure. When the water flows to the position with poor sealing, water seepage will occur, which affects the use experience of the container. Long-term water accumulation will also affect the service life of the whole container.

[0003] How to invent a container with a drainage system to improve these problems has become a problem to be solved by the technical personnel in the field. CONTENT OF THE UTILITY MODEL

[0004] In order to make up for the above shortcomings, the utility model provides a container with a drainage system, which aims to improve the existing container with expansion function. The top of the independent expansion frame structure generally does not have a drainage function, and in rainy weather, the lack of fixed and effective drainage structure on the top of the frame structure will cause the rainwater to flow everywhere or accumulate on the top of the frame structure. When the water flows to the position with poor sealing, water seepage will occur, which affects the use experience of the container. Long-term water accumulation will also affect the service life of the whole container.

[0005] The utility model discloses a container with drainage system, including container body, the inner wall sliding installation of container body bottom is provided with space extension structure, the one side of container body is provided with the turnover side plate for the space extension structure access and to the space extension structure support and turn over, the space extension structure is the C type frame structure of being provided with door and window, the top fixedly connected of C type frame structure is roof, the top surface of roof is away from the one side of container body and inclines to set, the front side and both ends of roof are provided with two groups of drainage structure respectively, and each group drainage structure includes the water collecting groove connected in the front of roof and the L type fender connected in the corresponding end of roof.

[0006] In a preferred technical scheme of the utility model, each water collecting groove is fixedly connected on the inner wall of the corresponding C-shaped connecting frame through a fastener, the surface of each C-shaped connecting frame is fixedly connected with the bottom surface of the space extension structure through a fastener, and the bottom inner wall of each water collecting groove is inclined to one end, and one end of the bottom inner wall of the water collecting groove is communicated with one end of the downspout, and the two water collecting grooves are communicated at the bottom inner wall of the higher end.

[0007] In a preferred technical scheme of the utility model, each water collecting groove is fixedly connected on the inner wall of the corresponding C-shaped connecting frame through a fastener, the surface of each C-shaped connecting frame is fixedly connected with the bottom surface of the space extension structure through a fastener, and the bottom inner wall of each water collecting groove is inclined to one end, and one end of the bottom inner wall of the water collecting groove is communicated with one end of the downspout, and the two water collecting grooves are communicated at the bottom inner wall of the higher end.

[0008] In a preferred technical scheme of the utility model, the two storage tanks are provided with a plurality of evenly distributed water seepage holes on the opposite side surfaces.

[0009] In a preferred technical scheme of the utility model, the driving device is a motor, the motor is fixedly installed at the corresponding end of the front surface of the space extension structure, a driving gear is fixedly sleeved on one end of the output shaft of the motor, the driving gear is meshed and connected with a driven gear on one side, and the driven gear is fixedly sleeved on one end of the rotating shaft below the water collecting groove.

[0010] In a preferred technical scheme of the utility model, the front surface of each water collecting groove is fixedly connected with an anti-overflow plate through a fastener, and the end surface of each water collecting groove is fixedly connected with an anti-overflow angle plate through a fastener.

[0011] In a preferred technical scheme of the utility model, every L type water baffle is fixedly connected with the corresponding one end surface of space expansion structure through corresponding J type connecting water baffle, one side surface of J type connecting water baffle is fixedly connected with one end surface of space expansion structure through fastener, the other side surface of J type connecting water baffle is fixedly connected with one side inner wall of L type water baffle through fastener, N type supporting water baffle is arranged between the other side inner wall of L type water baffle and the upper surface of ceiling, and the top surface of N type supporting water baffle is fixedly connected with one side inner wall of L type water baffle through fastener, and the both end edges of N type supporting water baffle abut on the upper surface of ceiling.

[0012] In a preferred technical scheme of the utility model, the both end edges of N type supporting water baffle are clamped with sealing rubber strips.

