Transport case and display device

By designing a transport box with cushioning and corner protection, the problem of high-end displays being easily damaged during transportation was solved, achieving efficient protection and convenient transportation, and improving the display effect.

CN223929665UActive Publication Date: 2026-02-24BEIJING BOE DISPLAY TECH CO LTD +1
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Patent Information

Application Number
CN202520163360.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2026-02-24
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

In the existing technology, high-end displays are easily damaged by collisions with foreign objects during transportation, and the packaging methods of pearl cotton and cardboard boxes cannot reflect the high-end characteristics of the product, reducing the reliability of transportation.

Method used

A transport box was designed, comprising a first box body and a second box body, with internal cushioning components and receiving slots, connected by hinges and latches. EVA foam is used as the cushioning material, and corner protectors and edge protection structures are provided. It is equipped with handles and wheels to achieve effective protection and convenient transportation of the display screen.

Benefits of technology

It improves the reliability of display screen transportation, ensures the integrity of the display screen, simplifies the connection cable setup, enables the reuse of transport boxes, reduces resource waste, and enhances the display effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a transport case and a display device, and relates to the technical field of display. The transport case comprises a first case body part and a second case body part, a first buffer part is arranged in the first case body part, a first containing groove is formed in the first buffer part, and the first containing groove is used for containing a display screen; the second box body part and the first box body part are arranged in an openable and closable mode, a second buffering piece is arranged in the second box body part, and a second containing groove is formed in the second buffering piece. In the embodiment of the invention, the transportation box comprising the first box body part and the second box body part is arranged, and the display screen can be accommodated through the first accommodating groove in the first buffer piece, so that the packaging specification of the display screen can be improved, and meanwhile, the display screen is effectively protected, namely, the transportation reliability of the display screen is ensured; and meanwhile, the transportation box can be reused, and waste of resources is reduced.
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Description

Technical Field

[0001] This disclosure relates to the field of display technology, and more specifically, to a transport box and a display device. Background Technology

[0002] In the sales of high-end products, to allow customers to better understand the product, corresponding samples need to be transported to their locations for a more intuitive demonstration. Related techniques often use pearl cotton and cardboard boxes to package the samples, ensuring effective protection and ease of transport. However, this packaging method fails to effectively reflect the high-end nature of the product and is susceptible to damage from impacts, reducing the reliability of product transportation.

[0003] It should be noted that the information disclosed in the background section above is only used to enhance the understanding of the background of this disclosure, and therefore may include information that does not constitute prior art known to those skilled in the art. Utility Model Content

[0004] The purpose of this disclosure is to provide a transport box and display device that can improve the reliability of protection for the display screen while ensuring reliable transport of the display screen.

[0005] According to one aspect of this disclosure, a transport box is provided for transporting a display screen, the transport box comprising:

[0006] A first housing portion, wherein a first buffer member is provided inside the first housing portion, and a first receiving groove is formed on the first buffer member, the first receiving groove being used to receive the display screen;

[0007] The second housing is closable from the first housing, and a second buffer member is provided inside the second housing, with a second receiving groove formed on the second buffer member;

[0008] In the closed state of the transport box, the opening of the first receiving slot faces the second box body, and the opening of the second receiving slot faces the first box body.

[0009] According to any of the claims of this disclosure, the first box body portion is hinged to the second box body portion, and the first box body portion has a hinged sidewall connected to the second box body portion;

[0010] The first receiving groove has a first clearance opening in its groove wall, which is located on the groove wall of the first receiving groove that is attached to the hinged sidewall.

[0011] According to any of the transport boxes described in this disclosure, the first buffer member forms the bottom of the first receiving groove.

[0012] According to any of the transport boxes described in this disclosure, the material of the first cushioning element is EVA foam.

[0013] According to any of the claims of this disclosure, the first box body has a plurality of fasteners fixedly connected to the first box body, and the fasteners are used to fix the display screen.

[0014] At least a portion of each of the fasteners is located within the first receiving groove.

[0015] According to any of the transport boxes described in this disclosure, the edges of the opening of the first receiving slot are chamfered.

[0016] According to any of the claims of this disclosure, in the closed state of the transport box, the surface of the first buffer member facing the second box body is designed with a slope at the edge of the groove of the first receiving groove, and the slope angle opening faces away from the first receiving groove.

[0017] According to any of the claims of this disclosure, the transport container further includes a barrier pad for sealing the second receiving slot;

[0018] The second receiving groove has a support step in its wall, and the barrier pad is supported on the tread of the support step.

[0019] According to any of the claims of this disclosure, the surface of the barrier pad facing away from the bottom of the second receiving groove has a protrusion toward the first box body when the transport box is closed.

[0020] According to any of the claims of this disclosure, the height of the protrusion protruding from the second buffer member is greater than or equal to 3 mm;

[0021] The barrier pad is made of EVA foam.

[0022] According to any of the claims of this disclosure, in the closed state of the transport box, the orthographic projection of the protrusion on the first buffer member is located at the bottom of the first receiving groove, and the distance between the protrusion and the groove wall of the first receiving groove is greater than or equal to 3 mm.

[0023] According to any of the transport boxes described in this disclosure, the second receiving slot is divided into a wiring slot and a plurality of limiting slots, the wiring slot communicating with at least a portion of the limiting slots.

