Motherboard turnover box

CN116605515BActive Publication Date: 2026-06-19INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
INSPUR SUZHOU INTELLIGENT TECH CO LTD
Filing Date
2023-05-08
Publication Date
2026-06-19

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Abstract

This invention provides a motherboard turnover box, including a first box body and a clamping assembly disposed within the first box body. The clamping assembly includes multiple clamping members for clamping the motherboards. Each clamping member includes two motherboard clamping blocks disposed opposite each other along a first direction. The multiple clamping members in the clamping assembly are spaced apart along a second direction, with the first direction perpendicular to the second direction. The motherboard turnover box provided by this invention can separate multiple clamped motherboards using multiple clamping members spaced apart along the second direction, eliminating the need for partitions and thus preventing damage to the motherboards caused by collisions with partitions during turnover.
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Description

Technical Field

[0001] This invention relates to the field of motherboard turnover technology, and in particular to motherboard turnover boxes. Background Technology

[0002] Motherboards are usually handled in turnover boxes. When the turnover box experiences significant vibration during turnover, multiple motherboards inside the turnover box may collide with each other.

[0003] Currently, the turnover box includes a box body. To avoid collisions between motherboards inside the turnover box, multiple partitions are installed inside the box to divide the internal space of the box into multiple slots, each slot being used to place one motherboard.

[0004] However, although the above solution achieves the separation of the motherboard, the motherboard will still shake in the compartment during the turnover of the turnover box, and the motherboard will collide with the partition, which can easily cause damage to the motherboard. Summary of the Invention

[0005] The purpose of this invention is to provide a motherboard turnover box to solve the technical problem that motherboards inside turnover boxes are easily damaged during turnover in the prior art. The specific technical solution is as follows:

[0006] This invention provides a motherboard turnover box, including a first box body and a clamping assembly disposed in the first box body. The clamping assembly includes a plurality of clamping members for clamping the motherboard. The clamping members include two motherboard clamping blocks disposed opposite to each other along a first direction. The plurality of clamping members in the clamping assembly are spaced apart along a second direction, wherein the first direction is perpendicular to the second direction.

[0007] Optionally, the motherboard clamping block has a groove, and an insulating rubber block is provided on the groove. The insulating rubber blocks of the two motherboard clamping blocks in the clamping member are respectively used to clamp the two first sides of the motherboard.

[0008] Optionally, the first housing is provided with a mounting assembly corresponding to the clamping assembly. The mounting assembly includes two screws arranged opposite each other along the first direction. The first housing includes two first side plates arranged opposite each other along the first direction. The two screws are respectively disposed on the two first side plates. The extension direction of the screws is consistent with the second direction. The two motherboard clamping blocks in each clamping member are respectively sleeved on the two screws. The mounting assembly also includes a plurality of buffer members disposed on the screws. The plurality of buffer members correspond to the plurality of motherboard clamping blocks on the screws. The buffer members are connected to the motherboard clamping blocks.

[0009] Optionally, the buffer component includes two first buffer springs disposed on both sides of the main board clamping block along the second direction, the main board clamping block being slidable on the screw along the extension direction of the screw, the buffer component further includes two baffles respectively connected to the two first buffer springs and two adjusting nuts respectively abutting against the two baffles, the first buffer springs surrounding the screw, and the adjusting nuts being screwed to the screw.

[0010] Optionally, the system further includes a second housing, which includes a base plate and a support plate. The base plate and the support plate are spaced apart along a third direction, which is perpendicular to the first direction and also perpendicular to the second direction. The support plate is connected to the base plate via multiple spring dampers. The first housing is placed inside the second housing and is positioned above the support plate.

[0011] Optionally, a connecting groove is provided on the first side plate, and the screw is disposed in the connecting groove.

[0012] Optionally, the first housing is provided with two clamping assemblies and two mounting assemblies, the two clamping assemblies being spaced apart along a third direction, the third direction being perpendicular to the first direction and perpendicular to the second direction;

[0013] The two clamping assemblies include multiple pairs of synchronous motherboard clamping blocks. Each pair of synchronous motherboard clamping blocks includes two motherboard clamping blocks spaced apart along a third direction. The two motherboard clamping blocks in the pair are connected by a connecting plate. The first housing includes a base plate. The orthographic projections of the two motherboard clamping blocks in the pair on the base plate overlap. An clearance groove is provided on the first side plate. The connecting plate can move within the clearance groove along the second direction.

