Multi-climate adaptation type residential cabin with adjustable heat insulation layer
Through the motor-driven cable system and support rod structure, the climate adaptability adjustment of the living cabin insulation layer is achieved, which solves the problem of adjusting the insulation layer in different climates, improves living comfort and reduces energy waste.
Patent Information
- Application Number
- CN202422745197.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-11-11
AI Technical Summary
Existing habitat insulation is difficult to adjust to different climates, resulting in heavy loads on temperature control devices and wasted energy.
The thermal insulation roll can be unfolded and reeled through a motor-driven cable system and support rod structure to adapt to different climatic conditions and adjust the thermal insulation effect of the insulation layer.
The living comfort of the living cabin is improved, the load and energy waste of the temperature control device are reduced, and the adaptability of the insulation layer is enhanced.
Smart Images

Figure CN223469089U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of residential cabin, concretely is a kind of multi-climate adaptive type residential cabin of adjustable heat insulation layer. BACKGROUND
[0002] Residential cabin is a new type of accommodation, which combines technology and innovation to provide travelers with a unique and comfortable living experience.
[0003] Unlike traditional homestays, residential cabins can be easily moved to different locations as needed, providing travelers with more flexible and convenient accommodation options that allow them to enjoy unique accommodation experiences in different landscapes. When manufacturing residential cabins, it is necessary to design a heat insulation layer. However, the existing heat insulation layer of the residential cabin is not convenient to adjust, making it difficult to reduce the absorption of solar heat in summer and to fully utilize solar heat in winter, resulting in a large load on the temperature control device inside the residential cabin and high energy waste.
[0004] Therefore, the utility model provides a multi-climate adaptive type residential cabin with adjustable heat insulation layer. UTILITY MODEL CONTENTS
[0005] To make up for the shortcomings of the prior art and solve at least one technical problem raised in the background art.
[0006] The utility model solves the technical problems thereof by adopting the technical scheme: a multi-climate adaptive type residential cabin with adjustable heat insulation layer, comprising a residential cabin body; a first shaft rod is rotatably connected to one side of the top of the residential cabin body; an electric motor is fixedly connected to the top side wall of the residential cabin body; the output end of the electric motor is fixedly connected to the first shaft rod; a second shaft rod is rotatably connected to the other side of the top of the residential cabin body; a pair of cables are installed in the middle of the electric motor; the two ends of the cables are fixedly connected to the middle of the electric motor, and the middle of the cables passes through the middle of the second shaft rod; a heat insulation coil is fixedly connected to the middle of the pair of cables; a partition is fixedly connected to the middle of the electric motor; the two ends of the cables are located on the two sides of the partition; through the above structure, the heat insulation layer of the residential cabin can be adaptively adjusted, so that the heat insulation layer can be adjusted correspondingly under different climates, the living comfort of the residential cabin is improved, and the load of the temperature control device can be reduced to a certain extent, and energy waste is reduced.
[0007] Preferably, a pair of guide rails are fixedly connected to the top of the residential cabin body in a symmetrical manner; a plurality of mounting brackets are slidably connected to the top of the pair of guide rails; a support rod is fixedly connected to the top of the mounting bracket; through the above structure, the situation that the heat insulation coil is pressed down to the top of the residential cabin due to water accumulation on the top can be reduced, thereby reducing the influence on the heat insulation effect of the heat insulation coil.
[0008] Preferably, the middle part of the mounting frame is symmetrically provided with a pair of sliding grooves; a connecting rod is slidably connected to the middle part of the sliding grooves on the adjacent mounting frames; the ends of the mounting frame farthest from the side wall of the living cabin body are fixedly connected with connecting heads; the connecting heads are fixedly connected with the middle part of the cable; through the above structure, the plurality of supporting rods can be automatically arranged under the heat insulation coiled material at a certain interval to support the heat insulation coiled material when the heat insulation coiled material is unfolded, thereby improving the convenience of use of the device.
[0009] Preferably, the side wall of the supporting rod is fixedly connected with an inclined plate; the inclined plate is arranged on the side of the supporting rod facing the heat insulation coiled material; through the above structure, the tearing of the heat insulation coiled material caused by the obstruction of the edge of the heat insulation coiled material is reduced, and the damage of the heat insulation coiled material is reduced.
[0010] Preferably, a plurality of rollers are rotatably connected to the middle part of the mounting frame; the rollers are located above the guide rail; through the above structure, the sliding friction between the mounting frame and the guide rail can be changed into rolling friction, the resistance of the sliding of the mounting frame is reduced, and the service life of the component is prolonged.
