Folding machine room and movable base station
By designing the expansion part of the folding computer room and the accommodation slot, the existing mobile base station computer room has solved the problem of small space and low working efficiency in extreme weather, achieving higher working efficiency and convenient deployment and transportation.
Patent Information
- Application Number
- CN202510473249.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2025-06-06
AI Technical Summary
The existing mobile base station computer room has small internal space, making it difficult to accommodate multiple staff members at the same time, and it is difficult for staff members to stay for a long time in extreme weather conditions, which affects work efficiency.
A folding machine room is designed, including a housing, a deployment part and accommodating slot. The expansion part can be expanded or folded relative to the receiving groove. When the expansion part is in the deployed state, it can be surrounded by the receiving groove to form a receiving cavity for a long time. When the expansion part is in the folded state, it can be completely accommodated in the receiving groove, which is convenient for movement and transportation.
Through the design of the expansion section, a larger housing cavity is provided, which improves the comfort and work efficiency of staff, and can effectively protect staff under extreme weather conditions. At the same time, the folded computer room is in a regular shape, which is easy to move and transport, meeting the needs of rapid deployment and multi-scene applications.
Smart Images

Figure CN120100226A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of communication equipment, and in particular relates to a foldable machine room and a movable base station. Background Art
[0002] With the development of science and technology and the increase in emergency communication needs, traditional fixed base stations are unable to meet the needs of rapid deployment and multi-scenario applications in actual operation, resulting in a gradual increase in the utilization rate of mobile base stations.
[0003] Existing mobile base stations generally meet the needs of rapid deployment and multi-scenario applications by setting up mobile base station vehicles. However, the usable space inside the machine room of the mobile base station formed by the mobile base station vehicle is small, and it is difficult to accommodate multiple staff members at the same time. When any staff member operates a communication device in the mobile base station, other staff members can usually only wait outside the mobile base station. However, because there are many actual application scenarios for mobile base stations, and most of them are in the external environment, if there are extreme weather such as strong winds or heavy rain, it will make it difficult for staff members to stay outside for a long time. If they temporarily stop operating the communication equipment, it will also greatly affect work efficiency. Summary of the invention
[0004] In view of the above problems, the present invention proposes a foldable machine room, comprising:
[0005] A housing in which the communication device is placed, and a receiving groove is provided on the outer wall of the housing;
[0006] an unfolding portion, which is connected to the receiving slot and can be unfolded or folded relative to the receiving slot;
[0007] When the unfolding portion is in the unfolded state, the unfolding portion can be combined with the accommodating groove outside the shell to form an accommodating cavity;
[0008] When the unfolded portion is in a folded state, the unfolded portion can be accommodated in the accommodation groove.
[0009] In some specific embodiments, the expansion portion includes:
[0010] A top plate, one side of which is rotatably connected to the top of the receiving slot, the top plate can be rotated and unfolded in a direction away from the receiving slot until the top plate is perpendicular to the bottom of the receiving slot, and the top plate can also be rotated and folded in a direction close to the receiving slot until the top plate is accommodated in the receiving slot;
[0011] A bottom plate, one side of which is rotatably connected to the bottom of the receiving slot, the bottom plate can be rotated and unfolded in a direction away from the receiving slot until the bottom plate is perpendicular to the bottom of the receiving slot, and the bottom plate can also be rotated and folded in a direction close to the receiving slot until the bottom plate is accommodated in the receiving slot;
[0012] A side expansion assembly is located between the top plate and the bottom plate when the top plate and the bottom plate are in an expanded state, so that the accommodating cavity is enclosed by the side expansion assembly, the top plate, the bottom plate and the accommodating groove.
[0013] In some specific embodiments, the side expansion assembly includes:
[0014] A first side display plate, one side of which is rotatably connected to a side of the bottom plate away from the bottom of the receiving groove or a side of the top plate away from the top of the receiving groove, and the other side of which is clamped to a side of the top plate away from the top of the receiving groove or a side of the bottom plate away from the bottom of the receiving groove;
[0015] There are two second side display panels, which are rotatably connected to the two sides of the accommodating groove respectively. Any one of the second side display panels can be rotated and unfolded in the direction away from the accommodating groove until the second side display panel is perpendicular to the bottom of the accommodating groove and is respectively clamped with the top plate and the first side display panel. Any one of the second side display panels can also be rotated and folded in the direction close to the accommodating groove until the second side display panel is accommodated in the accommodating groove.
