Portable movable waterproof spliced house
By installing C-clamps and drain pipes in the modular roof, a connected drainage channel is formed, solving the problem of water seepage caused by gaps between the modular roof panels. This achieves both waterproofing and stable splicing, expanding the range of applications.
Patent Information
- Application Number
- CN202423001177.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-05
AI Technical Summary
After the existing spliced houses are assembled, there are gaps between the panels, which causes water to penetrate, affects the use effect, and limits its scope of application.
The system uses components such as a first C-clamp, a second C-clamp, a drain pipe, and small clamps to form multiple interconnected drainage channels, ensuring that water can be effectively discharged and preventing water seepage.
It achieves waterproofing for modular houses, expands their application range, and can both securely connect and effectively drain water, improving usability and convenience.
Smart Images

Figure CN223468856U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to waterproof house technical field especially light portable waterproof spliced house. BACKGROUND
[0002] The spliced house is mainly composed of the panels made of different materials as support, the connecting of the pull nails, bolts and self-tapping nails, can be used repeatedly, and realizes the indoor beautiful, construction quick and safe temporary building concept.
[0003] At present, the existing spliced house (can refer to storage room or garage etc.) has gap between the panels after assembling, if it is placed outdoors, the external water is easy to penetrate into the inside of the spliced house, which leads to the damp inside of the spliced house at least, and makes the inside of the spliced house waterlogged at most, thereby greatly reduces the use effect of the spliced house, or makes the existing spliced house unable to be applied to outdoor place, thereby greatly reduces the use range of the spliced house, based on this, the light portable waterproof spliced house is provided. UTILITY MODEL CONTENTS
[0004] In view of the shortage of prior art, the utility model provides a light portable waterproof spliced house, the spliced house can effectively solve the problems in the background art after improvement.
[0005] The technical scheme of the utility model is:
[0006] A light portable waterproof spliced house, including side plate, top plate, top surface corner plate one, top surface corner plate two, side surface corner plate one, side surface corner plate two, first C type clamp, second C type clamp and small clamp.
[0007] The top surface corner plate one and the top surface corner plate two are connected between the side plate and the top plate, the top surface corner plate one is connected with the top surface corner plate two, the side surface corner plate one is connected with the side plate, the top surface corner plate two and the side surface corner plate two.
[0008] The first C type clamp is connected between the adjacent left and right side plates, the second C type clamp is connected between the adjacent front and rear top plates, and the first C type clamp and the second C type clamp are fixedly connected.
[0009] The installation groove is arranged on the side plate, the top plate, the top surface corner plate one, the top surface corner plate two, the side surface corner plate one and the side surface corner plate two, and the small clamp is connected between the adjacent side plate, top plate, top surface corner plate one, top surface corner plate two, side surface corner plate one and side surface corner plate two.
[0010] The inner part of the first C-shaped clamp and the second C-shaped clamp is respectively provided with a first sewage channel and a second sewage channel, the first sewage channel and the second sewage channel are communicated, a first sewage connecting channel is arranged between adjacent side plates, and the first sewage connecting channel is in communication with the first sewage channel.
[0011] Further, one end of the side plate is provided with a backflow surface, the other end of the side plate is provided with a backflow connecting surface, and the corresponding backflow surface and backflow connecting surface of the side plate and the side plate after being connected form the first sewage connecting channel.
[0012] Further, the top surface corner plate one is provided with a clamping groove, the top plate is connected with the sewage pipe through the clamping groove, the top surface corner plate two is provided with a clamping groove, and the top surface corner plate two and the top surface corner plate one are connected with the sewage pipe through the clamping groove, so that the sewage pipe is in communication with the top surface corner plate one and the top surface corner plate two.
[0013] Further, the top surface corner plate one and the top surface corner plate two are both provided with a backflow surface, and the backflow surface and the backflow connecting surface of the side plate form the first sewage connecting channel.