[0011] Preferably, a plurality of drainage holes are formed in the bottom of the guide rail; the plurality of drainage holes are uniformly distributed on the bottom of the guide rail; through the above structure, the accumulation of water between the pair of guide rails can be reduced, thereby reducing the corrosion of the water accumulated on the top of the living cabin body.
[0012] Preferably, the supporting rod is arranged in an arc shape; through the above structure, the heat insulation coiled material can form an arc shape when falling on the plurality of supporting rods, and the accumulation of water on the top of the heat insulation coiled material can be further reduced.
[0013] The beneficial effects of the utility model are as follows:
[0014] 1. The multi-climate adaptive living cabin with adjustable heat insulation layer, through the arrangement of the living cabin body, the first shaft rod, the motor, the second shaft rod, the cable and the heat insulation coiled material, the heat insulation layer of the living cabin can be adaptively adjusted, so that the heat insulation layer can be adjusted correspondingly under different climates, the living comfort of the living cabin is improved, and the load of the temperature control device can be reduced to a certain extent, and the waste of energy can be reduced.
[0015] 2. The multi-climate adaptive living cabin with adjustable heat insulation layer, through the arrangement of the guide rail, the mounting frame and the supporting rod, the situation that the heat insulation coiled material is pressed to the top of the living cabin body due to the water accumulated on the top of the heat insulation coiled material can be reduced, and the influence on the heat insulation effect of the heat insulation coiled material is further reduced. BRIEF DESCRIPTION OF DRAWINGS
[0016] The utility model will be further described below with reference to the drawings.
[0017] Figure 1is the perspective view of the utility model;
[0018] Figure 2 is the structure schematic view of the heat insulation coiled material in the utility model;
[0019] Figure 3 is the structure schematic view of the support rod in the utility model;
[0020] Figure 4 is the structure schematic view of the connecting rod in the utility model;
[0021] Figure 5 is the structure schematic view of the guide rail in the utility model.
[0022] In the drawing: 1, living cabin body;12, first shaft;13, motor;14, second shaft;15, cable;16, heat insulation coiled material;17, partition;2, guide rail;21, mounting frame;22, support rod;3, sliding groove;31, connecting rod;32, connecting head;4, inclined plate;5, roller;6, drain hole. Specific implementation
[0023] In order to make the technical means, creation features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific implementation manners.
[0024] For example, the utility model discloses a living cabin body, which comprises a first shaft, a motor, a second shaft, a cable, a heat insulation coiled material, a partition, a guide rail, a mounting frame, a support rod, a sliding groove, a connecting rod, a connecting head, an inclined plate and a roller. Figures 1 to 3As shown, the utility model discloses a kind of multi-climate adaptive type living cabin of adjustable heat insulation layer, including living cabin body 1;The top side of living cabin body 1 is rotatably connected with first shaft 12;The top sidewall of living cabin body 1 is fixedly connected with motor 13;The output of motor 13 is fixedly connected with first shaft 12;The top other side of living cabin body 1 is rotatably connected with second shaft 14;A pair of cables 15 are installed in the middle of motor 13;The two ends of cable 15 are all fixedly connected in the middle of motor 13, and the middle of cable 15 is set around the middle of second shaft 14;A pair of cable 15 are fixedly connected with heat insulation coiled material 16 in the middle;The middle of motor 13 is fixedly connected with baffle 17;The two ends of cable 15 are respectively located at the two sides of baffle 17;When working, in hot weather, sunlight is relatively intense in summer, can start motor 13 and drive first shaft 12 to rotate;Make cable 15 move, to drive heat insulation coiled material 16 to unfold, unfolded heat insulation coiled material 16 will be at a distance above living cabin body 1, part intense sunlight can not directly irradiate on the top of living cabin body 1 due to the obstruction of heat insulation coiled material 16, reduce the case of occurrence that top living cabin body 1 directly bears sunlight irradiation and rapidly heats up, in relatively cold winter, heat insulation coiled material 16 can be reeled in the middle of first shaft 12, to enable sunlight to directly irradiate on the top of living cabin body 1, make living cabin body 1 inside rapidly heat up, by above-mentioned structure, the heat insulation layer of living cabin can be adaptively regulated, to enable heat insulation layer to carry out corresponding adjustment under different climate, improve the living comfort of living cabin, and can reduce the load of temperature control device to some extent, reduce the waste of energy.
