Multifunctional command cabin

By using drive components to drive the shrinkage and deployment of the folding tent part in the multi-function command cabin, the problem of manual disassembly and assembly in the prior art is solved, and automatic disassembly and assembly is realized, and efficiency is improved.

CN116122660BActive Publication Date: 2025-06-06SHENZHEN LEHUI EMERGENCY TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202211717493.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-29
Publication Date
2025-06-06
Estimated Expiration
2042-12-29

AI Technical Summary

Technical Problem

The disassembly and assembly of existing multi-function command tents requires manual manual operation, which is laborious and laborious, especially inconvenient in emergency use places.

Method used

A multi-functional command cabin is designed, using a driving component to drive the folding tent part to switch between the contraction and expansion states, and automatically disassemble and assemble the driving component to reduce manual intervention.

Benefits of technology

It realizes automatic disassembly and assembly without manual construction, greatly improving disassembly and assembly efficiency, and is suitable for emergency use places.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116122660B_ABST
    Figure CN116122660B_ABST
Patent Text Reader

Abstract

The present application is applicable to the technical field of emergency rescue equipment, and provides a multifunctional command cabin, which includes: a storage body, a storage space is arranged inside the storage body; a folding tent part, the folding tent part includes a contracted state of being stored in the storage space and unfolding in the direction of the first side of the storage body to form a fully unfolded state of the cabin body, when the folding tent part is in the fully unfolded state, the first side of the storage body forms the inner wall of the cabin body close to the side of the storage body; a driving assembly, the driving assembly is installed inside the storage body, and the driving assembly is used to drive the folding tent part to switch between the contracted state and the unfolded state. The entire disassembly and assembly process is driven by the driving assembly, and no manual construction is required, which greatly improves the disassembly and assembly efficiency.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application belongs to the technical field of emergency rescue equipment, and more specifically, to a multifunctional command cabin. Background Art

[0002] The command cabin is an indispensable equipment in emergency rescue and is usually built with a tent structure.

[0003] A tent is a shed propped up on the ground to shelter from wind, rain, and sunlight and for temporary living. It is mostly made of canvas and can be removed and moved at any time together with the supporting materials. Tents are carried in parts and assembled after arriving at the site. Therefore, various parts and tools are needed. You need to understand the names and usage of each part and be familiar with the structure of the tent in order to quickly and conveniently set up the tent. Outdoor sports tents can be divided into several categories: advertising tents, military tents, large tents with gables, tourist tents, disaster relief tents, inflatable tents, decontamination tents, children's play tents, etc. Tents are widely used in field construction operations, camping training, temporary clubs, sports and entertainment venues, military command posts, field hospitals, disaster relief, camping, leisure, tourism and other environments.

[0004] However, the disassembly and assembly of the multifunctional command cabin tent currently on the market requires manual labor and is very inconvenient in some places where emergency use is required. Summary of the invention

[0005] The purpose of the embodiments of the present application is to provide a multifunctional command cabin, aiming to solve the technical problem of inconvenient assembly and disassembly of the command cabin in the prior art.

[0006] To achieve the above-mentioned purpose, according to one aspect of the present application, a multifunctional command cabin is provided, which includes: a storage body, a storage space is arranged inside the storage body; a folding tent part, the folding tent part includes a contracted state stored in the storage space and an unfolding state in the direction of the first side of the storage body to form a fully unfolded state of the cabin body, when the folding tent part is in the fully unfolded state, the first side of the storage body forms an inner wall of the cabin body close to the side of the storage body; a drive assembly, the drive assembly is installed inside the storage body, and the drive assembly is used to drive the folding tent part to switch between the contracted state and the unfolded state.

[0007] Optionally, the multifunctional command cabin includes a moving part, which is installed at the lower part of the storage body.

[0008] Optionally, the multifunctional command cabin includes a self-loading and unloading part, which includes a plurality of lifting support leg mechanisms, and the plurality of lifting support leg mechanisms are installed on the side of the storage body at intervals along the circumference of the storage body to support the storage body; the plurality of lifting support leg mechanisms can be extended to suspend the bottom of the body.

[0009] Optionally, the folding tent portion includes a transverse telescopic portion and a longitudinal telescopic portion, and when the folding tent portion is in a fully expanded state, both the transverse telescopic portion and the longitudinal telescopic portion are expanded; when the folding tent portion is in a contracted state, both the transverse telescopic portion and the longitudinal telescopic portion are retracted; the folding tent portion also includes a semi-expanded state, and when the folding tent portion is in the semi-expanded state, only the transverse telescopic portion is expanded; the driving assembly includes a first driving portion and a second driving portion, the first driving portion is mounted on the storage body, and the output end of the first driving portion is drivingly connected to the input end of the transverse telescopic portion to drive the expansion and retraction of the transverse telescopic portion; the second driving portion is mounted on the storage body, and the output end of the second driving portion is drivingly connected to the input end of the longitudinal telescopic portion to drive the expansion and retraction of the longitudinal telescopic portion.

[0010] Optionally, the transverse telescopic portion includes multiple pairs of transverse scissors telescopic link mechanisms arranged in vertical directions, the longitudinal telescopic portion includes a longitudinal scissors telescopic link mechanism arranged in horizontal directions, the longitudinal scissors telescopic link mechanism includes multiple first cross-hinged portions hinged end to end, the first cross-hinged portion includes two first hinged rods, two adjacent first cross-hinged portions are hinged through the ends of each other's two first hinged rods, the hinge point in the middle of the two first hinged rods of the same first cross-hinged portion is the first hinge point, a mounting rod is provided at the first hinge point, the mounting rod extends in a vertical direction, each pair of transverse scissors telescopic link mechanisms are respectively installed on each mounting rod, and the two transverse scissors telescopic link mechanisms in each pair are symmetrically arranged with the mounting rod as the center.

