Field packaging and storage box device and usage method for antenna panels

By designing an outdoor packaging and storage box for antenna panels, which uses an angled open body and a hoisting method, the problem of damage to antenna panels during handling in containers is solved, and safe and convenient hoisting operations and additional safety protection are achieved.

CN118458171BActive Publication Date: 2026-05-26SHANDONG TAIKAI HEAVY IND MASCH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHANDONG TAIKAI HEAVY IND MASCH CO LTD
Filing Date
2024-05-31
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing antenna panels are easily damaged during handling in containers, mainly because they can only be moved in and out laterally using forklifts, which increases the risk of damage.

Method used

Design an outdoor packaging and storage box for antenna panels. The box has a shell and lid with an upwardly angled open body. It can be moved in and out vertically by hoisting. Safe hoisting is achieved by using accessories such as alignment connectors, sockets, brackets, clamping connectors and tension locks.

Benefits of technology

It reduces the risk of damage to the antenna panel during handling in containers, improves lifting and maneuverability, and provides additional safety protection and ease of operation through built-in components.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

An outdoor packaging and storage box device and method for using antenna panels include a housing shell (1) with an upper inclined open body (13) and a box cover (2) disposed on the housing shell (1) and having a lower inclined open body (24). By using the housing shell (1) and the box cover (2), an opening with an upper inclined surface is realized as an antenna panel handling channel. The antenna panels can be moved out and into the storage box in the vertical direction by hoisting. This solves the technical problem of using containers with side opening doors, thus reducing the risk of damage to the antenna panels during handling in the container.
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Description

Technical Field

[0001] This invention relates to a field packaging and storage box device and a method of using it, and more particularly to a field packaging and storage box device and a method of using it for antenna panels. Background Technology

[0002] Antenna board Its main applications include high-power amplifiers, base station antennas, global positioning systems, weather radar and meteorological satellites, as well as automotive radar and sensors. When conducting field operations, it is necessary to... The antenna board is used for storage. Therefore, field packaging and storage boxes for antenna panels are an important component of antenna panel supplies. Currently, antenna panels are still mostly transported in containers with side doors. Since the antenna panels can only be moved in and out of the container laterally using forklifts, this increases the risk of damage to the antenna panels during handling within the container.

[0003] This invention utilizes a lifting method to vertically move antenna panels into and out of storage boxes, effectively exploring and addressing the technical challenges of using containers with side-opening doors. Summary of the Invention

[0004] The subject of this invention is a field packaging and storage box device for antenna panels.

[0005] The subject of this invention is a method of using an outdoor packaging and storage box device for antenna panels.

[0006] In order to overcome the above-mentioned technical shortcomings, the purpose of this invention is to provide an outdoor packaging and storage box device and a method of use for antenna panels, thereby reducing the risk of antenna panels being damaged during handling in containers.

[0007] To achieve the above objectives, the technical solution adopted by the present invention is: an outdoor packaging and storage box device for antenna panels, comprising a receiving box shell having an upper inclined open body and a box cover disposed on the receiving box shell and having a lower inclined open body.

[0008] Because the design accommodates the container shell and lid, and by accommodating the container shell and lid, it achieves a top sloping opening as an antenna panel handling channel, enabling the antenna panel to be moved in and out of the storage box vertically by hoisting. This solves the technical problem of using containers with side opening doors, thus reducing the risk of the antenna panel being damaged during handling in the container.

[0009] The present invention designs a method in which the housing shell and the lid are connected to each other by means of lifting the antenna plate into and out of the storage box in the vertical direction.

[0010] The present invention designs a method in which the cover is connected to the housing shell by means of having an upper sloping opening as an antenna plate transport channel.

[0011] The technical benefits of the above three solutions are: they enable the slanted opening of the transport window for the hoisted antenna panel, thereby improving the passage performance of the hoisted antenna panel.

[0012] The present invention is designed to include a first accessory device disposed between the housing shell and the lid, the first accessory device being configured to include an alignment connection component, a socket, and a bracket.

[0013] The present invention is designed to include a second accessory device disposed between the housing shell and the lid, the second accessory device being configured to include a clamping connection component and a tension lock.

[0014] The present invention is designed to include a third accessory device, which is disposed in the housing and is configured as an internal frame.

[0015] The present invention is designed to include a fourth accessory device, which is disposed in the housing and is configured as a built-in component.

[0016] The present invention is designed to include a fifth accessory device, which is disposed on the housing shell and includes a self-propelled steering wheel and a swivel wheel.

[0017] The technical effect of the above five technical solutions is that they enable the integrated installation of other components and expand the technical effect of the present invention.

[0018] The present invention comprises a box shell with a lid, an internal component, a support, an internal frame and casters respectively. An alignment connection component, a pressing connection component and a tension lock are respectively provided between the lid and the box shell. A socket is provided between the support and the lid. A self-propelled steering wheel is provided between the internal component and the box shell.

[0019] The technical effect of the above technical solution is that by accommodating the shell, lid, internal components, alignment connection components, socket, bracket, clamping connection components, tension lock, internal frame, self-propelled steering wheel and universal wheel, the basic technical solution of the present invention is formed, which solves the technical problem of the present invention.

[0020] This invention designs a housing shell comprising a box section I, a vertical partition section, a window I, a horizontal partition, a window II, an opening / closing door, a box section, and a window III. A top-mounted, slopingly open body is provided on the left side of the box section I. The inner wall of the top-mounted, slopingly open body is connected to the peripheral side of the vertical partition section. The upper part of the inner wall of the vertical partition section and the upper part of the right inner wall of the box section I are respectively connected to the peripheral side of the horizontal partition. Window I, window II, and window III are respectively embeddedly connected to the front and rear parts of the box section I. An opening / closing door is provided on the right side of the box section I. The outer wall of the vertical partition section is connected to the inner end face of the box section. The top-mounted, slopingly open body is connected to the box lid. The area between the right side of the box section I and the vertical partition section is connected to internal components. Window I, window II, and the opening / closing door are respectively distributed correspondingly to the internal components. The horizontal partition is connected to the internal... The components are connected by a bracket. The upper horizontal part of the upper inclined open body is connected to the alignment connection component, and the lower vertical part of the upper inclined open body is connected to the bracket. The lower vertical part of the upper inclined open body and the front and rear sides of the upper inclined open body are connected to the clamping connection component and the tension lock, respectively. The section on the left side of the box part I is connected to the built-in frame, and the box part and window door III are respectively distributed corresponding to the built-in frame. The box part I is a rectangular box-shaped body with integrated box corner pieces at the lower corner, and the vertical partition and the horizontal partition are respectively rectangular sheet-shaped bodies. Window door I and window door II are respectively ventilation louvers, and the opening and closing door is a double door. The box part is a box-shaped body with an opening, and window door III is a fixed observation window. The lower right side of the box part I is connected to the self-propelled steering wheel, and the lower left side of the box part I is connected to the universal wheel.

[0021] The present invention designs an upper inclined open body as an inclined port body with the opening extending upward, and the included angle α between the inclined surface of the upper inclined open body and the horizontal plane is set to 140-160°.

[0022] The technical advantages of the above two solutions are: they enable a box configuration with slanted ports and increase the inlet and outlet diameter of the antenna board.

[0023] The present invention designs a box cover comprising a box part II, a top ear seat part, and a side ear seat part, with a lower inclined opening at the lower end of the box part II. The left side of the upper end face of the box part II is connected to the inner end face of the top ear seat part, and the right side of the box part II is connected to the inner end face of the side ear seat part. The lower inclined opening is connected to the receiving box shell by a butt joint, and the upper horizontal part of the lower inclined opening is connected to an alignment connection component. The lower vertical part of the lower inclined opening is connected to a socket, and the lower vertical part of the lower inclined opening and the front and rear sides of the lower inclined opening are respectively connected to a pressing connection component and a tension lock. The box part II is a right-angled box-shaped body, and the top ear seat part and the side ear seat part are each a single plate ear seat with a through hole.

[0024] The present invention designs a lower inclined open body as an inclined port body with the opening extending downward, and the included angle β between the inclined surface of the lower inclined open body and the horizontal plane is set to 20-40°.

[0025] The technical effects of the above two solutions are: they achieve sealing of the oblique port and increase the sealing force.

[0026] This invention designs an alignment connection component comprising a corner plate portion I, a corner plate portion II, and a connecting bolt and nut portion I. A step body I is provided on the inner vertical end face of corner plate portion I, and a step body II is provided on the inner vertical end face of corner plate portion II. Step body I is configured to connect with step body II in a mating manner. The bolts of connecting bolt and nut portion I are respectively configured to penetrate corner plate portion I and corner plate portion II, and the flange of the bolts of connecting bolt and nut portion I is configured to contact the outer vertical end face of corner plate portion I. The nut of connecting bolt and nut portion I is configured to contact the outer vertical end face of corner plate portion II. The lower horizontal end face of corner plate portion I is configured to connect with a box cover, and the lower horizontal end face of corner plate portion II is configured to connect with a receiving box shell. Corner plate portion I and corner plate portion II are respectively configured as L-shaped plates. The bolts of connecting bolt and nut portion I are hexagonal bolts, and the nut of connecting bolt and nut portion I is a hexagonal nut. Step body I and step body II are configured as transverse sections distributed vertically.

[0027] The technical effect of the above solution is that it enables fixed alignment and positioning of the upper end.

[0028] This invention designs a socket comprising a plate, a recessed strip, and an upper connecting strip. The lower end face of the horizontal portion of the plate is connected to the upper end face of the recessed strip. The lower end of the inner side of the vertical portion of the plate is connected to the inner side of the upper connecting strip, and the upper end of the inner side of the vertical portion of the plate is connected to the cover. The vertical portion of the plate is connected to the cover by bolts. The upper end face of the upper connecting strip is connected to the cover, and the recessed strip is embedded in a bracket. The lower end face of the upper connecting strip is connected to the bracket. The plate is an L-shaped sheet, the recessed strip is a rectangular rod, and the upper connecting strip is a trapezoidal block with a beveled surface on its lower end face. The beveled surface of the upper connecting strip extends along the lower obliquely open body.