[0014] Further, one end of the side surface corner plate one is provided with a backflow surface, the other end of the side surface corner plate one is provided with a backflow connecting surface, and the corresponding backflow surface and backflow connecting surface of the side surface corner plate one and the side surface corner plate one after being connected form the first sewage connecting channel; one end of the side surface corner plate two is provided with a backflow connecting surface, and the corresponding backflow surface and backflow connecting surface of the side surface corner plate one and the side surface corner plate two after being connected form the first sewage connecting channel.
[0015] Further, the side plate, the top plate, the top surface corner plate one, the top surface corner plate two, the side surface corner plate one and the side surface corner plate two are all provided with a connecting plate, and the side plate, the top plate, the top surface corner plate one, the top surface corner plate two, the side surface corner plate one and the side surface corner plate two are all connected in the first C-shaped clamp or the second C-shaped clamp through the connecting plate.
[0016] Further, the inner wall of the first C-shaped clamp and the two connecting plates connected in the first C-shaped clamp form the first sewage channel; and the inner wall of the second C-shaped clamp and the two connecting plates connected in the second C-shaped clamp form the second sewage channel.
[0017] Further, the two side inner walls of the first C-shaped clamp and the second C-shaped clamp are connected with extrusion plates through screws, and the two extrusion plates are respectively abutted between the two connecting plates connected in the C-shaped clamp.
[0018] Further, the extrusion plate is provided with first teeth, the small clamp includes an upper connecting part and a lower connecting part, the upper connecting part and the lower connecting part are fixed through screws, and the upper connecting part and the lower connecting part are provided with second teeth at the bayonets.
[0019] Further, the materials of the side plates, the top plates, the top corner plates, the side corner plates are EPP, so that the structure is more portable, the cost is reduced, and the splicing difficulty is reduced.
[0020] The utility model discloses the beneficial effect that:
[0021] Compared with the prior art, the utility model discloses a first C type clamp, a second C type clamp, a drain pipe and a small clamp, which can effectively clamp several side plates, top plates, top corner plates, top corner plates, side corner plates and side corner plates, and form a water outlet channel, a water outlet channel and a water outlet connecting channel to drain water from the gap between the plates, achieving better waterproof effect. The utility model mainly forms multiple interconnected water outlet channels in the structure of plate splicing and fastening. It does not affect the compact and stable splicing of the plates, but also ensures that the infiltrated water can be effectively drained, achieving good drainage effect and achieving the purpose of waterproofing. It can be applied to outdoor places, greatly improving its use effect and expanding its use range, and has high practicality. In summary, the splicing drainage system formed by the utility model has the function of killing two birds with one stone. It can effectively splice, disassemble and move, and effectively drain water. Moreover, the system is safe and reliable, and the design is ingenious. It effectively solves the contradiction of poor waterproofing of the splicing structure, and its creativity and innovation reach a new height. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a structure schematic view of the utility model;
[0023] Figure 2 It is a sectional view of the utility model;
[0024] Figure 3 It is the A of the utility model Figure 2 enlarged view;
[0025] Figure 4 It is a plan view of the utility model after removing several top plates and top corner plates;
[0026] Figure 5 It is the B of the utility model Figure 4 enlarged view;
[0027] Figure 6 It is the C of the utility model Figure 4 enlarged view;
[0028] Figure 7 is a schematic view of the side plate connecting the side plate of the utility model;
[0029] Figure 8 is a schematic view of one end of the side plate of the utility model;
[0030] Figure 9 is a schematic view of the other end of the side plate of the utility model;
[0031] Figure 10 is a schematic view of the structure of the small clip of the utility model;
[0032] Figure 11 is a schematic view of the adjacent top plate connecting the drain pipe of the utility model;
[0033] Figure 12 is a schematic view of the structure of the top plate of the utility model;
[0034] Figure 13 is a schematic view of the structure of the top surface corner plate one of the utility model;
[0035] Figure 14 is a schematic view of the structure of the top surface corner plate two of the utility model;
[0036] Figure 15 is a schematic view of the structure of the side surface corner plate one of the utility model;
[0037] Figure 16 is a schematic view of the structure of the side surface corner plate two of the utility model.
