New energy container house convenient to move
By introducing the cooperation of mobile mechanism, drive components and elastic components in the new energy container room, the electric telescopic rod and bidirectional motor drive is used to achieve constraints and limits on the moving wheel, solving the instability problem caused by roller offset, and improving the safety of movement and the durability of the structure.
Patent Information
- Application Number
- CN202421341766.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-12
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-06-12
AI Technical Summary
The rollers of existing new energy container houses are prone to deviate during movement, resulting in instability and structural wear, affecting safety and life.
The coordinated settings of the moving mechanism, drive assembly, elastic assembly and hoist assembly are adopted, and the electric telescopic rod and bidirectional motor drive are achieved to ensure stability and safety.
It effectively avoids damage to the moving wheel, extends its service life, and ensures the stability and safety of the moving process of new energy container houses.
Smart Images

Figure CN223061764U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of new energy container houses, and particularly relates to a new energy container house convenient for moving. Background Art
[0002] The new energy container house is an innovative and movable living or working space. Based on standard freight containers, it is transformed and designed to integrate various new energy technologies, such as solar photovoltaic panels, wind turbines, rainwater collection systems, energy-saving building materials, etc., to achieve the purpose of low-carbon environmental protection and energy self-sufficiency.
[0003] A container convenient for moving with the authorization announcement number of CN 218641571 U includes a container body. The lower end of the container body is recessed inward to form an installation cavity. In the installation cavity, support components for upwardly supporting the container body are arranged at intervals in the front and rear. The support components include a rotating shaft rotatably arranged in the left-right direction. A cam is arranged on the rotating shaft. A roller is rotatably installed at the outer end of the cam. When the outer end of the cam faces downward, the roller exposes below the installation cavity. A driving mechanism capable of driving the rotating shaft to rotate is also arranged in the installation cavity. When it is necessary to move the container body, the driving mechanism drives the rotating shaft to rotate. The rotating shaft drives the cam to rotate downward. The roller supports on the ground and upwardly supports the container body, and then the container body can be moved through the roller.
[0004] Although the movement of the container house has been realized, there are still some problems in daily use. The rollers are not effectively constrained and limited, which easily causes the rollers to shift during the movement. When the operator attempts to move the container house, this potential instability threatens the safety and reliability of the overall system. Secondly, when directly lifting the container house by the rollers for movement, it is easy to cause excessive burden on the rollers and their affiliated mechanisms, accelerating the wear between their structures, thereby increasing the risk of damage and affecting its normal use. Summary of the Utility Model
[0005] In view of this, the utility model provides a new energy container house convenient for moving, which can be cooperatively arranged with a moving mechanism, a driving component, an elastic component and a jacking component to effectively constrain and limit the moving wheels, ensure the stability during the use of the moving wheels, ensure the stability and safety during the movement of the new energy container house, avoid the risk of damage or abnormal use of the moving wheels caused by directly lifting the new energy container by the moving wheels, and extend the service life of the moving mechanism.
[0006] To solve the above technical problems, the utility model provides a new energy container house that is convenient to move, including a container body and a moving mechanism arranged at the lower end of the container body. The moving mechanism includes fixing plates symmetrically arranged horizontally at the left and right ends of the top wall surface of the container body. Rotating rods are rotatably connected in the front and rear ends longitudinally symmetrically arranged on the inner front surface of the fixing plates. Rectangular tubes are provided at the inner ends of the rotating rods. Rectangular rods are vertically slidably connected in the rectangular tubes. The upper ends of the rectangular rods are respectively inserted into rectangular slots corresponding to the four corners of the top wall surface of the container body. Moving wheels are provided on the lower surfaces of the rectangular rods. A driving component for driving the rotating rods to rotate is also provided on the top wall surface of the container body. Elastic components are provided between the rectangular tubes and the rectangular rods. A jacking component is also provided at the lower end of the container body.
[0007] The driving component includes a bidirectional worm rotatably connected symmetrically horizontally between the front and rear wall surfaces of the container body at the left and right ends. Worm wheels are provided at the outer ends of the rotating rods. The front and rear ends of the bidirectional worm are respectively meshed and connected with the adjacent worm wheels on the same side. The driving component also includes rotating rods respectively rotatably connected to the upper parts of the middle of the fixing plates. Bevel gears are provided at the outer ends of the rotating rods. Bevel gear rings are provided at the rear ends of the outer arc surfaces of the bidirectional worms. The bevel gear rings are respectively meshed and connected with the adjacent bevel gears on the same side. A bidirectional motor is provided in the middle of the top wall surface of the container body. The output shafts at the left and right ends of the bidirectional motor are respectively fixedly connected to the inner ends of the adjacent rotating rods on the same side.