[0013] The utility model discloses a container with drainage system, which has the advantages that two groups of drainage structures are arranged on the ceiling of the space expansion structure during use, so that rainwater can flow rapidly along the preset path. The water collecting groove at the front edge of the ceiling efficiently collects and discharges a large amount of rainwater, preventing water accumulation on the ceiling. The L type water baffles at both ends accurately block rainwater from seeping from both sides, ensuring that rainwater flows to the designated drainage area in an orderly manner, avoiding the chaotic situation of rainwater flowing everywhere on the top, effectively reducing the risk of leakage caused by disordered water flow, and ensuring the dryness and safety of the internal environment of the container. BRIEF DESCRIPTION OF DRAWINGS

[0014] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiments, and it should be understood that the following drawings only show some embodiments of the utility model, and should not be regarded as limiting the scope, and for those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.

[0015] Figure 1 It is the overall structure schematic perspective drawing provided by the embodiment of the utility model;

[0016] Figure 2 It is the overall structure schematic perspective drawing provided by the embodiment of the utility model;

[0017] Figure 3 It is the overall structure schematic perspective drawing provided by the embodiment of the utility model;

[0018] Figure 4 It is the overall structure schematic perspective drawing provided by the embodiment of the utility model;

[0019] Figure 5The utility model provides a L type water baffle whole and space expansion structure connecting structure schematic perspective view for the utility model embodiment.

[0020] In the drawing: 1-container body; 2-space expansion structure; 3-drainage structure; 101-overturning side plate; 301-water receiving groove; 302-C type connecting frame; 303-downpipe; 304-L type water baffle; 305-J type connecting water baffle rod; 306-overflow prevention plate; 307-pivot; 308-flow guide plate; 309-residue storage groove; 310-water seepage hole; 311-driven gear; 312-driving gear; 313-motor; 314-N type supporting water baffle rod; 315-sealing rubber strip; 316-overflow prevention angle plate. DETAILED DESCRIPTION

[0021] In order to make the utility model embodiment purposes, technical scheme and advantages more clearly, below will combine the drawing in the utility model embodiment, the technical scheme in the utility model embodiment is clearly and completely described, obviously, the described embodiment is the part embodiment of the utility model, instead of all the embodiment. Based on the embodiment in the utility model, all other embodiments obtained by the person skilled in the art without making creative labor are within the protection scope of the utility model.

[0022] Please refer to Figures 1 to 5 The utility model provides a kind of technical scheme: a container with drainage system, including container body 1, space expansion structure 2 is slidably installed in the inner wall of the bottom of container body 1, overturning side plate 101 is rotatably arranged on the side of container body 1 for space expansion structure 2 to enter and exit and support space expansion structure 2, space expansion structure 2 is C-shaped frame structure with door and window, top ceiling is fixedly connected in the top of C-shaped frame structure, top ceiling top surface is inclined to the side away from container body 1, and the front side and both ends of top ceiling are provided with two groups of drainage structure 3 respectively, each drainage structure 3 includes water receiving groove 301 connected to the front of top ceiling below and L type water baffle 304 connected to the corresponding end of top ceiling.

[0023] Please refer to Figures 2 to 4 Each water receiving groove 301 is fixedly connected on the inner wall of the side of corresponding C type connecting frame 302 by fastener, the surface of the side of each C type connecting frame 302 is fixedly connected with the front side of the bottom surface of space expansion structure 2 by fastener, the bottom inner wall of each water receiving groove 301 is inclined to one end, and the end of the bottom inner wall of water receiving groove 301 is connected with one end of downpipe 303, two water receiving grooves 301 are connected with the end of the bottom inner wall of higher side.

[0024] The water collecting groove 301 is fixed in the inner wall of the C-shaped connecting frame 302 by a fastener, and the C-shaped connecting frame 302 is fixed to the front side of the top bottom of the space expansion structure 2. The inclined design of the bottom of the water collecting groove 301 allows rainwater to flow naturally to the downpipe 303 at one end. The two water collecting grooves 301 are connected at the relatively high end, which can evenly distribute the rainwater to the downpipes 303 on both sides, avoiding local water accumulation. The installation stability and reliability of the water collecting groove 301 are improved, the drainage efficiency of the water collecting groove 301 is optimized, the water accumulation problem caused by poor drainage is reduced, the dry environment inside the space expansion structure 2 is further ensured, the service life is prolonged, and the use comfort is improved.

