Modular house ceiling integrated assembly
By designing a modular frame with built-in new fan, air conditioner internal unit and water heater, the problems of long construction cycle and equipment space occupied in the existing technology are solved, and the effects of simplified installation, improved space utilization and convenient maintenance are achieved.
Patent Information
- Application Number
- CN202421814732.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-30
AI Technical Summary
The existing technology requires building the house first and then decorating it, which leads to an extended construction cycle, and the new fan, air conditioner internal unit and water heater occupy indoor space, low utilization rate, and dispersed installation results in a large number of equipment or long pipeline paths.
A modular room ceiling integrated assembly is designed, including a modularly designed frame, built-in fresh fan, air conditioner inner unit and water heater. The frame is formed by splicing of rods and contains multiple accommodation chambers for placing equipment and pipes. The integrated unit is placed on the top of the module room to support overall transportation.
It realizes modular installation that does not occupy indoor space, shortens the construction cycle, improves the compactness and space utilization between equipment, facilitates maintenance and replacement, and reduces the difficulty of installation and dismantling.
Smart Images

Figure CN222924000U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a modular house, in particular to an integrated ceiling component for a modular house. Background Art
[0002] Existing fresh air units and air conditioner indoor units are mainly installed in the living room, or a fresh air unit and an air conditioner indoor unit are installed in the living room and the bedroom respectively. Existing water heaters are mainly installed in the kitchen or the bathroom. Therefore, when building a house, it is necessary to first build the house and then carry out interior decoration and layout of the pipeline for the feng shui group in the house, which greatly prolongs the construction period. Moreover, the fresh air unit, the air conditioner indoor unit and the water heater are all installed indoors, which greatly occupies the indoor space and results in low utilization rate. Furthermore, due to the relatively scattered overall installation, the number of fresh air units and air conditioners is relatively large, or the pipeline path is relatively long. Content of the Utility Model
[0003] The purpose of the utility model is to overcome the above-mentioned deficiencies of the prior art and provide an integrated ceiling component for a modular house with a simple structure that does not occupy indoor space and can achieve modular installation.
[0004] The technical solution of the utility model is: an integrated ceiling component for a modular house, including at least one integrated unit. The integrated unit includes at least one modularly designed frame and a fresh air unit, an air conditioner indoor unit and a water heater arranged in the frame. The frame is formed by splicing a plurality of rod bodies, and the frame includes a plurality of accommodation cavities for placing the fresh air unit, the air conditioner indoor unit, the water heater and related pipelines. The integrated unit is placed on the top of the modular house.
[0005] Furthermore, the integrated unit can be transported integrally with the modular house, and the whole conforms to the container transportation standard.
[0006] Furthermore, the integrated unit controls the first frame, and the fresh air unit, the air conditioner indoor unit and the water heater share the first frame; or the integrated unit includes a second frame and a third frame, the water heater is separately placed in the second frame, and the fresh air unit and the air conditioner indoor unit share the third frame.
[0007] Furthermore, the fresh air unit is arranged at the end of the frame, the air conditioner indoor unit is arranged side by side with the fresh air unit, and a pipeline accommodation cavity for placing pipelines is arranged between the two. That is, the fresh air outlet pipeline of the fresh air unit and the air outlet pipeline of the air conditioner indoor unit both extend to the interior of the modular house through the pipeline accommodation cavity.
[0008] Furthermore, one end of the frame extends to form an end accommodating cavity near the fresh air unit for placing the exhaust air duct of the fresh air unit. The exhaust air duct extends outwards through the end accommodating cavity, passes through the end wall of the modular house and communicates with the outside; the fresh air outlet of the fresh air unit and the air outlet of the air conditioner indoor unit are each divided into at least two branches. One branch communicates with the living room through the fresh air duct of the fresh air unit and the air duct of the air conditioner indoor unit, and the other branch is connected to the air box through the fresh air duct and the air duct.
[0009] Furthermore, on the outer sides of the upper and lower two rod bodies on the side of the accommodating cavity for placing the air conditioner indoor unit, side connecting frames also extend out for fixing the air intake passage of the air conditioner indoor unit. The air intake passage of the air conditioner indoor unit is placed in the cavity enclosed by the side connecting frames and communicates with the outside atmosphere.
