A container

By designing conveyor systems and raised floors within the container structure, the problems of cumbersome loading and unloading of heavy cargo and complex transportation in traditional containers have been solved, achieving safe and efficient cargo transportation and cost reduction.

CN224312431UActive Publication Date: 2026-06-02GUANGDONG XINHUI CIMC SPECIAL TRANSPORT EQUIPS +2

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG XINHUI CIMC SPECIAL TRANSPORT EQUIPS
Filing Date
2025-05-20
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Traditional container loading and unloading of heavy cargo is cumbersome, requires manual operation and poses safety risks. Furthermore, different skid-mounted equipment cannot be standardized for transportation, resulting in complex and costly transportation.

Method used

A container was designed, comprising a conveying device, a drive unit, a base frame, and a movable floor. The conveying device is partially housed within the base frame and drives goods in and out via the drive unit. The movable floor can pivot to cover the installation space, adapting to different cargo requirements.

Benefits of technology

It simplifies the loading and unloading process, reduces the risks of manual operation, lowers transportation costs, and adapts to the standardized transportation of different skid-mounted equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224312431U_ABST
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Abstract

The utility model provides a kind of container, including at least one conveying device, driving device, underframe and movable floor. Conveying device includes at least one first conveying component and at least one second conveying component arranged along length direction. Driving device is connected to first conveying component. Underframe includes installation space, for installing and partially containing conveying device. Movable floor is pivotably connected to underframe between covering position and open position, can cover installation space when being located in covering position. According to the container of the utility model, conveying device is partially contained in installation space, saves the space in box, adopts driving device to drive first conveying component, conveniently goods in and out container interior, save time and effort;When conveying device is not needed to be used or when the container is used to load or transport ordinary goods, movable floor can be conveniently moved to covering position, cover conveying component and installation space, so that the bottom of the container in box remains flat.
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Description

Technical Field

[0001] This utility model relates generally to the technical field of containers, and more specifically to a container. Background Technology

[0002] In existing technologies, traditional container loading and unloading is very cumbersome, especially when loading and unloading heavy goods such as skid-mounted equipment. Forklifts, forklift drivers, and other operators need to enter the container to assist with loading and unloading. If operational errors occur, it may lead to production errors and personnel safety issues. In addition, different skid-mounted equipment integrates various functional units, making it impossible to manufacture them into standard sizes, which makes their transportation more complicated and costly.

[0003] Therefore, there is a need to provide a container that can at least partially solve the above problems. Utility Model Content

[0004] The description of this utility model introduces a series of simplified concepts, which will be further explained in detail in the detailed description section. This description is not intended to limit the key features and essential technical features of the claimed technical solution, nor is it intended to determine the scope of protection of the claimed technical solution.

[0005] To at least partially solve the above problems, this utility model provides a shipping container. The shipping container includes:

[0006] At least one conveying device, the conveying device comprising at least one first conveying component and at least one second conveying component, the at least one first conveying component and the at least one second conveying component being arranged along a length direction;

[0007] A drive device is connected to the at least one first conveying component to drive the first conveying component;

[0008] A base frame, the base frame including mounting space for mounting and partially accommodating the at least one first conveying assembly and the at least one second conveying assembly; and

[0009] A raised floor that is pivotally connected to the base frame between a covered position and an open position, thereby enabling the installation space to be covered when in the covered position.

[0010] According to this utility model, the conveying device is partially housed within the installation space of the container's underframe, saving internal space. Furthermore, a drive device is used to drive the first conveying component, facilitating the entry and exit of goods such as skid-mounted equipment into and out of the container. In other words, it is convenient for workers to transport goods such as skid-mounted equipment into or out of the container, saving time and effort. When the conveying device is not needed, or when the container is used to load or transport general cargo, the movable floor can be easily moved to a covering position to cover the conveying component and installation space, keeping the bottom of the container flat and reducing transportation costs.

[0011] Optionally,

[0012] The first conveying assembly includes a first conveying roller and a first support member, the first support member being detachably mounted to the base frame, and the driving device being configured as a motor, the output shaft of the motor being fixedly connected to the first conveying roller;

[0013] The second conveying assembly includes a second conveying roller and a second support member, the second support member being detachably mounted to the base frame.

[0014] The first support member and the second support member have the same dimensions and structure.

[0015] Optionally,

[0016] The first conveying roller includes a first roller body, which is rotatably supported on the first support member;

[0017] The second conveying roller includes a second roller body, which is rotatably supported on the second support member.