[0016] In some specific embodiments, when the unfolding portion is in a folded state, the top plate is embedded in a notch of the accommodating groove, and an outer wall of the top plate is coplanar with an outer wall of the shell.
[0017] In some specific embodiments, when the unfolding portion is in a folded state, the bottom plate is embedded in a notch of the accommodating groove, and an outer wall of the bottom plate is coplanar with an outer wall of the shell.
[0018] In some specific embodiments, a support assembly is provided at the bottom of the housing extending outward;
[0019] When the bottom plate is in an unfolded state, the bottom plate is supported on the receiving end of the supporting component.
[0020] In some specific embodiments, a telescopic member is disposed on the support assembly along a vertical direction, so that the telescopic member forms a receiving end of the support assembly.
[0021] In some specific embodiments, the supporting assembly is provided in plurality, and the plurality of supporting assemblies are evenly arranged;
[0022] When the bottom plate is in an unfolded state, the bottom plate is supported on the receiving ends of the plurality of supporting components.
[0023] In some specific embodiments, the bottom of the receiving groove is provided with an opening;
[0024] When the unfolding portion is in the unfolded state, the interior of the shell is communicated with the accommodating cavity through an opening at the bottom of the accommodating groove.
[0025] A movable base station based on the same concept includes a foldable machine room as described in any of the above specific embodiments.
[0026] Compared with the prior art, the foldable machine room of the present invention has at least the following advantages: the unfolding part is connected to the receiving groove provided on the outer wall of the shell, and the unfolding part can be driven to unfold or fold relative to the receiving groove, so that when the unfolding part is in the unfolded state, the unfolding part and the receiving groove can be combined to form a receiving cavity on the outer side of the shell, so that the staff can stay in the receiving cavity for a long time, which can avoid being affected by extreme weather outside, and greatly improve work comfort while improving work efficiency. At the same time, when the unfolding part is in the folded state, the unfolding part can also be completely contained in the receiving groove to avoid affecting the movement and transportation of the shell, meeting the needs of rapid deployment and multi-scenario application.
[0027] The movable base station of the present invention comprises the foldable machine room described above, so it has the same beneficial effects as the foldable machine room described above, and therefore, it will not be described in detail here.
[0028] Other features and advantages of the present invention will be described in the following description, and partly become obvious from the description, or be understood by implementing the present invention. The purpose and other advantages of the present invention can be realized and obtained by the structures pointed out in the description and the drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0030] Figure 1 A schematic diagram of a foldable machine room in an embodiment of the present invention is shown;
[0031] Figure 2 A schematic diagram showing another viewing angle of the foldable machine room in the embodiment of the present invention;
[0032] Figure 3 A partial disassembly schematic diagram of a foldable machine room in an embodiment of the present invention is shown;
[0033] Figure 4 A side cross-sectional schematic diagram of a foldable machine room in an embodiment of the present invention is shown;
[0034] Figure 5 A schematic side view of a foldable machine room in an embodiment of the present invention is shown;
[0035] Figure 6 A schematic diagram of a movable base station in an embodiment of the present invention is shown.
[0036] In the figure, 100, shell; 110, receiving slot; 200, unfolding portion; 210, top plate; 220, bottom plate; 230, side expansion assembly; 231, first side expansion panel; 232, second side expansion panel; 300, supporting assembly; 310, side arm; 320, supporting leg; 400, chassis. DETAILED DESCRIPTION
[0037] In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the technical solution in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0038] Reference Figure 1 An embodiment of the present invention provides a foldable machine room, comprising: a shell 100 and an unfolding portion 200. The shell 100 is used to place communication equipment, and a receiving groove 110 is provided on the outer wall of the shell 100. The unfolding portion 200 is connected to the receiving groove 110, and the unfolding portion 200 can be unfolded or folded relative to the receiving groove 110. When the unfolding portion 200 is in an unfolded state, the unfolding portion 200 can be surrounded by the receiving groove 110 outside the shell 100 to form a receiving cavity. When the unfolding portion 200 is in a folded state, the unfolding portion 200 can be received in the receiving groove 110.