[0011] Optionally, the folding tent portion includes a plurality of support portions, the plurality of support portions are arranged in pairs, and the two support portions in each pair are respectively installed on the ends of two transverse scissors telescopic link mechanisms in each pair; the folding tent portion includes a plurality of auxiliary scissors telescopic link mechanisms, and an auxiliary scissors telescopic link mechanism is arranged between two adjacent support portions located on the same side of the folding tent portion; the upper part of the end of the transverse scissors telescopic link mechanism is fixedly connected to the support portion, and the lower part of the end of the transverse scissors telescopic link mechanism can be slidably mounted on the support portion; the upper part of the end of the auxiliary scissors telescopic link mechanism is fixedly connected to the support portion, and the lower part of the end of the auxiliary scissors telescopic link mechanism can be slidably mounted on the support portion.

[0012] Optionally, a limiting structure is provided on the storage body, and the folding tent part also includes a driving frame, which is movably mounted on the storage body up and down, the output end of the first driving part is drivingly connected to the driving frame, the folding tent part is mounted on the driving frame, the upper parts of multiple mounting rods are movably inserted into the limiting structure, the upper parts of the horizontal scissors telescopic link mechanism are slidably mounted on the mounting rod, at least one upper part of the multiple horizontal scissors telescopic link mechanisms is connected to the lower part of the limiting structure, and the lower parts of each horizontal scissors telescopic link mechanism are connected to the lower parts of each mounting rod; the second driving part includes a driving scissors telescopic link mechanism and a push-pull part, the driving scissors telescopic link mechanism is mounted on the driving frame, and one end of the driving scissors telescopic link mechanism close to the longitudinal scissors telescopic link mechanism is hinged to the second end of the longitudinal scissors telescopic link mechanism; the push-pull part is mounted on the driving frame, and the output end of the push-pull part is hinged to the driving scissors telescopic link to drive the driving scissors telescopic link mechanism to extend and retract.

[0013] Optionally, the multifunctional command cabin also includes an auxiliary traction part, which is arranged at the end of the folding tent part, and is used to provide auxiliary traction force to the first end of the longitudinal scissors telescopic link mechanism, and the direction of the auxiliary traction force is parallel to the expansion direction of the longitudinal scissors telescopic link mechanism. The auxiliary traction part includes two active traction wheel assemblies, and the two active traction wheel assemblies are respectively installed on two support parts away from the storage body.

[0014] Optionally, the multifunctional command cabin further includes a range extender, which is mounted on the storage body, and an output end of the range extender is drivingly connected to the first drive unit for driving the first drive unit to move up and down.

[0015] Optionally, the range-extending unit includes a lifting seat, which is mounted on the storage body, the first driving unit includes a first driving cylinder, which is mounted on the lifting seat, and the output end of the first driving cylinder is drivingly connected to the driving frame for driving the driving frame to move up and down; the lifting seat is the output end of the range-extending unit, and the lifting seat is mounted on the storage body so as to be movable up and down, and the range-extending unit also includes: a first rack, which is vertically arranged, and the upper end of the first rack is connected to the bottom of the driving frame; a second rack, the lower end of the second rack is connected to the bottom of the storage body, and the first rack and the second rack are arranged in parallel; a driving shaft, a first driving gear and a second driving gear are arranged on the driving shaft, the first rack and the second rack are in opposite directions, the first rack is meshed with the first driving gear, and the second rack is meshed with the second driving gear.

[0016] The beneficial effect of the multifunctional command cabin provided by the present application is that, compared with the prior art, the multifunctional command cabin of the present application can drive the folding tent part to shrink in the storage space through the driving component for easy transportation, and when it is needed, the folding tent part is driven by the driving component to unfold to form the cabin body. The entire disassembly and assembly process is driven by the driving component, without manual construction, which greatly improves the disassembly and assembly efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative labor.

[0018] Figure 1 A schematic diagram of the structure of the folding tent portion of the multifunctional command cabin provided in an embodiment of the present application in a fully unfolded state;

[0019] Figure 2 A schematic diagram of the structure of the folding tent portion provided in an embodiment of the present application in a collapsed state;

[0020] Figure 3 A schematic diagram of the structure of a foldable cabin tent with some parts hidden provided in an embodiment of the present application;

[0021] Figure 4 for Figure 3 A magnified image of area A;

[0022] Figure 5 for Figure 3 A schematic diagram of the structure from another angle;

[0023] Figure 6 A schematic front view of a foldable cabin tent with some parts hidden provided in an embodiment of the present application;

[0024] Figure 7 A schematic top view of a foldable cabin tent with some parts hidden provided in an embodiment of the present application;

[0025] Figure 8 A schematic diagram of the structure of the range-extending unit provided in an embodiment of the present application.

[0026] The reference numerals in the above drawings are as follows:

[0027] 10. Storage body; 11. Limiting structure; 12. Horizontal guide part; 121. Guide rail; 122. Guide frame; 13. Horizontal guide rod assembly; 14. Vertical guide rod assembly;

[0028] 20. Folding tent part; 21. Transverse scissors telescopic link mechanism; 211. Fifth cross hinge; 22. Longitudinal scissors telescopic link mechanism; 221. First cross hinge; 23. Support part; 24. Auxiliary scissors telescopic link mechanism; 241. Fourth cross hinge; 25. Mounting rod;

[0029] 30. First driving unit; 31. First driving cylinder;

[0030] 40, second driving part; 41, driving scissor telescopic connecting rod mechanism; 411, second cross hinge part; 421, third cross hinge part; 42, push-pull part;

[0031] 50. Drive frame;

[0032] 60. Whiteboard unit; 70. Folding table assembly;

[0033] 80. Range-increasing unit; 81. Lifting seat; 82. First rack; 83. Second rack; 84. Driving shaft. DETAILED DESCRIPTION

[0034] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present application more clearly understood, the present application is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0035] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it may be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or indirectly connected to the other element. In the absence of conflict, the embodiments in this application and the features in the embodiments may be combined with each other. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0036] It should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present application.