[0025] Further, each water collecting groove 301 is provided with a foreign matter collecting mechanism at one end near the communication with the downpipe 303. Each foreign matter collecting mechanism includes a rotating shaft 307 rotatably installed in a through hole formed in the inner wall of the bottom of the corresponding water collecting groove 301. The rotating shaft 307 is integrally provided with a guide plate 308 on one side of the outer wall. The water collecting groove 301 is provided with a residue storage groove 309 on both sides of the communication with the downpipe 303 on the inner wall of the bottom. The two residue storage grooves 309 are provided with openings towards the higher end of the inner wall of the bottom of the water collecting groove 301. The rotating shaft 307 is located between the two residue storage grooves 309, and the rotating shaft 307 is connected with a driving device at one end below the water collecting groove 301.

[0026] The rotating shaft 307 passes through the through hole of the bottom of the water collecting groove 301 and can freely rotate. The guide plate 308 is integrally formed with the rotating shaft 307. The driving device is installed on the front side of the space expansion structure 2 and connected with the rotating shaft 307 to drive the rotating shaft 307 to rotate. When rainwater and foreign matter flow into the water collecting groove 301, the rotating shaft 307 drives the guide plate to rotate intermittently, changes the direction of the water flow and the movement trajectory of the foreign matter, so that the foreign matter can enter the residue storage groove 309 for collection, reducing the blockage of the downpipe 303 by the foreign matter covering the top end and affecting the drainage efficiency.

[0027] Further, a plurality of evenly distributed water seepage holes 310 are formed in the opposite side surfaces of the two residue storage grooves 309.

[0028] A plurality of water seepage holes 310 are evenly formed in the opposite side surfaces of the two residue storage grooves 309. When rainwater carrying foreign matter enters the residue storage groove 309, the rainwater can slowly seep out through the water seepage holes 310, flow back to the water collecting groove 301 and be discharged through the downpipe 303, thereby improving the drainage efficiency.

[0029] Further, the driving device is a motor 313 fixedly installed on the front surface of the space expansion structure 2 at one end. A driving gear 312 is fixedly sleeved on one end of the output shaft of the motor 313. The driving gear 312 is engagedly connected with a driven gear 311. The driven gear 311 is fixedly sleeved on one end of the rotating shaft 307 below the water collecting groove 301.

[0030] The motor 313 has a positive and negative rotation function, the motor 313 is fixed at the corresponding position of the space expansion structure 2 front side, the motor 313 output shaft is installed with the driving gear 312, the driving gear 312 is engaged with the driven gear 311 fixed on the rotating shaft 307. When the motor 307 starts, the power is transmitted to the rotating shaft 307, so that the angle of the guide vane 308 can be adjusted in the predetermined direction, so that the flow direction of the water flow driven by the foreign matter can be reciprocatingly adjusted, and the two residue storage tanks 309 can collect foreign matter.

[0031] Further, the front side surface of each water collecting groove 301 is fixedly connected with the anti-overflow plate 306 through the fastener, and the end surface of each water collecting groove 301 is fixedly connected with the anti-overflow angle plate 316 through the fastener, and the anti-overflow angle plate 316 is connected between the corresponding L-shaped water retaining plate 304 and the one end of the anti-overflow plate 306.

[0032] The anti-overflow plate 306 is fixed on the front side surface of the water collecting groove 301 by using the fastener, and the anti-overflow angle plate 316 is fixed on the end surface of the water collecting groove 301 and is closely connected with the L-shaped water retaining plate 304 and the anti-overflow plate 306, so as to form a complete protection edge, so as to reduce the situation that when the water amount is large, the rainwater cannot be discharged in time in the water collecting groove 301 and overflow outward, and improve the practicability in use.