[0014] Optionally, the groove has a V-shaped cross-section, and the insulating block has a V-shaped cross-section.

[0015] Optionally, the materials of the first housing, the second housing, the motherboard clamp, and the insulating rubber block are all insulating materials.

[0016] Optionally, the first housing further includes two second side panels arranged opposite each other along the second direction, each second side panel being provided with a first handle, and the second housing includes two third side panels arranged opposite each other along the second direction, each third side panel being provided with a second handle.

[0017] The motherboard turnover box provided in this invention uses two motherboard clamping blocks in the clamping components to clamp the motherboard, making it less prone to shaking during turnover and ensuring stable storage. Furthermore, the multiple clamping components are spaced apart along a second direction, separating the clamped motherboards and preventing collisions during turnover, thus avoiding damage and ensuring motherboard safety. Moreover, this invention achieves separation of multiple clamped motherboards using multiple clamping components spaced apart along the second direction, eliminating the need for partitions and preventing damage from collisions with partitions during turnover. This solves the problem of motherboards colliding with partitions and being easily damaged during turnover in anti-static turnover boxes. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0019] Figure 1 This is a schematic diagram of the structure of a motherboard turnover box in the prior art;

[0020] Figure 2 This is a three-dimensional structural diagram of the motherboard turnover box provided in an embodiment of the present invention;

[0021] Figure 3 This is a cross-sectional view of the motherboard turnover box provided in an embodiment of the present invention;

[0022] Figure 4 This is a schematic diagram of the structure of the first box in the motherboard turnover box provided in an embodiment of the present invention;

[0023] Figure 5 for Figure 3 An enlarged diagram of point A in the diagram.

[0024] Figure label:

[0025] 1-Box body, 2-Baffle plate, 3-Groove, 10-First box body, 11-Main board clamp, 12-Screw, 13-First buffer spring, 14-Adjusting nut, 15-Connecting groove, 16-Connecting plate, 17-Allowing groove, 18-Baffle plate, 19-First handle, 20-Second box body, 21-Support plate, 22-Second buffer spring, 23-Damper, 24-Second handle. Detailed Implementation

[0026] The technical solutions of the present invention will now be described with reference to the accompanying drawings in the embodiments of the present invention.

[0027] The embodiments described herein are for illustrative purposes only and are not intended to limit the scope of the invention. The invention is described more specifically in the following paragraphs by way of example with reference to the accompanying drawings. It should be noted that the drawings are in a very simplified form and use non-precise proportions, and are only used to facilitate and clarify the illustration of the embodiments of the invention.

[0028] Turnover boxes, also known as logistics boxes, are widely used in industries such as machinery, automobiles, home appliances, light industry, and electronics. They are suitable for transportation, distribution, storage, and processing in factory logistics. Motherboards are typically handled using turnover boxes, with multiple motherboards usually placed together within the box. When significant vibrations occur during turnover, the multiple motherboards within the anti-static turnover box may collide with each other, potentially causing damage and losses for the user. Currently, referring to… Figure 1 The turnover box includes a box body 1. To prevent motherboards from colliding with each other inside the turnover box, multiple partitions 2 are provided inside the box body 1 to divide the internal space of the box body 1 into multiple compartments 3, each compartment 3 for placing one motherboard. However, although the above solution achieves the separation of motherboards, the motherboards will still shake within the compartments 3 during the turnover of the box, and the motherboards may collide with the partitions 2, which may easily cause damage to the motherboards. To solve the above problems, embodiments of the present invention provide a motherboard turnover box, which will be described in detail below.

[0029] Reference Figures 2 to 5 The motherboard turnover box provided in this embodiment of the invention includes a first box body 10 and a clamping assembly disposed in the first box body 10. The clamping assembly includes a plurality of clamping members. The clamping members are used to clamp the motherboard. The clamping members include two motherboard clamping blocks 11 disposed opposite to each other along a first direction. The plurality of clamping members in the clamping assembly are disposed at intervals along a second direction. The first direction is perpendicular to the second direction.