[0037] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of this application, the meaning of "plurality" is more than two, unless otherwise clearly and specifically defined.

[0038] As described in the background technology, currently, the disassembly and assembly of the multifunctional command cabin tent on the market needs to be done manually, which is laborious and time-consuming, and is very inconvenient in some places where emergency use is required.

[0039] See also Figures 1 to 8 As shown, in order to solve the above problems, according to one aspect of the present application, an embodiment of the present application provides a multifunctional command cabin, which includes: a storage body 10, a folding tent part 20 and a driving assembly. The storage body 10 is provided with a storage space; the folding tent part 20 includes a contracted state of being stored in the storage space and unfolding in the direction of the first side of the storage body 10 to form a fully unfolded state of the cabin body. When the folding tent part 20 is in the fully unfolded state, the first side of the storage body 10 forms the inner wall of the cabin body close to the side of the storage body 10; the driving assembly is installed inside the storage body 10, and the driving assembly is used to drive the folding tent part 20 to switch between the contracted state and the unfolded state. The multifunctional command cabin of the present application can drive the folding tent part 20 to shrink in the storage space through the driving assembly for easy transportation. When it is needed, the folding tent part 20 is driven by the driving assembly to unfold to form the cabin body. The entire disassembly and assembly process is driven by the driving assembly, without manual construction, which greatly improves the disassembly and assembly efficiency.

[0040] In order to facilitate the movement of the multifunctional command cabin of the present application, the multifunctional command cabin in the present embodiment includes a moving part, which is installed at the lower part of the storage body 10. A power supply part is arranged in the moving part, and the power supply part includes an electric control cabinet.

[0041] Among them, in order to make the multifunctional command cabin of the present application have good storage capacity, the mobile part of the present application includes a storage box, and a wheel set is arranged at the bottom of the storage box to facilitate the movement of the multifunctional command cabin of the present application. The power supply part is installed inside the storage box, and the storage box is used to store necessary materials, such as folding chairs, mobile batteries, printers, etc.

[0042] In order to facilitate transportation, the multifunctional command cabin in this embodiment includes a self-loading and unloading part, which includes a plurality of lifting support leg mechanisms. The plurality of lifting support leg mechanisms are installed at intervals on the side of the storage body 10 along the circumference of the storage body 10 to support the storage body 10; the plurality of lifting support leg mechanisms can be extended to suspend the bottom of the body. The self-loading and unloading emergency device platform provided in this embodiment can suspend the bottom of the storage body 10 through the support of a plurality of lifting support leg mechanisms, so that the carriage of the transport vehicle can reach the bottom of the storage body 10, thereby realizing the rapid loading and unloading of the self-loading and unloading emergency device platform. The lifting support leg mechanism includes a telescopic leg and an electric cylinder. The electric cylinder is fixed to the upper end of the telescopic leg, and the output end of the electric cylinder is connected to the lower end of the telescopic leg to drive the telescopic leg to extend and retract.

[0043] Specifically, the folding tent portion 20 in this embodiment includes a transverse telescopic portion and a longitudinal telescopic portion. When the folding tent portion 20 is in a fully expanded state, both the transverse telescopic portion and the longitudinal telescopic portion are expanded; when the folding tent portion 20 is in a contracted state, both the transverse telescopic portion and the longitudinal telescopic portion are retracted; the folding tent portion 20 also includes a semi-expanded state. When the folding tent portion 20 is in the semi-expanded state, only the transverse telescopic portion is expanded; the driving component includes a first driving portion 30 and a second driving portion 40. The first driving portion 30 is mounted on the storage body 10, and the output end of the first driving portion 30 is drivingly connected to the input end of the transverse telescopic portion to drive the expansion and retraction of the transverse telescopic portion; the second driving portion 40 is mounted on the storage body 10, and the output end of the second driving portion 40 is drivingly connected to the input end of the longitudinal telescopic portion to drive the expansion and retraction of the longitudinal telescopic portion.

[0044] The transverse telescopic portion in this embodiment includes multiple pairs of transverse scissors telescopic link mechanisms 21 arranged in vertical directions, and the longitudinal telescopic portion includes a longitudinal scissors telescopic link mechanism 22 arranged in horizontal directions. The longitudinal scissors telescopic link mechanism 22 includes multiple first cross-hinged portions 221 hinged end to end, and the first cross-hinged portion 221 includes two first hinged rods. Two adjacent first cross-hinged portions 221 are hinged through the ends of each other's two first hinged rods. The hinge point in the middle of the two first hinged rods of the same first cross-hinged portion 221 is the first hinge point. A mounting rod 25 is arranged at the first hinge point, and the mounting rod 25 extends in the vertical direction. Each pair of transverse scissors telescopic link mechanisms 21 is respectively installed on each mounting rod 25, and the two transverse scissors telescopic link mechanisms 21 in each pair are symmetrically arranged with the mounting rod 25 as the center.

[0045] In a specific embodiment, the transverse direction is the width direction of the cabin body, and the longitudinal direction is the width direction of the cabin body.

[0046] By respectively installing each pair of transverse scissors telescopic link mechanisms 21 provided in the present embodiment on each mounting rod 25, and symmetrically arranging the two transverse scissors telescopic link mechanisms 21 in each pair with the mounting rod 25 as the center, the transverse scissors telescopic link mechanisms 21 provided in the present embodiment can be moved along with the extension and retraction of the longitudinal scissors telescopic link mechanisms 22.