[0008] The elastic component includes annular plates respectively provided at the lower ends of the rectangular rods. Springs are provided between the upper surfaces of the annular plates and the lower surfaces of the vertically adjacent rectangular tubes. The springs are respectively sleeved on the outside of the vertically adjacent rectangular rods.
[0009] The jacking component includes electric telescopic rods symmetrically arranged horizontally at the middle parts of the left and right ends of the top wall surface of the container body. Top plates are provided at the lower ends of the telescopic ends of the electric telescopic rods.
[0010] The bidirectional motor and the electric telescopic rod are both electrically connected to an external single-chip microcomputer.
[0011] A protective bottom plate is provided at the lower opening of the container body. Avoidance openings corresponding to the moving wheels one by one are provided at the four corners of the protective bottom plate. Through holes corresponding to the top plates one by one are provided at the left and right ends of the protective bottom plate.
[0012] The beneficial effects of the above technical solutions of the utility model are as follows:
[0013] 1. When it is necessary to move the new energy container house, the operator controls the operation of the electric telescopic rod through an external single-chip microcomputer. The telescopic end of the electric telescopic rod extends to drive the top plate to move down synchronously. The top plate contacts the ground, thereby lifting the new energy container house, avoiding the risk of damage to the moving wheels or abnormal use caused by directly lifting the new energy container by the moving wheels, and prolonging the service life of the moving mechanism;
[0014] 2. Then, the operator controls the operation of the bidirectional motor through an external single-chip microcomputer. When the output shafts on both sides of the bidirectional motor rotate synchronously, they drive the rotating rods and bevel gears on the same side to rotate synchronously. When the bevel gears rotate, they drive the bidirectional worm to rotate synchronously through the bevel gear ring engaged with them. When the bidirectional worm rotates, it drives the rotating rod and its attached mechanism to rotate outward synchronously through the worm gear engaged with it. Finally, the rectangular tubes, rectangular rods, moving wheels, annular plates, and springs in a vertical group are in a vertically perpendicular state. Then, the operator controls the electric telescopic rod to operate in the reverse direction through the external single-chip microcomputer. The telescopic end of the electric telescopic rod retracts and drives the top plate to reset synchronously. At this time, the new energy container house moves downward, and the moving wheels will first contact the ground. As the new energy container house moves downward, the rectangular tubes compress the springs. Finally, the upper ends of the rectangular rods are movably inserted into the rectangular slots provided at the four corners of the top wall surface of the container body one by one, thereby effectively restraining and limiting the moving wheels and ensuring the stability of the moving wheels during use. At this time, the operator can move the new energy container house to ensure the stability and safety of the new energy container house during the moving process.
[0015] 4. The protective bottom plate plays a role in protecting the internal mechanism. Description of the Drawings
[0016] Figure 1 It is a schematic diagram of the main structure of a new energy container house that is easy to move according to the present invention;
[0017] Figure 2 It is a schematic diagram of the bottom view structure of the present invention;
[0018] Figure 3 It is a schematic diagram of the moving mechanism structure of the present invention;
[0019] Figure 4 It is a schematic diagram of the enlarged structure at A of the present invention.
[0020] Description of the reference numerals: 100, container body; 200, fixed plate; 201, rotating rod; 202, rectangular tube; 203, rectangular rod; 204, moving wheel; 300, bidirectional worm; 301, worm gear; 302, rotating rod; 303, bevel gear; 304, bevel gear ring; 305, bidirectional motor; 400, annular plate; 401, spring; 500, electric telescopic rod; 501, top plate; 600, protective bottom plate. Detailed Embodiment
[0021] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will combine the drawings of the embodiments of the present invention. Figures 1-4, the technical solutions of the embodiments of the present utility model are clearly and completely described. Obviously, the described embodiments are part of the embodiments of the present utility model, rather than all embodiments. Based on the described embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art belong to the scope of protection of the present utility model.