[0030] Specifically, the motherboard turnover box provided in this embodiment of the invention is used for the turnover of multiple motherboards. This motherboard turnover box can be an anti-static box, meaning it has anti-static functionality. Anti-static boxes are a type of turnover box. Also known as anti-static glue boxes or conductive turnover boxes, they are widely used in industries such as machinery, automobiles, home appliances, light industry, and electronics. They are acid and alkali resistant, oil resistant, non-toxic, and odorless. They can be used to hold electronic industrial components, are easy to clean, facilitate convenient parts turnover, are neatly stacked, and easy to manage.

[0031] The motherboard can be a computer motherboard, server motherboard, etc. The first housing 10 includes a base plate, two first side plates arranged opposite each other along a first direction, and two second side plates arranged opposite each other along a second direction. The base plate, the two first side plates, and the two second side plates form a receiving cavity. Multiple clamping members are used to clamp multiple motherboards respectively. When the multiple clamping members clamp multiple motherboards, the multiple motherboards are located within the receiving cavity of the first housing 10. The clamping assembly can be movably disposed within the first housing 10. In other embodiments, the clamping assembly can also be fixed within the first housing 10.

[0032] The clamping assembly includes multiple clamping components, and the number of clamping components in a single clamping assembly can be set according to actual needs. Specifically, the number of clamping components in a single clamping assembly can be set to 5-10, as shown in the reference... Figure 2 , Figure 2 A single clamping assembly comprises six clamping members. A single clamping member is used to clamp one motherboard, while multiple clamping members in a clamping assembly are used to clamp multiple motherboards. The first direction can be referenced. Figure 2 The direction indicated by arrow A in the middle; the second direction can be referenced. Figure 2 The direction indicated by arrow B. The first housing 10 has mutually perpendicular length, width, and height directions. The first direction can be the width direction of the first housing 10, and the second direction can be the length direction of the first housing 10. In this case, the two motherboard clamping blocks 11 in the clamping members are arranged opposite each other along the width direction of the first housing 10, and the multiple clamping members are spaced apart along the length direction of the first housing 10. Along the second direction, the spacing between two adjacent clamping members can be set according to the separation requirements between the motherboards clamped by the clamping members.

[0033] The motherboard includes two opposing first sides, and two motherboard clamping blocks 11 in the clamping member are used to clamp the two first sides of the motherboard respectively. The first housing 10 and the motherboard clamping blocks 11 are both made of insulating material. The first side of the motherboard can be either the long side or the short side. The two motherboard clamping blocks 11 in the clamping member are used together to clamp the motherboard. The two motherboard clamping blocks 11 in the clamping member clamp the two first sides of the motherboard respectively, meaning the motherboard is clamped between the two motherboard clamping blocks 11 in the clamping member. U-shaped or V-shaped grooves can be formed on the motherboard clamping blocks 11, and U-shaped or V-shaped buffer blocks can be provided on the U-shaped or V-shaped grooves. The motherboard is specifically clamped within the U-shaped or V-shaped grooves of the two motherboard clamping blocks 11 in the clamping member.

[0034] The motherboard turnover box provided in this embodiment of the invention can clamp the motherboard with two motherboard clamping blocks 11 in the clamping members, making the motherboard less prone to shaking during the turnover of the motherboard turnover box and ensuring the stable storage of the motherboard. In addition, multiple clamping members are arranged at intervals along the second direction, so the motherboards clamped by multiple clamping members are separated from each other. During the turnover of the motherboard turnover box, the motherboards will not collide with each other, avoiding damage to the motherboards caused by collisions between motherboards and ensuring the safety of the motherboards during the turnover of the motherboard turnover box. Furthermore, in this embodiment of the invention, multiple clamping members arranged at intervals along the second direction can achieve the separation of multiple clamped motherboards, eliminating the need for partitions. This avoids the motherboards colliding with partitions during the turnover of the motherboard turnover box and causing damage to the motherboards, thus solving the problem that motherboards may collide with partitions and be easily damaged during the turnover of anti-static turnover boxes.

[0035] The motherboard clamping block 11 has a groove, and an insulating rubber block is provided on the groove. The insulating rubber blocks of the two motherboard clamping blocks 11 in the clamping component are used to clamp the two first sides of the motherboard respectively.