[0024] According to any of the transport boxes described in this disclosure, the wall of the second receiving groove has a second clearance opening, which communicates with the wiring groove;

[0025] The first receiving groove has a first clearance opening in its groove wall. When the transport box is closed, the first clearance opening and the second clearance opening have an overlapping area in the thickness direction of the transport box.

[0026] According to any of the transport boxes described in this disclosure, both the first box body and the second box body have apex corners, and each of the plurality of apex corners is provided with a corner protection structure;

[0027] Both the first box section and the second box section also have edge sections, and the multiple edge sections are provided with edge-sealing structures.

[0028] According to any of the claims of this disclosure, the transport container further includes a handle, a pull rod, and a plurality of wheels;

[0029] The handle and the pull rod are respectively provided on different outer side walls of the second box section, and the plurality of rollers are provided at the bottom of the first box section and the second box section.

[0030] According to one aspect of this disclosure, a display device is provided, including a display screen and a transport box as described in the above aspect, wherein the display screen is housed in a first receiving slot.

[0031] According to any of the display devices described in this disclosure, the second receiving groove accommodates a first insertion hole and a receiver, and the outer wall of the second housing portion is formed with a recess, wherein the recess is provided with a second insertion hole;

[0032] The first connector and the receiver are connected to the display screen, and both the first connector and the receiver are used to connect to external devices through the second connector.

[0033] According to any of the display devices described in this disclosure, the display screen includes a display housing and a display module;

[0034] The display cabinet is fixedly connected to the fixing member inside the first cabinet, and the display module is spliced ​​and limited on the display cabinet.

[0035] According to any of the display devices described in this disclosure, the display module is a Mini-LED direct-view module or a Micro-LED direct-view module.

[0036] According to any of the display devices described in this disclosure, the distance between the display housing and the wall of the first receiving slot is greater than or equal to 1 mm and less than or equal to 5 mm.

[0037] According to any of the display devices described in this disclosure, the display screen protrudes beyond the edge of the opening of the first receiving groove.

[0038] According to any of the display devices described in this disclosure, the transport case includes a barrier pad with raised protrusions;

[0039] When the transport box is closed, the protrusion abuts against the display screen, and the distance between the orthographic projection of the protrusion on the display screen and the edge of the display screen is greater than or equal to 3 mm.

[0040] The embodiments disclosed herein include at least the following technical effects:

[0041] In this embodiment, a transport box including a first box section and a second box section is provided, and the display screen can be accommodated through the first receiving groove on the first buffer member, thereby improving the packaging specifications of the display screen and ensuring effective protection of the display screen, thus ensuring the reliability of the display screen transportation. At the same time, the transport box can be reused, reducing resource waste. In addition, the first clearance opening provided based on the groove wall of the first receiving groove on the first buffer member facilitates the simplification of the display screen connection cable arrangement, thereby simplifying the display screen lighting process.

[0042] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and are not intended to limit this disclosure. Attached Figure Description

[0043] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this disclosure and, together with the description, serve to explain the principles of this disclosure. It is obvious that the drawings described below are merely some embodiments of this disclosure, and those skilled in the art can obtain other drawings based on these drawings without any inventive effort.

[0044] Figure 1 This is a structural schematic diagram of a transport box from the axial side, provided for an embodiment of this disclosure.

[0045] Figure 2 This is a structural schematic diagram of a transport box from the axle rear view, provided for an embodiment of this disclosure.

[0046] Figure 3 This is a structural schematic diagram of another transport box from the axial side, provided for an embodiment of this disclosure.

[0047] Figure 4 This is a partially enlarged structural diagram of a display screen confined within a first receiving groove, as provided in an embodiment of this disclosure.

[0048] Figure 5 This is a cross-sectional schematic diagram of a display screen being confined within a first receiving groove, as provided in an embodiment of this disclosure.

[0049] Figure 6A cross-sectional view showing another display screen confined within a first receiving groove, as provided in an embodiment of this disclosure.

[0050] Figure 7 This is a schematic diagram of the structure of a display device from the axial side front view, provided for an embodiment of this disclosure.

[0051] Figure 8 This is a structural schematic diagram of the axle-side front view of another transport box provided in this disclosure.

[0052] Figure label:

[0053] 10. Display device;

[0054] 1. Shipping box; 2. Display screen;

[0055] 11. First box section; 12. Second box section; 13. Barrier pad; 14. Corner protection structure; 15. Edge binding structure; 16. Handle; 17. Pull rod; 18. Roller;

[0056] 111. First buffer component; 112. First receiving groove; 113. First clearance opening; 114. Fixing component;

[0057] 121. Second buffer; 122. Second receiving groove; 123. Limiting groove; 124. Wiring groove; 125. Second clearance opening; 126. First insertion hole; 127. Receiver; 128. Remote control; 129. Power module;

[0058] 1201, Recessed portion; 1202, Second insertion hole;

[0059] 131. Protrusion. Detailed Implementation

[0060] Exemplary embodiments will now be described more fully with reference to the accompanying drawings. However, these exemplary embodiments can be implemented in many forms and should not be construed as limited to the embodiments set forth herein; rather, they are provided so that this disclosure will be thorough and complete, and will fully convey the concept of the exemplary embodiments to those skilled in the art. The same reference numerals in the drawings denote the same or similar structures, and therefore detailed descriptions of them will be omitted. Furthermore, the drawings are merely illustrative of this disclosure and are not necessarily drawn to scale.