[0022] As Figures 1-4 shown:
[0023] This embodiment provides a new energy container house that is convenient to move, including a container body 100 and a moving mechanism arranged at the lower end of the container body 100. The moving mechanism includes fixing plates 200 symmetrically arranged horizontally at the left and right ends of the top wall surface of the container body 100. Rotating rods 201 are rotatably connected in the rotating holes symmetrically arranged longitudinally at the front and rear ends of the inner side surface of the fixing plate 200. Rectangular tubes 202 are provided at the inner ends of the rotating rods 201. Rectangular rods 203 are vertically slidably connected in the rectangular tubes 202. The upper ends of the rectangular rods 203 are respectively inserted into the rectangular slots corresponding to the four corners of the top wall surface of the container body 100 in an activity manner. Moving wheels 204 are provided on the lower surfaces of the rectangular rods 203. A driving component for driving the rotation of the rotating rod 201 is further provided on the top wall surface of the container body 100. Elastic components are provided between the rectangular tubes 202 and the rectangular rods 203. A jacking component is further provided at the lower end of the container body 100; the driving component includes a bidirectional worm 300 symmetrically rotatably connected between the front and rear wall surfaces of the container body 100 at the left and right ends. Worms 301 are provided at the outer ends of the rotating rods 201. The front and rear ends of the bidirectional worm 300 are respectively meshed and connected with the adjacent worms 301 on the same side; the driving component further includes rotating rods 302 respectively rotatably connected to the upper ends of the middle parts of the fixing plates 200. Bevel gears 303 are provided at the outer ends of the rotating rods 302. Bevel gear rings 304 are provided at the rear ends of the outer arc surfaces of the bidirectional worm 300. The bevel gear rings 304 are respectively meshed and connected with the adjacent bevel gears 303 on the same side. A bidirectional motor 305 is provided in the middle of the top wall surface of the container body 100. The output shafts at the left and right ends of the bidirectional motor 305 are respectively fixedly connected to the inner ends of the adjacent rotating rods 302 on the same side.
[0024] As Figures 2-4 shown, the elastic component includes annular plates 400 respectively arranged at the lower ends of the rectangular rods 203. Springs 401 are provided between the upper surface of the annular plate 400 and the lower surface of the vertically adjacent rectangular tube 202. The springs 401 are respectively sleeved on the outside of the vertically adjacent rectangular rods 203 in an activity manner.
[0025] As Figures 2-3 shown, the jacking component includes electric telescopic rods 500 symmetrically arranged horizontally at the middle parts of the left and right ends of the top wall surface of the container body 100. Top plates 501 are provided at the lower ends of the telescopic ends of the electric telescopic rods 500.
[0026] AsFigure 3 As shown, both the bidirectional motor 305 and the electric telescopic rod 500 are electrically connected to an external single-chip microcomputer.
[0027] The working principle of a new energy container house that is easy to move provided by the present utility model is as follows: When it is necessary to move the new energy container house, the operator controls the operation of the electric telescopic rod 500 through an external single-chip microcomputer. The telescopic end of the electric telescopic rod 500 extends and drives the top plate 501 to move downward synchronously. The top plate 501 contacts the ground, thereby lifting the new energy container house, avoiding the risk of damage to the moving wheels 204 or abnormal use caused by directly lifting the new energy container by the moving wheels 204, and extending the service life of the moving mechanism. Then, the operator controls the operation of the bidirectional motor 305 through an external single-chip microcomputer. When the output shafts on both sides of the bidirectional motor 305 rotate synchronously, they drive the rotating rods 302 and bevel gears 303 on the same side to rotate synchronously. When the bevel gear 303 rotates, it drives the bidirectional worm 300 to rotate synchronously through the bevel gear ring 304 meshed with it. When the bidirectional worm 300 rotates, it drives the rotating rod 201 and its attached mechanism to rotate outward synchronously through the worm wheel 301 meshed with it. Finally, the rectangular tubes 202, rectangular rods 203, moving wheels 204, annular plates 400, and springs 401 in a vertical group are in a vertically perpendicular state. Then, the operator controls the electric telescopic rod 500 to operate in the reverse direction. The telescopic end of the electric telescopic rod 500 retracts and drives the top plate 501 to reset synchronously. At this time, the new energy container house moves downward, and the moving wheels 204 will first contact the ground. As the new energy container house moves downward, the rectangular tube 202 compresses the spring 401. Finally, the upper end of the rectangular rod 203 is movably inserted into the rectangular slots provided at the four corners of the top wall surface of the container body 100, thereby effectively restraining and limiting the moving wheels 204 and ensuring the stability of the moving wheels 204 during use. At this time, the operator can move the new energy container house to ensure the stability and safety of the new energy container house during the moving process. When the new energy container house moves to the designated position, reverse the above steps to make the new energy container house park stably.
