Box-type house structure with telescopic self-discharging function
By designing a container house structure with telescopic self-unloading function, and utilizing telescopic devices and lifting devices in the length and width directions, the problems of inconvenient transportation and safety hazards during loading and unloading of container houses have been solved, achieving cost savings and improved safety.
Patent Information
- Application Number
- CN202520242999.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-02-17
AI Technical Summary
Existing container houses are bulky and inconvenient to transport. Furthermore, the loading and unloading process requires vertical transport machinery, which increases safety hazards and costs.
Design a container house structure with telescopic self-unloading function, including a length telescopic device, a width telescopic device and a lifting device. Through coordinated control by a controller, the container house can be telescopically extended and lifted to reduce its volume to accommodate transport vehicles.
This effectively reduces the number of transport vehicles, lowers transportation costs, avoids the use of vertical transport machinery, and reduces loading and unloading safety hazards and costs.
Smart Images

Figure CN223766959U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of container house transportation technology, and specifically relates to a container house structure with telescopic self-unloading function. Background Technology
[0002] In the construction process, standardized container houses are often used as temporary buildings for construction workers to live and work. They are generally large in size, typically 3m*6m*2.6m. Although these container houses can meet the needs of construction workers for living and working, their large size makes them inconvenient to transport and requires multiple transport vehicles to move them.
[0003] In addition, when transporting this type of container house, only vertical transport machinery can be used for automatic loading and unloading. This loading and unloading method not only increases safety hazards but also increases loading and unloading costs, causing great inconvenience to the transportation and loading and unloading of container houses. Utility Model Content
[0004] In order to effectively reduce the cost of loading and unloading container houses, this utility model provides a container house structure with telescopic self-unloading function.
[0005] The technical solution of this utility model for a container house structure with telescopic self-unloading function is as follows:
[0006] A container house structure with telescopic self-unloading function, characterized in that it includes:
[0007] A container house body that can extend and retract along its length, with outward-opening door structures on four sides in the middle of the container house body, and support legs for supporting it at four feet at the bottom of the container house body.
[0008] A length-direction telescopic device capable of driving the container house body to extend and retract along its length direction, the length-direction telescopic device comprising four length-direction telescopic units serving as the four long side structures of the container house body.
[0009] A width-direction telescopic device capable of moving the support legs along the width direction of the container house body and making the distance between the two support legs in the width direction greater than the width of the transport vehicle, the width-direction telescopic device includes two width-direction telescopic units, which are respectively set at the lower ends of both sides of the container house body.
[0010] A lifting device capable of moving the support legs along the height direction of the container house body and making the bottom height of the container house body higher than the height of the transport vehicle. The lifting device includes four lifting units capable of raising and lowering the support legs. The lifting units are respectively connected to the support legs and the width-direction telescopic unit.
[0011] A controller is located on one side of the container house body and is communicatively connected to the length extension device, the width extension device, and the lifting device.
[0012] Furthermore, the length-direction telescopic unit includes a length telescopic rod and length telescopic grooves symmetrically arranged on both sides thereon. The two ends of the length telescopic rod are inserted into the length telescopic grooves and can slide along its length direction. A cylinder is provided on the end of the length telescopic groove away from the length telescopic rod for driving the length telescopic rod to slide along the length telescopic groove. The telescopic end of the cylinder is connected to the end of the length telescopic rod, and the cylinder is communicatively connected to the controller.
[0013] Furthermore, the width-direction telescopic unit includes a crossbar, transverse grooves extending along its axis at both ends of the crossbar, a transverse slide rod that can slide along its axis within the transverse groove, and a transverse sliding drive cylinder in the middle of the crossbar that can drive the transverse slide rod to slide along the axis of the transverse groove. The two telescopic ends of the transverse sliding drive cylinder are respectively connected to the inner ends of the transverse slide rod, and the outer ends of the transverse slide rod are connected to a lifting unit. The transverse sliding drive cylinder is communicatively connected to a controller.
[0014] Furthermore, the lifting unit includes a lifting rod, the middle of which is connected to the outer end of a transverse slide rod. A lifting groove extending along its axis is provided at the lower end of the lifting rod. The upper end of the support leg is inserted into the lifting groove and can slide up and down along the axis of the lifting groove. A lifting cylinder is provided at the upper end of the lifting rod, which can drive the support leg to slide up and down along the axis of the lifting groove. The telescopic end of the lifting cylinder is connected to the upper end of the support leg, and the lifting cylinder is communicatively connected to the controller.