[0033] Please refer to Figure 2 and Figure 5 Each L-shaped water retaining plate 304 is fixedly connected with the corresponding one end surface of the space expansion structure 2 through the corresponding J-shaped connecting water retaining rod 305, one side surface of the J-shaped connecting water retaining rod 305 is fixedly connected with the one end surface of the space expansion structure 2 through the fastener, the other side surface of the J-shaped connecting water retaining rod 305 is fixedly connected with the one side inner wall of the L-shaped water retaining plate 304 through the fastener, and the N-shaped supporting water retaining rod 314 is arranged between the other side inner wall of the L-shaped water retaining plate 304 and the upper surface of the ceiling, and the top surface of the N-shaped supporting water retaining rod 314 is fixedly connected with the one side inner wall of the L-shaped water retaining plate 304 through the fastener, and the two end edges of the N-shaped supporting water retaining rod 314 abut against the upper surface of the ceiling.

[0034] The one side of the J-shaped connecting water retaining rod 305 is fixed on the one end surface of the space expansion structure 2, the other side is fixed on the one side inner wall of the L-shaped water retaining plate 304, the top of the N-shaped supporting water retaining rod 314 is connected with the other side inner wall of the L-shaped water retaining plate 304, and the two end edges abut against the upper surface of the ceiling, which together form a stable supporting and connecting structure to ensure the stability of the installation of the L-shaped water retaining plate 304, and at the same time, the N-shaped supporting water retaining rod 314 is located inside the J-shaped connecting water retaining rod 305, so as to serve as the first layer of waterproof structure to prevent water from penetrating from both ends of the ceiling and guide the water, so that the water continues to flow along the ceiling to the one side of the water collecting groove 301, and the J-shaped connecting water retaining rod 305 is located outside as the second layer of waterproof structure to further improve the waterproof effect of both ends of the ceiling.

[0035] Further, the N-shaped support water baffle 314 has a sealing rubber strip 315 clamped on the edge of both ends.

[0036] The sealing rubber strip 315 is clamped on the edge of both ends of the N-shaped support water baffle 314 to tightly fit the ceiling and form a sealed barrier. The sealing between the N-shaped support water baffle 314 and the upper surface of the ceiling is improved, which can maintain good sealing performance even in long-term use or under vibration and other conditions, further improving the overall waterproof quality and reliability of the container.

[0037] Working principle: In normal state, the space expansion structure 2 is located in the container body 1. When the space needs to be expanded, the flip side plate 101 on one side of the container body 1 is opened, and the space expansion structure 2 is slid outward from the inside of the container through the sliding device at the bottom. At this time, the ceiling at the top of the space expansion structure 2 and the C-shaped frame 302 installed below it constitute the boundary of the expanded space. When it rains, the rain falls on the surface of the ceiling. Since the top surface of the ceiling is inclined away from the container body 1, the rain will flow along the ceiling to the front side and the two ends. For the rainwater on the front edge of the ceiling, it will drip into the water collecting groove 301. The water collecting groove 301 is firmly fixed to the bottom front side of the ceiling through the C-shaped connecting frame 302. The bottom inner wall of each water collecting groove 301 is inclined to one end, and the rainwater flows to the low end under the action of gravity and is discharged through the downpipe 303 connected at the low end. The two water collecting grooves 301 are connected to each other at the relatively higher end of the bottom inner wall, ensuring that the rainwater is evenly distributed to the two downpipes 303 to prevent water accumulation on one side. An alien object collecting mechanism is arranged at one end of the water collecting groove 301 near the communication of the downpipe 303. When the rainwater flows into the water collecting groove 301, the motor 307 is started, the output shaft of the motor 307 drives the driving gear 312 to rotate, and the driving gear 312 is engaged with the driven gear 311, so that the rotating shaft 307 with the guide plate 308 fixed thereon rotates. The guide plate 308 guides the foreign matter entering the water collecting groove 301 to the slag storage tank 309 on both sides of the rotating shaft 307 under the action of water flow. The water seepage hole 310 on the opposite side surface of the slag storage tank 309 can make the rainwater seep out, avoiding water accumulation in the slag storage tank 309. For the rainwater at both ends of the ceiling, the L-shaped water baffle 304 is fixedly connected to the corresponding end surface of the space expansion structure 2 through the J-shaped connecting water baffle 305, and additional support is provided by the N-shaped support water baffle 314. The sealing rubber strip 315 clamped on the edge of both ends of the N-shaped support water baffle 314 ensures the sealing between the ceiling, effectively preventing rainwater from penetrating into the space expansion structure from both ends.