[0036] Specifically, the groove can penetrate the motherboard clamping block 11 along a third direction, which is perpendicular to the first direction and also perpendicular to the second direction. The third direction can specifically be the height direction of the first housing 10, and the third direction can be referenced... Figure 2 The direction indicated by arrow C. The cross-section of the groove can be U-shaped or V-shaped; the cross-section of the groove is the section perpendicular to a third direction. When the cross-section of the groove is V-shaped, the cross-section of the insulating block is correspondingly V-shaped. When the cross-section of the groove is U-shaped, the cross-section of the insulating block is correspondingly U-shaped.

[0037] The insulating rubber block can be made of rubber or similar materials and can be adhered to the motherboard clamping block 11. When the two motherboard clamping blocks 11 in the clamping component clamp the two first sides of the motherboard respectively, specifically, the insulating rubber block provided on the motherboard clamping block 11 is in direct contact with the first side of the motherboard. Because the insulating rubber block is elastic, it can ensure the clamping performance of the motherboard; in addition, it also avoids damage to the first side of the motherboard. Furthermore, due to the insulating properties of the insulating rubber block, it can prevent the motherboard from contacting non-insulating materials, and has an anti-static function.

[0038] Reference Figures 3 to 5The first housing 10 is provided with an installation component corresponding to the clamping component. The installation component includes two screws 12 arranged opposite to each other along a first direction. The first housing 10 includes two first side plates arranged opposite to each other along the first direction. The two screws 12 are respectively arranged on the two first side plates. The extension direction of the screws 12 is consistent with the second direction. The two main board clamping blocks 11 in each clamping component are respectively sleeved on the two screws 12. The installation component also includes a plurality of buffer components arranged on the screws 12. The plurality of buffer components correspond to the plurality of main board clamping blocks 11 on the screws. The buffer components are connected to the main board clamping blocks 11.

[0039] Specifically, the motherboard turnover cart provided in this embodiment of the invention also includes an installation component. The installation component is used for installing multiple motherboard clamping blocks 11 in the clamping component. The number of installation components is the same as the number of clamping components. (Refer to...) Figure 3 Two clamping components can be spaced apart along a third direction on the first housing 10, meaning there are a total of two rows of clamping components on the first housing 10. Correspondingly, two mounting components are also provided, spaced apart along a third direction. One mounting component includes two screws 12 arranged opposite each other along a first direction; therefore, two mounting components include four screws 12. Figure 3 The two screws 12 are one screw 12 in one mounting assembly and one screw 12 in the other mounting assembly. (See reference...) Figure 2 Each clamping assembly comprises six clamping members, that is, twelve mainboard clamping blocks 11. Figure 2 Only the twelve motherboard clamping blocks 11 in the upper row of clamping components can be seen.

[0040] A single mounting assembly includes two screws 12, which are arranged opposite each other along a first direction and are used to mount two motherboard clamping blocks 11 in the clamping components. A single clamping assembly includes six clamping components; that is, when there are twelve motherboard clamping blocks 11, one screw 12 passes through six motherboard clamping blocks 11, meaning six motherboard clamping blocks 11 are mounted on one screw 12. A through hole extending along a second direction may be provided on each motherboard clamping block 11, allowing it to be fitted onto the screw 12 through the through hole. The number of buffering components on the screw 12 is the same as the number of motherboard clamping blocks 11 mounted on it; when six motherboard clamping blocks 11 are mounted on one screw 12, six buffering components are provided on that screw 12. The buffering components are used to buffer the motherboard clamping blocks 11 along the second direction and may include springs, etc.

[0041] In this embodiment of the invention, by providing multiple buffer components on the screw 12, buffering of the motherboard clamping block 11 along the second direction can be achieved, thereby achieving buffering of the motherboard clamped by the clamping component along the horizontal direction; in addition, by providing buffer components, the two clamping components can be spaced apart along the second direction, that is, the motherboard clamped by the clamping component can be spaced apart along the second direction.

[0042] Reference Figure 5 The buffer component includes two first buffer springs 13 disposed on both sides of the main board clamping block 11 along the second direction. The main board clamping block 11 can slide on the screw 12 along the extension direction of the screw 12. The buffer component also includes two baffles 18 connected to the two first buffer springs 13 respectively and two adjusting nuts 14 respectively abutting against the two baffles 18. The first buffer springs 13 surround the screw 12, and the adjusting nuts 14 are screwed to the screw 12.