[0038] In the figure, 1, side plate; 2, top plate; 3, top surface corner plate one; 4, top surface corner plate two; 5, side surface corner plate one; 6, side surface corner plate two; 7, first C-shaped clip; 8, second C-shaped clip; 9, small clip; 10, mounting groove; 11, drain passage one; 12, drain passage two; 13, drain connecting passage one; 14, clamping groove; 15, drain pipe; 16, backflow surface; 17, backflow connecting surface; 18, connecting plate; 19, extrusion plate; 20, first tooth; 21, upper connecting part; 22, lower connecting part; 23, second tooth. DETAILED DESCRIPTION
[0039] The specific implementation of the utility model will be further described below in combination with the drawings:
[0040] As shown in the drawings, Figures 1-16
[0041] The utility model provides a portable waterproof spliced house, including spliced house who splices by a plurality of side plates 1, a plurality of roof plates 2, a plurality of top corner plates one 3, a plurality of top corner plates two 4, a plurality of side corner plates one 5 and a plurality of side corner plates two 6, can be used in garage, storage room etc, the side plate 1 and roof plate 2 are connected with top corner plate one 3 and top corner plate two 4 respectively, top corner plate one 3 and top corner plate two 4 are connected, side corner plate one 5 is connected with side plate 1, top corner plate two 4 and side corner plate two 6 respectively, first C type clamp 7 is connected between adjacent left and right side plate 1, second C type clamp 8 is connected between adjacent front and back roof plate 2, first C type clamp 7 and second C type clamp 8 are fixedly connected, installation groove 10 is all provided on side plate 1, roof plate 2, top corner plate one 3, top corner plate two 4, side corner plate one 5 and side corner plate two 6, and small clamp 9 is connected between adjacent side plate 1, roof plate 2, top corner plate one 3, top corner plate two 4, side corner plate one 5 and side corner plate two 6, and the both ends of small clamp 9 are clamped in installation groove 10 between adjacent plates, the inner part of first C type clamp 7 and second C type clamp 8 is provided with sewer channel one 11 and sewer channel two 12 respectively, sewer channel one 11 and sewer channel two 12 are communicated, and sewer connecting channel one 13 is arranged between adjacent side plate 1, sewer connecting channel one 13 is communicated with sewer channel one 11, card slot 14 is arranged on roof plate 2, and sewer pipe 15 is connected between adjacent roof plate 2 through card slot 14, and the water outlet end of sewer pipe 15 is communicated with sewer channel one 11, in the embodiment, through being provided with first C type clamp 7, second C type clamp 8, sewer pipe 15 and small clamp 9, a plurality of side plate 1, roof plate 2, top corner plate one 3, top corner plate two 4, side corner plate one 5 and side corner plate two 6 can be effectively clamped, and sewer channel one 11, sewer channel two 12 and sewer connecting channel one 13 are formed to drain water coming from the gap between plates (there is a gap between the connection of each plate, and there will be water seepage regardless of the size of the gap), to achieve better waterproof effect, the utility model mainly forms multiple communicating sewer channels in the structure of each plate splicing and fastening (compared with prior art, without setting up drainage mechanism additionally, can make the structure of entire spliced house more compact and stable, and also can improve the space utilization of spliced house, first C type clamp 7 and second C type clamp 8 are used as splicing and clamping mechanism in the utility model, and one C type clamp can connect a plurality of plates, under the premise of firmness, makes the splicing process more simple, and screw is generally used in prior art to fix on each plate, and a plurality of screws are used for one plate, which is extremely inconvenient.The plurality of downcomers are formed while using the C-shaped clamps, and the downcomer connecting channels 13 are formed between the plates, which can be used stably and can achieve the purposes of drainage and waterproofing, which has great significance, and will not affect the compact and stable splicing of the plates, and can ensure that the infiltrated water can be effectively drained, and the drainage effect is good.