[0010] Furthermore, the second frame is divided by rod bodies into multiple accommodating cavities. One of the accommodating cavities is used for fixing the water heater, and the other accommodating cavities are arranged with the relevant pipelines connected to the water heater.
[0011] Furthermore, the third frame is divided by rod bodies into at least four accommodating cavities. An air conditioner indoor unit is arranged in the accommodating cavity near the second frame, and a fresh air unit is arranged in the accommodating cavity longitudinally arranged side by side with the air conditioner indoor unit, and the fresh air unit is located at the end of the third frame; the fresh air duct of the fresh air unit and the air duct of the air conditioner indoor unit are arranged in the accommodating cavity transversely arranged side by side with the air conditioner indoor unit; the second frame also extends a pipeline support frame at the end near the third frame for enabling the air duct and the fresh air duct on one branch extended by the air conditioner indoor unit and the fresh air unit to extend out through the pipeline support frame and enter the interior of the modular house.
[0012] Furthermore, there are two sets of the integrated units. Both sets of integrated units adopt the first frame and are mirror - image arranged; or one set of integrated units adopts the first frame, and the other set of integrated units adopts the second frame and the third frame. The second frame is arranged between the first frame and the third frame. The two sets of integrated units together with the frames are placed on the top of the modular house.
[0013] Furthermore, the fresh air unit, the air conditioner indoor unit and the water heater are respectively thread - connected to the rod bodies of the frame through connecting pieces.
[0014] The beneficial effects of the utility model are as follows: on the one hand, by setting up a frame to form a modular structure, it is only necessary to place the frame with the water heater, the air conditioner indoor unit and the fresh air fan on the ceiling, which will not occupy the indoor space and can be prefabricated in advance, without the need for on-site installation, and can be transported together with the module house, which saves time and effort in transportation and installation, and is convenient for maintenance and replacement, and dismantling is also time-saving and labor-saving. It is only necessary to dismantle the frame, and there is no need to dismantle the water heater, the air conditioner indoor unit and the fresh air fan, thereby protecting the water heater, the air conditioner indoor unit and the fresh air fan from damage; on the other hand, the frame is formed by splicing a plurality of rods, which has a simple structure and light weight, and will not cause pressure on the top of the module house. A plurality of accommodating cavities can be formed by splicing the rods to accommodate various equipment and their pipelines, which can greatly improve the compactness of the arrangement between the various equipment, with high space utilization and strong flexibility. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the overall structure of a modular room with integrated components according to an embodiment of the utility model;
[0016] Figure 2 yes Figure 1 a top view of the illustrated embodiment;
[0017] Figure 3 It is a schematic diagram of the structure of the first frame of the embodiment of the utility model;
[0018] Figure 4 This is a schematic diagram of the structure of the first frame of the embodiment of the utility model for placing corresponding equipment;
[0019] Figure 5 It is a schematic diagram of the structure of the second frame of the embodiment of the utility model;
[0020] Figure 6 It is a schematic diagram of the structure of the third frame of the embodiment of the utility model;
[0021] Figure 7 It is a structural schematic diagram of placing corresponding equipment after the second frame and the third frame are combined in an embodiment of the utility model.
[0022] Description of the accompanying drawings:
[0023] 1. Integrated unit; 2. Frame; 3. Accommodating chamber; 4. Fresh air fan; 5. Air conditioner indoor unit; 6. Water heater; 7. Rod body; 8. Module room; 21. First frame; 22. Second frame; 23. Third frame; 41. Exhaust duct; 42. Fresh air outlet duct; 51. Outlet duct; 52. Air inlet channel; 211. End accommodating chamber; 212. Pipe accommodating chamber; 213. Side connecting frame; 214. Frame connecting frame; 221. Pipe supporting frame. DETAILED DESCRIPTION
[0024] The present utility model will be further described in detail below in conjunction with the accompanying drawings of the specification and specific embodiments.