[0039] Specifically, the interior of the housing 100 is hollow, so that the communication device is placed in the housing 100. Among them, a recessed structure is provided on the outer wall of one side of the housing 100, so that a receiving groove 110 is formed on the outer wall of one side of the housing 100. The unfolding portion 200 is movably connected with the receiving groove 110 to realize the installation of the unfolding portion 200, and the unfolding portion 200 after installation can perform unfolding movement or folding movement relative to the position of the receiving groove 110. When the unfolding portion 200 is unfolded in a direction away from the housing 100 and maintained in the unfolded state, the unfolding portion 200 can be enclosed together with the receiving groove 110 on the outside of one side of the housing 100 to form a receiving cavity. When any staff member is in the housing 100 to operate a certain communication device, the other staff members can stay in the receiving cavity for a long time, thereby realizing the accommodation of multiple staff members. Even in extreme weather, the formed receiving cavity can also allow staff to stay for a long time to avoid being affected by extreme weather outside, while improving work comfort, it also greatly improves work efficiency. When the unfolding portion 200 is folded toward the shell 100 and maintained in the folded state, the unfolding portion 200 can be completely contracted and accommodated in the accommodating groove 110, so that the overall shape of the shell 100 is more regular, which facilitates the movement and transportation of the shell 100, thereby still meeting the needs of rapid deployment and multi-scenario applications.
[0040] It should be noted that a plurality of chambers are separated and arranged in the shell 100, so as to form a command room, an equipment compartment, an air conditioning compartment, a hydraulic power compartment and a reserve power compartment in the shell 100. Among them, the command room is used to set control equipment and communication equipment for command and dispatch in emergency situations. The reserve power compartment is provided with power supply equipment, which is a reserve power supply, an emergency power generation device and a photovoltaic power generation device. In addition, a platform for parking drones is also provided on the shell 100, and a charging interface electrically connected to the power supply equipment is provided on the platform for charging the drone. At the same time, a lifting tower is vertically arranged in the shell 100, which is successively sleeved on the tower base by a plurality of tower arms. A communication base station, a meteorological detector and a high-precision camera are arranged on the top of the lifting tower, wherein the communication base station is used to provide wireless communication services, the meteorological detector is used to monitor and record meteorological data in real time, and the high-precision camera is used for video monitoring and image acquisition. A variety of equipment cooperates with each other to improve sustainability, so that the foldable machine room can operate independently for a long time, simplify the operation process, reduce manpower requirements, and improve deployment efficiency to meet the needs of rapid response in emergency situations.
[0041] In some specific embodiments of the present invention, referring to Figure 2 and Figure 3The unfolding portion 200 includes: a top plate 210, a bottom plate 220, and a side unfolding assembly 230. One side of the top plate 210 is rotatably connected to the top of the receiving slot 110, and the top plate 210 can be rotated and unfolded in a direction away from the receiving slot 110 until the top plate 210 is perpendicular to the bottom of the receiving slot 110, and the top plate 210 can also be rotated and folded in a direction close to the receiving slot 110 until the top plate 210 is accommodated in the receiving slot 110. One side of the bottom plate 220 is rotatably connected to the bottom of the receiving slot 110, and the bottom plate 220 can be rotated and unfolded in a direction away from the receiving slot 110 until the bottom plate 220 is perpendicular to the bottom of the receiving slot 110, and the bottom plate 220 can also be rotated and folded in a direction close to the receiving slot 110 until the bottom plate 220 is accommodated in the receiving slot 110. When the top plate 210 and the bottom plate 220 are in the unfolded state, the side expansion assembly 230 is located between the top plate 210 and the bottom plate 220 , so that the side expansion assembly 230 , the top plate 210 , the bottom plate 220 and the receiving groove 110 enclose a receiving cavity.