[0042] As a preferred embodiment, one end of the side plate 1 is provided with a backflow surface 16, the other end of the side plate 1 is provided with a backflow connecting surface 17, and the corresponding backflow surface 16 and backflow connecting surface 17 of the side plate 1 form the downcomer connecting channel 13 after the side plate 1 is connected with the side plate 1. It can be understood that the backflow surface 16 is a concave surface, and the backflow connecting surface 17 is a convex surface. Moreover, one end of the backflow surface 16 is a double-step structure, and one end of the backflow connecting surface 17 is a three-step structure, so that when splicing, half of the backflow surface 16 of one side plate 1 abuts on the outermost surface of the other side plate 1, and the other half of the backflow surface 16 of one side plate 1 and the backflow connecting surface 17 of the other side plate 1 form a channel, which is the downcomer connecting channel 13. In addition, after the two side plates 1 are spliced in the longitudinal direction, two water outlet ends of the downcomer connecting channel 13 are formed. When the two side plates 1 are spliced with the same two side plates 1 in the transverse direction (the first C-shaped clamp 7 is used for transverse splicing), the water outlet ends of the two pairs of two side plates 1 are located inside the first C-shaped clamp 7, and the two water outlet ends of the two pairs of two side plates 1 are in communication with the downcomer 11.
[0043] As a preferred embodiment, the top corner plate one 3 is provided with a clamping groove 14, the top plate 2 is connected with the downcomer 15 through the clamping groove 14, or the top corner plate one 3 is connected with the downcomer 15 through the clamping groove 14, the top corner plate two 4 is provided with a clamping groove 14, and the top corner plate two 4 and the top corner plate one 3 are connected with the downcomer 15 through the clamping groove 14, so that the downcomer 15 is in communication with the top corner plate one 3 and the top corner plate two 4. It can be understood that since the top corner plate one 3 and the top corner plate two 4 are corner plates between the side plate 1 and the top plate 2, one end of the top corner plate one 3 and the top corner plate two 4 is connected with the downcomer 15, one end is connected with the second C-shaped clamp 8, one end is connected with the first C-shaped clamp 7, and one end is connected with the side plate 1 to form the downcomer connecting channel 13. In this way, the gap formed in the top corner plate one 3 and the top corner plate two 4 can be drained through the downcomer 15, the downcomer one 11, the downcomer two 12, and the downcomer connecting channel 13.
[0044] As a preferred embodiment; the top corner plate one 3 and the top corner plate two 4 are provided with backflow surfaces 16, which form a first water connection channel 13 with the backflow connecting surfaces 17 of the side plate 1; it can be understood that the purpose of the backflow surfaces 16 of the top corner plate one 3 and the top corner plate two 4 is to form the first water connection channel 13 with the backflow connecting surfaces 17 of the side plate 1, which has the same principle as the above description of the first water connection channel 13 formed between the side plate 1 and the side plate 1.
[0045] As a preferred embodiment; the side corner plate one 5 is provided with a backflow surface 16 at one end, and a backflow connecting surface 17 at the other end, and the corresponding backflow surface 16 and backflow connecting surface 17 of the side corner plate one 5 and the side corner plate one 5 form a first water connection channel 13 after being connected; the side corner plate two 6 is provided with a backflow connecting surface 17 at one end, and the corresponding backflow surface 16 and backflow connecting surface 17 of the side corner plate one 5 and the side corner plate two 6 form a first water connection channel 13 after being connected; it can be understood that, similarly, the side corner plate one 5 and the side corner plate two 6 have the same principle as the above description of the first water connection channel 13 formed between the side plate 1 and the side plate 1.
[0046] As a preferred embodiment; the side plate 1, the top plate 2, the top corner plate one 3, the top corner plate two 4, the side corner plate one 5 and the side corner plate two 6 are all provided with connecting plates 18, and the side plate 1, the top plate 2, the top corner plate one 3, the top corner plate two 4, the side corner plate one 5 and the side corner plate two 6 are all connected by the connecting plates 18 between adjacent ones.
[0047] As a preferred embodiment; the inner wall of the first C-shaped clamp 7 and the two connecting plates 18 clamped inside the first C-shaped clamp 7 form a first water channel 11; the inner wall of the second C-shaped clamp 8 and the two connecting plates 18 clamped inside the second C-shaped clamp 8 form a second water channel 12.