[0015] This utility model discloses a container house structure with telescopic self-unloading function. The container house structure has a reasonable overall design, simple structure, and convenient operation. The telescopic device in the length direction can extend and retract the container house body along its length, thereby reducing the volume of the container house body, reducing the number of transport vehicles, and saving transportation costs. In addition, the effective combination of the telescopic device in the width direction and the lifting device allows the container house to be placed on the transport vehicle more conveniently, avoiding the use of vertical transport machinery for loading, unloading, and installation, reducing safety hazards and unloading and loading costs, and bringing great convenience to the transportation and loading / unloading of container houses. Attached Figure Description
[0016] Figure 1 This is a structural diagram of a container house structure with telescopic self-unloading function according to this utility model.
[0017] Figure 2 This is a schematic diagram of the structure of a container house with telescopic self-unloading function after the container house body has been extended and retracted along its length.
[0018] Figure 3 This is a schematic diagram of the width-direction telescopic unit of a container house structure with telescopic self-unloading function according to this utility model. Detailed Implementation
[0019] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. The advantages and features of the present invention will become clearer from the following description and claims. It should be noted that the drawings are all in a very simplified form and use non-precise proportions, and are only used to facilitate and clarify the illustration of the embodiments of the present invention.
[0020] Example 1
[0021] refer to Figures 1 to 3 This embodiment of a container house structure with telescopic self-unloading function includes a container house body 100, a length telescopic device 200, a width telescopic device 300, a lifting device 400, and a controller 600.
[0022] The container house body 100 can extend and retract along its length. It has four door structures that can be opened outward on the four sides of the middle part of the container house body. The door structures include an upper door structure 120, a lower door structure, a front door structure 110, and a rear door structure. The relevant door structures are attached to the house body by a strong magnetic structure 500.
[0023] Support legs 130 are provided at the four feet at the bottom of the container house body 100 for supporting it. Each support leg 130 includes a support rod 131 and a support foot 132 at the lower end of the support rod 131. This structure effectively improves the overall stability of the container house body.
[0024] The length-direction telescopic device 200 can drive the container body to extend and retract along its length direction. The length-direction telescopic device 200 includes four length-direction telescopic units 210 that serve as the four long side structures of the container body.
[0025] The width-direction telescopic device 300 can drive the support legs to move along the width direction of the container house body and make the distance between the two support legs in the width direction greater than the width of the transport vehicle. The width-direction telescopic device 300 includes two width-direction telescopic units 310, which are respectively arranged at the lower ends of both sides of the container house body 100.
[0026] The lifting device 400 can move the support leg along the height direction of the container house body and make the bottom height of the container house body higher than the height of the transport vehicle. The lifting device 400 includes four lifting units 410 that can lift the support leg. The lifting units 410 are respectively connected to the support leg 130 and the width direction telescopic unit.
[0027] The controller 600 is located on one side of the container house body 100 and is communicatively connected to the length extension device, the width extension device and the lifting device.
[0028] The length-direction telescopic unit 210 includes a length telescopic rod 211 and length telescopic grooves 212 symmetrically arranged on both sides thereon. The two ends of the length telescopic rod 211 are inserted into the length telescopic grooves 212 and can slide along its length direction. A cylinder is provided on the end of the length telescopic groove 212 away from the length telescopic rod for driving the length telescopic rod to slide along the length telescopic groove. The telescopic end of the cylinder is connected to the end of the length telescopic rod 211, and the cylinder is communicatively connected to the controller 600.
[0029] The width-direction telescopic unit 310 includes a crossbar 311, transverse grooves extending along its axis at both ends of the crossbar 311, a transverse slide rod 312 that can slide along its axis in the transverse groove, and a transverse sliding drive cylinder that can drive the transverse slide rod to slide along the axis of the transverse groove in the middle of the crossbar 311. The two telescopic ends of the transverse sliding drive cylinder are respectively connected to the inner end of the transverse slide rod 312 and the outer end of the transverse slide rod 312 is connected to the lifting unit. The transverse sliding drive cylinder is communicatively connected to the controller.