[0061] Although relative terms such as "up" and "down" are used in this specification to describe the relative relationship of one component of an icon to another, these terms are used only for convenience, such as according to the orientation of the examples shown in the accompanying drawings. It is understood that if the device of the icon is flipped upside down, the component described as "up" will become the component described as "down." When a structure is "up" of another structure, it may mean that the structure is integrally formed on the other structure, or that the structure is "directly" mounted on the other structure, or that the structure is "indirectly" mounted on the other structure through another structure.

[0062] The terms “a,” “one,” “the,” “the,” and “at least one” are used to indicate the existence of one or more elements / components / etc.; the terms “including” and “having” are used to indicate an open-ended inclusion and to mean that there may be other elements / components / etc. in addition to the listed elements / components / etc.; the terms “second,” “first,” and “third,” etc., are used only as markers and are not a limitation on the number of objects.

[0063] Figure 1 A schematic diagram of the axonometric front view of a transport box 1 provided by an embodiment of this disclosure is illustrated. The transport box 1 is used to transport a display screen 2, such as... Figure 1 As shown, the transport box 1 includes: a first box body 11 and a second box body 12. A first buffer member 111 is provided inside the first box body 11, and a first receiving groove 112 is formed on the first buffer member 111 for accommodating the display screen 2. The second box body 12 is closable from the first box body 11. A second buffer member 121 is provided inside the second box body 12, and a second receiving groove 122 is formed on the second buffer member 121. When the transport box 1 is closed, the opening of the first receiving groove 112 faces the second box body 12, and the opening of the second receiving groove 122 faces the first box body 11.

[0064] In this embodiment, a transport box 1 is provided, which includes a first box body 11 and a second box body 12. The display screen 2 can be accommodated through the first receiving slot 112 on the first buffer member 111, thereby improving the packaging specifications of the display screen 2 and ensuring effective protection of the display screen 2. This ensures the reliability of the transport of the display screen 2 and also enables the transport box 1 to be reused, reducing the waste of resources.

[0065] In this design, both the first housing portion 11 and the second housing portion 12 are housing structures with openings on one side that face each other when closed. When closed, the opening sides of the first housing portion 11 and the second housing portion 12 are directly opposite each other, and the opening edge of the first housing portion 11 aligns with the opening edge of the second housing portion 12 to achieve encapsulation and protection of the display screen 2. Furthermore, the first housing portion 11 and the second housing portion 12 can be connected in an opening-closing manner via a latch, facilitating complete separation of the first housing portion 11 and the second housing portion 12 by opening the latch. Alternatively, the first housing portion 11 and the second housing portion 12 can be connected in an opening-closing manner via a hinge, while simultaneously being locked and fixed by a latch, allowing the first housing portion 11 to be flipped open relative to the second housing portion 12. The opening-closing connection method of the first housing portion 11 and the second housing portion 12 can be configured according to specific needs, and this embodiment does not limit this.

[0066] The first buffer 111 and the second buffer 121 can be made of elastic materials to ensure elastic cushioning within the first receiving groove 112 of the display screen 2, and elastic cushioning within the second receiving groove 122 for the corresponding structural components of the display screen 2 (such as power cables, data cables, remote controls, etc.). For example, the materials of the first buffer 111 and the second buffer 121 can be EPE foam (such as pearl cotton), EVA foam (such as plastic cotton), etc. Furthermore, the structures of the first receiving groove 112 and the second receiving groove 122 formed on the first buffer 111 and the second buffer 121 can be the same or different. Taking the first receiving groove 112 as an example, the first receiving groove 112 is a groove structure with one side open formed on the first buffer member 111, and the open side faces the second box part 12 when the transport box is closed. At this time, the first buffer member 111 covers the bottom of the box of the first box part 11, that is, the first buffer member 111 forms the bottom of the groove of the first receiving groove 112; or, the first receiving groove 112 is a groove structure with both sides open on opposite sides formed on the first buffer member 111, and one open side faces the second box part 12 when the transport box is closed, and the other open side faces the bottom of the box of the first box part 11, that is, the bottom of the box of the first box part 11 is exposed.

[0067] In some embodiments, taking the hinged connection between the first housing portion 11 and the second housing portion 12 as an example, the first housing portion 11 has a hinged sidewall connected to the second housing portion 12; such as Figure 1 As shown, the first receiving groove 112 has a first clearance opening 113 on its groove wall, which is located on the groove wall of the first receiving groove 112 and fits against the hinged side wall.

[0068] Thus, when the display screen 2 in the first receiving slot 112 is lit, the connecting wires of the display screen 2 can be directly connected to the wiring port of the display screen 2 along the first clearance opening 113 and extended into the second receiving slot 122 of the second buffer member 121 on the second housing part 12, thereby ensuring the neatness of the connecting wires when the display screen 2 is lit.

[0069] In some implementations, such as Figure 2 As shown, both the first box section 11 and the second box section 12 have top corners (not shown in the figure), and each of the multiple top corners is provided with a corner protection structure 14.