[0048] As a preferred embodiment; the two side inner walls of the first C-shaped clamp 7 and the second C-shaped clamp 8 are connected by a screw with an extrusion plate 19, and the two connecting plates 18 clamped in the C-shaped clamp are respectively abutted between the two connecting plates 18; by providing the extrusion plate 19, the two connecting plates 18 can be effectively clamped by driving the extrusion plate 19 to move through the screw, thereby improving the firmness of the whole assembled house.
[0049] As a preferred implementation, the extruded plate 19 is provided with first teeth 20, the small clamp 9 comprises an upper connecting part 21 and a lower connecting part 22, the upper connecting part 21 and the lower connecting part 22 are fixed by screws, and the upper connecting part 21 and the lower connecting part 22 are provided with second teeth 23 at the bayonets; by being provided with the first teeth 20 and the second teeth 23, the gripping force can be effectively enhanced, the corresponding plate material can be tensioned or compressed, and the gap can be reduced.
[0050] As a preferred implementation, the materials of the side plate 1, the top plate 2, the top corner plate one 3, the top corner plate two 4, the side corner plate one 5 and the side corner plate two 6 are EPP (or a light solid material with elastic deformation, allowing the side plate 1, the top plate 2, the top corner plate one 3, the top corner plate two 4, the side corner plate one 5 and the side corner plate two 6 to be assembled by elastic deformation of the material when combined); in addition, due to the use of EPP material, the entire spliced house is light in weight and portable.
[0051] The drainage and waterproof principle of the utility model is: when water enters the top surface of the spliced house, the top surface of the spliced house has a horizontal gap and a vertical gap, when water enters the horizontal gap, the water will flow into the second downcomer 12, and then flow into the first downcomer 11 through the second downcomer 12, when water enters the vertical gap, the water will flow onto the downpipe 15, and then flow into the first downcomer 11 through the downpipe 15, in addition, when water enters the side surface of the spliced house, when water enters the horizontal gap, the water will flow into the first downcomer 11 through the first downcomer 13, when water enters the vertical gap, the water will directly flow into the first downcomer 11; therefore, in the drainage process of the application, all the seepage water will flow into the first downcomer 11 and then be discharged downward, thereby achieving the purpose of waterproofing.
[0052] It should be pointed out that the main problem in the prior art is that the existing spliced house has gaps between the panels after assembly, if it is placed outdoors, external water is easy to penetrate into the interior of the spliced house, which may cause the interior of the spliced house to be damp, or even cause water to accumulate in the interior of the spliced house, thereby greatly reducing the use effect of the spliced house.
[0053] Therefore, through the improvement of the present application, the utility model mainly forms multiple interconnected drainage channels in the structure of each plate splicing and fastening, which will not affect the compact and stable splicing of each plate, can ensure that the water permeating in can be effectively discharged, has good drainage effect, and further achieves the purpose of waterproofing, can be applied to outdoor places, and further greatly improves the use effect and can expand the use range; In summary, the splicing drainage system formed by the utility model has the function of killing two birds with one stone, which can effectively splice, is convenient to disassemble and move, can effectively drain water, and moreover, the system is safe and reliable, is designed ingeniously, effectively solves the contradiction of poor waterproofing of the splicing structure, and the creativity and innovation reach a new height.
[0054] The above embodiments only describe the preferred embodiments of the utility model, and do not limit the scope of the utility model, and various deformations and improvements of the technical solutions of the utility model made by ordinary engineering technicians in the art without departing from the design spirit of the utility model shall fall within the protection scope determined by the claims of the utility model.