[0025] As Figure 1 and Figure 2 shown: A ceiling integrated component for a modular house includes at least one integrated unit 1. The integrated unit 1 includes a frame 2. The frame 1 is formed by splicing a plurality of rod bodies 7. The frame includes a plurality of accommodation cavities 3. At least three accommodation cavities are respectively provided with a fresh air unit 4, an air conditioner indoor unit 5, and a water heater 6.
[0026] In this embodiment, the integrated component 1 is arranged at the top of the ceiling of the modular house 8, can be transported integrally together with the modular house 8, and the whole meets the container transportation standard. In this embodiment, the integrated component is preferably provided with two groups of integrated units with a fresh air unit 4, an air conditioner indoor unit 5, and a water heater 6, that is, each group of integrated units 1 is provided with a fresh air unit 4, an air conditioner indoor unit 5, and a water heater 6. One group of integrated units 1 adopts a first frame 21, and the fresh air unit 4, the air conditioner indoor unit 5, and the water heater 6 are all integrated in the first frame 21; the second group of integrated units can also adopt the first frame, and the two are mirror-image arranged; it can also adopt a combination of a second frame 22 and a third frame 23, and then be spliced together with the first group of integrated units 1 to form an overall integrated component placed on the ceiling of the modular house 8. The structure of these two groups of integrated units in this embodiment is mainly applicable to the situation where two household units are arranged in one modular house, such as two small-sized household units arranged side by side, and each integrated unit corresponds to one household unit.
[0027] In this embodiment, the fresh air unit, the air conditioner indoor unit, and the water heater share the first frame 21, or the water heater is separately placed in the second frame 22, and the fresh air unit and the air conditioner indoor unit share the third frame 23.
[0028] As Figure 3 and Figure 4 shown: Specifically, the first frame 21 forms a plurality of large and small accommodation cavities by welding a plurality of rod bodies 7. The accommodation cavities are cuboids or cubes. Among them, the larger accommodation cavities 3 are used to place the fresh air unit 4, the air conditioner indoor unit 5, and the water heater 6, and the other accommodation cavities are used to place the corresponding pipelines or play the role of transition pipelines. In this embodiment, the fresh air unit 4 and the water heater 6 are arranged side by side at the end of the first frame 21. The reason for such arrangement is that when the first frame 21 is placed on the top of the ceiling of the modular house 8, the fresh air unit 4 can be close to the end wall of the modular house for easy connection with the outside and reduce the input path. The air conditioner indoor unit 5 is arranged behind the fresh air unit 4, which can make the air conditioner indoor unit 5 closer to the living room air outlet of the modular house 8 to reduce the output path and lower the power consumption.
[0029] The fresh air machine 4, the indoor unit 5 of the air conditioner, and the water heater 6 are respectively fixed to the first frame 21 through connecting members, and the connecting members are preferably L-shaped connecting members. Threaded holes are provided at the positions of the rod bodies 7 of the first frame where fixation is required. One end of the L-shaped connecting member is fixed to the fresh air machine / indoor unit of the air conditioner / water heater by screws, and the other end is fixed to the rod body 7 by screws.
[0030] In this embodiment, at one end of the first frame 21 close to the fresh air machine 4, an end accommodation cavity 211 extends out for placing the exhaust duct 41 of the fresh air machine 4. The exhaust duct 41 extends out through the end accommodation cavity 211, passes through the end wall of the modular house 8 and communicates with the outside, so as to discharge the old air in the modular house indoor to the outside. The indoor unit 5 of the air conditioner is arranged at an interval from the fresh air machine 4, and a pipe accommodation cavity 212 for placing pipes is provided therebetween, that is, the fresh air outlet duct 42 of the fresh air machine 4 and the air outlet duct 51 of the indoor unit 5 of the air conditioner both extend into the indoor of the modular house 8 through the pipe accommodation cavity 212. In this embodiment, both the fresh air outlet of the fresh air machine 4 and the air outlet of the indoor unit 5 of the air conditioner are divided into at least two branches. One branch communicates with the living room, and the other branch is connected to the air box. The air box can be connected to the side of the corridor inside the modular house. The air box is provided with air outlets corresponding to the positions of each room and air inlets communicating with the fresh air outlet and the air outlet, so that the air blown out by the fresh air machine and the indoor unit of the air conditioner can be introduced into the living room and the bedroom. On the outer sides of the upper and lower two rod bodies on the side of the accommodation cavity of the indoor unit 5 of the air conditioner, side connection frames 213 also extend out for fixing the air intake passage 52 of the indoor unit 5 of the air conditioner. The air intake passage 52 of the indoor unit of the air conditioner is placed in the cavity enclosed by the side connection frames 213 and communicates with the outside atmosphere.