[0047] In order to provide effective support, the folding tent portion 20 in this embodiment includes a plurality of support portions 23, and the plurality of support portions 23 are arranged in pairs, and the two support portions 23 in each pair are respectively installed on the ends of the two transverse scissors telescopic link mechanisms 21 in each pair; the folding tent portion 20 includes a plurality of auxiliary scissors telescopic link mechanisms 24, and an auxiliary scissors telescopic link mechanism 24 is arranged between two adjacent support portions 23 located on the same side of the folding tent portion 20; the upper part of the end portion of the transverse scissors telescopic link mechanism 21 is fixedly connected to the support portion 23, and the lower part of the end portion of the transverse scissors telescopic link mechanism 21 can be slidably mounted on the support portion 23; the upper part of the end portion of the auxiliary scissors telescopic link mechanism 24 is fixedly connected to the support portion 23, and the lower part of the end portion of the auxiliary scissors telescopic link mechanism 24 can be slidably mounted on the support portion 23. By providing an auxiliary scissors telescopic link mechanism 24 between two adjacent support portions 23 located on the same side of the folding tent portion 20 provided in the present embodiment, the structural stability of the folding tent portion 20 provided in the present embodiment can be effectively improved. In addition, through the auxiliary scissors telescopic link mechanism 24 provided in the present embodiment, a plurality of transverse scissors telescopic link mechanisms 21 can be driven and connected to enable the plurality of transverse scissors telescopic link mechanisms 21 to move synchronously.

[0048] Specifically, a limiting structure 11 is provided on the storage body 10 in this embodiment, and the folding tent part 20 further includes a driving frame 50, which is mounted on the storage body 10 so as to be movable up and down. The output end of the first driving part 30 is drivingly connected to the driving frame 50, and the folding tent part 20 is mounted on the driving frame 50. The upper parts of the plurality of mounting rods 25 are movably inserted into the limiting structure 11, and the upper parts of the transverse scissor telescopic link mechanisms 21 are slidably mounted on the mounting rods 25. At least one upper part of the plurality of transverse scissor telescopic link mechanisms 21 is connected to the limiting structure 11. The lower part of each horizontal scissors telescopic link mechanism 21 is connected to the lower part of each mounting rod 25; the second driving part 40 includes a driving scissors telescopic link mechanism 41 and a push-pull part 42, the driving scissors telescopic link mechanism 41 is hinged on the driving frame 50, and one end of the driving scissors telescopic link mechanism 41 close to the longitudinal scissors telescopic link mechanism 22 is hinged to the second end of the longitudinal scissors telescopic link mechanism 22; the push-pull part 42 is installed on the driving frame 50, and the output end of the push-pull part 42 is hinged to the driving scissors telescopic link to drive the driving scissors telescopic link mechanism 41 to extend and retract. The first driving part 30 in this embodiment includes a first driving cylinder 31, which is installed on the storage body 10. The output end of the first driving cylinder 31 is drivingly connected to the driving frame 50, and is used to drive the driving frame 50 to move up and down; by drivingly connecting the output end of the first driving cylinder 31 provided in this embodiment to the driving frame 50, the driving frame 50 can be driven by the first driving cylinder 31. Move along the up and down direction of the storage body 10, thereby driving the horizontal scissors telescopic connecting rod mechanism 21 to fold or unfold.

[0049] The second driving part 40 includes a driving scissors telescopic link mechanism 41 and a push-pull part 42. The driving scissors telescopic link mechanism 41 is installed on the driving frame 50. The second end of the longitudinal scissors telescopic link mechanism 22 is hinged to an end of the driving scissors telescopic link mechanism 41 close to the longitudinal scissors telescopic link mechanism 22; the push-pull part 42 is installed on the driving frame 50, and the output end of the push-pull part 42 is hinged to the second end of the driving scissors telescopic link to drive the driving scissors telescopic link mechanism 41 to extend and retract; wherein the push-pull part 42 and the first driving cylinder 31 are both electrically connected to the power supply part. By hingedly connecting the driving scissors telescopic link mechanism 41 provided in this embodiment to the driving frame 50, and hingedly connecting one end of the driving scissors telescopic link mechanism 41 close to the longitudinal scissors telescopic link mechanism 22 to the second end of the longitudinal scissors telescopic link mechanism 22, the longitudinal scissors telescopic link mechanism 22 can be extended and retracted along with the extension and retraction of the driving scissors telescopic link mechanism 41, and by hingedly connecting the output end of the push-pull part 42 to the driving scissors telescopic link, the driving scissors telescopic link mechanism 41 can be extended or retracted under the drive of the output end of the push-pull part 42, and at the same time drive the longitudinal scissors telescopic link mechanism 22 to extend and retract. The push-pull part 42 is preferably an electric cylinder.

[0050] The multifunctional command cabin in this embodiment also includes an auxiliary traction part, which is arranged at the end of the folding tent part 20. The auxiliary traction part is used to provide auxiliary traction to the first end of the longitudinal scissor telescopic link mechanism 22. The direction of the auxiliary traction is parallel to the unfolding direction of the longitudinal scissor telescopic link mechanism 22. The auxiliary traction part includes two active traction wheel assemblies, which are respectively mounted on two support parts 23 away from the storage body 10. The folding tent part provided in this embodiment is provided with an auxiliary traction part at the end of the folding tent part 20. The auxiliary traction part can apply an auxiliary traction parallel to the unfolding direction of the longitudinal scissor telescopic link mechanism 22 to the first end of the longitudinal scissor telescopic link mechanism, so that the longitudinal scissor telescopic link mechanism 22 can be more easily unfolded or retracted, thereby effectively improving the disassembly and assembly efficiency of the folding tent part. In a specific embodiment, the auxiliary traction part in this embodiment includes two active traction wheel assemblies, which are respectively mounted on two support parts 23 away from the storage body 10. By respectively arranging two active traction wheel assemblies on the two support portions 23 away from the storage body 10 provided in this embodiment, the longitudinal scissor-link telescopic mechanism provided in this embodiment can be rapidly expanded or contracted under the drive of the active traction wheel assemblies.

[0051] In a specific embodiment, the active traction wheel assembly provided in this embodiment includes a wheel body and a driving member drivingly connected to the wheel body. The wheel body is rotatably arranged on the bottom of the support portion 23. By drivingly connecting the driving member provided in this embodiment to the wheel body, the wheel body can rotate under the drive of the driving member.