[0070] Thus, by setting the corner protection structure 14 on the top corner, the structural strength of the upper corner of the transport box 1 is enhanced, thereby preventing the corner of the transport box 1 from deforming when it is bumped.

[0071] In conjunction with the above description, the top corners of the first box part 11 and the second box part 12 are the four corners on the upper back of the first box part 11 and the second box part 12 on the side away from the opening.

[0072] In some implementations, such as Figure 2 As shown, both the first box portion 11 and the second box portion 12 have edge portions (not shown in the figure), and at least some of the edge portions are provided with a binding structure 15.

[0073] Thus, the edge-wrapping structure 15 provided on the upper edges of the first box section 11 and the second box section 12 can improve the structural strength of the upper edges of the transport box 1, thereby avoiding deformation of the transport box 1 when it is squeezed.

[0074] Among them, the edge-wrapping structure 15 is a strip structure with an L-shaped cross section, and the edge-wrapping structure 15 can be directly wrapped around the edges of the first box part 11 and the second box part 12.

[0075] Optionally, the edge-wrapping structure 15 on the first box portion 11 and the second box portion 12, which is parallel to the thickness direction of the transport box 1 (i.e., the distribution direction when the first box portion 11 and the second box portion 12 are closed), can be a telescopic structure. This allows the first box portion 11 and the second box portion 12 to overlap after being stretched, thereby limiting the height and width of the transport box 1 and preventing misalignment of the first box portion 11 and the second box portion 12 in the height and width directions of the transport box 1.

[0076] It should be noted that, in this embodiment, corner protection structures 14 can be provided at the top corners of the first box portion 11 and the second box portion 12, while edge-wrapping structures 15 can be provided at the edges of the first box portion 11 and the second box portion 12. When both corner protection structures 14 and edge-wrapping structures 15 are provided, the end of the edge-wrapping structure 15 can abut against the corner protection structure 14 or be set as an integral structure to achieve full-area protection of the transport box 1, thereby effectively ensuring the structural strength of the transport box 1.

[0077] In some implementations, such as Figure 1 As shown, the transport box 1 also includes a handle 16, which is disposed on the outer side wall of the second box body 12. Thus, the handle 16 facilitates the manual handling of the transport box 1, reducing the probability of the transport box 1 being bumped or knocked.

[0078] The handle 16 can be located not only on the outer wall of the second box section 12, but also on the outer wall of the first box section 11. The specific location can be determined based on the thickness of the first box section 11 and the second box section 12 to ensure stability when carrying the transport box 1. Furthermore, taking the handle 16 located on the outer wall of the second box section 12 as an example, the handle 16 can be located on the outer wall of the second box section 12 that is parallel to both the thickness and height directions.

[0079] Of course, the handle 16 can be provided not only on the outer side wall of the second box part 12, but also on the top of the second box part 12, or both the outer side wall and the top of the second box part 12 can be provided with handles 16. This embodiment does not limit this. The top of the second box part 12 is the top wall of the second box part 12 when the transport box 1 is erected, which is parallel to the width and thickness directions and faces away from the bearing surface (such as the ground).

[0080] In some implementations, such as Figure 1 or Figure 2 As shown, the transport box 1 also includes a pull rod 17 and multiple rollers 18. The pull rod 17 is disposed on the outer side wall of the second box body 12, and the multiple rollers 18 are disposed at the bottom of the first box body 11 and the second box body 12. Thus, the arrangement of the pull rod 17 and rollers 18 makes the transport of the transport box 1 more convenient; that is, the user can pull the pull rod 17 and cause the rollers 18 to roll on the ground, thereby facilitating the transport of the transport box 1.

[0081] The pull rod 17 can be installed not only on the outer wall of the second housing portion 12, but also on the outer wall of the first housing portion 11. Specifically, the thickness of the first housing portion 11 and the second housing portion 12 can be adjusted to ensure stability when transporting the transport box 1 using the pull rod 17. Furthermore, taking the pull rod 17 installed on the outer wall of the second housing portion 12 as an example, the pull rod 17 can be installed on the outer wall of the second housing portion 12 that is parallel to both the width and height directions.

[0082] The bottom of the first box section 11 and the second box section 12 are the bottom walls of the first box section 11 and the second box section 12 when the transport box 1 is erected. These walls are parallel to the width and thickness directions and face the bearing surface (such as the ground). Multiple rollers 18 can be distributed in an array at the bottom of the first box section 11 and the second box section 12 to ensure the stability of the transport box 1 when it is pushed or pulled.

[0083] In some embodiments, the outer side wall of the second housing portion 12 is provided with a support column to avoid direct contact between the outer side wall of the second housing portion 12 and the bearing surface.

[0084] In this embodiment, support columns located at the four corners may be provided on the outer wall of the second housing portion 12. Alternatively, the outer wall of the second housing portion 12 may be the outer wall on which the pull rod 17 is provided, or it may be the junction side wall connecting the first housing portion 11 and the second housing portion 12, etc. This embodiment does not limit the specific type of support column.

[0085] In some embodiments, the transport box 1 also includes a protective sleeve, which is placed over the first box portion 11 and the second box portion 12 when the first box portion 11 and the second box portion 12 are closed.