[0031] In this embodiment, at the end of the first frame 21 far from the fresh air machine 4, it is connected to other frames. For example, a rod body can be directly connected at this end to form a new frame; or a frame connection bracket can be prefabricated at this end and directly thread-connected to other prefabricated frames. In this embodiment, it is preferably that a rectangular frame connection bracket 214 extends out at the bottom of the end of the first frame 21 to facilitate screw connection with other prefabricated frames.
[0032] As Figure 5 shown: In this embodiment, the second frame 22 is formed by splicing a plurality of rod bodies 7 into a cube or cuboid structure. The inner cavity of the second frame 22 is also divided into a plurality of accommodation cavities 3 by the rod bodies 7. One of the accommodation cavities is used for fixing the water heater 6, and the other accommodation cavities are arranged with the relevant pipelines connected to the water heater 6.
[0033] As Figure 6 and Figure 7As shown in the figure: In this embodiment, the third frame 23 is divided by the rod body 7 into at least four accommodation cavities 3. An air conditioner indoor unit 5 is arranged in the accommodation cavity close to the second frame. A fresh air unit 4 is arranged in the accommodation cavity longitudinally arranged side by side with the air conditioner indoor unit 5, and the fresh air unit 4 is located at the end of the third frame 23 so as to communicate with the outside world and reduce the input path. The fresh air outlet duct 42 of the fresh air unit and the air outlet duct 51 of the air conditioner indoor unit are arranged in the accommodation cavity transversely arranged side by side with the air conditioner indoor unit 5. At the end of the second frame 22 close to the third frame 23, a duct support frame 221 also extends, which is used to enable the air outlet duct 51 and the fresh air outlet duct 42 on a branch path extended by the air conditioner indoor unit 5 and the fresh air unit 4 to extend out through the duct support frame and enter the interior of the modular house 8.
[0034] In this embodiment, the first frame 21, the second frame 22 and the third frame 23 can be screwed to each other to form an integral body and be placed on the top of the ceiling of the modular house 8; they can also be set separately, that is, the first frame 21, the second frame 22 and the third frame are not connected to each other and are placed independently; or two of the frames can be connected into one body and the other is set separately. For example, the first frame 21 is screwed to the second frame through the frame connecting frame 214, and the third frame is set independently. By placing the water heater 6, the air conditioner indoor unit 7 and the fresh air unit 4 on the top of the ceiling, the water heater 6, the air conditioner indoor unit 7, the fresh air unit 4 and some pipelines can be supported by the ceiling, so as to reduce the stress on the frame.
[0035] In summary, on the one hand, the utility model forms a modular structure by setting the frame to place the water heater, the air conditioner indoor unit and the fresh air unit. The installation is time-saving and labor-saving. It only needs to place the frame with the water heater, the air conditioner indoor unit and the fresh air unit on the ceiling. Of course, the frame and the modular house can be further fixed to prevent it from shaking, and it is also convenient for maintenance and replacement. The disassembly is also time-saving and labor-saving. It only needs to remove the frame without removing the water heater, the air conditioner indoor unit and the fresh air unit, etc., so as to protect the water heater, the air conditioner indoor unit and the fresh air unit from damage. On the other hand, the frame structure is simple and light in weight, will not cause pressure on the top of the modular house, and the connection is simple, which is convenient for setting multiple accommodation cavities to install equipment and arrange pipelines, and has strong flexibility.