[0028] As Figure 2 As shown, a protective bottom plate 600 is provided at the lower opening of the container body 100. Avoidance openings corresponding to the moving wheels 204 are provided at the four corners of the protective bottom plate 600. Through holes corresponding to the top plate 501 are provided at the left and right ends of the protective bottom plate 600. The protective bottom plate 600 plays a role in protecting the internal mechanism.
[0029] In addition, it should be noted that in the description of the present utility model, unless otherwise clearly specified and defined, the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those skilled in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0030] The above is the preferred embodiment of the present utility model. It should be pointed out that for those of ordinary skill in the art, without departing from the principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.
Claims
1. A new energy container house convenient for movement, characterized in that: It includes a container body (100) and a moving mechanism arranged at the lower end of the container body (100). The moving mechanism includes fixing plates (200) symmetrically arranged horizontally at the left and right ends of the top wall surface of the container body (100). Rotating rods (201) are rotatably connected in the rotating holes symmetrically arranged longitudinally at the front and rear ends of the inner side surface of the fixing plates (200). Rectangular tubes (202) are provided at the inner ends of the rotating rods (201). Rectangular rods (203) are vertically slidably connected in the rectangular tubes (202). The upper ends of the rectangular rods (203) are respectively movably inserted into rectangular slots corresponding to the four corners of the top wall surface of the container body (100). Moving wheels (204) are provided on the lower surfaces of the rectangular rods (203). A driving component for driving the rotation of the rotating rods (201) is further provided on the top wall surface of the container body (100). An elastic component is provided between the rectangular tube (202) and the rectangular rod (203). A jacking component is further provided at the lower end of the container body (100).
2. The new energy container house convenient for movement according to claim 1, wherein: The driving component includes a bidirectional worm (300) symmetrically and rotatably connected between the front and rear wall surfaces of the container body (100) at the left and right ends. Worms (301) are provided at the outer ends of the rotating rods (201). The front and rear ends of the bidirectional worm (300) are respectively meshed and connected with the adjacent worms (301) on the same side.
3. The new energy container house convenient for movement according to claim 2, wherein: The driving component further includes rotating rods (302) respectively rotatably connected to the upper parts of the middles of the fixing plates (200). Bevel gears (303) are provided at the outer ends of the rotating rods (302). Bevel gear rings (304) are provided at the rear ends of the outer arc surfaces of the bidirectional worms (300). The bevel gear rings (304) are respectively meshed and connected with the adjacent bevel gears (303) on the same side. A bidirectional motor (305) is provided in the middle of the top wall surface of the container body (100). The output shafts at the left and right ends of the bidirectional motor (305) are respectively fixedly connected to the inner ends of the adjacent rotating rods (302) on the same side.
4. The new energy container house convenient for movement according to claim 1, characterized in that: The elastic component includes annular plates (400) respectively provided at the lower ends of the rectangular rods (203). Springs (401) are provided between the upper surface of the annular plates (400) and the lower surface of the vertically adjacent rectangular tubes (202). The springs (401) are respectively sleeved on the outside of the vertically adjacent rectangular rods (203).
5. The new energy container house convenient for movement according to claim 3, characterized in that: The jacking component includes electric telescopic rods (500) symmetrically arranged horizontally at the middle parts of the left and right ends of the top wall surface of the container body (100). Top plates (501) are provided at the lower ends of the telescopic ends of the electric telescopic rods (500).
6. The new energy container house convenient for movement according to claim 5, characterized in that: A protective bottom plate (600) is provided at the lower opening of the container body (100). Avoidance openings corresponding to the moving wheels (204) are provided at the four corners of the protective bottom plate (600). Through openings corresponding to the top plates (501) are provided at the left and right ends of the protective bottom plate (600).
7. The new energy container house convenient for movement according to claim 5, wherein: The bidirectional motor (305) and the electric telescopic rod (500) are both electrically connected to an external single-chip microcomputer.