[0018] Both the first roller and the second roller protrude upwards from the base frame along the height direction.

[0019] Optionally,

[0020] The base frame is provided with mounting blocks, which are flush with or protrude upward from the first and second conveyor rollers along the height direction. The movable floor is pivotally connected to the mounting blocks to cover the first and second conveyor rollers; and / or

[0021] The first conveying roller further includes a first roller shaft, which is fixedly connected to the first roller body, and the output shaft of the motor is connected to the first roller shaft.

[0022] Optionally,

[0023] The container includes at least two motors and a controller, the at least two motors being electrically connected via a cable assembly, and the controller being electrically connected to the motors;

[0024] The container also includes a door end, a front end, and a side wall. The door end and the front end are arranged opposite each other along the length direction, and the controller is located on the side wall near the door end.

[0025] Optionally,

[0026] Two adjacent conveyor rollers of the first and second conveyor rollers are connected by a transmission component, which is used to simultaneously drive the two adjacent conveyor rollers of the first and second conveyor rollers; and / or

[0027] The first support member is constructed with an upward-opening groove to accommodate the drive device and the first conveying roller in a horizontal direction, and the second support member is constructed with an upward-opening groove to accommodate the second conveying roller in the horizontal direction. The groove is provided with a plurality of mounting holes to facilitate multi-point mounting with the base frame.

[0028] Optionally, the base frame further includes a base plate located at intervals below the raised floor, the installation space being formed along the height direction between the base plate and the raised floor, and the base plate being constructed as a corrugated plate.

[0029] Optionally, the base frame further includes at least two bottom crossbeams, which are spaced apart along the length direction, and the at least one first conveying assembly and at least one second conveying assembly are both disposed between two adjacent bottom crossbeams along the length direction.

[0030] Optionally, a first end of the raised floor along the width direction is pivotally connected to the base frame, and a second end of the raised floor along the width direction is provided with a hole to allow it to be hung on the side wall of the container when in the open position.

[0031] Optionally,

[0032] The base frame also includes two bottom side beams and at least one bottom longitudinal beam. The two bottom side beams are arranged opposite each other along the width direction, and the bottom longitudinal beams are spaced apart between the two bottom side beams along the width direction.

[0033] The container includes at least two conveying devices, the two ends of which are connected along the width direction between two adjacent bottom longitudinal beams or between a bottom side beam and a bottom longitudinal beam adjacent to the bottom side beam.

[0034] In this configuration, two adjacent conveying devices are arranged symmetrically about the bottom longitudinal beam along the width direction.

[0035] Optionally,

[0036] The base frame includes at least three bottom longitudinal beams, and the two ends of the conveying device along the width direction are connected between two adjacent bottom longitudinal beams;

[0037] The container may also include a fixed floor, which is laid on the bottom side beam and the bottom longitudinal beam adjacent to the bottom side beam. Attached Figure Description

[0038] The following drawings, which illustrate embodiments of the present invention, are incorporated herein as part of the present invention for understanding the invention. The drawings show embodiments of the present invention and their descriptions, serving to explain the principles of the present invention. In the drawings,

[0039] Figure 1 This is a three-dimensional structural diagram of a container according to a preferred embodiment of the present invention;

[0040] Figure 2 This is a top view of the container frame and conveying device according to a preferred embodiment of the present invention;

[0041] Figure 3 This is a bottom view of the container frame and fixed floor according to a preferred embodiment of the present invention.

[0042] Figure 4 This is a schematic diagram of the internal structure of a container according to a preferred embodiment of the present invention;

[0043] Figure 5 To observe from another perspective Figure 4 A schematic diagram of the internal structure of a shipping container;

[0044] Figure 6 This is a structural diagram of the raised floor;

[0045] Figure 7 for Figure 6 A schematic diagram of the structure of a plate;

[0046] Figure 8 This is a schematic diagram showing a container cut along its length and height according to a preferred embodiment of the present invention.

[0047] Figure 9 for Figure 8 A magnified view of a portion of region A in the middle;

[0048] Figure 10 for Figure 8 A schematic diagram of the connection of the first conveying component.