[0038] It should be noted that the specific model and specifications of the motor 313 need to be selected and determined according to the actual specifications of the device. The specific selection calculation method adopts the existing technology in the art, and therefore will not be described in detail.

[0039] The power supply of the motor 313 and its principle are clear to those skilled in the art, and will not be described in detail here.

[0040] The above merely describes the preferred embodiments of the present application, and is not intended to limit the present application. Those skilled in the art can make various modifications and changes to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A container with a drainage system, characterized in that, The utility model provides a container body, the space expansion structure is slidably installed in the bottom inner wall of container body, the turnover side plate who provides space expansion structure access and supports space expansion structure is rotatably arranged in one side of container body, space expansion structure is C type frame structure who sets up door and window, the top of C type frame structure is fixedly connected with roof, the top surface of roof is inclinedly arranged away from one side of container body, the front side and both ends of roof are equipped with two groups of drainage structures respectively, and each group drainage structure includes water collecting groove connected with the lower side of roof front edge and L type water baffle connected with the corresponding end of roof.

2. The container with a drainage system as claimed in claim 1, characterized in that: Each water collecting groove is fixedly connected on the inner wall of corresponding C type connecting frame side through fastener, the surface of each C type connecting frame side is fixedly connected with the bottom surface front side of space expansion structure through fastener, the bottom inner wall of each water collecting groove is inclined to one end, and one end of water collecting groove bottom inner wall is connected with one end of downspout, and two water collecting grooves are communicated at the bottom inner wall higher end opposite to each other.

3. The container with a drainage system as claimed in claim 2, characterized in that: Each water collecting groove is provided with foreign matter collecting mechanism near one end of downspout communication, each foreign matter collecting mechanism includes rotating shaft, rotating shaft is rotatably installed in the through hole of corresponding water collecting groove bottom inner wall, the outer wall of rotating shaft one side is integrally provided with deflector, the bottom inner wall of water collecting groove is provided with residue storage groove on both sides of downspout communication, the opening of residue storage groove is arranged towards the higher end of water collecting groove bottom inner wall, and rotating shaft is located between two residue storage grooves, and rotating shaft is connected with driving device at the lower end of water collecting groove.

4. The container with a drainage system as claimed in claim 3, wherein: The opposite side surface of two residue storage grooves is provided with a plurality of evenly distributed water seepage holes.

5. The container with a drainage system as claimed in claim 3, wherein: The driving device is motor, the motor is fixedly installed on the corresponding end of front side surface of space expansion structure, the output shaft one end of motor is fixedly provided with driving gear, the driving gear is meshedly connected with one side driven gear, and the driven gear is fixedly provided on the lower end of rotating shaft.

6. The container with a drainage system as claimed in claim 1, wherein: The front side surface of each water collecting groove is fixedly connected with anti-overflow plate through fastener, and the end surface of each water collecting groove is fixedly connected with anti-overflow angle plate through fastener, and the anti-overflow angle plate is connected between corresponding L type water baffle and one end of anti-overflow plate.

7. The container with a drainage system according to claim 1, characterized in that: Each L type water baffle is fixedly connected with corresponding J type connecting water baffle and corresponding end surface of space expansion structure, the one side surface of J type connecting water baffle is fixedly connected with one end surface of space expansion structure through fastener, the other side surface of J type connecting water baffle is fixedly connected with one side inner wall of L type water baffle through fastener, N type supporting water baffle is arranged between the other side inner wall of L type water baffle and the upper surface of roof, the top surface of N type supporting water baffle is fixedly connected with one side inner wall of L type water baffle through fastener, and the both end edges of N type supporting water baffle abut on the upper surface of roof.

8. The container with a drainage system as claimed in claim 7, characterized in that: The both end edges of N type supporting water baffle are all clamped with sealing rubber strip.