[0042] Specifically, refer to Figure 3 The housing 100 is placed horizontally, and the receiving groove 110 is arranged on the outer wall of one side of the housing 100. One side of the top plate 210 is rotatably connected to the groove wall at the top of the receiving groove 110, so that the top plate 210 can rotate with the groove wall at the top of the receiving groove 110 as the axis, wherein the top plate 210 can rotate and unfold in the direction away from the receiving groove 110 until the top plate 210 is perpendicular to the groove bottom of the receiving groove 110, when the top plate 210 is perpendicular to the groove bottom of the receiving groove 110, that is, the top plate 210 is arranged horizontally, the top plate 210 is unfolded, and the top plate 210 can also rotate in the opposite direction with the groove wall at the top of the receiving groove 110 as the axis, wherein the top plate 210 can rotate and fold in the direction close to the receiving groove 110 until the top plate 210 is completely accommodated in the receiving groove 110, when the top plate 210 is completely accommodated in the receiving groove 110, that is, the top plate 210 is arranged vertically, the folding of the top plate 210 is completed. One side of the bottom plate 220 is rotatably connected to the groove wall at the bottom of the receiving groove 110, so that the bottom plate 220 can rotate with the groove wall at the bottom of the receiving groove 110 as the axis, wherein the bottom plate 220 can rotate and unfold in the direction away from the receiving groove 110 until the top plate 210 is perpendicular to the groove bottom of the receiving groove 110. When the bottom plate 220 is perpendicular to the groove bottom of the receiving groove 110, that is, the top plate 210 is horizontally set, the unfolding of the bottom plate 220 is completed, and the bottom plate 220 can also rotate in the opposite direction with the groove wall at the bottom of the receiving groove 110 as the axis, wherein the bottom plate 220 can rotate and fold in the direction close to the receiving groove 110 until the bottom plate 220 is completely accommodated in the receiving groove 110. When the bottom plate 220 is completely accommodated in the receiving groove 110, that is, the bottom plate 220 is vertically set, the folding of the bottom plate 220 is completed. Figure 2At the same time, when the top plate 210 and the bottom plate 220 are both unfolded, the side expansion assembly 230 is located between the top plate 210 and the bottom plate 220, so that the accommodating cavity is enclosed by the inner walls of the top plate 210 and the bottom plate 220, the groove wall of the accommodating groove 110 and the side expansion assembly 230. The overall structure is simple and flexible, and it is easy to install and use while ensuring practicality and durability.
[0043] In some specific embodiments of the present invention, referring to Figure 2 and Figure 4 The side display assembly 230 includes: a first side display panel 231 and a second side display panel 232. One side of the first side display panel 231 is rotatably connected to one side of the bottom plate 220 away from the bottom of the receiving groove 110 or one side of the top plate 210 away from the top of the receiving groove 110, and the other side is clamped to one side of the top plate 210 away from the top of the receiving groove 110 or one side of the bottom plate 220 away from the bottom of the receiving groove 110. Two second side display panels 232 are provided, and the two second side display panels 232 are rotatably connected to both sides of the receiving groove 110, respectively. Any second side display panel 232 can be rotated and unfolded in a direction away from the receiving groove 110 until the second side display panel 232 is perpendicular to the groove bottom of the receiving groove 110 and is clamped to the top plate 210 and the first side display panel 231, respectively, and any second side display panel 232 can also be rotated and folded in a direction close to the receiving groove 110 until the second side display panel 232 is accommodated in the receiving groove 110.
[0044] Specifically, refer to Figure 4When the first side panel 231 is in the unfolded state, the first side panel 231 is in the unfolded state, and the second side panel 231 is in the unfolded state. When the first side panel 231 is in the unfolded state, the first side panel 231 is in the unfolded state, and the second ... The connection support between the top plate 210 and the bottom plate 220 ensures the stability of the setting, and the first side display panel 231 can also rotate in the opposite direction with the side edge of the bottom plate 220 away from the bottom of the accommodating groove 110 as the axis, wherein, when the first side display panel 231 is released from the clamping connection with the top plate 210, the first side display panel 231 can be rotated and folded in the direction close to the bottom plate 220 until the first side display panel 231 is abutted and fit with the inner wall of the bottom plate 220, and when the first side display panel 231 is abutted and fit with the inner wall of the bottom plate 220, that is, the first side display panel 231 is horizontally set, the folding of the first side display panel 231 is completed, so that the first side display panel 231 can rotate together with the rotation of the bottom plate 220, so that the bottom plate 220 can drive the first side display panel 231 to be accommodated in the accommodating groove 110 together, so as to meet the needs of rapid deployment and multi-scenario applications.Alternatively, after the bottom plate 220 and the top plate 210 are both in the unfolded state, when one side edge of the first side display panel 231 is rotatably connected to one side edge of the top plate 210 away from the top of the receiving groove 