[0049] Explanation of reference numerals in the attached figures:

[0050] 100: Container; 110: First conveyor assembly

[0051] 111: First conveyor roller; 111a: First roller body

[0052] 111b: First roller shaft; 112: First support member

[0053] 120: Second conveying assembly; 121: Second conveying roller

[0054] 122: Second support member; 140: Base frame

[0055] 141: Installation space 142: Base plate

[0056] 143: Bottom crossbeam 144: Bottom side beam

[0057] 145: Bottom longitudinal beam; 150: Raised floor

[0058] 151: Plate body; 152: Hinge component

[0059] 160: Mounting block; 170: Controller

[0060] 180: Fixed floor 191: Door end

[0061] 192: Front end; 193: Side wall Detailed Implementation

[0062] In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that embodiments of the present invention may be practiced without one or more of these details. In other instances, certain technical features well-known in the art have not been described in order to avoid confusion with embodiments of the present invention.

[0063] To fully understand the embodiments of this utility model, a detailed structure will be presented in the following description. Obviously, the implementation of the embodiments of this utility model is not limited to the specific details familiar to those skilled in the art.

[0064] It should be understood that the terminology used herein is intended only to describe particular embodiments and is not intended to limit the invention. The singular forms “a,” “an,” and “the” are also intended to include the plural forms unless the context clearly indicates otherwise. When the terms “comprising” and / or “including” are used in this specification, they indicate the presence of the stated features, integrals, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components, and / or combinations thereof.

[0065] The ordinal numbers such as "first" and "second" used in this utility model are merely identifiers and do not have any other meaning, such as a specific order. Furthermore, for example, the term "first component" does not imply the existence of a "second component," and the term "second component" does not imply the existence of a "first component." It should be noted that the terms "upper," "lower," "front," "rear," "left," "right," "inner," "outer," and similar expressions used in this utility model are for illustrative purposes only and are not intended to be limiting.

[0066] The specific embodiments of the present invention will be described in more detail below with reference to the accompanying drawings, which show representative embodiments of the present invention and are not intended to limit the present invention.

[0067] This invention provides a shipping container. The container includes at least one conveying device, a drive unit, a chassis, and a raised floor. The conveying device includes at least one first conveying assembly and at least one second conveying assembly, which are arranged along a length direction. The drive unit is connected to at least one first conveying assembly to drive it. The chassis includes a mounting space for mounting and partially accommodating at least one first conveying assembly and at least one second conveying assembly. The raised floor is pivotally connected to the chassis between a covered position and an open position, thereby enabling it to cover the mounting space when in the covered position.

[0068] According to this utility model, the conveying device is partially housed within the installation space of the container's underframe, saving internal space. Furthermore, the first conveying component is driven by a drive device, facilitating the entry and exit of goods such as skid-mounted equipment into and out of the container. This means that it is convenient for workers to transport goods such as skid-mounted equipment into or out of the container, saving time and effort. When the conveying device is not needed, or when the container is used to load or transport general cargo, the movable floor can be easily moved to a covering position to cover the conveying component and installation space, keeping the bottom of the container flat and reducing transportation costs.

[0069] It should be noted that in the illustrated embodiments of this utility model, "length direction," "width direction," and "height direction" refer to the "length direction," "width direction," and "height direction" of the container 100, respectively. The "length direction" is perpendicular to the "width direction." Both the "length direction" and the "width direction" are perpendicular to the "height direction." Both the "length direction" and the "width direction" are parallel to the "horizontal direction."

[0070] refer to Figures 1 to 10The image shows a container 100 according to a preferred embodiment of the present invention. The container 100 may include a door 191, a front end 192, two side walls 193, at least one conveying device, a drive device, a base frame 140, a raised floor 150, a mounting block 160, a controller 170, and a fixed floor 180.

[0071] refer to Figure 1 and Figure 5 The front end 192 and the door end 191 are arranged opposite each other along the length direction. The door end 191 can be provided with a door. In the illustrated embodiment, the door is a double door. Of course, if needed and / or desired, the door can also be a single door. The two side walls 193 are arranged opposite each other along the width direction. The bottoms of the door end 191, the front end 192, and the two side walls 193 are all connected to the base frame 140.

[0072] At least one conveying device is disposed within the interior space of the container. The conveying device includes at least one first conveying assembly 110 and at least one second conveying assembly 120, which are arranged along the length direction. A drive unit is connected to at least one first conveying assembly 110 to drive it. This facilitates the convenient transport of goods, such as skid-mounted equipment, into the container 100, saving time and effort. Understandably, the drive unit is connected to the at least one first conveying assembly 110 but not to the at least one second conveying assembly 120, which is suitable for adjusting the required driving force according to the weight of the goods, reducing redundant energy consumption.