[0086] In this way, the protective sleeve can protect the outer surfaces of the first box section 11 and the second box section 12, preventing damage caused by bumps or knocks to the outer surfaces of the first box section 11 and the second box section 12.

[0087] In this embodiment, the display screen 2 can be directly confined within the first receiving groove 112 of the first buffer member 111 on the first housing portion 11. For example, the confining of the display screen 2 within the first receiving groove 112 can be achieved by interference compression between the display screen 2 and the groove wall of the first receiving groove 112. Of course, it can also be as follows: Figure 3 As shown, the first housing portion 11 has a plurality of fasteners 114 fixedly connected to the first housing portion 11. The fasteners 114 are used to fix the display screen, and at least a portion of each fastener 114 is located in the first receiving groove 112.

[0088] In this way, the part of the fastener 114 located in the first receiving groove 112 can be fixedly connected to the display screen 2, thereby limiting the display screen 2 in the first receiving groove 112 and ensuring the stability of the limiting of the display screen 2.

[0089] The fastener 114 can be a fixing screw, a fixing buckle, etc. The fastener 114 can be set at the bottom of the box body 11 or at the side of the box body 11. When the fastener 114 is set at the bottom of the box body, as described above, when the first receiving groove 112 is a groove structure with an opening on one side, at least a portion of the fastener 114 passes through the first buffer member 111 and is exposed in the first receiving groove 112; when the first receiving groove 112 is a groove structure with openings on both sides, the fastener 114 can be directly exposed in the first receiving groove 112.

[0090] For example, such as Figure 3 As shown, the bottom of the first receiving groove 112 is rectangular, and the bottom of the first box body 11 has four fasteners 114. The four fasteners 114 are respectively fixedly connected to the four corners of the bottom of the box body, and the parts of the four fasteners 114 are exposed at the four corners of the bottom of the first receiving groove 112.

[0091] The display screen 2 can be a corresponding cuboid structure. In this case, the display screen 2 can be fixed at the four corners of the display screen 2 by the four fixing members 114 at the bottom of the first receiving groove 112 to ensure the stability of the display screen 2 in the first receiving groove 112.

[0092] It should be noted that, as Figure 4 As shown, when the display screen 2 is confined within the first receiving groove 112 by the fastener 114, a small gap can exist between the display screen 2 and the groove wall of the first receiving groove 112. This prevents the display screen 2 from being too tightly confined within the first receiving groove 112. Simultaneously, when the first housing portion 11 is subjected to external impact, the gap between the groove wall and the display screen 2 can form a buffer space, thereby reducing or even preventing the impact on the display screen 2. For example, the distance between the display screen 2 and the groove wall of the first receiving groove 112 is greater than or equal to 1 mm and less than or equal to 5 mm. For instance, the distance between the display screen 2 and the groove wall of the first receiving groove 112 in the width and height directions of the transport box 1 may be 1 mm, 2 mm, 3 mm, 4 mm, or 5 mm, respectively.

[0093] In some implementations, such as Figure 5 As shown, the groove edge of the first receiving groove 112 is chamfered. For example, it can be a rounded chamfer or a straight chamfer, etc.

[0094] Thus, for the display screen 2 that is confined within the first receiving groove 112, the chamfered edge design of the groove opening can prevent the edge of the display screen 2 from rubbing against the edge of the groove opening of the first receiving groove 112, thereby ensuring the integrity of the display screen 2 and improving the reliability of transporting the display screen 2.

[0095] In other implementations, such as Figure 6 As shown, the surface of the first buffer 111 facing the second box part 12 when the transport box 1 is closed is designed with a slope at the edge of the groove of the first receiving groove 112, and the slope angle θ of the slope opens away from the first receiving groove 112.

[0096] In this way, the height of the groove edge of the first receiving groove 112 is less than the depth of the first receiving groove 112. Therefore, when the display screen 2 is assembled in the first receiving groove 112, it is easy to ensure that the edge of the display screen 2 protrudes from the groove edge of the first receiving groove 112, thereby avoiding the edge of the display screen 2 from rubbing against the groove edge, thus ensuring the integrity of the display screen 2 and improving the reliability of transporting the display screen 2.

[0097] In some other embodiments, the depth of the first receiving groove 112 on the first buffer 111 is less than the thickness of the display screen 2 (i.e., the dimension in the thickness direction of the transport box 1).

[0098] In this way, the edge of the display screen 2 protrudes beyond the groove edge of the first receiving groove 112, thereby avoiding the edge of the display screen 2 from rubbing against the groove edge, thus ensuring the integrity of the display screen 2 and improving the reliability of transporting the display screen 2.

[0099] In some implementations, such as Figure 2 or Figure 3 As shown, the transport box 1 also includes a barrier pad 13, which is used to seal the second receiving slot 122.

[0100] In this way, the second receiving groove 122 is separated from the first receiving groove 112, avoiding contact between the structural components contained in the second receiving groove 122 and the display screen 2, thus protecting the surface of the display screen 2 and further improving the reliability of the transport of the display screen 2.

[0101] The material of the barrier pad 13 can refer to the materials of the second buffer 121 and the first buffer 111 mentioned above. For example, the material of the barrier pad 13 is EPE foam (such as pearl cotton) or EVA foam (such as plastic cotton).