[0052] Among them, the support part on which the active traction wheel assembly is installed is the end support part. In a preferred embodiment, the folding tent part of this embodiment also includes two auxiliary rollers, and the two auxiliary rollers are respectively installed at the bottom of two support parts adjacent to the two end support parts to improve the smoothness of the folding tent part during the unfolding process.

[0053] In order to reduce the space occupied by the support part 23 in the folding tent part 20 in the retracted state, the support part 23 in the present embodiment includes: a first rod body and a second rod body, the upper part of the end of the horizontal scissors telescopic link mechanism 21 is fixedly connected to the first rod body, the lower part of the end of the horizontal scissors telescopic link mechanism 21 can be slidably mounted on the first rod body, the second rod body can be installed on the first rod body in an upside-down manner, and the second rod body has a folded position folded with the first rod body, and a flipped-down supporting position. By fixing the upper part of the end of the horizontal scissors telescopic link mechanism 21 provided in the present embodiment on the first rod body, and the lower part of the end of the horizontal scissors telescopic link mechanism 21 can be slidably mounted on the first rod body, the horizontal scissors telescopic link mechanism 21 provided in the present embodiment can be freely extended and retracted, and by installing the second rod body on the first rod body so that it can be flipped up and down, when the second rod body is set to a folded position folded with the first rod body, the space occupied by the support part 23 in the folding tent part 20 in the retracted state can be effectively reduced, and by setting the second rod body to a flipped support position, the support part 23 can effectively support the folding tent part 20 in the fully expanded state.

[0054] In a specific embodiment, the support portion 23 provided in this embodiment also includes a positioning pin, a plurality of first positioning through holes are arranged on the first rod body, and the plurality of first positioning through holes are arranged at circumferential intervals along the pivot axis of the second rod body, and a second positioning through hole is arranged on the second rod body, and the position of the second positioning through hole can be opposite to the position of any one of the plurality of first positioning through holes, and when the positioning pin passes through the first positioning through hole and the second positioning through hole in sequence, the second rod body cannot rotate relative to the first rod body, and when the second rod body is in a folded position, the second positioning through hole corresponds to the first positioning through hole directly above the pivot axis of the second rod body, and when the second rod body is in a supporting position, the second positioning through hole corresponds to the first positioning through hole directly below the pivot axis of the second rod body.

[0055] In a preferred embodiment, in order to facilitate the disassembly and assembly of the positioning pin, a pull ring is provided on the positioning pin provided in this embodiment.

[0056] The multifunctional command cabin in this embodiment also includes a range extender 80, which is mounted on the storage body 10, and the output end of the range extender 80 is connected to the first drive unit 30 for driving the first drive unit 30 to move up and down. The folding cabin tent provided in this embodiment is provided with a range extender 80 on the storage body 10, and the output end of the range extender 80 is connected to the first drive unit 30 for driving the first drive unit 30. The range extender 80 drives the first drive unit 30 to move up and down, which can increase the travel range of the drive frame 50 relative to the storage body 10, so that the drive frame 50 can reach a higher position, thereby improving the overall height of the folding tent part 20 provided in this embodiment, thereby effectively improving the comfort of the tent. In a specific embodiment, the above-mentioned transverse direction is the width direction of the cabin body, and the above-mentioned longitudinal direction is the width direction of the cabin body.

[0057] The range-increasing unit 80 in this embodiment includes a lifting seat 81, which is mounted on the storage body 10. The first driving unit 30 includes a first driving cylinder 31, which is mounted on the lifting seat 81. The output end of the first driving cylinder 31 is drivingly connected to the driving frame 50, and is used to drive the driving frame 50 to move up and down; the lifting seat 81 is the output end of the range-increasing unit 80, and the lifting seat 81 is mounted on the storage body 10 so as to be movable up and down. The range-increasing unit 80 also includes: a first rack 82, which is vertically arranged, and the upper end of the first rack 82 is connected to the bottom of the driving frame 50; a second rack 83, the lower end of the second rack 83 is connected to the bottom of the storage body 10, and the first rack 82 and the second rack 83 are arranged in parallel; a driving shaft 84, and a first driving gear and a second driving gear are arranged on the driving shaft 84, the first rack 82 and the second rack 83 are in opposite directions, the first rack 82 is meshed with the first driving gear, and the second rack 83 is meshed with the second driving gear. In a specific embodiment, during the process of the first driving cylinder 31 provided in the present embodiment driving the driving frame 50, first, under the drive of the first driving cylinder 31, the driving frame 50 will move along the up and down directions of the storage body 10. Since the upper end of the first rack 82 is connected to the bottom of the driving frame 50, the moving driving frame 50 will drive the first rack 82 to move up and down. The movement direction of the first rack 82 is the same as the movement direction of the driving frame 50. The moving first rack 82 will drive the first gear meshed with it to rotate, and the rotating first gear will drive the second gear to rotate in the same direction through the driving shaft 84. Since the second rack 83 is in the opposite direction to the first rack 82, and the lower end of the second rack 83 is connected to the bottom of the storage body 10, the rotating second gear will drive the lifting seat 81 to move on the second rack 83 meshed with it in the same direction as the movement direction of the driving frame 50, thereby increasing the stroke of the first driving cylinder 31.

[0058] The storage space in this embodiment forms a first opening at the upper part of the storage body 10. The multifunctional command cabin also includes a cover plate, which is movably mounted on the storage body 10 up and down. The cover plate has a closed position covering the first opening and a raised position moving up to avoid the first opening. An electronic sign is provided on the cover plate. The multifunctional command cabin of this embodiment can be driven by a driving component to drive the folding tent part 20 to shrink in the storage space for easy transportation. When it is needed, the folding tent part 20 is driven by the driving component to unfold to form the cabin body. At the same time, an electronic sign is provided on the cover plate of this embodiment. The electronic sign has higher brightness and recognition, and the indication content can be changed flexibly. In addition, the electronic sign arranged on the cover is relatively high. By raising the cover plate, the electronic sign can be placed at a higher position, which is convenient for staff to find.

