A packaging structure

CN224753097UActive Publication Date: 2026-09-15CHANGZHOU FEINUO MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202522070650.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-25
Publication Date
2026-09-15
Estimated Expiration
2035-09-25

AI Technical Summary

Technical Problem

[0003]本申请实施例在于提供一种包装结构,用于解决现有技术中对带有立柱和底座的设备进行简单包裹,而导致的防护效果差的问题

Benefits of technology

[0020]Compared with the prior art, the embodiments of this application have the following advantages: The device with a base and a column is placed inside the housing, and the column is placed on the base plate, with both sides of the column abutting against the third limiting mechanism to prevent the column from moving to the sides of the housing. The base is also made perpendicular to the base plate, achieving initial positioning to facilitate subsequent fixing steps. Then, the first limiting mechanism is used to fix the end of the column away from the base, achieving secondary positioning to facilitate subsequent fixing steps. Finally, the second limiting mechanism is used to fix the end of the column near the base. After both ends of the column are fixed, the base is also fixed, preventing the base and column from moving to the ends of the housing and preventing the base from shaking. This application achieves multi-directional fixing of the device, effectively limiting the displacement of the device inside the housing, improving the protective effect, and preventing damage to the device during transportation.

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Abstract

The application belongs to the technical field of packaging and relates to a packaging structure. The packaging structure comprises a box body, the box body comprises a bottom plate, the bottom plate is used for placing a stand column, an inner wall of the bottom plate is provided with a first limiting mechanism, a second limiting mechanism and a third limiting mechanism, the first limiting mechanism is used for fixing one end of the stand column away from the base, the second limiting mechanism is used for fixing one end of the stand column close to the base, and the third limiting mechanism is used for fixing both sides of the stand column. The technical scheme provided in the application can realize the fixation of the equipment in multiple directions, effectively limit the displacement of the equipment in the box body, improve the protection effect, and avoid damage of the equipment in the transportation process.
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Description

Technical Field

[0001] This application relates to the field of packaging technology, and more specifically, to a packaging structure. Background Technology

[0002] Existing technologies for packaging equipment with bases or pillars on the bases (such as CBCT cone-beam computed tomography equipment) mostly use flexible materials such as cushioning foam and stretch film for simple wrapping, which is difficult to effectively restrict the displacement of the equipment in the transport container and has poor protective effect. Utility Model Content

[0003] This application provides a packaging structure to solve the problem of poor protection caused by simply wrapping equipment with columns and bases in the prior art.

[0004] To address the aforementioned technical problems, this application provides a packaging structure that employs the following technical solution:

[0005] A packaging structure is provided for packaging a device with a base and a column on the base. The packaging structure includes a box body, the box body includes a base plate for placing the column, and the inner wall of the base plate is provided with a first limiting mechanism, a second limiting mechanism and a third limiting mechanism. The first limiting mechanism is used to fix the end of the column away from the base, the second limiting mechanism is used to fix the end of the column close to the base, and the third limiting mechanism is used to fix both sides of the column.

[0006] Furthermore, the column is provided with a first handle at the end away from the base, and the base plate includes a long side and a short side;

[0007] The first limiting mechanism includes a first buckle and a first slot, which are spaced apart on the base plate along the long side. The first buckle and the first slot engage to fix the first handle; or, the first limiting mechanism includes a first strap on the base plate to fix the first handle.

[0008] The second limiting mechanism includes a second buckle and a second slot, which are spaced apart on the base plate along the short side direction. The second buckle and the second slot engage to fix the column; or, the second limiting mechanism includes a second strap on the base plate, which is used to bind the column.

[0009] The third limiting mechanism includes two limiting components, which are spaced apart on the base plate along the long side direction. Each limiting component includes two first limiting blocks, which are spaced apart on the base plate along the short side direction. In one limiting component, the gap between the two first limiting blocks is used to fix the column.

[0010] Furthermore, the second handle is located at the center of the column, and a fourth limiting mechanism is provided on the inner wall of the base plate; the fourth limiting mechanism is located between the two limiting components; the fourth limiting mechanism includes two second limiting blocks, which are spaced apart on the base plate along the long side direction, and the gap between the two second limiting blocks is used to fix the second handle.

[0011] Furthermore, the device also includes a panoramic CT imaging arm, which is disposed on the side wall of the column away from the base. The housing includes a first side plate, a second side plate, a third side plate, and a fourth side plate that are connected in sequence and perpendicularly disposed on the base plate. The end of the first side plate away from the second side plate is connected to the fourth side plate. The housing also includes a top plate, which is connected to the end of the first side plate, the second side plate, the third side plate, and the fourth side plate away from the base plate.

[0012] The packaging structure also includes a base support and a panoramic CT imaging support; the base support abuts against the first side plate, the second side plate and the fourth side plate to support the base; the panoramic CT imaging support abuts against the second side plate, the third side plate and the fourth side plate to support the panoramic CT imaging arm.