[0073] refer to Figure 2 At least three first conveying components 110 may be evenly spaced along the length direction. At least three second conveying components 120 may be evenly spaced along the length direction. The first conveying components 110 and the second conveying components 120 may be arranged alternately. Along the length direction, one or more (e.g., five) second conveying components 120 may be arranged between two adjacent first conveying components 110.

[0074] The underframe 140 may include a base plate 142 and a mounting space 141. The base plate 142 is spaced below the raised floor 150, and the mounting space 141 may be formed along the height direction between the base plate 142 and the raised floor 150. The mounting space 141 may be used to install and partially accommodate at least one first conveying assembly 110 and at least one second conveying assembly 120. The conveying devices are partially accommodated along the height direction within the mounting space 141 in the underframe 140 of the container 100, saving internal container space.

[0075] The base plate 142 can be constructed as a corrugated plate, such as a corrugated steel plate, thus ensuring high strength. (Reference) Figure 8 and Figure 9 The corrugation direction of the corrugated plate is the length direction.

[0076] The raised floor 150 is pivotally connected to the underframe 140 between a covered position and an open position, thereby covering the installation space 141 when in the covered position. Thus, when the conveyor is not needed or when the container 100 is used for loading or transporting general cargo, the raised floor 150 can be easily moved to the covered position, covering the conveyor components and the installation space 141, keeping the interior bottom of the container 100 flat. This improves the utilization rate of the container 100 and reduces transportation costs.

[0077] In some implementations, reference Figure 1 and Figures 4-7 The first end of the raised floor 150 along its width is pivotally connected to the base frame 140, and the second end of the raised floor 150 along its width has a hole to allow it to be hung on the side wall 193 of the container 100 when in the open position. Thus, the raised floor 150 can be quickly opened to expose the conveying device, thereby allowing the transport of goods such as skid-mounted equipment.

[0078] refer to Figure 6 and Figure 7 The raised floor 150 may include a plurality of panels 151 along its length, the first end of each panel 151 being pivotally connected to the base frame 140 via a hinge 152. The panels 151 may pivot together or individually. Alternatively, the panels 151 may be in different positions as needed; for example, one or more of the panels 151 may be in a covered position while others may be in an open position.

[0079] The first conveying assembly 110 may include a first conveying roller 111 and a first support member 112, the first support member 112 being detachably mounted to the base frame 140. The second conveying assembly 120 may include a second conveying roller 121 and a second support member 122, the second support member 122 being detachably mounted to the base frame 140. The first support member 112 and the second support member 122 are identical in size and structure. Therefore, the first support member 112 and the second support member 122 can be interchanged, facilitating processing and use, improving efficiency, and reducing costs.

[0080] The first conveying roller 111 may include a first roller body 111a and a first roller shaft 111b. The first roller body 111a is rotatably supported on a first support member 112. The second conveying roller 121 may include a second roller body and a second roller shaft. The second roller body is rotatably supported on a second support member 122. The axial direction of the first roller shaft 111b is parallel to the width direction. The axial direction of the second roller shaft is parallel to the width direction. The first roller body 111a and the second roller body may be generally constructed in a roller shape, thereby saving time and effort when moving goods along the length direction. Both the first roller body 111a and the second roller body protrude upwards in the height direction from the base frame 140. For example, both the first roller body 111a and the second roller body protrude upwards in the height direction from the bottom crossbeam 143 and the bottom longitudinal beam 145 described below. Thus, the first roller body 111a and the second roller body can directly contact the goods, so that the top of the first roller body 111a and the top of the second roller body can form a loading surface, realizing the movement and transportation of goods.

[0081] The drive unit can be configured as a motor, with the motor's output shaft fixedly connected to the first conveyor roller 111. The first roller shaft 111b of the first conveyor roller 111 can be fixedly connected to the first roller body 111a. The motor's output shaft can be connected to the first roller shaft 111b so that when the motor is working, it drives the first roller shaft 111b to rotate, and the first roller shaft 111b drives the first roller body 111a to rotate. Understandably, the motor is not connected to the second conveyor roller 121.

[0082] The drive unit is electrically connected to the controller 170, thereby allowing control of the drive unit's operating state via the controller 170. (Reference) Figure 1 The controller 170 can be installed on the side wall 193 near the door end 191, so that the staff can easily operate the controller 170.