[0030] The lifting unit 400 includes a lifting rod 411, the middle part of which is connected to the outer end of the transverse slide rod 312. A lifting groove extending along its axis is provided at the lower end of the lifting rod 411. The upper end of the support leg 130 is inserted into the lifting groove and can slide up and down along the axis of the lifting groove. A lifting cylinder is provided at the upper end of the lifting rod 411, which can drive the support leg to slide up and down along the axis of the lifting groove. The telescopic end of the lifting cylinder is connected to the upper end of the support leg. The lifting cylinder is communicatively connected to the controller 600.
[0031] This embodiment presents a container house structure with telescopic self-unloading function. The container house structure has a reasonable overall design, simple structure, and convenient operation. The telescopic device in the length direction can extend and retract the container house body along its length, thereby reducing the volume of the container house body, reducing the number of transport vehicles, and saving transportation costs. In addition, the effective combination of the telescopic device in the width direction and the lifting device allows the container house to be placed on the transport vehicle more conveniently, avoiding the use of vertical transport machinery for loading, unloading, and installation, reducing safety hazards and unloading and loading costs, and bringing great convenience to the transportation and loading / unloading of container houses.
[0032] The above description is only a description of the preferred embodiment of the present utility model and is not intended to limit the scope of the present utility model in any way. Any changes or modifications made by those skilled in the art based on the above disclosure shall fall within the protection scope of the claims.
Claims
1. A box house structure having a telescopic self-unloading function, characterized by, The utility model provides a box body (100) can be telescopic along its length direction, the door body structure that can open outward is equipped respectively on four surfaces of the middle part of box body (100), and the support leg (130) for supporting is equipped respectively at four foots of the lower end of box body; A length direction telescopic device (200) can drive the box body to be telescopic along its length direction, the length direction telescopic device (200) includes four length direction telescopic units (210) for being used as the four long side structures of box body; A width direction telescopic device (300) can drive the support leg to move along the width direction of box body and make the distance of two support legs in width direction greater than the width of transport vehicle, the width direction telescopic device includes two width direction telescopic units (310) and is arranged respectively at the lower end of both sides of box body; A lifting device (400) can drive the support leg to move along the height direction of box body and make the bottom height of box body higher than the height of transport vehicle, the lifting device (400) includes four lifting units (410) that can lift the support leg, and the lifting unit (410) is connected with the support leg and the width direction telescopic unit respectively; A controller (600) is arranged at one side of box body and is connected with the length direction telescopic device, the width direction telescopic device and the lifting device in communication. The length direction telescopic unit (210) includes length telescopic rod (211) and the length telescopic groove (212) that is arranged symmetrically at its both sides, and the both ends of length telescopic rod (211) are inserted into length telescopic groove and can slide along its length direction, a cylinder for driving length telescopic rod to slide along length telescopic groove is arranged on the end of length telescopic groove (212) away from length telescopic rod, the telescopic end of cylinder is connected with the end of length telescopic rod, and the cylinder is connected with the controller in communication.
2. The portable building structure having a self-collapsing function according to claim 1, wherein, The width direction telescopic unit (310) includes cross bar (311), transverse sliding slot along its axis is arranged at both ends of cross bar (311), transverse sliding rod (312) that can slide along its axis direction is arranged in transverse sliding slot, transverse sliding drive cylinder that can drive transverse sliding rod to slide along the axis direction of transverse sliding slot is arranged at the middle part of cross bar (311), the both ends of transverse sliding drive cylinder are connected with the inner end of transverse sliding rod respectively, the outer end of transverse sliding rod is connected with lifting unit, and the transverse sliding drive cylinder is connected with the controller in communication.
3. The portable building structure having a self-collapsing function according to claim 2, wherein, 4. The portable building structure having a self-collapsing function according to claim 2, wherein, The lifting unit (410) comprises a lifting rod (411), the middle part of the lifting rod (411) is connected with the outer end of the transverse sliding rod, a lifting sliding groove extending along the axis direction of the lifting rod (411) is arranged at the lower end of the lifting rod (411), the upper end of the support leg (130) is inserted into the lifting sliding groove and can slide up and down along the axis direction of the lifting sliding groove, a lifting cylinder capable of driving the support leg to slide up and down along the axis direction of the lifting sliding groove is arranged at the upper end of the lifting rod (411), the telescopic end of the lifting cylinder is connected with the upper end of the support leg, and the lifting cylinder is in communication connection with the controller.