[0043] Specifically, the extension direction of the screw 12 is consistent with the second direction, meaning that the motherboard clamp 11 can slide on the screw 12 along the second direction, and the position of the motherboard clamp 11 along the second direction is adjustable. A through hole extending along the second direction can be provided on the motherboard clamp 11, allowing it to be fitted onto the screw 12 through this through hole, and enabling the motherboard clamp 11 to slide on the screw 12 along its extension direction. Figure 5 The diagram shows a partial buffer component of one mainboard clamp 11 and a partial buffer component of another mainboard clamp 11 on a screw 12. One end of a first buffer spring 13 is connected to the mainboard clamp 11, and the other end of the first buffer spring 13 is connected to a baffle 18. The baffle 18 is located between the adjusting nut 14 and the first buffer spring 13, and the baffle 18 is sleeved on the screw 12. The baffle 18 can move along the extension direction of the screw 12.

[0044] Adjusting nut 14 is screwed to screw 12. When one of the adjusting nuts 14 in the buffer component connected to the main board clamp 11 rotates and moves toward the main board clamp 11, adjusting nut 14 pushes baffle 18 toward the main board clamp 11, thereby causing baffle 18 to exert a force on the first buffer spring 13, and the first buffer spring 13 to exert a force on the main board clamp 11, so that the main board clamp 11 slides on the screw 12 along the extension direction of screw 12, thereby realizing the adjustment of the position of the main board clamp 11.

[0045] In this embodiment of the invention, by allowing the main board clamping block 11 to slide along the extension direction of the screw 12 and by setting the first buffer spring 13, the baffle 18 and the adjusting nut 14, the position of the main board clamping block 11 along the second direction can be adjusted, thereby adjusting the distance between two adjacent main board clamping blocks 11 on the screw 12, and thus realizing the adjustment of the distance between two adjacent main boards clamped by the clamped component to meet the placement requirements of different main boards.

[0046] In this embodiment of the invention, the buffer component connected to each motherboard clamp 11 includes two first buffer springs 13, two baffles 18, and two adjusting nuts. Of course, in other embodiments, the buffer component connected to the two motherboard clamps 11 near both ends of the screw 12 may only include two first buffer springs 13, one baffle 18, and one adjusting nut. That is, one of the first buffer springs 13 is connected to one side of the motherboard clamp 11, and this first buffer spring 13 is connected to the baffle 18, which corresponds to the adjusting nut. The other side of the motherboard clamp 11 is connected to another first buffer spring 13, which may be connected to the end of the screw 12 or the end of the communicating groove 15.

[0047] In addition, since two first buffer springs 13 are respectively provided on both sides of the motherboard clamping block 11 along the second direction, and each of the second buffer springs 13 is connected to a baffle 18, the buffering component includes two adjusting nuts 14 located on both sides of the motherboard clamping block 11 along the second direction. The two adjusting nuts 14 are respectively pressed against the two baffles 18. Therefore, by rotating both adjusting nuts 14 at the same time or by rotating one of the adjusting nuts 14, the squeezing force of the first buffer springs 13 on the motherboard clamping block 11 can be adjusted, thereby adjusting the buffering effect of the motherboard clamped by the clamping component along the horizontal direction.

[0048] Reference Figure 2 and Figure 3 The motherboard turnover box provided in this embodiment of the invention also includes a second box 20. The second box 20 includes a bottom plate and a support plate 21. The bottom plate and the support plate 21 are spaced apart along a third direction. The third direction is perpendicular to the first direction and perpendicular to the second direction. The support plate 21 is connected to the bottom plate through multiple spring dampers. The first box 10 is placed inside the second box 20 and is located on top of the support plate 21.

[0049] Specifically, the second housing 20 also includes two third side plates arranged opposite each other along the second direction and two fourth side plates arranged opposite each other along the first direction. The support plate 21, the two third side plates, and the two fourth side plates form a placement cavity, and the first housing 10 is placed inside the placement cavity of the second housing 20. (Refer to...) Figure 2 and Figure 3 , Figure 2 and Figure 3 The first housing 10 is placed inside the second housing 20, at which point the first housing 10 is positioned above the support plate 21. After the first housing 10 is placed inside the second housing 20, when it is removed, the placement cavity of the second housing 20 can also hold other types of components. That is, the second housing 20 alone can be used to hold other types of components to meet the placement needs of different components. The first housing 10 can be made of an insulating material. A cover plate can be hinged to the second housing 20, which closes the placement cavity of the second housing 20.