[0029] This invention designs a support comprising a plate portion II, a receiving strip portion, a lower connecting strip portion, and a sealing strip portion. A receiving groove II is provided on the upper end face of the receiving strip portion. A receiving groove I is provided on the upper end face of the lower connecting strip portion and is configured to connect with the sealing strip portion. The upper end face of the plate portion II is configured to connect with the inner side of the lower end face of the receiving strip portion, and the inner side of the receiving strip portion is configured to connect with the inner side of the lower connecting strip portion. The inner side of the plate portion II is configured to contact the receiving housing, and the plate portion II is configured to connect to the receiving housing via bolts. The lower connecting strip portion... The end face is configured to connect with the housing shell and the sealing strip is configured to contact the socket. The receiving groove II is configured to connect with the socket and the plate II is configured to be a rectangular sheet. The receiving strip is configured to be a rectangular strip and the lower connecting strip is configured to be a trapezoidal block with a beveled upper end face. The beveled body of the lower connecting strip is configured to extend along the upper oblique open body and the sealing strip is configured to be a rubber rod. The receiving groove I is configured to be a C-shaped groove and the receiving groove I is configured to be spaced apart along the transverse center line of the lower connecting strip. The receiving groove II is configured to be a C-shaped groove.

[0030] The technical effect of the above two solutions is that they achieve lower end alignment and positioning.

[0031] This invention designs a clamping connection component comprising a corner plate portion III, a corner plate portion IV, and a connecting bolt and nut portion II. The bolts of the connecting bolt and nut portion II are respectively configured to penetrate and connect to both corner plate portions III and IV. The flange of the bolts in the connecting bolt and nut portion II is configured to contact the outer horizontal end face of the corner plate portion III. The nut of the connecting bolt and nut portion II is configured to contact the outer horizontal end face of the corner plate portion IV. The inner vertical end face of the corner plate portion III is configured to connect to the lid, and the inner vertical end face of the corner plate portion IV is configured to connect to the housing shell. Both corner plate portions III and IV are L-shaped plates. The bolts and nuts of the connecting bolt and nut portion II are hexagonal bolts and hexagonal nuts.

[0032] The technical effect of the above solution is that it achieves the clamping process through the movement of the thread.

[0033] The present invention designs a tension lock as a car body latch, wherein the tension lock has a buckle portion configured to connect with the car body cover, and the tension lock has a handle portion configured to connect with the housing shell.

[0034] The technical effect of the above solution is that it achieves the pressing process by pushing and pulling motion.

[0035] This invention designs an internal frame comprising a lower frame, an upper frame, a shock absorber, an outer swing frame, a lug, a brake screw, and a rod. The lower frame is designed to be accommodatingly connected to the upper frame. One upper side of the lower frame is connected to the upper end of the outer swing frame, and one end of the rod is connected to one side of the lower frame. The other end of the rod is connected to the inner side of the outer swing frame. The upper side of the lower frame is threadedly connected to the end of the brake screw. The edge of the upper end face of the upper frame is connected to the lower inner end face of the lug. One end of the shock absorber is connected to the edge of the upper end face of the lower frame, and the other end of the shock absorber is connected to... The upper frame is connected to the middle of the periphery of the upper frame, and the lower end face of the lower frame and the lower end face of the outer swing frame are respectively configured to be connected to the housing shell. The flange of the brake screw is configured to be connected to the housing shell in contact, and the upper end face of the upper frame is configured to be connected to the antenna plate in a hoisting manner. The lower frame is configured as a rectangular cylindrical frame, and the upper frame is configured as a three-dimensional frame with an M-shaped cross section. The shock absorption part is configured as a wire rope shock absorber, and the outer swing frame is configured as a ladder-shaped frame. The lifting lug is configured as a single plate lug seat with a through hole, and the brake screw is configured as a hexagonal bolt. The shock absorption part and the brake screw are respectively arranged at intervals along the periphery of the lower frame, and the lifting lug is arranged at intervals along the edge of the upper end face of the upper frame.

[0036] The technical effect of the above solution is that it enables the antenna board to be stored in a buffered state.

[0037] This invention designs a system with built-in components including a temperature control unit, a lighting unit, a dehumidifier unit, a nitrogen cylinder unit, a generator unit, and a temperature and humidity controller unit. The temperature control unit, dehumidifier unit, nitrogen cylinder unit, generator unit, and temperature and humidity controller unit are respectively arranged in a recessed connection to the housing shell. The lighting unit is arranged in a hook-on connection to the housing shell. The output interface of the generator unit is connected to the power interface of the temperature and humidity controller unit. The interface of the temperature and humidity controller unit is respectively connected to the control interface of the temperature control unit and the control interface of the dehumidifier unit. The output interface of the generator unit is respectively connected to the power interface of the lighting unit and the power interface of the self-propelled steering wheel via a switch. The temperature control unit is configured as an indoor air conditioner, the lighting unit as an LED light, the dehumidifier unit as a duct dehumidifier, and the generator unit as a gasoline generator.

[0038] The technical effect of the above solution is that it enables the setting of other safety protection components stored on the antenna board.

[0039] The present invention designs a self-propelled steering wheel that includes a steering wheel part and an ear seat part I. One of the through holes on the frame of the steering wheel part is connected to one of the through holes on the ear seat part I by a pin. The other two through holes on the frame of the steering wheel part are connected to the other two through holes on the ear seat part I by bolts and nuts. The inner end face of the ear seat part I is connected to a housing shell. The steering wheel part is configured to have a drive motor and a walking wheel seat with three through holes on the frame. The ear seat part I is configured as a double-plate ear seat with three through holes at its outer end.

[0040] The present invention designs a universal wheel comprising a wheel portion and an ear portion II, wherein one of the through holes on the wheel frame of the wheel portion is connected to one of the through holes on the ear portion II via a pin, and the other two through holes on the wheel frame of the wheel portion are connected to the other two through holes on the ear portion II via bolts and nuts, and the inner end portion of the ear portion II is connected to a housing shell, the wheel portion being a universal wheel with three through holes on the wheel frame, and the ear portion II being a double-plate ear portion with three through holes at its outer end.

[0041] The technical effect of the above two solutions is that they enable the movement support of the housing shell.

[0042] The present invention is designed such that the housing shell and lid, the alignment connecting parts, the socket, the bracket, the clamping connecting parts, and the tension lock are arranged in an upper-sealed manner; the housing shell, lid, alignment connecting parts, socket, bracket, clamping connecting parts, and tension lock are arranged with the internal parts and the internal frame as internal parts; and the housing shell, lid, alignment connecting parts, socket, bracket, clamping connecting parts, and tension lock are arranged with the self-propelled steering wheel and the universal wheel as lower moving parts.

[0043] This invention designs a system in which multiple alignment connecting parts, multiple clamping connecting parts, and multiple tension locks are respectively disposed between the box cover and the receiving box shell. The lower frame, outer swing frame, ear seat II, ear seat I, corner plate IV, plate II, lower connecting strip, and corner plate II are respectively configured to connect to box I. The braking screw is respectively configured to connect to box I and vertical partition. The corner plate III, plate, upper connecting strip, and corner plate I are respectively configured to connect to box II. The receiving groove II is configured to connect to the recessed strip, and the sealing strip is configured to connect to the upper connecting strip. The connection is provided between the right side of the box section I and the vertical partition section, which is configured to connect with the temperature control unit, dehumidifier unit, nitrogen cylinder unit, generator unit and temperature and humidity controller unit. The lighting unit, the indoor unit of the temperature control unit and the release port of the dehumidifier unit are respectively configured to connect with the vertical partition section. The release ports of the lighting unit, the indoor unit of the temperature control unit and the dehumidifier unit are respectively configured to be distributed correspondingly to the upper shelf section. The horizontal partition is configured to connect with the temperature and humidity controller unit. The lower inclined open body is configured to connect with the upper inclined open body.

[0044] This invention designs a method for using an outdoor packaging and storage box device for antenna panels. The steps are as follows: the box shell and the box cover form a channel for transporting antenna panels with an upper sloping opening, which enables the antenna panels to be moved out and in the storage box in the vertical direction by hoisting.

[0045] The technical effect of the above technical solution is that it highlights the technical feature of moving the antenna plate out and into the storage box in the vertical direction by hoisting, and introduces its application in the technical field of field packaging and storage box device for antenna plates.