110, the first side display panel 231 can be rotated around one side edge of the top plate 210 away from the top of the receiving groove 110 as an axis, wherein the first side display panel 231 can be rotated and unfolded in a direction away from the top plate 210 until the first side display panel 231 is perpendicular to the top plate 210. When the first side display panel 231 is perpendicular to the top plate 210, that is, the first side display panel 231 is vertically arranged, the unfolding of the first side display panel 231 is completed. At this time, the first side display panel 231 is also arranged perpendicular to the bottom plate 220, so that the other side edge of the first side display panel 231 can be snap-connected to one side edge of the bottom plate 220 away from the bottom of the receiving groove 110, thereby realizing The connection support between the top plate 210 and the bottom plate 220 ensures the stability of the setting, and the first side display panel 231 can also rotate in the opposite direction with the side edge of the top plate 210 away from the top of the accommodating groove 110 as the axis, wherein, when the first side display panel 231 and the bottom plate 220 are released from the snap connection, the first side display panel 231 can be rotated and folded in the direction close to the top plate 210 until the first side display panel 231 abuts and fits against the inner wall of the top plate 210, and when the first side display panel 231 abuts and fits against the inner wall of the top plate 210, that is, the first side display panel 231 is horizontally set, the folding of the first side display panel 231 is completed, so that the first side display panel 231 can rotate together with the rotation of the top plate 210, so that the top plate 210 can drive the first side display panel 231 to be accommodated in the accommodating groove 110 together, so as to meet the needs of rapid deployment and multi-scenario applications.
[0045] Reference Figure 2There are two second side display panels 232, which are symmetrically arranged vertically in the form of a double door, and one side edge of the two second side display panels 232 is rotatably connected to the groove walls on both sides of the accommodating groove 110 in the horizontal direction. When the bottom plate 220 and the top plate are in the unfolded state, any second side display panel 232 can rotate with the groove walls on both sides of the corresponding receiving groove 110 in the horizontal direction as the axis, wherein the two second side display panels 232 can rotate and unfold in the direction away from the receiving groove 110 until the second side display panels 232 are perpendicular to the groove bottom of the receiving groove 110. When the two second side display panels 232 are perpendicular to the groove bottom of the receiving groove 110, the unfolding of the two second side display panels 232 is completed. At this time, the two second side display panels 232 will also be respectively located between the two sides of the top plate 210 and the bottom plate 220 and are respectively arranged perpendicular to the top plate 210, the bottom plate 220 and the first side display panel 231, so that the other two side edges of the two second side display panels 232 can be respectively connected to the inner walls on both sides of the top and the inner walls on both sides of the first side display panel 231, thereby completing the top plate 210, the bottom plate 220 and the first side display panel 231 through the two second side display panels 232. The two second side display panels 232 can be rotated in opposite directions with the groove walls on both sides of the corresponding receiving groove 110 as axes, wherein, after the two second side display panels 232 are respectively released from the clamping connection with the top plate 210 and the first side display panel 231, the two second side display panels 232 can be rotated and folded in the direction close to the receiving groove 110 until the second side display panels 232 are completely received in the receiving groove 110 and abut against the groove bottom of the receiving groove 110. When the two second side display panels 232 are abutted against the groove bottom of the receiving groove 110, the folding of the second side display panels 232 is completed, so that the first side display panel 231 can rotate together with the rotation of the bottom plate 220, so that the bottom plate 220 can drive the first side display panel 231 to be received in the receiving groove 110 together, so as to meet the needs of rapid deployment and multi-scenario application.
[0046] In some specific embodiments of the present invention, referring to Figure 5 When the unfolding portion 200 is in the folded state, the top plate 210 is embedded in the notch of the accommodating groove 110 , and the outer wall of the top plate 210 is coplanar with the outer wall of the shell 100 .
[0047] Specifically, when the top plate 210 and the bottom plate 220 are completely folded and accommodated in the accommodating groove 110, if the bottom plate 220 is located between the top plate 210 and the bottom of the accommodating groove 110, the width of the top plate 210 is matched with the width of the notch of the accommodating groove 110, and the top plate 210 can be just embedded in the notch of the accommodating groove 110 after folding, and the outer wall of the top plate 210 and the outer wall of the shell 100 will be in the same plane, so that the notch of the accommodating groove 110 is blocked by the outer wall of the top plate 210 and the shell 100 is protected as the outer wall of the shell 100. It can also make the overall shape of the shell 100 more regular, so as to facilitate the movement and transportation of the shell 100, so that it can still meet the needs of rapid deployment and multi-scenario application.