[0083] The drive unit may include at least two motors, which are electrically connected via a cable assembly, and a controller 170 is electrically connected to the motors. Thus, an operator can conveniently control the operating status of two or more motors by operating the controller 170. The operating status of the motors can be divided into a stopped state and a running state, with the running state including forward rotation mode, reverse rotation mode, high power mode, and low power mode.

[0084] For example, when transporting goods such as skid-mounted equipment into the container 100, the motor's operating state can be set to forward rotation mode via controller 170; when transporting goods such as skid-mounted equipment from inside the container 100 to the outside, the motor's operating state can be set to reverse rotation mode via controller 170. Of course, if needed and / or desired, when transporting goods such as skid-mounted equipment into the container 100, the motor's operating state can be set to reverse rotation mode via controller 170; when transporting goods such as skid-mounted equipment from inside the container 100 to the outside, the motor's operating state can be set to forward rotation mode via controller 170.

[0085] For example, when the weight of the goods is large, the operating status of some motors can be set to running state and / or high-power mode according to actual needs. When the weight of the goods is small, the operating status of some motors can be set to stopped state and / or low-power mode according to actual needs.

[0086] The enclosure can be equipped with a power input interface, which can be used when connected to a truck or other power source for normal operation, thereby providing power to the controller 170 and the drive unit.

[0087] A mounting block 160 may be provided on the base frame 140. The mounting block 160 is flush with or protrudes upward from the first conveyor roller 111 and the second conveyor roller 121 along its height direction. The movable floor 150 is pivotally connected to the mounting block 160 to cover the first conveyor roller 111 and the second conveyor roller 121. Thus, when the conveying device is not used or when the container 100 is used to load or transport general cargo, the movable floor 150 can cover and support the first conveyor roller 111 and the second conveyor roller 121 substantially horizontally. The height dimension of the mounting block 160, or the installation position of the movable floor 150 and the mounting block 160, is appropriately aligned with the top position of the first conveyor roller 111 and the second conveyor roller 121. This ensures that the bottom of the container 100 is flat and substantially horizontal, allowing the movable floor 150 to receive balanced support from the first conveyor roller 111 and the second conveyor roller 121 when carrying cargo, thus guaranteeing the load-bearing capacity of the movable floor 150 and extending its service life.

[0088] For example, two adjacent conveyor rollers 111 and 121 can be connected by a transmission component, which simultaneously drives two adjacent conveyor rollers 111 and 121. The output shaft of the motor drives the first conveyor roller 111 to rotate, and the first conveyor roller 111 drives the second conveyor roller 121 to rotate via the transmission component. Thus, the two adjacent conveyor rollers 111 and 121 can operate synchronously, ensuring the stability of the goods during the conveying process and avoiding problems such as slippage, compression, stretching, or displacement of the goods due to speed differences among the conveyor rollers.

[0089] The transmission component can be constructed as a chain, belt, etc. In one embodiment, the first roller body 111a of the first conveying roller 111 and the second roller body of the adjacent second conveying roller 121 can be connected simultaneously by a chain. The output shaft of the motor and the first roller shaft 111b of the first conveying roller 111 can be directly connected by, for example, a flange coupling or gear meshing.

[0090] In some embodiments, the first support 112 may be configured with an upward-opening groove to accommodate a drive device, such as a motor, and a first conveying roller 111 in a horizontal direction. The drive device may be mounted on the groove. The second support 122 may be configured with an upward-opening groove to accommodate a second conveying roller 121 in a horizontal direction. Thus, the first support 112 and the drive device can be integrally replaced with the second support 122 to quickly adjust the number and / or position of the drive devices, thereby quickly adjusting the drive power to flexibly adapt to different cargo weights and transportation needs.

[0091] The first support member 112 and the second support member 122 may have multiple mounting holes to facilitate multi-point installation with the base frame 140.

[0092] refer to Figures 1-3 , Figure 5 , Figure 8 , Figure 9 as well as Figure 10 The base plate 142 may include at least two crossbeams, two bottom side beams 144, and at least one bottom longitudinal beam 145. The two bottom side beams 144 are arranged opposite each other along the width direction, and the bottom longitudinal beams 145 are spaced apart between the two bottom side beams 144 along the width direction. At least two bottom crossbeams 143 are spaced apart along the length direction, and at least one first conveying assembly 110 and at least one second conveying assembly 120 are both arranged along the length direction between adjacent bottom crossbeams 143 (see...). Figure 9 This makes installation easier.