[0046] The present invention is designed with the following steps: When packaging and storing the antenna plate, connect the top lug and side lug to the lifting hook. Using lifting machinery, separate box section II from box section I, allowing the upper inclined open body to be in a free state. Connect the lower end of the outer swing frame to the bottom wall of the section located on the left side of box section I using bolts. Rotate the brake screw on the upper side of the lower frame, causing the flange of the brake screw to act on the side wall of the section located on the left side of box section I and the outer wall of the vertical partition, thereby installing the internal frame in the section located on the left side of box section I. Place the antenna plate in the section located on the left side of box section I and hang the antenna plate on the upper end face of the upper frame, thus installing the antenna plate on the upper frame. When the installation on the upper frame is completed... After the line plate is installed, using lifting machinery, box section II is placed on box section I, the recessed strip is placed into receiving tank II, the upper connecting strip is placed on sealing strip section, step body I is brought into contact with step body II, the lower inclined open body is placed on the upper inclined open body, and the bolts of connecting bolt and nut section I are installed through-hole with angle plate section I and angle plate section II, so that the nut of connecting bolt and nut section I rotates on the bolt of connecting bolt and nut section I, so that the flange of the bolt of connecting bolt and nut section I acts on the outer end face of the vertical part of angle plate section I, so that the nut of connecting bolt and nut section I acts on the outer end face of the vertical part of angle plate section II, so that the tension lock is in the connected state, and the bolts of connecting bolt and nut section II are installed through-hole with angle plate section III and angle plate section IV, so that connecting bolt and nut section II... The nut is rotated on the bolt of the mating bolt nut part II, causing the flange of the bolt of the mating bolt nut part II to act on the outer end face of the horizontal part of the corner plate part III, and causing the nut of the mating bolt nut part II to act on the outer end face of the horizontal part of the corner plate part IV, thereby installing the box cover on the housing shell, so that the upper oblique open body is in a sealed state, realizing the sealed storage of the antenna board, so that the generator part is in a working state, the temperature and humidity control part is in a working state, the temperature control part regulates the temperature of the section located on the left side of the box part I, the dehumidifier part regulates the humidity of the section located on the left side of the box part I, so that the section located on the left side of the box part I meets the storage temperature requirements of the antenna board, the lighting part illuminates the section located on the left side of the box part I, and nitrogen gas is used for illumination. The bottle section fires the area located on the left side of box section I. Using a forklift, the right side of box section I is lifted, causing the steering wheel frame to rotate on the pin, bringing the steering wheel into contact with the ground. Bolts and nuts are then used to connect the steering wheel frame to lug section I. Next, the left side of box section I is lifted, causing the wheel frame to rotate on the pin, bringing the wheel into contact with the ground. Bolts and nuts are then used to connect the wheel frame to lug section II. The steering wheel drives the container shell into motion. Once the container shell is moved to the destination workstation, the right side of box section I is lifted again using a forklift. Bolts and nuts are then used to separate the steering wheel frame from lug section I, causing the steering wheel frame to rotate in the opposite direction on the pin, separating the steering wheel from the ground.Lift the left side of box I, and separate the wheel frame from the lug part II using bolts and nuts. Rotate the wheel frame in the opposite direction on the pin to separate the wheel from the ground, bringing box I into contact with the ground. When it is necessary to remove the antenna plate from the upper frame, disengage the tension lock and rotate the nut of the docking bolt nut part II in the opposite direction on the bolt of the docking bolt nut part II. Remove the bolt of the docking bolt nut part II from corner plate parts III and IV, allowing the docking bolt to... The nut of nut part I is rotated in the opposite direction on the bolt of the connecting bolt nut part I, and the bolt of the connecting bolt nut part I is removed from the corner plate part I and the corner plate part II. Using lifting machinery, box part II is removed from box part I, the recessed strip is removed from the receiving tank part II, the upper connecting strip is separated from the sealing strip, corner plate part I and corner plate part II are separated, corner plate part III and corner plate part IV are separated, the upper inclined open body is in a free state, and the antenna plate is removed from the upper end face of the upper frame part.

[0047] The technical effect of the above solution is that it enables the storage of the antenna board in a box.

[0048] In this technical solution, the housing shell and lid are the basic components and essential technical features of the invention. The built-in components, alignment connection components, sockets, brackets, clamping connection components, tension locks, built-in frames, self-propelled steering wheels, and casters are functional components, features that achieve other technical effects of the invention. The box section I, vertical partition section, window I, horizontal partition, window II, opening and closing door, box section, window III, upper inclined open body, box section II, top ear seat section, side ear seat section, lower inclined open body, temperature control unit, lighting unit, dehumidifier unit, and nitrogen gas are also included. The design of the following technical features—bottle section, generator section, temperature and humidity controller section, angle plate section I, angle plate section II, connecting bolt and nut section I, step body I, step body II, plate section, recessed strip section, upper connecting strip section, plate section II, receiving strip section, lower connecting strip section, sealing strip section, receiving tank section I, receiving tank section II, angle plate section III, angle plate section IV, connecting bolt and nut section II, steering wheel section, lug section I, wheel section, lug section II, lower frame section, upper frame section, shock absorber section, outer swing frame section, lifting lug section, and brake screw section—complies with the technical features of the Patent Law and its implementing regulations.

[0049] In this technical solution, the antenna board is moved in and out of the storage box in the vertical direction by means of hoisting, which is achieved by the housing shell and the box cover.

[0050] In this technical solution, the key technical feature is the container shell and lid that allow the antenna plate to be moved in and out of the storage box vertically via hoisting. This solution is novel, inventive, and practical in the technical field of field packaging and storage box devices and methods for antenna plates. The terminology used in this technical solution can be explained and understood using patent literature in this technical field. Attached Figure Description

[0051] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0052] Figure 1 This is a schematic diagram of the present invention, which is a field packaging and storage box device for antenna panels.

[0053] Figure 2 for Figure 1 Top view,

[0054] Figure 3 for Figure 1 Left view,

[0055] Figure 4 for Figure 1 Rear view,

[0056] Figure 5 for Figure 1 The right view,

[0057] Figure 6 for Figure 1 The unfolded diagram,

[0058] Figure 7 This is a structural diagram of the alignment connection component 4.

[0059] Figure 8 This diagram illustrates the connection relationship between the casing 1, the cover 2, the socket 5, and the bracket 6.

[0060] Figure 9 This is a structural diagram of the built-in frame 9.

[0061] Figure 10 for Figure 9 The right view,

[0062] Figure 11 for Figure 9 Top view,

[0063] The enclosure includes: 1. Case shell; 2. Case lid; 3. Internal components; 4. Alignment connection components; 5. Socket; 6. Support; 7. Press-fit connection components; 8. Tensioner lock; 9. Internal frame; 10. Self-propelled steering wheel; 20. Casters; 11. Case section I; 12. Vertical partition; 14. Door I; 15. Horizontal partition; 16. Door II; 17. Opening door; 18. Box section; 19. Door III; 13. Upper sloping open body; 21. Case section II; 22. Top lug seat; 23. Side lug seat; 24. Lower sloping open body; 31. Temperature control unit; 32. Lighting unit; 33. Dehumidifier unit; 34. Nitrogen cylinder unit; 35. Generator unit; 36. Temperature and humidity controller unit. -36, Angle Plate Part I -41, Angle Plate Part II -42, Butt Bolt and Nut Part I -43, Step Body I -44, Step Body II -45, Plate Part I -51, Sinking Strip Part 52, Upper Butt Strip Part -53, Plate Part II -61, Receiving Strip Part -62, Lower Butt Strip Part -63, Sealing Strip Part -64, Receiving Groove Part I -65, Receiving Groove Part II -66, Angle Plate Part III -71, Angle Plate Part IV -72, Butt Bolt and Nut Part II -73, Steering Wheel Part -101, Lug Part I -102, Wheel Part -201, Lug Part II -202, Lower Frame Part -99, Upper Frame Part -98, Shock Absorber Part -97, Outer Swing Frame Part -96, Lifting Lug Part -95, Brake Screw Part -94. Detailed Implementation

[0064] According to the examination guidelines, terms such as “having,” “comprising,” and “including” used in this invention should be understood to mean without dispensing the presence or addition of one or more other elements or combinations thereof.

[0065] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0066] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0067] Furthermore, the technical features involved in the different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other. In addition, unless otherwise specified, the equipment and materials used in the following embodiments are commercially available. If the processing conditions are not explicitly stated, please refer to the product manual or follow the conventional methods in the field.

[0068] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0069] A field packaging and storage box device for antenna panels. Figure 1 This is the first embodiment of the present invention. The embodiment is described in detail with reference to the accompanying drawings. It includes a housing shell 1, a lid 2, an internal component 3, an alignment connecting component 4, a socket 5, a support 6, a clamping connecting component 7, a tension lock 8, an internal frame 9, a self-propelled steering wheel 10, and casters 20. The lid 2, internal component 3, support 6, internal frame 9, and casters 20 are respectively provided on the housing shell 1. The alignment connecting component 4, clamping connecting component 7, and tension lock 8 are respectively provided between the lid 2 and the housing shell 1. The socket 5 is provided between the support 6 and the lid 2. The self-propelled steering wheel 10 is provided between the internal component 3 and the housing shell 1.

[0070] In this embodiment, the housing shell 1 is configured to include a box section I 11, a vertical partition section 12, a window I 14, a horizontal partition 15, a window II 16, an opening and closing door 17, a box section 18, and a window III 19. An upper-mounted obliquely open body 13 is provided on the left side of the box section I 11. The inner wall of the upper-mounted obliquely open body 13 is connected to the peripheral side of the vertical partition section 12. The upper part of the inner wall of the vertical partition section 12 and the upper part of the right inner wall of the box section I 11 are respectively connected to the peripheral side of the horizontal partition 15. Window I 14... Window II 16 and window III 19 are respectively embedded and connected to the front and rear parts of box I 11, and an opening and closing door 17 is provided on the right side of box I 11. The outer side wall of the vertical partition 12 is connected to the inner end face of box 18, and the upper inclined open body 13 is connected to the box cover 2. The section between the right side of box I 11 and vertical partition 12 is connected to the built-in component 3, and window I 14, window II 16 and opening and closing door 17 are respectively distributed corresponding to the built-in component 3. The partition 15 is configured to be connected to the built-in component 3 via a support. The upper horizontal part of the upper inclined open body 13 is configured to be connected to the alignment connection component 4, and the lower vertical part of the upper inclined open body 13 is configured to be connected to the support 6. The lower vertical part of the upper inclined open body 13 and the front and rear sides of the upper inclined open body 13 are respectively configured to be connected to the pressing connection component 7 and the tension lock 8. The section on the left side of the box part I 11 is configured to be connected to the built-in frame 9, and the box part 18 and the window door III 19 are respectively configured to be opposite to the built-in frame 9. The box section I11 is configured as a rectangular box-shaped body with integrated corner fittings at the lower corner, and the vertical partition section 12 and the horizontal partition section 15 are respectively configured as rectangular sheet-shaped bodies. The windows I14 and II16 are respectively configured as ventilation louvers, and the opening and closing door 17 is configured as a double door. The box section 18 is configured as a box-shaped body with an open opening, and the window III19 is configured as a fixed observation window. The lower right side of the box section I11 is respectively configured to be connected to the self-propelled steering wheel 10, and the lower left side of the box section I11 is respectively configured to be connected to the universal wheel 20.