[0048] In some specific embodiments of the present invention, when the unfolding portion 200 is in the folded state, the bottom plate 220 is embedded in the notch of the receiving groove 110 , and the outer wall of the bottom plate 220 is coplanar with the outer wall of the housing 100 .
[0049] Specifically, when the top plate 210 and the bottom plate 220 are completely folded and accommodated in the accommodating groove 110, if the top plate 210 is located between the bottom plate 220 and the bottom of the accommodating groove 110, the width of the bottom plate 220 is matched with the width of the notch of the accommodating groove 110, and the bottom plate 220 can be just embedded in the notch of the accommodating groove 110 after folding, and the outer wall of the bottom plate 220 and the outer wall of the shell 100 will be in the same plane, so that the notch of the accommodating groove 110 is blocked by the outer wall of the bottom plate 220 and the shell 100 is protected as the outer wall of the shell 100. It can also make the overall shape of the shell 100 more regular, so as to facilitate the movement and transportation of the shell 100, so that it can still meet the needs of rapid deployment and multi-scenario application.
[0050] It should be noted that the outer wall of the housing 100 is made of waterproof material, and waterproof sealing strips are provided at the connection gaps of the housing 100, and dust filters are provided at the air inlet and outlet of the housing 100 to prevent dust and moisture from entering the interior of the housing 100 to ensure the safety of the device. Among them, the outer wall of the top and bottom plate 220 is also made of waterproof material, so that when the outer wall of the top or bottom plate 220 serves as the outer wall of the housing 100 to protect the housing 100, it can also play a role in isolating moisture.
[0051] Furthermore, slideways are provided on the inner walls of the top plate 210, the bottom plate 220, the first side display plate 231 and the two second side display plates 232, and a slider is slidably provided on each slideway. A first hydraulic rod is provided between the slider on the top plate 210 and the housing 100, the fixed end of the first hydraulic rod is rotatably connected to the housing 100, and the telescopic end of the first hydraulic rod is rotatably connected to the slider on the top plate 210. When the first hydraulic rod is extended, a force is applied to the slider on the top plate 210 in a direction away from the receiving groove 110 of the housing 100, thereby driving the slider on the top plate 210 to slide relative to the slideway on the top plate 210, thereby unfolding the top plate 210, and vice versa, folding the top plate 210. A second hydraulic rod is arranged between the slider on the bottom plate 220 and the shell 100, the fixed end of the second hydraulic rod is rotatably connected to the shell 100, and the telescopic end of the second hydraulic rod is rotatably connected to the slider on the bottom plate 220. When the second hydraulic rod is extended, a force is applied to the slider on the bottom plate 220 in a direction away from the receiving groove 110 of the shell 100, thereby driving the slider on the bottom plate 220 to slide relative to the slideway on the bottom plate 220, thereby unfolding the bottom plate 220, and vice versa, folding the bottom plate 220.
[0052] When the first side display panel 231 is rotationally connected to the top panel 210, a third hydraulic rod is arranged between the slider on the first side display panel 231 and the top panel 210, the fixed end of the third hydraulic rod is rotationally connected to the top panel 210, and the telescopic end of the third hydraulic rod is rotationally connected to the slider on the first side display panel 231. When the third hydraulic rod is extended, a force is applied to the slider on the first side display panel 231 in a direction away from the top panel 210, thereby driving the slider on the first side display panel 231 to slide relative to the slideway on the first side display panel 231, thereby unfolding the top panel 210, and vice versa, folding the top panel 210. When the first side display panel 231 is rotationally connected to the bottom plate 220, the third hydraulic rod is arranged between the slider on the first side display panel 231 and the bottom plate 220, the fixed end of the third hydraulic rod is rotationally connected to the bottom plate 220, and the telescopic end of the third hydraulic rod is rotationally connected to the slider on the first side display panel 231. When the third hydraulic rod is extended, a force is applied to the slider on the first side display panel 231 in a direction away from the bottom plate 220, thereby driving the slider on the first side display panel 231 to slide relative to the slideway on the first side display panel 231, thereby expanding the first side display panel 231, and vice versa, folding the first side display panel 231.