[0013] Furthermore, the device also includes a lateral imaging mechanism, on which a lateral arm is mounted; the packaging structure also includes a lateral arm support and a lateral support; the lateral arm support abuts against the end of the panoramic CT imaging support away from the base plate, and is used to support the end of the lateral arm away from the lateral imaging mechanism; the lateral support is used to support the lateral imaging mechanism.

[0014] Furthermore, the packaging structure includes two first limiting supports, each of which includes a mounting base and a clamping plate disposed on one side of the mounting base. The mounting base is disposed on the base plate, and the side support is disposed at the end of the mounting base away from the base plate. The clamping plate of one of the first limiting supports is located between the side support and the second side plate, and the clamping plate of the other first limiting support is located between the side support and the fourth side plate.

[0015] The packaging structure also includes a second limiting support member, and a limiting groove is provided on one side of the second limiting support member. The limiting groove is used to accommodate one end of the lateral arm adjacent to the lateral imaging mechanism.

[0016] Furthermore, the packaging structure also includes a lateral clamping component and a panoramic CT imaging clamping component; the lateral clamping component abuts against the top plate and is used to clamp the end of the lateral imaging mechanism away from the bottom plate; the panoramic CT imaging clamping component abuts against the top plate and is used to clamp the end of the panoramic CT imaging arm away from the bottom plate.

[0017] Furthermore, the device also includes a workstation, a display, and a lead block box. The packaging structure further includes a fifth limiting mechanism for restricting the workstation. The fifth limiting mechanism includes two third limiting blocks spaced apart along the long side, one of which is located near the second side plate and the other is located adjacent to the third side plate. The adjacent sides of the workstation abut against the two third limiting blocks respectively. The gap between one of the first limiting supports and the workstation is used to accommodate the display, and the gap between the workstation and the side support is used to accommodate the lead block box.

[0018] Furthermore, the device also includes auxiliary components, and the packaging structure further includes a sixth limiting mechanism for restricting the auxiliary components. The fifth limiting mechanism and the sixth limiting mechanism are spaced apart on the base plate along the short side direction. The sixth limiting mechanism includes two fourth limiting blocks spaced apart on the base plate along the long side direction, one of which is located near the fourth side plate and the other is located near the third side plate. The adjacent sides of the auxiliary components abut against the two fourth limiting blocks respectively. The panoramic CT imaging support abuts against one end near the base plate and the other end of the auxiliary components and the working components away from the base plate.

[0019] Furthermore, the packaging structure also includes a support frame, which is disposed on the base plate and abuts against the top plate, and the support frame is located between the base plates.

[0020] Compared with the prior art, the embodiments of this application have the following advantages: The device with a base and a column is placed inside the housing, and the column is placed on the base plate, with both sides of the column abutting against the third limiting mechanism to prevent the column from moving to the sides of the housing. The base is also made perpendicular to the base plate, achieving initial positioning to facilitate subsequent fixing steps. Then, the first limiting mechanism is used to fix the end of the column away from the base, achieving secondary positioning to facilitate subsequent fixing steps. Finally, the second limiting mechanism is used to fix the end of the column near the base. After both ends of the column are fixed, the base is also fixed, preventing the base and column from moving to the ends of the housing and preventing the base from shaking. This application achieves multi-directional fixing of the device, effectively limiting the displacement of the device inside the housing, improving the protective effect, and preventing damage to the device during transportation. Attached Figure Description

[0021] To more clearly illustrate the solution of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0022] Figure 1 This is a schematic diagram of a packaging structure provided in an embodiment of this application;

[0023] Figure 2 yes Figure 1 A schematic diagram of the central base, column, first handle, second handle, panoramic CT imaging arm, workstation, monitor, lead block box, auxiliary parts, base plate, first strap, second strap, first limiting block, second limiting block, column support, third limiting block and fourth limiting block;

[0024] Figure 3 yes Figure 1 A schematic diagram showing the first side panel, second side panel, third side panel, fourth side panel, top panel, support frame, and waterproof bag concealed.

[0025] Figure 4 yes Figure 3 A diagram from another perspective;

[0026] Figure 5 yes Figure 1 A sectional view after concealing the first side panel, second side panel, third side panel, fourth side panel, top panel, support frame, and waterproof bag;

[0027] Figure 6 yes Figure 1 A schematic diagram of the mid-lateral imaging mechanism, lateral arm, and lateral support.

[0028] Figure label:

[0029] 110. Base; 120. Column; 130. First handle; 140. Second handle; 150. Panoramic CT imaging arm; 160. Lateral imaging mechanism; 170. Lateral arm; 180. Workstation; 190. Monitor; 200. Lead block box; 210. Auxiliary parts;

[0030] 1. Box body; 101. Base plate; 102. First side plate; 103. Second side plate; 104. Third side plate; 105. Fourth side plate; 106. Top plate; 2. First strap; 3. Second strap; 4. First limiting block; 5. Second limiting block; 6. Column support; 7. Base support; 8. Panoramic CT imaging support; 9. Side arm support; 10. Side support; 1001. Fourth receiving groove; 11. First limiting support; 1101. Mounting base; 1102. Clamping plate; 12. Second limiting support; 1201. Limiting groove; 13. Side clamping component; 14. Panoramic CT imaging clamping component; 15. Third limiting block; 16. Protective component; 17. Fourth limiting block; 18. Support frame; 19. Waterproof bag. Detailed Implementation

[0031] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terminology used herein in the specification of the application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application; the terms "comprising" and "having," and any variations thereof, in the specification, claims, and foregoing drawings of this application are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification, claims, or foregoing drawings of this application are used to distinguish different objects, not to describe a particular order.