Claims
1. A lightweight and movable waterproof splicing house, characterized by: It includes side panels, top panels, top corner panels 1, top corner panels 2, side corner panels 1, side corner panels 2, a first C-shaped clip, a second C-shaped clip and a small clip; The side panels and the top panel are respectively connected with a top corner panel 1 and a top corner panel 2, the top corner panel 1 is connected with the top corner panel 2, and the side corner panel 1 is respectively connected with the side panels, the top corner panel 2 and the side corner panel 2; The adjacent left and right side panels are connected by a first C-shaped clip, and the adjacent front and rear top panels are connected by a second C-shaped clip, and the first C-shaped clip and the second C-shaped clip are fixedly connected; The side panels, top panel, top corner panel 1, top corner panel 2, side corner panel 1 and side corner panel 2 are all provided with mounting grooves, and the side panels, top panel, top corner panel 1, top corner panel 2, side corner panel 1 and side corner panel 2 are adjacently connected by small clips; A drainage channel 1 and a drainage channel 2 are respectively provided inside the first C-shaped clamp and the second C-shaped clamp, and the drainage channel 1 and the drainage channel 2 are connected. A drainage connecting channel 1 is provided between adjacent side panels, and the drainage connecting channel 1 is connected to the drainage channel 1; a card slot is provided on the top panel, and a drainage pipe is connected between adjacent top panels through the card slot, and the water outlet end of the drainage pipe is connected to the drainage channel 1.
2. A portable waterproof spliced house according to claim 1, characterized in that: One end of the side plate is provided with a backflow surface, and the other end of the side plate is provided with a backflow connecting surface. After the side plates are connected to each other, the corresponding backflow surfaces and backflow connecting surfaces form a sewer connection channel.
3. A portable waterproof spliced house according to claim 2, characterized in that: A slot is provided on the top corner plate one, and the top corner plate one and the top plate are connected to the sewer pipe through the slot. A slot is provided on the top corner plate two, and the top corner plate two and the top corner plate one are connected to the sewer pipe through the slot, so that the sewer pipe connects the top corner plate one and the top corner plate two.
4. A portable waterproof spliced house according to claim 3, characterized in that: The top corner plate 1 and the top corner plate 2 are both provided with a backflow surface, which forms a sewer connection channel 1 with the backflow connection surface of the side plate.
5. A portable waterproof spliced house according to claim 4, characterized in that: One end of the side corner plate one is provided with a backflow surface, and the other end of the side corner plate one is provided with a backflow connecting surface. After the side corner plate one is connected to the side corner plate one, the corresponding backflow surface and the backflow connecting surface form a sewer connecting channel one; one end of the side corner plate two is provided with a backflow connecting surface. After the side corner plate one is connected to the side corner plate two, the corresponding backflow surface and the backflow connecting surface form a sewer connecting channel one.
6. A portable waterproof spliced house according to claim 5, characterized in that: The side panels, top panel, top corner panel 1, top corner panel 2, side corner panel 1 and side corner panel 2 are all provided with connecting plates, and the adjacent side panels, top panel, top corner panel 1, top corner panel 2, side corner panel 1 and side corner panel 2 are all clamped in the first C-shaped clamp or the second C-shaped clamp through the connecting plates.
7. A portable waterproof spliced house according to claim 6, characterized in that: A drainage channel 1 is formed between the inner wall of the first C-shaped clamp and the two connecting plates clamped inside the first C-shaped clamp; a drainage channel 2 is formed between the inner wall of the second C-shaped clamp and the two connecting plates clamped inside the second C-shaped clamp.
8. A portable waterproof spliced house according to claim 7, characterized in that: The two side inner walls of the first C-shaped clamp and the second C-shaped clamp are connected with extrusion plates through screw rods, and the two extrusion plates respectively abut against the two connecting plates of the C-shaped clamp.
9. A portable waterproof spliced house according to claim 8, characterized in that: The extrusion plate is provided with first teeth, the small clamp includes an upper connecting part and a lower connecting part, the upper connecting part and the lower connecting part are fixed through screws, and the second teeth are arranged at the bayonets of the upper connecting part and the lower connecting part.
10. A portable waterproof spliced house according to claim 9, characterized in that: The materials of the side plate, the top plate, the top corner plate one, the top corner plate two, the side corner plate one and the side corner plate two are all EPP.