[0071] By accommodating the housing shell 1, a support connection point is formed for the housing cover 2, the internal components 3, the alignment connection component 4, the support 6, the clamping connection component 7, the tension lock 8, the internal frame 9, the self-propelled steering wheel 10, and the casters 20. The upper inclined open body 13 realizes the connection with the housing cover 2, the connection with the alignment connection component 4, the connection with the support 6, the connection with the clamping connection component 7, and the connection with the tension lock 8. The housing part I 11, the vertical partition part 12, the window door I 14, the horizontal partition 15, the window door II 16, and the opening and closing door 17 realize the connection with the internal components 3. The housing part I 11 and the window door III 19 realize the connection with the internal frame 9. The box part 18 realizes the storage treatment of desiccant. The box part I 11 realizes the connection with the self-propelled steering wheel 10 and the casters 20. Its technical purpose is to serve as a support carrier for the internal components 3 and the internal frame 9.

[0072] In this embodiment, the upper inclined open body 13 is configured as an inclined port body with the opening extending upward, and the angle α between the inclined surface of the upper inclined open body 13 and the horizontal plane is set to 140-160°.

[0073] Its technical objective is to enable the antenna plate to be transported from the upper open area.

[0074] In this embodiment, the box cover 2 is configured to include a box part II 21, a top ear seat part 22, and a side ear seat part 23, and a lower inclined opening body 24 is provided at the lower end of the box part II 21. The left side of the upper end face of the box part II 21 is configured to be connected to the inner end face of the top ear seat part 22, and the right side of the box part II 21 is configured to be connected to the inner end face of the side ear seat part 23. The lower inclined opening body 24 is configured to be connected to the receiving box shell 1 by a butt joint, and the upper horizontal part of the lower inclined opening body 24 is configured to be connected to the alignment connection part 4. The lower vertical part of the lower inclined opening body 24 is configured to be connected to the socket 5, and the lower vertical part of the lower inclined opening body 24 and the front and rear sides of the lower inclined opening body 24 are respectively configured to be connected to the pressing connection part 7 and the tension lock 8. The box part II 21 is configured as a right-angled box-shaped body, and the top ear seat part 22 and the side ear seat part 23 are respectively configured as single-plate ear seats with through holes.

[0075] The cover 2 forms a support connection point for the housing shell 1, the alignment connection component 4, the socket 5, the pressing connection component 7, and the tension lock 8. The lower inclined open body 24 realizes the connection with the housing shell 1, the alignment connection component 4, the socket 5, the pressing connection component 7, and the tension lock 8. The top ear seat 22 and the side ear seat 23 realize the connection for hoisting the box part II 21. The box part II 21 realizes the connection for supporting the lower inclined open body 24. Its technical purpose is to be used as a component for sealing the cover 2.

[0076] In this embodiment, the lower inclined open body 24 is configured as an inclined port body with the opening extending downward, and the angle β between the inclined surface of the lower inclined open body 24 and the horizontal plane is set to 20-40°.

[0077] Its technical objective is to enable the antenna plate to be transported from the upper open area.

[0078] In this embodiment, the built-in component 3 is configured as a temperature control unit 31, a lighting unit 32, a dehumidifier unit 33, a nitrogen cylinder unit 34, a generator unit 35, and a temperature and humidity controller unit 36. The temperature control unit 31, the dehumidifier unit 33, the nitrogen cylinder unit 34, the generator unit 35, and the temperature and humidity controller unit 36 ​​are respectively configured to be submerged and connected to the housing shell 1. The lighting unit 32 is configured to be hooked and connected to the housing shell 1. The output interface of the generator unit 35 is configured to be connected to the power interface of the temperature and humidity controller unit 36. The interface of the temperature and humidity controller unit 36 ​​is configured to be connected to the control interface of the temperature control unit 31 and the control interface of the dehumidifier unit 33. The output interface of the generator unit 35 is configured to be connected to the power interface of the lighting unit 32 and the power interface of the self-propelled steering wheel 10 via a switch. The temperature control unit 31 is configured as an indoor air conditioner, the lighting unit 32 is configured as an LED lighting lamp, the dehumidifier unit 33 is configured as a duct dehumidifier, and the generator unit 35 is configured as a gasoline generator.

[0079] The built-in component 3 forms a support connection point for the housing shell 1 and the self-propelled steering wheel 10. The temperature control unit 31, the lighting unit 32, the dehumidifier unit 33, the nitrogen cylinder unit 34, the generator unit 35, and the temperature and humidity controller unit 36 ​​are connected to the housing shell 1. The generator unit 35 is connected to the self-propelled steering wheel 10. Its technical purpose is to serve as a component for regulating the temperature and humidity in the housing shell 1 and for fire protection.

[0080] In this embodiment, the alignment connection component 4 is configured to include a corner plate portion I 41, a corner plate portion II 42, and a mating bolt and nut portion I 43. A step body I 44 is provided on the inner vertical end face of the corner plate portion I 41, and a step body II 45 is provided on the inner vertical end face of the corner plate portion II 42. The step body I 44 is configured to be mated with the step body II 45. The bolts of the mating bolt and nut portion I 43 are respectively configured to be through-connected to the corner plate portion I 41 and the corner plate portion II 42, and the flange of the bolt of the mating bolt and nut portion I 43 is configured to be mated with the outer vertical end face of the corner plate portion I 41. The parts are connected by contact. The nut of the bolt and nut part I43 is connected to the outer end of the vertical part of the corner plate part II42 by contact. The lower end of the horizontal part of the corner plate part I41 is connected to the cover 2. The lower end of the horizontal part of the corner plate part II42 is connected to the housing shell 1. The corner plate part I41 and the corner plate part II42 are respectively set as L-shaped plates. The bolt of the bolt and nut part I43 is a hexagonal bolt and the nut of the bolt and nut part I43 is a hexagonal nut. The step body I44 and the step body II45 are set as transverse sections that are distributed vertically.

[0081] By aligning the connecting parts 4, a support connection point for the housing shell 1 and the lid 2 is formed. The corner plate part II 42 is connected to the housing shell 1, the corner plate part I 41 is connected to the lid 2, the connecting bolt and nut part I 43 is connected between the corner plate part I 41 and the corner plate part II 42, and the step body I 44 and the step body II 45 are used for positioning between the corner plate part I 41 and the corner plate part II 42. Its technical purpose is to serve as one of the components for positioning the lid 2 and the housing shell 1.

[0082] In this embodiment, the socket 5 is configured to include a plate portion Ⅰ51, a recessed strip portion 52, and an upper connecting strip portion 53. The inner side of the lower end face of the horizontal portion of the plate portion Ⅰ51 is connected to the upper end face of the recessed strip portion 52. The lower end of the inner side of the vertical portion of the plate portion Ⅰ51 is connected to the inner side face of the upper connecting strip portion 53. The upper end of the inner side of the vertical portion of the plate portion Ⅰ51 is connected to the cover 2 in contact. The vertical portion of the plate portion Ⅰ51 is connected to the cover 2 by bolts. The upper end face of the upper connecting strip portion 53 is connected to the cover 2. The recessed strip portion 52 is embedded in the support 6. The lower end face of the upper connecting strip portion 53 is connected in contact with the support 6. The plate portion Ⅰ51 is an L-shaped sheet. The recessed strip portion 52 is a rectangular rod. The upper connecting strip portion 53 is a trapezoidal block with a beveled surface on the lower end face. The beveled surface of the upper connecting strip portion 53 is distributed along the lower obliquely open body 24.

[0083] The socket 5 forms a support connection point for the cover 2 and the bracket 6. The plate part I 51 and the upper docking strip part 53 realize the connection with the cover 2, and the recessed strip part 52 and the upper docking strip part 53 realize the connection with the bracket 6. Its technical purpose is to serve as the second component for positioning between the cover 2 and the housing shell 1.

[0084] In this embodiment, the support 6 is configured to include a plate portion II 61, a receiving strip portion 62, a lower connecting strip portion 63, and a sealing strip portion 64. A receiving groove II 66 is provided on the upper end face of the receiving strip portion 62, and a receiving groove I 65 is provided on the upper end face of the lower connecting strip portion 63, with the receiving groove I 65 connected to the sealing strip portion 64. The upper end face of the plate portion II 61 is connected to the inner side of the lower end face of the receiving strip portion 62, and the inner side of the receiving strip portion 62 is connected to the inner side of the lower connecting strip portion 63. The inner side of the plate portion II 61 is connected in contact with the receiving housing 1, and the plate portion II 61 is connected to the receiving housing 1 by bolts. The lower connecting strip... The lower end face of part 63 is configured to connect with the housing shell 1 and the sealing strip part 64 is configured to contact the socket 5. The receiving groove II 66 is configured to connect with the socket 5 and the plate part II 61 is configured to be a rectangular sheet. The receiving strip part 62 is configured to be a rectangular strip and the lower connecting strip part 63 is configured to be a trapezoidal block with a beveled surface on the upper end face. The beveled surface of the lower connecting strip part 63 is configured to extend along the upper inclined open body 13 and the sealing strip part 64 is configured to be a rubber rod. The receiving groove I 65 is configured to be a C-shaped groove and the receiving groove I 65 is configured to be spaced apart along the transverse center line of the lower connecting strip part 63. The receiving groove II 66 is configured to be a C-shaped groove.

[0085] The bracket 6 forms a support connection point for the housing shell 1 and the socket 5. The plate part II 61 and the mating strip part 63 realize the connection with the housing shell 1. The sealing strip part 64 and the receiving groove II 66 realize the connection with the socket 5. The receiving strip part 62 realizes the support carrier treatment for the receiving groove II 66. The receiving groove I 65 realizes the support carrier treatment for the sealing strip part 64. Its technical purpose is to serve as the third component for positioning between the box cover 2 and the housing shell 1.