[0053] A fourth hydraulic rod is provided between the slider on the second side display panel 232 and the housing 100, the fixed end of the fourth hydraulic rod is rotatably connected to the housing 100, and the telescopic end of the fourth hydraulic rod is rotatably connected to the slider on the second side display panel 232. When the fourth hydraulic rod is extended, a force is applied to the slider on the second side display panel 232 in a direction away from the accommodating groove 110 of the housing 100, thereby driving the slider on the second side display panel 232 to slide relative to the slideway on the second side display panel 232, thereby expanding the second side display panel 232, and vice versa, folding the second side display panel 232.
[0054] In some specific embodiments of the present invention, referring to Figure 1 and Figure 2 The bottom of the housing 100 is extended outwardly to be provided with a support assembly 300. When the bottom plate 220 is in the unfolded state, the bottom plate 220 is supported on the receiving end of the support assembly 300.
[0055] Specifically, refer to Figure 2 The support assembly 300 includes a side arm 310 and a leg 320. When the bottom plate 220 is in the unfolded state, one end of the side arm 310 extends to the outside of the housing 100 to the bottom of the bottom plate 220, and the leg 320 is arranged at the end of the side arm 310 away from the housing 100, so that the leg 320 is driven by the side arm 310 to be located under the bottom plate 220. In addition, the top of the leg 320 is a receiving end. When the bottom plate 220 is in the unfolded state, the outer wall of the bottom plate 220 abuts against the receiving end of the leg 320, so that the receiving end of the leg 320 supports the bottom plate 220 to ensure the stability of the enclosed accommodation cavity.
[0056] In some specific embodiments of the present invention, a telescopic member is disposed on the support assembly 300 along the vertical direction, so that the telescopic member forms a receiving end of the support assembly 300 .
[0057] Specifically, the telescopic member is vertically arranged at the top of the leg 320, so that the receiving end of the leg 320 is formed by the telescopic member. In addition, the telescopic member can also be extended or contracted in the vertical direction. When the bottom plate 220 is in the unfolded state, the receiving end of the leg 320 can be extended toward the bottom plate 220 through the telescopic member, so as to facilitate contact with the outer wall of the bottom plate 220, further improve the support effect on the bottom plate 220, and ensure the stability of the enclosed accommodation cavity.
[0058] In some specific embodiments of the present invention, referring to Figure 2 The supporting components 300 are provided with a plurality of them, and the plurality of supporting components 300 are evenly arranged. When the bottom plate 220 is in the unfolded state, the bottom plate 220 is supported on the receiving ends of the plurality of supporting components 300 .
[0059] Specifically, there are multiple side arms 310, and multiple legs 320, and the multiple legs 320 and the multiple side arms 310 are arranged one by one. The multiple side arms 310 are evenly arranged, so that when the bottom plate 220 is in the unfolded state, the multiple legs 320 can be driven to evenly extend to the bottom of the bottom plate 220, and a telescopic member is provided at the top of each leg 320, so that the receiving end of each leg 320 can abut against the outer wall of the bottom plate 220 through the telescopic member, further improving the support effect on the bottom plate 220 and ensuring the stability of the enclosed accommodating cavity.
[0060] Furthermore, the telescopic member is a hydraulic rod, which can be driven by hydraulic drive to extend or contract in the vertical direction, so as to facilitate supporting the bottom plate 220.
[0061] In some specific embodiments of the present invention, an opening is provided at the bottom of the receiving groove 110. When the unfolding portion 200 is in the unfolded state, the interior of the housing 100 is connected to the receiving cavity through the opening at the bottom of the receiving groove 110, so that the staff can enter the receiving cavity.
[0062] Reference Figure 6 An embodiment of the present invention further provides a movable base station, comprising a foldable machine room as described in any of the above specific embodiments.
[0063] Specifically, the movable base station includes a chassis 400, the housing 100 of the foldable machine room is installed on the top surface of the chassis 400, the side arms 310 of the multiple support components 300 of the foldable machine room are connected and arranged on the side of the chassis 400, and multiple wheels are rotatably arranged at the bottom of both sides of the chassis 400, so that the chassis 400 and the foldable machine room are combined into a vehicle body structure for easy movement. While improving work comfort and work efficiency, it meets the needs of rapid deployment and multi-scenario application.