[0059] In order to improve the service life of the electronic signboard provided by the present embodiment, the cover plate in the present embodiment includes a top plate and a flip side plate flipably mounted on the top plate, the flip side plate has an initial position forming a side wall of the cover plate, the electronic signboard is mounted on the inner side of the flip side plate, and the flip side plate also has a display position flipped outward so that the electronic signboard faces the outside of the storage space. The inner side of the flip side plate refers to the side of the flip side plate close to the storage space when the flip side plate is in the initial position. By flipping the flip side plate provided by the present embodiment on the top plate, and mounting the electronic signboard on the inner side of the flip side plate, the electronic signboard provided by the present embodiment can be stored in the storage space by setting the flip side plate to the initial position when it is not needed to be displayed, so as to avoid contact with the external environment, thereby effectively extending the service life of the electronic signboard provided by the present embodiment. At the same time, when the electronic signboard provided by the present embodiment needs to be displayed, the electronic signboard can be directed to the outside of the storage space by setting the flip side plate to the display position, so that the electronic signboard can effectively display information to the outside. In order to enable the cover provided in this embodiment to switch between the closed position and the raised position, a support pole is provided on the driving frame 50 in this embodiment, and the top of the support pole is connected to the bottom of the cover. In the process of switching the folding tent part 20 from the retracted state to the semi-expanded state, the support pole passes through the first opening, and the cover gradually switches from the closed position to the raised position. By providing the support pole on the driving frame 50 provided in this embodiment, and connecting the top of the support pole to the bottom of the cover, the cover provided in this embodiment can pass through the first opening and drive the cover to gradually switch from the closed position to the raised position in the process of switching the folding tent part 20 from the retracted state to the semi-expanded state.

[0060] Preferably, the multifunctional command cabin of the present application further comprises a covering assembly, and a plurality of connectors are arranged on the periphery of the cabin body, and the covering assembly is connected to the outside of the cabin body through the plurality of connectors to cover the cabin body. The connectors may be hooks, Velcro, etc.

[0061] In order to facilitate the staff to arrange the work tasks in the cabin, the present application integrates the whiteboard part 60 in the cabin. Specifically, the multifunctional command cabin in this embodiment includes a whiteboard part 60, which is arranged on the storage body 10. When the folding tent part 20 is in a fully unfolded state, the whiteboard part 60 is located inside the cabin body. In a preferred embodiment, in order to prevent the whiteboard part 60 from being contaminated or collided during transportation, a cover plate is provided on the side of the storage body 10, and the cover plate can be flipped and installed on the side of the storage body 10, so as to cover the whiteboard part 60 when the whiteboard part 60 is not needed.

[0062] The folding table assembly 70 is installed on the side wall of the storage part. The folding table assembly 70 has a folded state and an unfolded state. When the folding table assembly 70 is in the folded state, the folding table assembly 70 is folded and abutted against the first side of the storage part. When the folding table is in the unfolded state, the folding table assembly 70 is unfolded inside the cabin body. The multifunctional command cabin provided in this embodiment can drive the folding tent part 20 through the driving assembly to shrink it in the storage space for easy transportation. When it is needed, the folding tent part 20 can be driven by the driving assembly to unfold to form the cabin body. At the same time, the storage part of this embodiment is provided with a folding table assembly 70 on the side wall, so that when the user does not need to use the table, the folding table assembly 70 can be folded and abutted against the first side of the storage part to reduce the space occupied by it. When the user needs to use the table, the folding table assembly 70 can be unfolded inside the cabin body without the user moving the table from the outside, which is very convenient.

[0063] In order to improve the driving efficiency of the driving scissors telescopic link mechanism 41 provided in this embodiment on the longitudinal scissors telescopic link mechanism 22, a horizontal guide portion 12 is provided on the storage body 10 in this embodiment, and the horizontal guide portion 12 includes a guide rail 121 extending along the telescopic direction of the longitudinal scissors telescopic link mechanism 22, and a plurality of guide frames 122 movably mounted on the guide rail 121, and the driving scissors telescopic link mechanism 41 includes a plurality of second cross hinged portions 411 hinged end to end, and the second cross hinged portion 411 includes two second hinged rods, and two adjacent second cross hinged portions 411 are hinged through the ends of the two second hinged rods. The hinge point in the middle of the two second hinged rods of the same second cross-hinged portion 411 is the second hinge point, and each guide frame 122 is connected to the second hinge point; by connecting the guide frame 122 provided in this embodiment with the second hinge point, and making the guide frame 122 movably installed in the guide rail 121 extending along the telescopic direction of the longitudinal scissors telescopic link mechanism 22, the driving scissors telescopic link mechanism 41 provided in this embodiment can be moved along the telescopic direction of the longitudinal scissors telescopic link mechanism 22 through the cooperation of the guide rail 121 and the mounting frame during the movement, thereby realizing efficient driving of the longitudinal scissors telescopic link mechanism 22.

[0064] In order to make the movement of the longitudinal scissors telescopic link mechanism 22 and the transverse scissors telescopic link mechanism 21 provided in this embodiment smoother, a horizontal guide rod assembly 13 and a vertical guide rod assembly 14 are also provided on the storage body. The vertical guide rod assembly 14 is movably mounted on the horizontal guide rod assembly 13, the driving frame 50 is movably mounted on the vertical guide rod assembly 14, and the limiting structure 11 is mounted on the upper part of the vertical guide rod assembly 14. By further arranging a horizontal guide rod assembly 13 and a vertical guide rod assembly 14 on the storage body, and movably mounting the vertical guide rod assembly 14 on the horizontal guide rod assembly 13, and movably mounting the drive frame 50 on the vertical guide rod assembly 14, and installing the limiting structure 11 on the upper part of the vertical guide rod assembly 14, the longitudinal scissors telescopic link mechanism 22 can be guided by the horizontal guide rod assembly 13 during the telescopic process, and the drive frame 50 can be guided by the vertical guide rod assembly 14 during the movement, thereby making the movement of the longitudinal scissors telescopic link mechanism 22 and the transverse scissors telescopic link mechanism 21 provided in this embodiment smoother.