[0050] Multiple spring dampers are located between the support plate 21 and the base plate. Each spring damper includes a damper 23 and a second buffer spring 22 disposed on the damper 23. In this embodiment of the invention, by setting multiple spring dampers, the first housing 10 located on the support plate 21 can be buffered and damped in the vertical direction, thereby achieving buffering of the main board clamped by the clamping component in the vertical direction.

[0051] In this embodiment of the invention, multiple clamping members spaced apart along a second direction are used to separate the clamped motherboards. At the same time, the buffer members and multiple spring dampers are used to buffer the motherboards in the horizontal and vertical directions, ensuring the safety of the motherboards inside the motherboard turnover box during turnover.

[0052] The motherboard turnover box provided by the present invention can achieve buffering of the motherboard clamping block 11 along the second direction by means of multiple buffering components set on the screw 12, thereby achieving buffering of the motherboard clamped by the clamping components along the horizontal direction; at the same time, by means of multiple spring dampers, it can achieve buffering and shock absorption of the first box 10 located on the support plate 21 in the vertical direction, thereby achieving buffering of the motherboard clamped by the clamping components along the vertical direction.

[0053] Reference Figures 3 to 5 A connecting groove 15 is provided on the first side plate, and the screw 12 is disposed in the connecting groove 15.

[0054] Specifically, the extension direction of the connecting groove 15 is consistent with the second direction. The connecting groove 15 can penetrate the first side plate along the first direction. The two ends of the screw 12 can be fixed to the two ends of the connecting groove 15 along the second direction, respectively. In this embodiment of the invention, by providing a connecting groove 15 on the first side plate and setting the screw 12 in the connecting groove 15, the space occupied in the accommodating cavity of the first housing 10 can be avoided.

[0055] Reference Figure 4The first housing 10 is provided with two clamping components and two mounting components. The two clamping components are spaced apart along a third direction, which is perpendicular to the first direction and also perpendicular to the second direction. The two clamping components include multiple pairs of synchronous motherboard clamping blocks. Each pair of synchronous motherboard clamping blocks includes two motherboard clamping blocks 11 spaced apart along a third direction. The two motherboard clamping blocks 11 in the pair of synchronous motherboard clamping blocks are connected by a connecting plate 16. The first housing 10 includes a base plate. The orthographic projections of the two motherboard clamping blocks 11 in the pair of synchronous motherboard clamping blocks overlap on the base plate. A clearance groove 17 is provided on the first side plate. The connecting plate 16 can move along the second direction within the clearance groove 17.

[0056] Specifically, the motherboard turnover box provided in this embodiment of the invention includes two clamping assemblies and two mounting assemblies. Each clamping assembly includes multiple clamping members, and each mounting assembly includes two screws 12 and multiple buffer members disposed on the screws 12. The third direction can be the height direction of the first box 10, in which case the two clamping assemblies and the two mounting assemblies are distributed at intervals along the height direction of the first box 10. (Refer to...) Figure 3 Two clamping components can be spaced apart along a third direction on the first housing 10, meaning that a total of two rows of clamping components are set on the first housing 10. Correspondingly, two mounting components are also set, and the two mounting components are also spaced apart along a third direction. A single clamping component includes six clamping members, that is, when it includes twelve motherboard clamping blocks 11, the two clamping components include a total of twenty-four motherboard clamping blocks 11. Figure 4 The image shows six motherboard clamping blocks 11 in one clamping assembly and six motherboard clamping blocks 11 in another clamping assembly.

[0057] The connecting plate 16 is specifically connected to the end of the motherboard clamping block 11 opposite to the groove. The clearance groove 17 is located on the side of the connecting groove 15 near the second housing 20. The connecting groove 15 and the clearance groove 17 are connected. One end of the connecting plate 16 is connected to one of the motherboard clamping blocks 11 in the synchronous motherboard clamping block pair, and the other end of the connecting plate 16 is connected to the other motherboard clamping block 11 in the synchronous motherboard clamping block pair. The connection method between the connecting plate 16 and the motherboard clamping block 11 can be adhesive bonding. When a single clamping assembly includes six clamping members, a single clamping assembly can clamp six motherboards, and two clamping assemblies can clamp twelve motherboards. Among the twelve motherboards clamped by two clamping assemblies, six motherboards are spaced apart along a third direction, that is, six motherboards are located below the other six motherboards.