[0093] Container 100 includes at least two conveying devices arranged along the width direction, with both ends of the conveying devices connected between two adjacent bottom longitudinal beams 145 or between a bottom side beam 144 and a bottom longitudinal beam 145 adjacent to the bottom side beam 144 (see...). Figure 10 This ensures the installation strength and stability of the conveying device.

[0094] Preferably, two adjacent conveying devices can be arranged symmetrically about the bottom longitudinal beam 145 along the width direction. This ensures that the force is balanced along the width direction during the transport of goods and prevents the goods from tilting or slipping along the width direction.

[0095] In some embodiments, the base frame 140 includes a bottom longitudinal beam 145. Two conveying devices are arranged in the width direction. Two raised floors 150 are arranged in the width direction. A first end of the raised floor 150 in the width direction is pivotally connected to a bottom side beam 144 via a hinge 152. The two ends of the conveying devices in the width direction are connected between the bottom side beam 144 and the bottom longitudinal beam 145. That is, conveying devices are connected to both sides of the bottom longitudinal beam 145 in the width direction. The bottom longitudinal beam 145 can be designed to have a larger dimension in the width direction and greater strength to stably support the conveying devices.

[0096] In some embodiments, the base frame 140 may have at least three bottom longitudinal beams 145, with the two ends of the conveying device connected between two adjacent bottom longitudinal beams 145 along the width direction. For example, in an embodiment with three bottom longitudinal beams 145, two conveying devices are arranged in the width direction and connected between two adjacent bottom longitudinal beams 145 respectively. That is, conveying devices are connected to both sides of the central bottom longitudinal beam 145 along the width direction. The central bottom longitudinal beam 145 may be designed to have a larger dimension along the width direction, and the central bottom longitudinal beam 145 has greater strength to stably support the conveying device.

[0097] The first end of the raised floor 150 along its width direction can be pivotally connected to the bottom side beam 144 via a hinge 152, and the second end of the raised floor 150 in the covered position can be located approximately directly above the centrally located bottom longitudinal beam 145. In this technical solution, the aforementioned mounting block 160 can be disposed on the bottom side beam 144.

[0098] In such Figure 3In the illustrated embodiment, the base frame 140 may further include a fixed floor 180. The fixed floor 180 can be laid on the bottom side beam 144 and the bottom longitudinal beam 145 adjacent to the bottom side beam 144. The fixed floor 180 is preferably positioned at the same horizontal level as the movable floor 150 located in the covered position, thereby ensuring a flat bottom for the interior space of the enclosure. A first end of the movable floor 150 in the width direction can be pivotally connected to the bottom longitudinal beam 145 adjacent to the bottom side beam 144 via a hinge 152. A second end of the movable floor 150 in the width direction in the covered position can be located approximately directly above the centrally located bottom longitudinal beam 145. In this embodiment, the aforementioned mounting block 160 can be disposed on the bottom longitudinal beam 145 adjacent to the bottom side beam 144.

[0099] The fixed floor 180 and / or the raised floor 150 mentioned above can be steel floors. The fixed floor 180 and / or the raised floor 150 can have a textured surface to reduce slippage when loading general cargo.

[0100] Taking the skid-mounted transport device according to this invention, which is a standard 40-foot container 100, as an example, the skid-mounted device's external dimensions are within 11.5*2.2*2.2m, allowing it to be easily loaded into and transported within the container 100. For instance, a forklift lifts the skid-mounted device and pushes it smoothly into the container 100, and the operating controller 170 can then activate the drive mechanism to transport the skid-mounted device to a designated position within the container. This simplifies the transportation of the skid-mounted device and reduces transportation costs.

[0101] Using the container 100 according to this utility model reduces the number of operators and also avoids too many people operating inside the container, effectively reducing production accidents caused by operational errors and ensuring personnel safety.

[0102] Of course, the dimensions of container 100 can be adjusted as needed and / or desired.

[0103] Unless otherwise defined, the technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used herein is for descriptive purposes only and is not intended to limit the scope of the invention. Terms such as “set” appearing herein can refer to either a component being directly attached to another component or a component being attached to another component via an intermediary. A feature described in one embodiment may be applied, alone or in combination with other features, to another embodiment, unless that feature is not applicable in that other embodiment or is otherwise stated.