[0064] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent substitutions for some of the technical features therein; and these modifications or substitutions do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A foldable machine room, characterized in that: include: A housing (100) for accommodating a communication device, wherein an accommodating groove (110) is provided on an outer wall of the housing (100); an unfolding portion (200) connected to the receiving slot (110), and the unfolding portion (200) can be unfolded or folded relative to the receiving slot (110); When the unfolding portion (200) is in an unfolded state, the unfolding portion (200) can be combined with the containing groove (110) outside the shell (100) to form a containing cavity; When the unfolding portion (200) is in a folded state, the unfolding portion (200) can be accommodated in the accommodation groove (110).
2. The foldable machine room according to claim 1, characterized in that: The unfolding portion (200) comprises: A top plate (210), one side of which is rotatably connected to the top of the receiving groove (110); the top plate (210) can be rotated and unfolded in a direction away from the receiving groove (110) until the top plate (210) is perpendicular to the groove bottom of the receiving groove (110); and the top plate (210) can also be rotated and folded in a direction close to the receiving groove (110) until the top plate (210) is accommodated in the receiving groove (110); A bottom plate (220), one side of which is rotatably connected to the bottom of the receiving groove (110); the bottom plate (220) can be rotated and unfolded in a direction away from the receiving groove (110) until the bottom plate (220) is perpendicular to the groove bottom of the receiving groove (110); and the bottom plate (220) can also be rotated and folded in a direction close to the receiving groove (110) until the bottom plate (220) is accommodated in the receiving groove (110); A side expansion component (230) is located between the top plate (210) and the bottom plate (220) when the top plate (210) and the bottom plate (220) are in an expanded state, so that the accommodating cavity is enclosed by the side expansion component (230), the top plate (210), the bottom plate (220) and the accommodating groove (110).
3. The foldable machine room according to claim 2, characterized in that: The side expansion assembly (230) comprises: A first side display plate (231), one side of which is rotatably connected to a side of the bottom plate (220) away from the bottom of the receiving groove (110) or a side of the top plate (210) away from the top of the receiving groove (110), and the other side of which is clamped to a side of the top plate (210) away from the top of the receiving groove (110) or a side of the bottom plate (220) away from the bottom of the receiving groove (110); Two second side display panels (232) are provided, and the two second side display panels (232) are rotatably connected to the two sides of the receiving groove (110) respectively, and any one of the second side display panels (232) can be rotated and unfolded in a direction away from the receiving groove (110) until the second side display panel (232) is perpendicular to the groove bottom of the receiving groove (110) and is respectively engaged with the top plate (210) and the first side display panel (231), and any one of the second side display panels (232) can also be rotated and folded in a direction close to the receiving groove (110) until the second side display panel (232) is accommodated in the receiving groove (110).
4. The foldable machine room according to claim 2 or 3, characterized in that: When the unfolding portion (200) is in a folded state, the top plate (210) is embedded in the notch of the accommodating groove (110), and the outer wall of the top plate (210) is coplanar with the outer wall of the shell (100).
5. The foldable machine room according to claim 2 or 3, characterized in that: When the unfolding portion (200) is in a folded state, the bottom plate (220) is embedded in the notch of the accommodating groove (110), and the outer wall of the bottom plate (220) is coplanar with the outer wall of the shell (100).
6. The foldable machine room according to claim 2 or 3, characterized in that: A support assembly (300) is provided at the bottom of the housing (100) extending outward; When the bottom plate (220) is in an unfolded state, the bottom plate (220) is supported on the receiving end of the support assembly (300).
7. The foldable machine room according to claim 6, characterized in that: A telescopic member is arranged on the support assembly (300) along the vertical direction, so that the telescopic member forms a receiving end of the support assembly (300).
8. The foldable machine room according to claim 6, characterized in that: A plurality of the support assemblies (300) are provided, and the plurality of the support assemblies (300) are evenly arranged; When the bottom plate (220) is in an unfolded state, the bottom plate (220) is supported on the receiving ends of the plurality of support components (300).
9. The foldable machine room according to claim 2 or 3, characterized in that: The bottom of the receiving groove (110) is provided with an opening; When the unfolding portion (200) is in the unfolded state, the interior of the housing (100) is in communication with the accommodating cavity through an opening at the bottom of the accommodating groove (110).
10. A mobile base station, characterized in that: It comprises a foldable machine room as described in any one of claims 1 to 9.