[0102] The barrier pad 13 can be directly supported on the surface of the second buffer 121 facing the first box part 11 when the transport box 1 is closed, thereby sealing the second receiving groove 122; or the groove wall of the second receiving groove 122 can have a supporting step, and the barrier pad 13 can be supported on the tread of the supporting step.

[0103] Thus, by setting up the support steps, not only is the barrier pad 13 stably positioned within the transport box 1, but interference between the barrier pad 13 and the first buffer member 111 is also avoided when the first box part 11 and the second box part 12 are closed.

[0104] In some implementations, such as Figure 2 or Figure 3 As shown, the surface of the barrier pad 13 facing away from the bottom of the second receiving groove 122 has a protrusion 131 facing the first box body 11 when the transport box 1 is closed.

[0105] Among them, the protrusion 131 protrudes from the surface of the second buffer 121 facing the first box body 11 when the transport box 1 is closed.

[0106] Thus, by setting the protrusion 131 on the barrier pad 13, the contact between the display screen 2 housed in the first receiving groove 112 and the second buffer 121 can be avoided, thereby avoiding friction between the edge of the display screen 2 and the second buffer 121, so as to ensure effective protection of the display screen 2 in the transport box 1.

[0107] Optionally, the protrusion 131 on the barrier pad 13 protrudes above the second buffer 121 by a height greater than or equal to 3 mm to ensure the reliability of the barrier between the display screen 2 and the second buffer 121. For example, the height of the protrusion 131 on the barrier pad 13 protruding above the second buffer 121 can be 3 mm, 3.5 mm, 4 mm, 4.5 mm, 5 mm, 6 mm, 7 mm, 8 mm, etc. Of course, when the elastic modulus of the barrier pad 13 is large, the height of the protrusion 131 on the barrier pad 13 protruding above the second buffer 121 can also be slightly less than 3 mm, such as 2 mm, 2.5 mm, etc., as long as effective barrier between the display screen 2 and the second buffer 121 can be effectively guaranteed.

[0108] Optionally, when the transport box 1 is closed, the orthographic projection of the protrusion 131 on the first buffer 111 is located at the bottom of the first receiving groove 112, and the distance between the protrusion 131 and the groove wall of the first receiving groove 112 is greater than or equal to 3 mm.

[0109] Thus, the outline size of the protrusion 131 is set smaller than the outline size of the first receiving groove 112 to ensure that the protrusion 131 avoids the edge area of ​​the display screen 2 when it comes into contact with the display screen 2, thereby avoiding the scraping between the protrusion 131 and the edge of the display screen 2, ensuring the stability of the display screen 2 in the transport box 1, and ensuring the reliability of the transport of the display screen 2.

[0110] For example, the distance between the orthographic projection of the protrusion 131 on the first buffer 111 and the groove wall of the first receiving groove 112 is 3 mm, 5 mm, 8 mm, 10 mm, etc.

[0111] In some implementations, such as Figure 1 or Figure 3 As shown, the second receiving groove 122 is divided into multiple limiting grooves 123.

[0112] Among them, multiple limiting slots 123 are used to respectively accommodate the structural components corresponding to the display screen 2 (such as power modules, power connection cables, data connection cables, remote controllers 128, etc.).

[0113] In this way, by setting multiple limiting slots 123, the packaging of each structural component is divided, thereby improving the aesthetics and neatness of the transport box 1.

[0114] Optionally, such as Figure 1 or Figure 3 As shown, the second receiving groove 122 is further divided into a wiring groove 124, which is connected to at least a portion of the limiting groove 123.

[0115] Thus, the wiring channel 124 facilitates the concealment of power cables, data cables, and other components connected to the display screen 2, ensuring the neatness of the cables (power cables and data cables) when the display screen 2 is lit, while also preventing the cables from obstructing the display screen 2 and improving the display effect.

[0116] Optionally, such as Figure 1 or Figure 3 As shown, the second receiving groove 122 has a second clearance opening 125 on its groove wall, which is connected to the wiring groove 124; the first receiving groove 112 has a first clearance opening 113 on its groove wall. When the transport box 1 is closed, the first clearance opening 113 and the second clearance opening 125 have an overlapping area in the thickness direction of the transport box 1.

[0117] Thus, by setting the second clearance opening 125, and ensuring that the first clearance opening 113 and the second clearance opening 125 have an overlapping area in the thickness direction of the transport box 1, it is convenient to directly hide the connecting wire extending along the first clearance opening 113 in the wiring groove 124 along the second clearance opening 125, so as to further ensure the neatness of the connecting wire and avoid the connecting wire from obstructing the display screen 2.

[0118] In this disclosure, a display device 10 is also provided, such as... Figure 7 As shown, the display device 10 includes a display screen 2 and a transport box 1 as described in the above embodiment, with the display screen 2 housed in a first receiving slot 112.

[0119] Thus, when the display screen 2 is contained within the first receiving groove 112 on the first buffer 111, the transport box 1 described above can effectively protect the display screen 2, thereby ensuring the reliability of the transport of the display screen 2.

[0120] In conjunction with the above description, when the wall of the first receiving groove 112 has a first clearance opening 113, the wiring port of the display screen 2 is exposed at the first clearance opening 113, which facilitates the setting of the connection line of the display screen 2 along the first clearance opening 113, so as to facilitate the wiring connection of the display screen 2.