[0104] This utility model has been described through the above embodiments. However, it should be understood that the above embodiments are for illustrative purposes only and are not intended to limit this utility model to the described embodiments. Those skilled in the art will understand that many more variations and modifications can be made based on the teachings of this utility model, and all such variations and modifications fall within the scope of protection claimed by this utility model.

Claims

1. A container, characterized in that, The container includes: At least one conveying device, the conveying device comprising at least one first conveying component and at least one second conveying component, the at least one first conveying component and the at least one second conveying component being arranged along a length direction; A drive device is connected to the at least one first conveying component to drive the first conveying component; A base frame, the base frame including mounting space for mounting and partially accommodating the at least one first conveying assembly and the at least one second conveying assembly; and A raised floor that is pivotally connected to the base frame between a covered position and an open position, thereby enabling the installation space to be covered when in the covered position.

2. The container according to claim 1, characterized in that, The first conveying assembly includes a first conveying roller and a first support member, the first support member being detachably mounted to the base frame, and the driving device being configured as a motor, the output shaft of the motor being fixedly connected to the first conveying roller; The second conveying assembly includes a second conveying roller and a second support member, the second support member being detachably mounted to the base frame. The first support member and the second support member have the same dimensions and structure.

3. The container according to claim 2, characterized in that, The first conveying roller includes a first roller body, which is rotatably supported on the first support member; The second conveying roller includes a second roller body, which is rotatably supported on the second support member. Both the first roller and the second roller protrude upwards from the base frame along the height direction.

4. The container according to claim 3, characterized in that, The base frame is provided with mounting blocks, which are flush with or protrude upward from the first and second conveyor rollers along the height direction. The movable floor is pivotally connected to the mounting blocks to cover the first and second conveyor rollers; and / or The first conveying roller further includes a first roller shaft, which is fixedly connected to the first roller body, and the output shaft of the motor is connected to the first roller shaft.

5. The container according to claim 2, characterized in that, The container includes at least two motors and a controller, the at least two motors being electrically connected via a cable assembly, and the controller being electrically connected to the motors; The container also includes a door end, a front end, and a side wall. The door end and the front end are arranged opposite each other along the length direction, and the controller is located on the side wall near the door end.

6. The container according to claim 2, characterized in that, Two adjacent conveyor rollers of the first and second conveyor rollers are connected by a transmission component, which is used to simultaneously drive the two adjacent conveyor rollers of the first and second conveyor rollers; and / or The first support member is constructed with an upward-opening groove to accommodate the drive device and the first conveying roller in a horizontal direction, and the second support member is constructed with an upward-opening groove to accommodate the second conveying roller in the horizontal direction. The groove is provided with a plurality of mounting holes to facilitate multi-point mounting with the base frame.

7. The container according to any one of claims 1-6, characterized in that, The base frame also includes a base plate, which is located at intervals below the raised floor. The installation space is formed along the height direction between the base plate and the raised floor. The base plate is constructed as a corrugated plate.

8. The container according to any one of claims 1-6, characterized in that, The base frame also includes at least two bottom crossbeams, which are arranged at intervals along the length direction. At least one first conveying component and at least one second conveying component are both disposed between two adjacent bottom crossbeams along the length direction.

9. The container according to any one of claims 1-6, characterized in that, The first end of the raised floor along the width direction is pivotally connected to the base frame, and the second end of the raised floor along the width direction is provided with a hole so that it can be hung on the side wall of the container when in the open position.

10. The container according to any one of claims 1-6, characterized in that, The base frame also includes two bottom side beams and at least one bottom longitudinal beam. The two bottom side beams are arranged opposite each other along the width direction, and the bottom longitudinal beams are spaced apart between the two bottom side beams along the width direction. The container includes at least two conveying devices, the two ends of which are connected along the width direction between two adjacent bottom longitudinal beams or between a bottom side beam and a bottom longitudinal beam adjacent to the bottom side beam. In this configuration, two adjacent conveying devices are arranged symmetrically about the bottom longitudinal beam along the width direction.

11. The container according to claim 10, characterized in that, The base frame includes at least three bottom longitudinal beams, and the two ends of the conveying device along the width direction are connected between two adjacent bottom longitudinal beams; The container may also include a fixed floor, which is laid on the bottom side beam and the bottom longitudinal beam adjacent to the bottom side beam.