[0058] When one of the two motherboard clamping blocks 11 connected to the connecting plate 16 slides on the screw 12 in the second direction, it will cause the connecting plate 16 to move accordingly, thereby causing the other motherboard clamping block 11 connected to the connecting plate 16 to slide, so as to ensure that the two motherboard clamping blocks 11 connected to the connecting plate 16 are aligned vertically, so that when the motherboard is inserted into the clamping component located below, it can pass smoothly through the clamping component located above, thus improving the convenience of inserting the motherboard into the clamping component.

[0059] The groove has a V-shaped cross-section, and the insulating block also has a V-shaped cross-section.

[0060] Specifically, refer to Figure 2 , Figure 2 In this embodiment, the cross-section of the groove in the motherboard clamping block 11 is V-shaped, and the cross-section of the insulating rubber block is also V-shaped. Through the above-described configuration, the structure of the motherboard clamping block 11 is simple, and it facilitates the clamping of the motherboard by the motherboard clamping block 11.

[0061] Of course, in other embodiments, the cross-section of the groove can be U-shaped, and the cross-section of the insulating block can be U-shaped.

[0062] The materials of the first housing 10, the second housing 20, the motherboard clamp 11, and the insulating rubber block are all insulating materials.

[0063] In this embodiment of the invention, the first box 10, the second box 20, the motherboard clamping block 11, and the insulating rubber block are all made of insulating material. The use of insulating materials for the first box 10, the second box 20, the motherboard clamping block 11, and the insulating rubber block prevents the motherboard from contacting any non-insulating material, thus providing the motherboard turnover box provided by this embodiment of the invention with anti-static functionality and improving its anti-static capability.

[0064] Reference Figure 2 The first housing 10 also includes two second side plates arranged opposite each other along the second direction, each second side plate being provided with a first handle 19, and the second housing 20 includes two third side plates arranged opposite each other along the second direction, each third side plate being provided with a second handle 24.

[0065] Specifically, when the second direction is the length direction of the first housing 10, the first housing 10 also includes two second side plates arranged opposite each other along its length direction. The first handle 19 may be screwed onto the second side plates. The second housing 20 has mutually perpendicular length, width, and height directions. When the first housing 10 is placed inside the second housing 20, the length, width, and height directions of the second housing 20 are consistent with the length, width, and height directions of the first housing 10, respectively.

[0066] After the first box 10 is placed inside the second box 20, the first box 10 is easily removed from the second box 20 thanks to the first handle 19. The second handle 24 facilitates the handling of the second box 20 by the operator, thus enabling the transfer of the first box 10 and the second box 20. In this embodiment of the invention, the first handle 19 facilitates the removal of the first box 10 from the second box 20; and the second handle 24 facilitates the transfer of the first box 10 and the second box 20.

[0067] In summary, this invention provides a motherboard turnover box. Two motherboard clamping blocks 11 in the clamping components can clamp the motherboard, preventing it from shaking during turnover and ensuring stable storage. Furthermore, the multiple clamping components are spaced apart along a second direction, separating the clamped motherboards and preventing collisions during turnover, thus ensuring motherboard safety. Additionally, this invention uses multiple clamping components spaced apart along the second direction to separate the clamped motherboards, eliminating the need for partitions and preventing damage from collisions with partitions during turnover. This solves the problem of motherboards colliding with partitions and being easily damaged during turnover in anti-static turnover boxes. Moreover, the use of insulating materials for the first box 10, second box 20, motherboard clamping blocks 11, and insulating rubber blocks prevents contact between the motherboard and any non-insulating material, improving the anti-static capability of the motherboard turnover box provided by this invention.

[0068] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0069] It should be noted that when a component is described as "fixed to" another component, it can be directly on the other component or may have a component in between. When a component is considered "connected to" another component, it can be directly connected to the other component or may have a component in between. When a component is considered "set on" another component, it can be directly set on the other component or may have a component in between. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this document are for illustrative purposes only.