[0121] In accordance with the above embodiments, when the transport box 1 includes a barrier pad 13, the barrier pad 13 has a protrusion 131. When the transport box 1 is closed, the protrusion 131 abuts against the display screen 2. This prevents the display screen 2 from contacting the second buffer member 121, while simultaneously limiting the display screen 2 in the thickness direction of the transport box 1, further ensuring the reliability of the display screen transportation.

[0122] Furthermore, the distance between the orthographic projection of the protrusion 131 on the display screen 2 and the edge of the display screen 2 is greater than or equal to 3 mm, thereby effectively avoiding scratches between the protrusion 131 and the edge of the display screen 2, ensuring the stability of the display screen 2 within the transport box 1, and ensuring the reliability of the transport of the display screen 2. For example, the distance between the orthographic projection of the protrusion 131 on the display screen 2 and the edge of the display screen 2 is 3 mm, 5 mm, 8 mm, 10 mm, etc.

[0123] In some implementations, such as Figure 7 or Figure 8 As shown, the second receiving groove 122 accommodates the first insertion hole 126 and the receiver 127. The outer wall of the second housing part 12 has a recess 1201, and the recess 1201 is provided with a second insertion hole 1202. The first insertion hole 126 and the receiver 127 are connected to the display screen 2, and both the first insertion hole 126 and the receiver 127 are used to connect external devices through the second insertion hole 1202.

[0124] Thus, by accommodating the display screen 2 and the receiver 127 in the first housing part 11 and the second housing part 12 respectively, interference problems during the packaging of the display screen 2 are avoided. Then, the second insertion hole 1202 provided on the outer wall of the second housing part 12 simplifies the connection between the display screen 2 and the external device, thereby facilitating the lighting of the display screen 2 and improving the convenience of displaying the display screen 2.

[0125] After connecting to an external device via the second connector 1202, the device can connect to the power supply of the display screen 2 via the first connector 126 and to the data interface of the display screen 2 via the receiver 127, thus enabling the normal display of information on the display screen 2. Additionally, the second connector 1202 within the recess 1201 includes a power socket and a data socket. The power socket enables electrical connection between the first connector 126, the receiver 127, and the external device, while the data socket enables data connection between the receiver 127 and the external device.

[0126] Optionally, such as Figure 7 or Figure 8 As shown, the second receiving slot 122 also houses a power module 129. The power module 129 is connected to the first plug-in hole 126 and the receiver 127, and is used to connect to an external device through the second plug-in hole 1202. Thus, the power module 129 ensures a stable voltage environment for the display screen 2 to operate.

[0127] In addition to accommodating the receiver 127, the first connector 126, and the power module, the second receiving slot 122 can also accommodate structural components of the display screen 2, such as power connection cables, data connection cables, and remote control 128.

[0128] It should be noted that, in conjunction with the above-mentioned second receiving slot 122 being divided into a wiring slot 124 and multiple limiting slots 123, the first insertion hole 126, receiver 127, power module, and structural components of the display screen 2 are respectively limited within the multiple limiting slots 123.

[0129] The first plug-in hole 126 and the receiver 127 can be respectively limited in the limiting groove 123 connected to the wiring groove 124 in the plurality of limiting grooves 123, and the limiting groove 123 limiting the first plug-in hole 126 and the receiver 127 is connected to the limiting groove 123 limiting the power module, so as to facilitate the connection between the first plug-in hole 126 and the receiver 127 and the power module, and the connection between the first plug-in hole 126 and the receiver 127 and the display screen 2.

[0130] In some embodiments, in conjunction with the case where a fixing member 114 is provided inside the first housing portion 11 as described above, the display screen includes a display housing and a display module; the display housing is fixedly connected to the fixing member 114 inside the first housing portion 11, and the display module is spliced ​​and limited on the display housing.

[0131] Specifically, for the display screen inside the display device 10, the display cabinet can be pre-fixed to the fixing member 114 at the bottom of the first receiving groove 112, and then the display module can be spliced ​​and limited on the display cabinet, thereby ensuring the reliability of the display module assembly on the display cabinet, and at the same time ensuring the integration of the display screen and the first cabinet part 11.

[0132] The display cabinet wall and the first receiving groove 112 can be in compressive contact to ensure the stability of the display screen within the first receiving groove 112; alternatively, there can be a gap between the display cabinet wall and the first receiving groove 112 wall. For example, the distance between the display cabinet and the first receiving groove 112 wall is greater than or equal to 1 mm and less than or equal to 5 mm. For instance, the distance between the display cabinet and the first receiving groove 112 wall can be 1 mm, 2 mm, 3 mm, 4 mm, 5 mm, etc.

[0133] The display module can be a Mini-LED direct-display module or a Micro-LED direct-display module, or other types of modules, etc., and this disclosure does not limit the specific type of module. A direct-display module is a display module in which Mini-LED and Micro-LED directly serve as pixels or sub-pixels.

[0134] In some implementations, such as Figure 5 or Figure 6 As shown, the display screen 2 protrudes from the edge of the slot of the first receiving groove 112.