[0065] In a specific embodiment, the horizontal rod guide assembly provided in this embodiment includes a horizontal guide rod and a horizontal guide block. Both ends of the horizontal guide rod are respectively fixedly connected to the driving frame 50, and the horizontal guide block is movably mounted on the horizontal guide rod.

[0066] In a specific embodiment, the vertical rod guide assembly provided in this embodiment includes a vertical guide rod and a vertical guide block, the two ends of the vertical guide rod are respectively fixedly connected to the main body, the vertical guide block is movably mounted on the horizontal guide rod, and the horizontal guide block is fixedly connected to the vertical guide block.

[0067] In a specific embodiment, a third cross-hinged portion 421 is arranged between two adjacent second cross-hinged portions 411, and the third cross-hinged portion 421 includes two third hinged rods. The two ends of the third cross-hinged portion 421 are respectively hinged to the two adjacent second cross-hinged portions 411, and the hinge point in the middle of the two third hinged rods of the same third cross-hinged portion 421 is the third hinge point.

[0068] In a specific embodiment, the telescopic connecting rod structure of the driving scissors provided in this embodiment also includes a connecting seat, which is arranged on any third hinge point, and the output end of the push-pull part 42 is pivotally connected to the connecting seat provided in this embodiment.

[0069] In a specific embodiment, a first connecting member is provided on the support portion 23 provided in this embodiment, and the auxiliary scissors telescopic linkage mechanism 24 provided in this embodiment includes a second connecting member and a plurality of fourth cross-hinged portions 241 hinged end to end, the fourth cross-hinged portion 241 includes two fourth hinged rods, and two adjacent fourth cross-hinged portions 241 are hinged through the ends of each other's two fourth hinged rods, and the hinge point in the middle of the two fourth hinged rods of the same fourth cross-hinged portion 241 is the fourth hinge point. The second connecting member provided in this embodiment is movably mounted on the support portion 23, and the upper part of the fourth cross-hinged portion 241 close to the support portion 23 is hinged to the first connecting member, and the lower part of the fourth cross-hinged portion 241 close to the support portion 23 is hinged to the second connecting member.

[0070] In a specific embodiment, a third connecting member is provided on the mounting rod 25 provided in this embodiment. The horizontal scissors telescopic linkage mechanism 21 provided in this embodiment includes a fourth connecting member, a fifth connecting member and a plurality of fifth cross-hinged portions 211 hinged end to end. The fifth cross-hinged portion 211 includes two fifth hinged rods. Two adjacent fifth cross-hinged portions 211 are hinged through the ends of each other's two fifth hinged rods. The hinge point in the middle of the two fifth hinged rods of the same fifth cross-hinged portion 211 is the fifth hinge point. The fourth connecting member provided in the embodiment is movably mounted on the mounting rod 25, the fifth connecting member is movably mounted on the supporting portion 23, the upper portion of the fifth cross-hinged portion 211 at one end close to the supporting portion 23 is hinged to the first connecting member, the lower portion of the fifth cross-hinged portion 211 at one end close to the supporting portion 23 is hinged to the fifth connecting member, the upper portion of the fifth cross-hinged portion 211 at one end close to the mounting rod 25 is hinged to the fourth connecting member, and the lower portion of the fifth cross-hinged portion 211 at one end close to the supporting portion 23 is hinged to the third connecting member.

[0071] In summary, the implementation of the multifunctional command cabin provided by this embodiment has at least the following beneficial technical effects: the multifunctional command cabin of the present application can drive the folding tent part to shrink into the storage space through the driving component for easy transportation, and when it is needed, the folding tent part is driven by the driving component to unfold to form the cabin body. The entire disassembly and assembly process is driven by the driving component, without manual construction, which greatly improves the disassembly and assembly efficiency.

[0072] The above are only preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present application should be included in the protection scope of the present application.

Claims

1. A multifunctional command cabin, It is characterized in that The multifunctional command cabin comprises: A storage body (10), wherein a storage space is provided inside the storage body (10); A folding tent portion (20), the folding tent portion (20) comprising a contracted state in which the folding tent portion is stored in the storage space and a state in which the folding tent portion (20) is unfolded in the direction of the first side of the storage body (10) to form a fully unfolded state of the cabin body, wherein when the folding tent portion (20) is in the fully unfolded state, the first side of the storage body (10) forms an inner wall of the cabin body on a side close to the storage body (10); a driving assembly, the driving assembly being installed inside the storage body (10), the driving assembly being used to drive the folding tent portion (20) to switch between the contracted state and the unfolded state; It is characterized in that the multifunctional command cabin comprises a moving part, and the moving part is installed at the lower part of the storage body (10); The multifunctional command cabin comprises a self-loading and unloading portion, wherein the self-loading and unloading portion comprises a plurality of lifting support leg mechanisms, wherein the plurality of lifting support leg mechanisms are installed at intervals on the side of the storage body (10) along the circumference of the storage body (10) to support the storage body (10); the plurality of lifting support leg mechanisms can be extended to suspend the bottom of the body; The folding tent portion (20) comprises a transverse telescopic portion and a longitudinal telescopic portion. When the folding tent portion (20) is in the fully expanded state, the transverse telescopic portion and the longitudinal telescopic portion are both expanded; when the folding tent portion (20) is in the contracted state, the transverse telescopic portion and the longitudinal telescopic portion are both retracted; the folding tent portion (20) also comprises a semi-expanded state. When the folding tent portion (20) is in the semi-expanded state, only the transverse telescopic portion is expanded. The driving assembly comprises a first driving part (30) and a second driving part (40), wherein the first driving part (30) is mounted on the storage body (10), and the output end of the first driving part (30) is drivingly connected to the input end of the transverse telescopic part so as to drive the expansion and retraction of the transverse telescopic part; and the second driving part (40) is mounted on the storage body (10), and the output end of the second driving part (40) is drivingly connected to the input end of the longitudinal telescopic part so as to drive the expansion and retraction of the longitudinal telescopic part.