[0070] The various embodiments in this specification are described in a related manner. Similar or identical parts between embodiments can be referred to mutually. Each embodiment focuses on describing the differences from other embodiments. In particular, the system embodiments are basically similar to the method embodiments, so the description is relatively simple; relevant parts can be referred to the descriptions of the method embodiments.

[0071] The above description is merely a preferred embodiment of the present invention and is not intended to limit the scope of protection of the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention are included within the scope of protection of the present invention.

[0072] The motherboard turnover box provided by the present invention has been described in detail above. Specific examples have been used to illustrate the principle and implementation of the present invention. The description of the above embodiments is only for the purpose of helping to understand the structure and core idea of ​​the present invention. At the same time, for those skilled in the art, there will be changes in the specific implementation and application scope based on the idea of ​​the present invention. Therefore, the content of this specification should not be construed as a limitation of the present invention.

Claims

1. A motherboard turnover box, characterized in that, The device includes a first housing and a clamping assembly disposed within the first housing. The clamping assembly includes multiple clamping members for clamping the motherboard. Each clamping member includes two motherboard clamping blocks disposed opposite each other along a first direction. The multiple clamping members in the clamping assembly are spaced apart along a second direction, wherein the first direction is perpendicular to the second direction. The first housing is provided with a mounting component corresponding to the clamping component. The mounting component includes two screws arranged opposite each other along the first direction. The extension direction of the screws is consistent with the second direction. The two main board clamping blocks in each clamping component are respectively sleeved on the two screws. The first housing includes two first side plates arranged opposite each other along the first direction. The two screws are respectively disposed on the two first side plates. The mounting assembly further includes multiple buffer members, which correspond to multiple motherboard clamps on the screw; each buffer member includes two first buffer springs disposed on both sides of the motherboard clamp along the second direction, the first buffer springs surrounding the screw, and the motherboard clamps being slidable on the screw along the extension direction of the screw; The buffer component further includes two baffles respectively connected to the two first buffer springs and two adjusting nuts respectively abutting against the two baffles. The baffles are sleeved on the screw and are located between the adjusting nuts and the first buffer springs. The adjusting nuts are screwed to the screw. By rotating the two adjusting nuts, the compressive force of the first buffer springs on the main board clamping block can be adjusted. The first housing is provided with two clamping assemblies and two mounting assemblies. The two clamping assemblies are spaced apart along a third direction, which is perpendicular to the first direction and also perpendicular to the second direction. The two clamping assemblies include multiple pairs of synchronous motherboard clamping blocks. Each pair of synchronous motherboard clamping blocks includes two motherboard clamping blocks spaced apart along a third direction. The two motherboard clamping blocks in the pair are connected by a connecting plate. The first housing includes a base plate. The orthographic projections of the two motherboard clamping blocks in the pair on the base plate overlap. An clearance groove is provided on the first side plate. The connecting plate can move within the clearance groove along the second direction.

2. The motherboard turnover box of claim 1, wherein, The motherboard clamping block has a groove, and an insulating rubber block is provided on the groove. The insulating rubber blocks of the two motherboard clamping blocks in the clamping member are respectively used to clamp the two first sides of the motherboard.

3. The motherboard turnover box according to claim 2, characterized in that, It also includes a second housing, which includes a base plate and a support plate. The base plate and the support plate are spaced apart along a third direction. The support plate is connected to the base plate by a plurality of spring dampers. The first housing is placed inside the second housing and is located on top of the support plate.

4. The motherboard turnover box of claim 1, wherein, A connecting groove is provided on the first side plate, and the screw is disposed in the connecting groove.

5. The motherboard turnover box according to claim 2, characterized in that, The groove has a V-shaped cross-section, and the insulating block has a V-shaped cross-section.

6. The motherboard turnover box of claim 3, wherein, The materials of the first housing, the second housing, the motherboard clamp, and the insulating rubber block are all insulating materials.

7. The motherboard turnover box of claim 3, wherein, The first housing also includes two second side panels arranged opposite each other along the second direction, each second side panel being provided with a first handle. The second housing also includes two third side panels arranged opposite each other along the second direction, each third side panel being provided with a second handle.

Citation Information

Patent Citations

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