[0086] In this embodiment, the clamping connection component 7 is configured to include a corner plate portion III 71, a corner plate portion IV 72, and a connecting bolt and nut portion II 73. The bolts of the connecting bolt and nut portion II 73 are respectively configured to be connected through the corner plate portion III 71 and the corner plate portion IV 72. The flange of the bolt of the connecting bolt and nut portion II 73 is configured to be connected in contact with the outer horizontal end face of the corner plate portion III 71. The nut of the connecting bolt and nut portion II 73 is configured to be connected in contact with the outer horizontal end face of the corner plate portion IV 72. The inner vertical end face of the corner plate portion III 71 is configured to be connected to the cover 2. The inner vertical end face of the corner plate portion IV 72 is configured to be connected to the housing shell 1. The corner plate portion III 71 and the corner plate portion IV 72 are respectively configured as L-shaped plates. The bolts of the connecting bolt and nut portion II 73 are hexagonal bolts, and the nuts of the connecting bolt and nut portion II 73 are hexagonal nuts.

[0087] By pressing the connecting component 7, a support connection point for the housing shell 1 and the lid 2 is formed. The corner plate part IV 72 is connected to the housing shell 1, and the corner plate part III 71 is connected to the lid 2. The connecting bolt and nut part II 73 is used to connect the corner plate part III 71 and the corner plate part IV 72. Its technical purpose is to serve as one of the components for connecting the lid 2 and the housing shell 1.

[0088] In this embodiment, the tension lock 8 is configured as a car body latch and the latching part of the tension lock 8 is configured to be connected to the car body cover 2, and the handle part of the tension lock 8 is configured to be connected to the housing shell 1.

[0089] The tension lock 8 forms a support connection point for the housing shell 1 and the lid 2. The tension lock 8 realizes the connection with the housing shell 1 and the lid 2. Its technical purpose is to serve as a component for connecting the lid 2 and the housing shell 1.

[0090] In this embodiment, the self-propelled steering wheel 10 is configured to include a steering wheel portion 101 and an ear seat portion I 102. One of the through holes on the frame of the steering wheel portion 101 is connected to one of the through holes on the ear seat portion I 102 via a pin. The other two through holes on the frame of the steering wheel portion 101 are connected to the other two through holes on the ear seat portion I 102 via bolts and nuts. The inner end face of the ear seat portion I 102 is connected to the housing 1. The steering wheel portion 101 is configured to have a drive motor and a traveling wheel seat with three through holes on the frame. The ear seat portion I 102 is configured to be a double-plate ear seat with three through holes at its outer end.

[0091] The self-propelled steering wheel 10 forms a support connection point for the housing 1. The lug part I 102 realizes the connection with the housing 1. The steering wheel part 101 realizes the power component processing to drive the self-propelled steering wheel 10 to move. Its technical purpose is to be used as one of the components to drive the housing 1 to move.

[0092] In this embodiment, the caster wheel 20 is configured to include a wheel portion 201 and an ear portion II 202. One of the through holes on the wheel frame of the wheel portion 201 is connected to one of the through holes on the ear portion II 202 by a pin. The other two through holes on the wheel frame of the wheel portion 201 are connected to the other two through holes on the ear portion II 202 by bolts and nuts. The inner end face of the ear portion II 202 is connected to the housing shell 1. The wheel portion 201 is configured as a caster wheel with three through holes on the wheel frame, and the ear portion II 202 is configured as a double-plate ear with three through holes at the outer end.

[0093] The caster wheel 20 forms a support connection point for the housing shell 1. The ear seat part II 202 realizes the connection with the housing shell 1. The wheel part 201 realizes the follower component that drives the caster wheel 20 to move. Its technical purpose is to be used as the second component that drives the housing shell 1 to move.

[0094] In this embodiment, the built-in frame 9 is configured to include a lower frame portion 99, an upper frame portion 98, a shock-absorbing portion 97, an outer swing frame portion 96, a lifting lug portion 95, a brake screw portion 94, and a rod portion 93. The lower frame portion 99 is configured to be accommodatingly connected to the upper frame portion 98. One upper side of the lower frame portion 99 is configured to be connected to the upper end of the outer swing frame portion 96, and one end of the rod portion 93 is configured to be connected to one side of the lower frame portion 99. The other end of the rod portion 93 is configured to be connected to the inner side of the outer swing frame portion 96, and the upper side of the lower frame portion 99 is configured to be threadedly connected to the end of the brake screw portion 94. The upper end face edge of the upper frame portion 98 is configured to be connected to the lower inner end face of the lifting lug portion 95, and one end of the shock-absorbing portion 97 is configured to be connected to the upper end face edge of the lower frame portion 99. The other end of the shock-absorbing portion 97 is configured to be connected to the upper end face edge of the lower frame portion 99. The end is configured to connect with the middle part of the peripheral side of the upper frame 98, and the lower end face of the lower frame 99 and the lower end face of the outer swing frame 96 are respectively configured to connect with the housing 1. The flange of the brake screw part 94 is configured to be connected to the housing 1 in contact, and the upper end face of the upper frame 98 is configured to be connected to the antenna plate in a suspended manner. The lower frame 99 is configured as a rectangular cylindrical frame and the upper frame 98 is configured as a three-dimensional frame with an M-shaped cross section. The shock absorber 97 is configured as a wire rope shock absorber and the outer swing frame 96 is configured as a ladder-shaped frame. The lifting lug 95 is configured as a single plate lug seat with a through hole and the brake screw part 94 is configured as a hexagonal bolt. The shock absorber 97 and the brake screw part 94 are respectively configured to be arranged at intervals along the peripheral outline of the lower frame 99 and the lifting lug 95 is configured to be arranged at intervals along the edge of the upper end face of the upper frame 98.

[0095] The built-in frame 9 forms a support connection point for the housing 1. The lower frame 99, the outer swing frame 96 and the brake screw 94 are used to connect with the housing 1. The upper frame 98 is used to support the antenna plate. The shock-absorbing part 97 is used to buffer and support the upper frame 98. The lifting lug 95 is used to connect the lifting hook. Its technical purpose is to serve as a support carrier for the antenna plate.

[0096] In this embodiment, the housing shell 1, the lid 2, the alignment connecting component 4, the socket 5, the support 6, the clamping connecting component 7, and the tension lock 8 are arranged in an upper-sealed manner. The housing shell 1, the lid 2, the alignment connecting component 4, the socket 5, the support 6, the clamping connecting component 7, and the tension lock 8 are arranged with the internal component 3 and the internal frame 9 as internal components. The housing shell 1, the lid 2, the alignment connecting component 4, the socket 5, the support 6, the clamping connecting component 7, and the tension lock 8 are arranged with the self-propelled steering wheel 10 and the universal wheel 20 as lower-moving components. Multiple alignment connecting components 4, multiple clamping connecting components 7, and multiple tension locks 8 are respectively disposed between the lid 2 and the housing shell 1. The lower frame 99, the outer swing frame 96, the ear seat II 202, the ear seat I 102, the corner plate IV 72, the plate II 61, the lower connecting strip 63, and the corner plate II 42 are respectively connected to the box I 11. The brake screw 94 is... The components are configured to connect to the housing section I 11 and the vertical partition section 12. Corner plate section III 71, plate section I 51, upper connecting strip section 53, and corner plate section I 41 are respectively configured to connect to the housing section II 21. The receiving tank II 66 is configured to connect to the submerged strip section 52. The sealing strip section 64 is configured to connect to the upper connecting strip section 53. The area between the right side of the housing section I 11 and the vertical partition section 12 is configured to connect to the temperature control unit 31, the dehumidifier unit 33, the nitrogen cylinder unit 34, and the generator unit 3. 5 is connected to the temperature and humidity control unit 36. The release ports of the indoor units of the lighting unit 32, the temperature control unit 31, and the dehumidifier unit 33 are respectively connected to the vertical partition unit 12. The release ports of the indoor units of the lighting unit 32, the temperature control unit 31, and the dehumidifier unit 33 are respectively distributed corresponding to the upper shelf unit 98. The horizontal partition 15 is connected to the temperature and humidity control unit 36. The lower inclined open body 24 is connected to the upper inclined open body 13.

[0097] The present invention will be further described below with reference to embodiments. These embodiments are intended to illustrate the present invention and not to further limit the present invention.

[0098] A method for using an outdoor packaging and storage box device for antenna panels includes the following steps: When packaging and storing the antenna panels, the top lug 22 and side lug 23 are connected to a lifting hook. Using lifting machinery, box section II 21 is separated from box section I 11, leaving the upper inclined open body 13 in a free state. The lower end of the outer swing frame 96 is connected to the bottom wall of the section located on the left side of box section I 11 using bolts. The brake screw 94 rotates on the upper side of the lower frame 99, causing the flange of the brake screw 94 to act on the side wall of the section on the left side of box section I 11 and the outer side wall of the vertical partition 12, thereby installing the inner frame 9 in the section on the left side of box section I 11. The antenna panel is placed in the section on the left side of box section I 11, and the antenna panel is hung on the upper end face of the upper frame 98, thus installing the antenna panel on the upper frame 98.