2. The multifunctional command cabin according to claim 1, It is characterized in that The transverse telescopic portion comprises a plurality of pairs of transverse scissor telescopic link mechanisms (21) arranged in vertical directions, the longitudinal telescopic portion comprises a longitudinal scissor telescopic link mechanism (22) arranged in horizontal directions, the longitudinal scissor telescopic link mechanism (22) comprises a plurality of first cross hinged portions (221) hinged end to end, the first cross hinged portion (221) comprises two first hinged rods, two adjacent first cross hinged portions (221) are hinged through the ends of the two first hinged rods of each other, the hinge point in the middle of the two first hinged rods of the same first cross hinged portion (221) is the first hinge point, a mounting rod (25) is arranged at the first hinge point, the mounting rod (25) extends in the vertical direction, each pair of the transverse scissor telescopic link mechanisms (21) is respectively mounted on each mounting rod (25), and the two transverse scissor telescopic link mechanisms (21) in each pair are symmetrically arranged with the mounting rod (25) as the center.

3. The multifunctional command cabin according to claim 2, It is characterized in that The folding tent portion (20) comprises a plurality of support portions (23), the plurality of support portions (23) being arranged in pairs, and the two support portions (23) in each pair being respectively mounted on the ends of the two transverse scissor telescopic link mechanisms (21) in each pair; the folding tent portion (20) comprises a plurality of auxiliary scissor telescopic link mechanisms (24), and the auxiliary scissor telescopic link mechanisms (24) are each arranged between two adjacent support portions (23) located on the same side of the folding tent portion (20); The upper portion of the end of the transverse scissors telescopic link mechanism (21) is fixedly connected to the support portion (23), and the lower portion of the end of the transverse scissors telescopic link mechanism (21) is slidably mounted on the support portion (23); the upper portion of the end of the auxiliary scissors telescopic link mechanism (24) is fixedly connected to the support portion (23), and the lower portion of the end of the auxiliary scissors telescopic link mechanism (24) is slidably mounted on the support portion (23).

4. The multifunctional command cabin according to claim 3, It is characterized in that A limiting structure (11) is provided on the storage body (10); the folding tent part (20) further comprises a driving frame (50); the driving frame (50) is mounted on the storage body (10) movably up and down; the output end of the first driving part (30) is drivingly connected to the driving frame (50); the folding tent part (20) is mounted on the driving frame (50); the upper parts of a plurality of mounting rods (25) are movably inserted into the limiting structure (11); the upper parts of the transverse scissor telescopic connecting rod mechanisms (21) are slidably sleeved on the mounting rods (25); at least one upper part of the plurality of transverse scissor telescopic connecting rod mechanisms (21) is connected to the lower part of the limiting structure (11); and the lower parts of the respective transverse scissor telescopic connecting rod mechanisms (21) are connected to the lower parts of the respective mounting rods (25); The second driving part (40) comprises a driving scissors telescopic link mechanism (41) and a push-pull part (42), wherein the driving scissors telescopic link mechanism (41) is mounted on the driving frame (50), and one end of the driving scissors telescopic link mechanism (41) close to the longitudinal scissors telescopic link mechanism (22) is hinged to the second end of the longitudinal scissors telescopic link mechanism (22); The push-pull portion (42) is mounted on the driving frame (50), and the output end of the push-pull portion (42) is hinged to the driving scissors telescopic connecting rod to drive the driving scissors telescopic connecting rod mechanism (41) to extend and retract.

5. The multifunctional command cabin according to claim 3, It is characterized in that The multifunctional command cabin further comprises an auxiliary traction part, which is arranged at the end of the folding tent part (20), and is used to provide an auxiliary traction force to the first end of the longitudinal scissor telescopic link mechanism (22), wherein the direction of the auxiliary traction force is parallel to the unfolding direction of the longitudinal scissor telescopic link mechanism (22), and the auxiliary traction part comprises two active traction wheel assemblies, and the two active traction wheel assemblies are respectively mounted on the two support parts (23) away from the storage body (10).

6. The multifunctional command cabin according to claim 4, It is characterized in that The multifunctional command cabin further comprises a range extender (80), wherein the range extender (80) is mounted on the storage body (10), and an output end of the range extender (80) is drivingly connected to the first drive unit (30) for driving the first drive unit (30) to move up and down.

7. The multifunctional command cabin according to claim 6, It is characterized in that The range-extending unit (80) comprises a lifting seat (81), wherein the lifting seat (81) is mounted on the storage body (10); the first driving unit (30) comprises a first driving cylinder (31), wherein the first driving cylinder (31) is mounted on the lifting seat (81); an output end of the first driving cylinder (31) is drivingly connected to the driving frame (50) for driving the driving frame (50) to move up and down; the lifting seat (81) is the output end of the range-extending unit (80), and the lifting seat (81) is mounted on the storage body (10) so as to be movable up and down; the range-extending unit (80) further comprises: A first rack (82), the first rack (82) is vertically arranged, and the upper end of the first rack (82) is connected to the bottom of the driving frame (50); a second rack (83), the lower end of the second rack (83) being connected to the bottom of the storage body (10), and the first rack (82) and the second rack (83) being arranged in parallel; A driving shaft (84), wherein a first driving gear and a second driving gear are arranged on the driving shaft (84), wherein the first rack (82) and the second rack (83) are oriented in opposite directions, wherein the first rack (82) is meshed with the first driving gear, and the second rack (83) is meshed with the second driving gear.

Citation Information

Patent Citations

  • Multifunctional Command Container

    CN218862257U

  • Multifunctional command square cabin

    CN218912390U