[0025] As Figures 1 to 5 As shown, the top of living cabin body 1 is symmetrically provided with a pair of guide rails 2;A plurality of mounting frames 21 are slidably connected to the top of the pair of guide rails 2;The top of mounting frame 21 is fixedly connected with support rod 22;When working, when heat insulation coiled material 16 is unfolded, slide mounting frame 21 to move a plurality of support rods 22 to the below of heat insulation coiled material 16, so that unfolded heat insulation coiled material 16 can fall above a plurality of support rods 22, to reduce the case of occurrence that accumulated water above heat insulation coiled material 16 presses on the top of living cabin body 1 when raining, when there is gap between heat insulation coiled material 16 and the top of living cabin body 1, heat absorbed by heat insulation coiled material 16 will not easily conduct to the top of living cabin body 1, to realize heat insulation effect, and when heat insulation coiled material 16 is attached to living cabin body 1 due to accumulated water, heat absorbed by heat insulation coiled material 16 and accumulated water will more easily conduct to the top of living cabin body 1, to make heat insulation effect decrease, by above-mentioned structure, can reduce the case of occurrence that heat insulation coiled material 16 is pressed to the top of living cabin body 1 due to accumulated water on the top, to further reduce the influence on heat insulation effect of heat insulation coiled material 16.
[0026] As Figures 1 to 4As shown, the middle of the mounting frame 21 is symmetrically provided with a pair of sliding grooves 3; a pair of sliding grooves 3 on adjacent mounting frames 21 are slidingly connected with a connecting rod 31 in the middle; one of the mounting frames 21 farthest away from the side wall of the living cabin body 1 is fixedly connected with a connecting head 32 at both ends; the connecting head 32 is fixedly connected with the middle of the cable 15; during operation, when the motor 13 drives the cable 15 to move, the cable 15 will pull the outermost mounting frame 21 to move through the connecting head 32, and then pull the subsequent mounting frames 21 to move through the pulling between the connecting rods 31, so as to automatically move a plurality of supporting rods 22 to the lower side of the heat insulation coiled material 16 according to a certain interval. Through the above structure, when the heat insulation coiled material 16 is expanded, a plurality of supporting rods 22 can be automatically arranged under the heat insulation coiled material 16 according to a certain interval for supporting, thereby improving the use convenience of the device.
[0027] As shown in Figures 1 to 4 , the side wall of the supporting rod 22 is fixedly connected with an inclined plate 4; the inclined plate 4 is arranged on the side of the supporting rod 22 facing the heat insulation coiled material 16; during operation, when the heat insulation coiled material 16 and the supporting rod 22 move, the edge of the heat insulation coiled material 16 may be blocked by the edge of the supporting rod 22. Through the arrangement of the inclined plate 4, the edge of the heat insulation coiled material 16 can be guided when the supporting rod 22 contacts the edge of the heat insulation coiled material 16, thereby reducing the tearing of the heat insulation coiled material 16 caused by the edge of the heat insulation coiled material 16 being blocked, and reducing the damage to the heat insulation coiled material 16.
[0028] As shown in Figures 1 to 5 , a plurality of rollers 5 are rotatably connected to the middle of the mounting frame 21; the rollers 5 are located above the guide rail 2; through the above structure, the sliding friction between the mounting frame 21 and the guide rail 2 can be converted into rolling friction, thereby reducing the sliding resistance of the mounting frame 21 and prolonging the service life of the component.
[0029] As shown in Figures 1 to 5 , a plurality of drainage holes 6 are formed in the bottom of the guide rail 2; the plurality of drainage holes 6 are uniformly distributed in the bottom of the guide rail 2; through the above structure, the occurrence of water accumulation between the pair of guide rails 2 can be reduced, thereby reducing the corrosion of the water accumulation on the top of the living cabin body 1.
[0030] As shown in Figure 4 , the supporting rod 22 is arranged in an arch shape; through the above structure, when the heat insulation coiled material 16 falls on the plurality of supporting rods 22, an arch shape is formed, thereby further reducing the occurrence of water accumulation on the top of the heat insulation coiled material 16.