[0099] After the antenna plate installation on the upper frame 98 is completed, the box section II 21 is placed onto the box section I 11 using lifting machinery, the recessed strip section 52 is placed into the receiving tank II 66, the upper docking strip section 53 is placed onto the sealing strip section 64, the step body I 44 is brought into contact with the step body II 45, the lower inclined open body 24 is placed onto the upper inclined open body 13, and the bolts of the docking bolt nut section I 43 are installed through the corner plate section I 41 and the corner plate section II 42, so that the nut of the docking bolt nut section I 43 rotates on the bolt of the docking bolt nut section I 43, so that the flange of the bolt of the docking bolt nut section I 43 acts on the outer end face of the vertical part of the corner plate section I 41, so that the docking... The nut of bolt and nut part I 43 acts on the outer end face of the vertical part of corner plate part II 42, putting the tension lock 8 in the connected state. The bolt of the connecting bolt and nut part II 73 is installed through the corner plate part III 71 and corner plate part IV 72, so that the nut of the connecting bolt and nut part II 73 rotates on the bolt of the connecting bolt and nut part II 73. The flange of the bolt of the connecting bolt and nut part II 73 acts on the outer end face of the horizontal part of corner plate part III 71, and the nut of the connecting bolt and nut part II 73 acts on the outer end face of the horizontal part of corner plate part IV 72, thereby installing the cover 2 on the housing shell 1, so that the upper obliquely open body 13 is in a sealed state, realizing the sealed storage of the antenna board.

[0100] The generator unit 35 and the temperature and humidity controller unit 36 ​​are activated. The temperature control unit 31 regulates the temperature of the area located on the left side of the chamber I 11, and the dehumidifier unit 33 regulates the humidity of the area located on the left side of the chamber I 11, ensuring that the area on the left side of the chamber I 11 meets the storage temperature requirements of the antenna panel. The lighting unit 32 illuminates the area on the left side of the chamber I 11, and the nitrogen cylinder unit 34 provides fire protection for the area on the left side of the chamber I 11.

[0101] Using a forklift, the right side of the housing I11 is lifted, causing the frame of the steering wheel 101 to rotate on the pin, bringing the steering wheel 101 into contact with the ground. Bolts and nuts are then used to connect the frame of the steering wheel 101 to the lug I102. The left side of the housing I11 is then lifted, causing the wheel frame of the wheel 201 to rotate on the pin, bringing the wheel 201 into contact with the ground. Bolts and nuts are then used to connect the wheel frame of the wheel 201 to the lug II202. The steering wheel 101 drives the housing 1 into motion. When the housing... After the housing 1 is moved to the target workstation, a forklift is used to lift the right side of housing section I11. Using bolts and nuts, the frame of steering wheel section 101 is separated from lug section I102, causing the frame of steering wheel section 101 to rotate in the opposite direction on the pin, thus separating steering wheel section 101 from the ground. Then, the left side of housing section I11 is lifted, and using bolts and nuts, the wheel frame of wheel section 201 is separated from lug section II202, causing the wheel frame of wheel section 201 to rotate in the opposite direction on the pin, thus separating wheel section 201 from the ground, bringing housing section I11 into contact with the ground.

[0102] When the antenna plate needs to be removed from the upper frame 98, the tension lock 8 is disengaged, the nut of the docking bolt nut II 73 is rotated in the opposite direction on the bolt of the docking bolt nut II 73, and the bolt of the docking bolt nut II 73 is removed from the corner plate III 71 and corner plate IV 72. The nut of the docking bolt nut I 43 is rotated in the opposite direction on the bolt of the docking bolt nut I 43, and the bolt of the docking bolt nut I 43 is removed from the corner plate I 41 and corner plate II 42. Using a lifting machine, the box II 21 is removed from the box I 11, the recessed strip 52 is removed from the receiving tank II 66, the upper docking strip 53 is separated from the sealing strip 64, the corner plate I 41 and corner plate II 42 are separated, the corner plate III 71 and corner plate IV 72 are separated, the upper inclined open body 13 is in a free state, and the antenna plate is removed from the upper end face of the upper frame 98.

[0103] In verifying this invention, the inventors abandoned the existing technical features of using containers with side-opening doors. They first proposed a technical feature of vertically moving the antenna panel in and out of the storage box using a hoisting method. This resulted in the first unexpected technical effect: optimizing the storage route of the antenna panel and preventing damage during handling. The second unexpected technical effect: enabling the use of the angled port as the antenna panel's entry and exit port, expanding the area of ​​the entry and exit port. The third unexpected technical effect: enabling docking between the angled ports, improving sealing performance. The fourth unexpected technical effect: enabling the connection between the container shell 1 and the container cover 2. The bidirectional positioning improves the connection accuracy between the cover 2 and the housing shell 1, resulting in the fifth unexpected technical effect: the peripheral surface connection between the housing shell 1 and the cover 2 is achieved, improving the connection strength between the cover 2 and the housing shell 1, resulting in the sixth unexpected technical effect: the elastic frame support for the antenna plate is achieved, improving the storage safety performance of the antenna plate, resulting in the seventh unexpected technical effect: the self-powered displacement of the housing shell 1 is achieved, improving the movement performance of the antenna plate, resulting in the eighth unexpected technical effect: the independent temperature and humidity control range is set for the antenna plate in the storage state, improving the control accuracy of storage temperature and humidity.

[0104] In a second embodiment of the present invention, the housing shell 1 and the cover 2 are connected to each other by means of lifting the antenna plate into and out of the storage box in the vertical direction.

[0105] In this embodiment, the cover 2 is connected to the housing 1 in such a way that the upper end face has a sloping opening as an antenna board transport channel.

[0106] In this embodiment, a first accessory device is also included and disposed between the housing shell 1 and the lid 2. The first accessory device is configured to include an alignment connection component 4, a socket 5, and a bracket 6.

[0107] In this embodiment, a second accessory device is also included and disposed between the housing shell 1 and the lid 2. The second accessory device is configured to include a clamping connection component 7 and a tension lock 8.

[0108] In this embodiment, a third accessory device is also included and disposed in the housing 1, and the third accessory device is configured as an internal frame 9.

[0109] In this embodiment, a fourth accessory device is also included and disposed in the housing 1. The fourth accessory device is configured as a built-in component 3.

[0110] In this embodiment, a fifth accessory device is also included and disposed on the housing 1. The fifth accessory device is configured to include a self-propelled steering wheel 10 and a swivel wheel 20.

[0111] The second embodiment of the present invention is based on the first embodiment.

[0112] In the second embodiment of the present invention, the housing shell 1 and the lid 2 are configured to have an upper sloping opening as an antenna board transport channel, enabling the antenna board to be moved in and out of the storage box in the vertical direction by means of hoisting.

[0113] The second embodiment of the present invention is based on the first embodiment.

[0114] This invention has the following characteristics:

[0115] 1. Due to the design of accommodating the container shell 1 and the container cover 2, the container shell 1 and the container cover 2 are designed to have an upper sloping opening as an antenna panel handling channel. This allows the antenna panel to be moved in and out of the storage box vertically by hoisting, solving the technical problem of using containers with side opening doors. Therefore, the risk of the antenna panel being damaged during handling in the container is reduced.

[0116] 2. Due to the design of the alignment connection component 4, socket 5 and bracket 6, precise positioning between the box cover 2 and the housing shell 1 is achieved.

[0117] 3. Due to the design of the clamping connection component 7 and the tension lock 8, a fixed connection is achieved between the box cover 2 and the housing shell 1.

[0118] 4. The built-in frame 9 enables the antenna board to be hoisted and stored.

[0119] 5. Due to the design of built-in component 3, the antenna board can be stored at a constant temperature and humidity.

[0120] 6. Due to the design of the self-propelled steering wheel 10 and the universal wheel 20, the movement support of the housing shell 1 is realized.

[0121] 7. Because the design limits the numerical range of the structural shape, the numerical range is a technical feature in the technical solution of this invention, and is not a technical feature obtained by formula calculation or a limited number of experiments. The experiment shows that the technical feature of this numerical range has achieved very good technical effect.

[0122] 8. Due to the design of the technical features of this invention, and the combined effect of the individual and collective technical features, experiments have shown that the performance indicators of this invention are at least 1.7 times that of existing performance indicators, and the invention has been evaluated to have good market value.

[0123] Other technical features that connect the housing shell 1 and the cover 2, which are used to move the antenna plate in and out of the storage box in the vertical direction by means of hoisting, are also embodiments of the present invention. Furthermore, the technical features of the above embodiments can be combined in any way. In order to meet the requirements of the Patent Law, the Patent Implementation Regulations and the Examination Guidelines, all possible combinations of the technical features in the above embodiments will not be described.

[0124] The above embodiments are merely one implementation of the field packaging and storage box device and method for antenna panels provided by the present invention. Other modifications to the solution provided by the present invention, additions or reductions of components or steps, or application of the present invention to other technical fields similar to the present invention, all fall within the protection scope of the present invention.