[0135] In this way, the edge of the first receiving groove 112 can be prevented from scraping against the display screen 2, which could cause damage to the display screen 2, thereby effectively protecting the display screen 2 and ensuring the reliability of the display screen 2 during transportation.

[0136] The groove opening of the first receiving groove 112 can be set with reference to the above embodiments. For example, the groove opening edge of the first receiving groove 112 is designed with a chamfer, or the exposed surface on the first buffer space is designed with a slope at the groove opening edge of the first receiving groove 112, etc.

[0137] Other embodiments of this disclosure will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of this disclosure that follow the general principles of this disclosure and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of this disclosure are indicated by the appended claims.

Claims

1. A transport box for transporting a display screen, characterized in that, include: A first housing portion, wherein a first buffer member is provided inside the first housing portion, and a first receiving groove is formed on the first buffer member, the first receiving groove being used to receive the display screen; The second housing is closable from the first housing, and a second buffer member is provided inside the second housing, the second buffer member forming a second receiving groove; In the closed state of the transport box, the opening of the first receiving slot faces the second box body, and the opening of the second receiving slot faces the first box body. The first housing portion is hinged to the second housing portion, and the first housing portion has a hinged sidewall connected to the second housing portion; the groove wall of the first receiving groove has a first clearance opening, and the first clearance opening is located on the groove wall of the first receiving groove that abuts the hinged sidewall; or... The first housing portion has a plurality of fasteners fixedly connected to the first housing portion, the fasteners being used to fix the display screen; at least a portion of each fastener is located within the first receiving groove; or, The transport container also includes a barrier pad for sealing the second receiving groove; the groove wall of the second receiving groove has a support step, and the barrier pad is supported on the tread of the support step.

2. The transport box as described in claim 1, characterized in that, The first buffer has the bottom of the first receiving groove.

3. The transport box as described in claim 1, characterized in that, The material of the first buffer is EVA foam.

4. The transport box as described in claim 1, characterized in that, The opening edge of the first receiving groove is designed with a chamfer.

5. The transport container as described in claim 1, characterized in that, The surface of the first buffer member facing the second box body when the transport box is closed is designed with a slope at the edge of the groove of the first receiving groove, and the slope angle opening faces away from the first receiving groove.

6. The transport container as described in claim 1, characterized in that, The surface of the barrier pad facing away from the bottom of the second receiving groove has a protrusion facing the first box body when the transport box is closed. The protrusion protrudes from the surface of the second buffer member facing the first box body when the transport box is closed.

7. The transport container as described in claim 6, characterized in that, The height of the protrusion protruding from the second buffer member is greater than or equal to 3 mm; The barrier pad is made of EVA foam.

8. The transport container as described in claim 6, characterized in that, When the transport box is closed, the orthographic projection of the protrusion on the first buffer is located at the bottom of the first receiving groove, and the distance between the protrusion and the wall of the first receiving groove is greater than or equal to 3 mm.

9. The transport container as described in any one of claims 1-5, characterized in that, The second receiving slot is divided into a wiring slot and a plurality of limiting slots, the wiring slot being in communication with at least a portion of the limiting slots.

10. The transport container as described in claim 9, characterized in that, The second receiving groove has a second clearance opening in its groove wall, and the second clearance opening is connected to the wiring groove; The first receiving groove has a first clearance opening in its groove wall. When the transport box is closed, the first clearance opening and the second clearance opening have an overlapping area in the thickness direction of the transport box.

11. The transport container as described in any one of claims 1-5, characterized in that, Both the first box section and the second box section have top corner sections, and each of the multiple top corner sections is provided with a corner protection structure; Both the first box section and the second box section also have edge sections, and the multiple edge sections are provided with edge-sealing structures.

12. The transport container as described in any one of claims 1-5, characterized in that, The transport container also includes a handle, a pull rod, and multiple wheels; The handle and the pull rod are respectively provided on different outer side walls of the second box section, and the plurality of rollers are provided at the bottom of the first box section and the second box section.

13. A display device, characterized in that, It includes a display screen and a transport container as described in any one of claims 1-12, wherein the display screen is housed within the first receiving slot.

14. The display device as claimed in claim 13, characterized in that, The second receiving groove accommodates the first insertion hole and the receiver, and the outer wall of the second housing part has a recessed portion, wherein the recessed portion is provided with the second insertion hole; The first connector and the receiver are connected to the display screen, and both the first connector and the receiver are used to connect to external devices through the second connector.

15. The display device as claimed in claim 13, characterized in that, The display screen includes a display cabinet and a display module; The display cabinet is fixedly connected to the fixing member inside the first cabinet, and the display module is spliced ​​and limited on the display cabinet.

16. The display device as claimed in claim 15, characterized in that, The display module is either a Mini-LED direct-view module or a Micro-LED direct-view module.

17. The display device as claimed in claim 15, characterized in that, The distance between the display cabinet and the wall of the first receiving slot is greater than or equal to 1 mm and less than or equal to 5 mm.

18. The display device as claimed in claim 13, characterized in that, The display screen protrudes from the edge of the first receiving slot.

19. The display device as claimed in claim 18, characterized in that, The transport container includes a raised barrier pad; When the transport box is closed, the protrusion abuts against the display screen; The distance between the orthographic projection of the protrusion on the display screen and the edge of the display screen is greater than or equal to 3 mm.