[0031] When working, in the summer with relatively hot weather and relatively strong sunlight, the motor 13 can be started to drive the first shaft rod 12 to rotate; the cable 15 moves to drive the heat insulation coiled material 16 to expand, and the expanded heat insulation coiled material 16 is at a distance above the living cabin body 1, part of the strong sunlight cannot directly irradiate the top of the living cabin body 1 due to the blockage of the heat insulation coiled material 16, thereby reducing the case that the top of the living cabin body 1 directly bears the sunlight irradiation and rapidly heats up; in the winter with relatively cold weather, the heat insulation coiled material 16 can be wound on the middle part of the first shaft rod 12, so that the sunlight can directly irradiate the top of the living cabin body 1 to rapidly heat up the inside of the living cabin body 1; when the heat insulation coiled material 16 expands, the sliding mounting frame 21 moves the plurality of supporting rods 22 below the heat insulation coiled material 16, so that the expanded heat insulation coiled material 16 falls above the plurality of supporting rods 22, thereby reducing the case that the accumulated water above the heat insulation coiled material 16 presses on the top of the living cabin body 1 when it rains; when there is a gap between the heat insulation coiled material 16 and the top of the living cabin body 1, the heat absorbed by the heat insulation coiled material 16 is not easily conducted to the top of the living cabin body 1, thereby achieving the heat insulation effect; when the heat insulation coiled material 16 is attached to the living cabin body 1 due to the accumulated water, the heat absorbed by the heat insulation coiled material 16 and the accumulated water is relatively easily conducted to the top of the living cabin body 1, thereby reducing the heat insulation effect; when the motor 13 is started to drive the cable 15 to move, the cable 15 pulls the most edge mounting frame 21 to move through the connecting head 32, and then sequentially drives the subsequent mounting frames 21 to move through the pulling between the plurality of connecting rods 31, thereby automatically moving the plurality of supporting rods 22 to the below of the heat insulation coiled material 16 at a certain interval; when the heat insulation coiled material 16 and the supporting rod 22 move, the edge of the heat insulation coiled material 16 can be blocked by the edge of the supporting rod 22, and the inclined plate 4 can guide the edge of the heat insulation coiled material 16 when the supporting rod 22 and the edge of the heat insulation coiled material 16 come into contact.
[0032] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A multi-climate adaptive living cabin with adjustable thermal insulation layer, comprising a living cabin body (1); characterized in that: The top side of the living cabin body (1) is rotatably connected with a first shaft rod (12); the top side wall of the living cabin body (1) is fixedly connected with a motor (13); the output end of the motor (13) is fixedly connected with the first shaft rod (12); the other side of the top of the living cabin body (1) is rotatably connected with a second shaft rod (14); a pair of cables (15) are installed in the middle of the motor (13); both ends of the cable (15) are fixedly connected to the middle of the motor (13), and the middle of the cable (15) is arranged around the middle of the second shaft rod (14); the middle of the pair of cables (15) is fixedly connected with a heat insulation coiled material (16); the middle of the motor (13) is fixedly connected with a partition plate (17); both ends of the cable (15) are located on both sides of the partition plate (17).
2. The multi-climate accommodating living cabin with adjustable thermal insulation layer according to claim 1, characterized in that: The top of the living cabin body (1) is fixedly connected with a pair of guide rails (2) which are symmetrically arranged; a plurality of mounting frames (21) are slidably connected to the top of the pair of guide rails (2); the top of the mounting frame (21) is fixedly connected with a support rod (22).
3. A multi-climate accommodating living cabin with adjustable thermal insulation layer according to claim 2, characterized in that: The middle of the mounting frame (21) is symmetrically provided with a pair of sliding grooves (3); the middle of the pair of sliding grooves (3) on the adjacent mounting frame (21) is slidably connected with a connecting rod (31); both ends of the mounting frame (21) farthest away from the side wall of the living cabin body (1) are fixedly connected with a connecting head (32); the connecting head (32) is fixedly connected with the middle of the cable (15).
4. The multi-climate accommodating living cabin with adjustable thermal insulation layer according to claim 2, characterized in that: The side wall of the support rod (22) is fixedly connected with an inclined plate (4); the inclined plate (4) is arranged on the side of the support rod (22) facing the heat insulation coiled material (16).
5. The multi-climate accommodating living cabin with adjustable thermal insulation layer according to claim 2, characterized in that: The middle of the mounting frame (21) is rotatably connected with a plurality of rollers (5); the rollers (5) are located above the guide rail (2).
6. The multi-climate accommodating living cabin with adjustable thermal insulation layer according to claim 2, characterized in that: The bottom of the guide rail (2) is provided with a plurality of drainage holes (6); a plurality of drainage holes (6) are uniformly distributed on the bottom of the guide rail (2).
7. The multi-climate accommodating living cabin with adjustable thermal insulation layer according to claim 2, characterized in that: The support rod (22) is arranged in an arc shape.