Claims

1. A field packaging and storage box device for antenna panels, characterized in that: It includes a housing shell (1) with an upper inclined opening (13) and a lid (2) disposed on the housing shell (1) and having a lower inclined opening (24); The housing shell (1) and the lid (2) are connected to each other by lifting the antenna plate into and out of the storage box in the vertical direction; The box cover (2) is connected to the housing shell (1) in a manner that has an opening with a sloping upper surface as an antenna plate transport channel. It also includes a first accessory device disposed between the housing (1) and the lid (2), the first accessory device being configured to include an alignment connection member (4), a socket (5), and a bracket (6). It also includes a second accessory device disposed between the housing (1) and the lid (2), the second accessory device being configured to include a clamping connection member (7) and a tension lock (8). It also includes a third accessory device, which is disposed within the housing (1) and is configured as an internal frame (9). It also includes a fourth accessory device and the fourth accessory device is disposed in the housing (1), the fourth accessory device being configured as an internal component (3); It also includes a fifth accessory device and the fifth accessory device is disposed on the housing (1), the fifth accessory device being configured to include a self-propelled steering wheel (10) and a caster wheel (20); The housing (1) is provided with a lid (2), an internal component (3), a support (6), an internal frame (9) and casters (20). An alignment connection component (4), a pressing connection component (7) and a tension lock (8) are provided between the lid (2) and the housing (1). A socket (5) is provided between the support (6) and the lid (2). A self-propelled steering wheel (10) is provided between the internal component (3) and the housing (1). The alignment connection component (4) is configured to include a corner plate part I (41), a corner plate part II (42), and a butt bolt and nut part I (43). A step body I (44) is provided on the inner vertical end face of the corner plate part I (41), and a step body II (45) is provided on the inner vertical end face of the corner plate part II (42). The step body I (44) is configured to be butt-connected with the step body II (45). The bolts of the butt bolt and nut part I (43) are respectively configured to be through-connected with the corner plate part I (41) and the corner plate part II (42). The flange of the bolt of the butt bolt and nut part I (43) is configured to be connected with the outer vertical end face of the corner plate part I (41). The connection is a contact type. The nut of the butt bolt nut part I (43) is configured to be in contact with the outer end face of the vertical part of the corner plate part II (42), and the lower end face of the horizontal part of the corner plate part I (41) is configured to be connected with the box cover (2). The lower end face of the horizontal part of the corner plate part II (42) is configured to be connected with the housing shell (1). The corner plate part I (41) and the corner plate part II (42) are respectively configured as L-shaped plates. The bolt of the butt bolt nut part I (43) is configured as a hexagonal bolt, and the nut of the butt bolt nut part I (43) is configured as a hexagonal nut. The step body I (44) and the step body II (45) are configured as transverse sections distributed vertically. The socket (5) is configured to include a plate part I (51), a recessed strip part (52), and an upper mating strip part (53). The inner side of the lower end face of the horizontal part of the plate part I (51) is configured to connect with the upper end face of the recessed strip part (52). The lower end of the inner side of the vertical part of the plate part I (51) is configured to connect with the inner side of the upper mating strip part (53). The upper end of the inner side of the vertical part of the plate part I (51) is configured to be connected to the cover (2) in contact. The vertical part of the plate part I (51) is configured to be connected to the cover (2) by bolts. The upper mating strip part... The upper end face of (53) is configured to connect with the box cover (2) and the recessed strip (52) is configured to be embeddedly connected with the support (6). The lower end face of the upper connecting strip (53) is configured to be in contact with the support (6) and the plate part I (51) is configured as an L-shaped sheet. The recessed strip (52) is configured as a rectangular rod and the upper connecting strip (53) is configured as a trapezoidal block with a sloping body on the lower end face. The sloping body of the upper connecting strip (53) is configured to extend along the lower sloping open body (24). The support (6) is configured to include a plate part II (61), a receiving strip part (62), a lower connecting strip part (63), and a sealing strip part (64). A receiving groove II (66) is provided on the upper end face of the receiving strip part (62). A receiving groove I (65) is provided on the upper end face of the lower connecting strip part (63) and the receiving groove I (65) is configured to be connected to the sealing strip part (64). The upper end face of the plate part II (61) is configured to be connected to the inner side of the lower end face of the receiving strip part (62), and the inner side of the receiving strip part (62) is configured to be connected to the inner side of the lower connecting strip part (63). The inner side of the plate part II (61) is configured to be connected to the receiving housing (1) in contact, and the plate part II (61) is configured to be connected to the receiving housing (1) by bolts. The lower connecting strip part... The lower end face of (63) is configured to connect with the housing shell (1) and the sealing strip (64) is configured to connect with the socket (5) in contact. The receiving groove II (66) is configured to connect with the socket (5) and the plate II (61) is configured to be a rectangular sheet. The receiving strip (62) is configured to be a rectangular strip and the lower connecting strip (63) is configured to be a trapezoidal block with a beveled surface on the upper end face. The beveled surface of the lower connecting strip (63) is configured to extend along the upper oblique open body (13) and the sealing strip (64) is configured to be a rubber rod. The receiving groove I (65) is configured to be a C-shaped groove and the receiving groove I (65) is configured to be spaced along the transverse center line of the lower connecting strip (63). The receiving groove II (66) is configured to be a C-shaped groove.

2. The field packaging and storage box device for antenna panels according to claim 1, characterized in that: The housing shell (1) is configured to include a box section I (11), a vertical partition section (12), a window door I (14), a horizontal partition (15), a window door II (16), an opening and closing door (17), a box section (18), and a window door III (19). An upper-mounted, slopingly open body (13) is provided on the left side of the box section I (11). The inner wall of the upper-mounted, slopingly open body (13) is connected to the peripheral side of the vertical partition section (12). The upper part of the inner wall of the vertical partition section (12) and the upper part of the right inner wall of the box section I (11) are respectively connected to the peripheral side of the horizontal partition (15). Window door I (14) Window II (16) and window III (19) are respectively embedded and connected to the front and rear parts of box I (11), and an opening and closing door (17) is provided on the right side of box I (11). The outer wall of the vertical partition (12) is connected to the inner end of the box (18), and the upper inclined open body (13) is connected to the box cover (2). The section between the right side of box I (11) and the vertical partition (12) is connected to the built-in component (3), and window I (14), window II (16) and the opening and closing door (17) are respectively distributed corresponding to the built-in component (3). The horizontal partition (15) is configured to be connected to the built-in component (3) in a bracket-type connection. The upper horizontal part of the upper inclined open body (13) is configured to be connected to the alignment connection component (4), and the lower vertical part of the upper inclined open body (13) is configured to be connected to the support (6). The lower vertical part of the upper inclined open body (13) and the front and rear sides of the upper inclined open body (13) are respectively configured to be connected to the pressing connection component (7) and the tension lock (8). The section on the left side of the box part I (11) is configured to be connected to the built-in frame (9), and the box part (18) and the window door III (19) are respectively configured to be connected to the built-in frame. (9) Correspondingly, box section I (11) is a rectangular box with integrated corner fittings at the lower corner, and the vertical partition (12) and horizontal partition (15) are rectangular sheet-like bodies respectively. Window door I (14) and window door II (16) are ventilation louvers respectively, and the opening and closing door (17) is a double door. Box section (18) is a box with an open opening, and window door III (19) is a fixed observation window. The lower right side of box section I (11) is connected to a self-propelled steering wheel (10), and the lower left side of box section I (11) is connected to a caster wheel (20). The upper inclined open body (13) is set as an inclined port body with the opening extending upward, and the angle α between the inclined surface of the upper inclined open body (13) and the horizontal plane is set to 140-160°. The lid (2) is configured to include a box part II (21), a top lug seat (22), and a side lug seat (23), and a lower inclined opening body (24) is provided at the lower end of the box part II (21). The left side of the upper end face of the box part II (21) is configured to connect with the inner end face of the top lug seat (22), and the right side of the box part II (21) is configured to connect with the inner end face of the side lug seat (23). The lower inclined opening body (24) is configured to be connected to the receiving box shell (1) by a butt joint and located at the lower inclined opening. The upper horizontal part of the mouth body (24) is configured to connect with the alignment connecting part (4), the lower vertical part of the lower inclined open body (24) is configured to connect with the socket (5), and the lower vertical part of the lower inclined open body (24) and the front and rear side parts of the lower inclined open body (24) are respectively configured to connect with the pressing connecting part (7) and the tightening lock (8). The box part II (21) is configured as a right-angled box-shaped body, and the top ear seat part (22) and the side ear seat part (23) are respectively configured as single-plate ear seats with through holes. The lower inclined open body (24) is set as an inclined port body with the opening extending downward and the angle β between the inclined surface of the lower inclined open body (24) and the horizontal plane is set to 20-40°.

3. The field packaging and storage box device for antenna panels according to claim 1, characterized in that: The clamping connection component (7) is configured to include a corner plate part Ⅲ (71), a corner plate part Ⅳ (72), and a mating bolt and nut part Ⅱ (73). The bolts of the mating bolt and nut part Ⅱ (73) are respectively configured to be connected through the corner plate part Ⅲ (71) and the corner plate part Ⅳ (72). The flange of the bolt of the mating bolt and nut part Ⅱ (73) is configured to be connected in contact with the outer end face of the horizontal part of the corner plate part Ⅲ (71). The nut of the mating bolt and nut part Ⅱ (73) is configured to be connected in contact with the outer end face of the horizontal part of the corner plate part Ⅳ (72). The inner end face of the vertical part of the corner plate part Ⅲ (71) is configured to be connected to the cover (2). The inner end face of the vertical part of the corner plate part Ⅳ (72) is configured to be connected to the housing shell (1). The corner plate part Ⅲ (71) and the corner plate part Ⅳ (72) are respectively configured as L-shaped plates. The bolts of the mating bolt and nut part Ⅱ (73) are configured as hexagonal bolts. The nut of the mating bolt and nut part Ⅱ (73) is configured as a hexagonal nut. The tension lock (8) is configured as a car body latch and the latching part of the tension lock (8) is configured to be connected to the car body cover (2), and the handle part of the tension lock (8) is configured to be connected to the housing shell (1). The built-in frame (9) is configured to include a lower frame (99), an upper frame (98), a shock absorber (97), an outer swing frame (96), a lug (95), a brake screw (94), and a rod (93). The lower frame (99) is configured to be accommodatingly connected to the upper frame (98). The upper part of one side of the lower frame (99) is configured to be connected to the upper end of the outer swing frame (96), and one end of the rod (93) is configured to be connected to one of the lower frame (99). One side of the rod (93) is connected to the inner side of the outer swing frame (96), and the upper side of the lower frame (99) is threadedly connected to the end of the brake screw (94). The upper end face edge of the upper frame (98) is connected to the lower inner end face of the lug (95), and one end of the shock absorber (97) is connected to the upper end face edge of the lower frame (99). One end is configured to connect with the middle part of the peripheral side of the upper frame (98), and the lower end face of the lower frame (99) and the lower end face of the outer swing frame (96) are respectively configured to connect with the housing (1). The flange of the brake screw (94) is configured to contact the housing (1), and the upper end face of the upper frame (98) is configured to connect with the antenna plate in a suspended manner. The lower frame (99) is configured as a rectangular cylindrical frame, and the upper frame (98) is configured as having an M-shape. The cross-section of the three-dimensional frame includes a shock-absorbing part (97) configured as a wire rope shock absorber, an outer swing frame part (96) configured as a ladder-shaped frame, a lifting lug part (95) configured as a single-plate lug seat with a through hole, and a brake screw part (94) configured as a hexagonal bolt. The shock-absorbing part (97) and the brake screw part (94) are respectively arranged at intervals along the periphery outline of the lower frame part (99), and the lifting lug part (95) is arranged at intervals along the upper end face edge of the upper frame part (98). The built-in components (3) are configured as a temperature control unit (31), a lighting unit (32), a dehumidifier unit (33), a nitrogen cylinder unit (34), a generator unit (35), and a temperature and humidity controller unit (36). The temperature control unit (31), dehumidifier unit (33), nitrogen cylinder unit (34), generator unit (35), and temperature and humidity controller unit (36) are respectively configured to be recessed into the housing (1). The lighting unit (32) is configured to be hooked into the housing (1), and the output interface of the generator unit (35) is configured to connect to the temperature and humidity controller unit (36). The power interface of the temperature and humidity controller (36) is connected to the control interface of the temperature control unit (31) and the control interface of the dehumidifier unit (33), respectively. The output interface of the generator unit (35) is connected to the power interface of the lighting unit (32) and the power interface of the self-propelled steering wheel (10) via a switch. The temperature control unit (31) is configured as an indoor air conditioner, the lighting unit (32) is configured as an LED lighting lamp, the dehumidifier unit (33) is configured as a duct dehumidifier, and the generator unit (35) is configured as a gasoline generator. The self-propelled steering wheel (10) is configured to include a steering wheel section (101) and a lug section I (102). One of the through holes on the frame of the steering wheel section (101) is connected to one of the through holes on the lug section I (102) by a pin. The other two through holes on the frame of the steering wheel section (101) are connected to the other two through holes on the lug section I (102) by bolts and nuts. The inner end face of the lug section I (102) is connected to the housing (1). The steering wheel section (101) is configured to have a drive motor and a traveling wheel seat with three through holes on the frame. The lug section I (102) is configured to be a double-plate lug seat with three through holes at the outer end. The caster wheel (20) is configured to include a wheel portion (201) and an ear portion II (202), and one of the through holes on the wheel frame of the wheel portion (201) is configured to be connected to one of the through holes on the ear portion II (202) by a pin. The other two through holes on the wheel frame of the wheel portion (201) are configured to be connected to the other two through holes on the ear portion II (202) by bolts and nuts. The inner end face of the ear portion II (202) is configured to be connected to the housing shell (1). The wheel portion (201) is configured as a caster wheel with three through holes on the wheel frame, and the ear portion II (202) is configured as a double-plate ear with three through holes at the outer end.