Claims
1. A modular house ceiling integrated assembly, characterized in that: It comprises at least one integrated unit, which comprises at least one modularly designed frame and a fresh air fan, an air conditioner indoor unit and a water heater arranged in the frame; the frame is formed by splicing a plurality of rods, and the frame comprises a plurality of accommodating cavities for placing the fresh air fan, the air conditioner indoor unit, the water heater and related pipelines; the integrated unit is placed on the top of the module room.
2. The modular room ceiling integrated assembly according to claim 1, characterized in that: The integrated unit can be transported as a whole together with the module house, and the whole unit complies with the container transportation standard.
3. The modular room ceiling integrated assembly according to claim 1, characterized in that: The integrated unit controls the first frame, and the fresh air fan, the air conditioner indoor unit and the water heater share the first frame; or the integrated unit includes a second frame and a third frame, the water heater is placed separately in the second frame, and the fresh air fan and the air conditioner indoor unit share the third frame.
4. The modular room ceiling integrated assembly according to claim 1, characterized in that: The fresh air fan is arranged at the end of the frame, and the air conditioner indoor unit and the fresh air fan are arranged side by side, and a pipe accommodating cavity for placing pipes is provided between the two, that is, the fresh air outlet duct of the fresh air fan and the air outlet duct of the air conditioner indoor unit both extend to the interior of the module room through the pipe accommodating cavity.
5. The modular room ceiling integrated assembly according to claim 4, characterized in that: The frame extends an end accommodating cavity at the end close to the fresh air fan, which is used to place the exhaust duct of the fresh air fan. The exhaust duct extends outward through the end accommodating cavity, passes through the end wall of the module room and is connected with the outside world; the fresh air outlet of the fresh air fan and the air outlet of the air conditioner indoor unit are divided into at least two branches, one branch is connected with the living room through the fresh air outlet duct of the fresh air fan and the air outlet duct of the air conditioner indoor unit, and the other branch is connected to the bellows through the fresh air outlet duct and the air outlet duct.
6. The modular room ceiling integrated assembly according to claim 1, characterized in that: A side connecting frame is extended from the outer side of the upper and lower rods of the accommodating cavity for placing the air conditioner indoor unit, which is used to fix the air intake channel of the air conditioner indoor unit. The air intake channel of the air conditioner indoor unit is placed in the cavity enclosed by the side connecting frame and is connected to the outside atmosphere.
7. The modular room ceiling integrated assembly according to claim 3, characterized in that: The second frame is divided into a plurality of accommodating chambers by the rod body, one of the accommodating chambers is used to fix the water heater, and the other accommodating chambers are used to arrange relevant pipelines connected to the water heater.
8. The modular room ceiling integrated assembly according to claim 3, characterized in that: The third frame is divided into at least four accommodating chambers by the rod body, wherein the air-conditioning indoor unit is arranged in the accommodating chamber close to the end of the second frame, and the fresh air fan is arranged in the accommodating chamber arranged longitudinally side by side with the air-conditioning indoor unit, and the fresh air fan is located at the end of the third frame; the fresh air outlet duct of the fresh air fan and the air outlet duct of the air-conditioning indoor unit are arranged in the accommodating chamber arranged transversely side by side with the air-conditioning indoor unit; the second frame also extends a pipe support frame at the end close to the third frame, which is used to extend the air outlet duct on a branch extended from the air-conditioning indoor unit and the fresh air fan and the fresh air outlet duct through the pipe support frame and enter the interior of the module room.
9. The modular house ceiling integrated assembly according to claim 3, characterized in that: The integrated units are provided with two groups, both groups of integrated units adopt the first frame, and the two groups of integrated units are arranged in a mirror image; or one group of integrated units adopts the first frame, and the other group of integrated units adopts the second frame and the third frame, the second frame is arranged between the first frame and the third frame, and the two groups of integrated units together with the frame are placed on the top of the module room as a whole.
10. The modular house ceiling integrated assembly according to claim 1, characterized in that: The fresh air fan, the air conditioner indoor unit and the water heater are respectively threadedly connected to the rod body of the frame through connecting pieces.