4. The field packaging and storage box device for antenna panels according to any one of claims 1 to 3, characterized in that: The enclosure (1) and lid (2), alignment connecting parts (4), socket (5), bracket (6), clamping connecting parts (7), and tension lock (8) are arranged in a top-sealed manner. The enclosure (1), lid (2), alignment connecting parts (4), socket (5), bracket (6), clamping connecting parts (7), and tension lock (8) are arranged in a built-in manner with the internal parts (3) and internal frame (9). The enclosure (1), lid (2), alignment connecting parts (4), socket (5), bracket (6), clamping connecting parts (7), and tension lock (8) are arranged in a bottom-moving manner with the self-propelled steering wheel (10) and caster wheel (20). Multiple alignment connecting parts (4), multiple clamping connecting parts (7), and multiple tension locks (8) are respectively disposed between the box cover (2) and the receiving box shell (1). The lower frame part (99), the outer swing frame part (96), the ear seat part II (202), the ear seat part I (102), the corner plate part IV (72), the plate part II (61), the lower connecting strip part (63), and the corner plate part II (42) are respectively configured to connect with the box part I (11). The brake screw part (94) is respectively configured to connect with the box part I (11) and the vertical partition part (12). The corner plate part III (71), the plate part I (51), the upper connecting strip part (53), and the corner plate part I (41) are respectively configured to connect with the box part II (21). The receiving groove II (66) is configured to connect with the sinking strip part (52). The sealing strip part (64) is configured to connect with the box part II (21). The upper connecting strip (53) is connected, and the section between the right side of the box section I (11) and the vertical partition section (12) is set to connect with the temperature control section (31), the dehumidifier section (33), the nitrogen cylinder section (34), the generator section (35) and the temperature and humidity controller section (36). The lighting section (32), the indoor unit of the temperature control section (31) and the release port of the dehumidifier section (33) are respectively set to connect with the vertical partition section (12). The lighting section (32), the indoor unit of the temperature control section (31) and the release port of the dehumidifier section (33) are respectively set to be distributed corresponding to the upper shelf section (98). The horizontal partition (15) is set to connect with the temperature and humidity controller section (36). The lower inclined open body (24) is set to connect with the upper inclined open body (13).

5. A method of using the field packaging and storage box device for antenna panels according to any one of claims 1-4, characterized in that the steps are: The enclosure (1) and the cover (2) provide a sloping opening on the upper end as a channel for transporting the antenna board, enabling the antenna board to be moved in and out of the storage box in the vertical direction by means of hoisting.

6. The method of using the field packaging and storage box device for antenna panels according to claim 5, characterized in that the steps are: When packaging and storing the antenna panel, connect the top lug (22) and side lug (23) to the lifting hook. Use lifting machinery to separate box II (21) from box I (11), so that the upper inclined open body (13) is in a free state. Connect the lower end of the outer swing frame (96) to the bottom wall of the section located on the left side of box I (11) with bolts. Rotate the brake screw (94) on the upper side of the lower frame (99), so that the flange of the brake screw (94) acts on the side wall of the section located on the left side of box I (11) and the outer side wall of the vertical partition (12), respectively. Thus, install the internal frame (9) in the section located on the left side of box I (11) and place the antenna panel on the left side of box I (11). In the interval, the antenna plate is hung on the upper end face of the upper frame (98), thereby installing the antenna plate on the upper frame (98). After the antenna plate installation on the upper frame (98) is completed, the box part II (21) is placed on the box part I (11) by lifting machinery, the sinking strip part (52) is placed in the receiving tank II (66), the upper docking strip part (53) is placed on the sealing strip part (64), so that the step body I (44) contacts the step body II (45), so that the lower inclined open body (24) is placed on the upper inclined open body (13), and the bolts of the docking bolt nut part I (43) are installed through the corner plate part I (41) and the corner plate part II (42), so that the nut of the docking bolt nut part I (43) is in the docking bolt nut part I (43) Rotate the bolt on the bolt, so that the flange of the bolt of the connecting bolt nut part I (43) acts on the outer end face of the vertical part of the corner plate part I (41), so that the nut of the connecting bolt nut part I (43) acts on the outer end face of the vertical part of the corner plate part II (42), so that the tension lock (8) is in the connected state, and install the bolt of the connecting bolt nut part II (73) through the corner plate part III (71) and the corner plate part IV (72), so that the nut of the connecting bolt nut part II (73) rotates on the bolt of the connecting bolt nut part II (73), so that the flange of the bolt of the connecting bolt nut part II (73) acts on the outer end face of the horizontal part of the corner plate part III (71), so that the nut of the connecting bolt nut part II (73) acts on the outer end face of the horizontal part of the corner plate part IV (72). On the face, thus installing the box cover (2) on the housing shell (1), so that the upper inclined open body (13) is in a sealed state, realizing the sealed storage of the antenna plate, so that the generator part (35) is in working state, the temperature and humidity control part (36) is in working state, the temperature control part (31) adjusts the temperature of the section located on the left side of the box part I (11), the dehumidifier part (33) adjusts the humidity of the section located on the left side of the box part I (11), so that the section located on the left side of the box part I (11) meets the storage temperature requirements of the antenna plate, the lighting part (32) illuminates the section located on the left side of the box part I (11), the nitrogen cylinder part (34) fires the section located on the left side of the box part I (11), and through the forklift,Lift the right side of box section I (11), rotate the frame of steering wheel section (101) on the pin, and bring steering wheel section (101) into contact with the ground. Connect the frame of steering wheel section (101) to ear section I (102) with bolts and nuts. Lift the left side of box section I (11), rotate the wheel frame of wheel section (201) on the pin, and bring wheel section (201) into contact with the ground. Connect the wheel frame of wheel section (201) to ear section II (202) with bolts and nuts. Drive the housing box through steering wheel section (101). (1) In motion, after the housing (1) is moved to the target workstation, the right side of the housing I (11) is lifted by a forklift. The frame of the steering wheel (101) is separated from the lug I (102) by bolts and nuts, so that the frame of the steering wheel (101) rotates in the opposite direction on the pin, so that the steering wheel (101) is separated from the ground, and the left side of the housing I (11) is lifted. The wheel frame of the wheel (201) is separated from the lug II (202) by bolts and nuts, so that the wheel frame of the wheel (201) rotates in the opposite direction on the pin. Move the wheel (201) to separate it from the ground and bring the box I (11) into contact with the ground. When it is necessary to remove the antenna plate from the upper frame (98), release the tension lock (8) to the open state, rotate the nut of the docking bolt nut II (73) in the opposite direction on the bolt of the docking bolt nut II (73), remove the bolt of the docking bolt nut II (73) from the corner plate III (71) and corner plate IV (72), rotate the nut of the docking bolt nut I (43) in the opposite direction on the bolt of the docking bolt nut I (43), and remove the docking bolt. The bolts of the bolt nut part I (43) are removed from the corner plate part I (41) and corner plate part II (42). Using a lifting machine, the box part II (21) is removed from the box part I (11). The recessed strip part (52) is removed from the receiving tank II (66). The upper connecting strip part (53) is separated from the sealing strip part (64). Corner plate part I (41) and corner plate part II (42) are separated. Corner plate part III (71) and corner plate part IV (72) are separated. The upper inclined open body (13) is in a free state. The antenna plate is removed from the upper end face of the upper frame part (98).