[0032] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0033] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings.

[0034] This application provides a packaging structure, such as... Figures 1-5As shown, the packaging structure is used to package equipment with a base 110 and a column 120 on the base 110. The packaging structure includes a box body 1, which includes a bottom plate 101 for placing the column 120. The inner wall of the bottom plate 101 is provided with a first limiting mechanism, a second limiting mechanism, and a third limiting mechanism. The first limiting mechanism is used to fix the end of the column 120 away from the base 110, the second limiting mechanism is used to fix the end of the column 120 close to the base 110, and the third limiting mechanism is used to fix both sides of the column 120.

[0035] The working principle and beneficial effects of the packaging structure provided in this application are as follows: A device (e.g., a CBCT cone-beam computed tomography scanner) with a base 110 and a column 120 is placed inside the housing 1. The column 120 is placed on the base plate 101, with both sides of the column 120 abutting against the third limiting mechanism to prevent the column 120 from moving to the sides of the housing 1. The base 110 is then perpendicular to the base plate 101, achieving initial positioning to facilitate subsequent fixing steps. Then, the first limiting mechanism is used to keep the column 120 away from the base plate 101. One end of the base 110 is fixed to achieve secondary positioning, which facilitates the implementation of subsequent fixing steps. Finally, a second limiting mechanism is used to fix the end of the column 120 near the base 110. After both ends of the column 120 are fixed, the base 110 is also fixed, preventing the base 110 and the column 120 from moving towards both ends of the housing 1 and preventing the base 110 from shaking. This application achieves multi-directional fixing of the equipment, effectively limiting the displacement of the equipment in the housing, improving the protection effect, and preventing damage to the equipment during transportation.

[0036] like Figure 2 As shown, the column 120 is further provided with a first handle 130 at the end away from the base 110, and the base plate 101 includes a long side and a short side.

[0037] In an optional embodiment, the first limiting mechanism includes a first buckle (not shown) and a first slot (not shown), the first buckle and the first slot being spaced apart on the base plate 101 along the long side direction, the first buckle and the first slot engaging to fix the first handle 130.

[0038] In the above embodiment, when the device is placed inside the housing 1, after the two sides of the column 120 abut against the third limiting mechanism, one of the first buckle and the first slot is located between the first handle 130 and the column 120, and the other is located at the end of the first handle 130 away from the column 120. Then the first buckle is fastened in the first slot to fix the first handle 130.

[0039] Preferably, the first limiting mechanism includes a first strap 2 disposed on the base plate 101, the first strap 2 being used to fix the first handle 130.

[0040] In the above embodiment, when the device is placed inside the housing 1, after the two sides of the column 120 abut against the third limiting mechanism, the first handle 130 is fixed to the base plate 101 by the first strap 2. Compared with the buckle and slot fixing method, this strap fixing method does not require the first handle 130 to be aligned between the buckle and slot, reducing the assembly difficulty for the assembly personnel.

[0041] In an optional embodiment, the second limiting mechanism includes a second buckle (not shown) and a second slot (not shown), the second buckle and the second slot being spaced apart on the base plate 101 along the short side direction, the second buckle and the second slot engaging to fix the column 120.

[0042] In the above embodiment, when the device is placed inside the housing 1, after the two sides of the column 120 abut against the third limiting mechanism and the first limiting mechanism fixes the first handle 130, the second buckle and the second slot are respectively located on both sides of the column 120, and then the second buckle is fastened in the second slot to fix the column 120.

[0043] like Figure 2 As shown, preferably, the second limiting mechanism includes a second strap 3 disposed on the base plate 101, the second strap 3 being used to bind the column 120.

[0044] In the above embodiment, when the device is placed inside the housing 1, after the two sides of the column 120 abut against the third limiting mechanism and the first limiting mechanism fixes the first handle 130, the second strap 3 is used to fix the column 120 to the base plate 101 together. Compared with the buckle and slot fixing method, this strap fixing method does not require the column 120 to be aligned between the buckle and slot, reducing the assembly difficulty for the assembly personnel.

[0045] like Figure 2 As shown, the third limiting mechanism further includes two limiting components, which are spaced apart on the base plate 101 along the long side direction. Each limiting component includes two first limiting blocks 4, which are spaced apart on the base plate 101 along the short side direction. In one limiting component, the gap between the two first limiting blocks 4 is used to fix the column 120.

[0046] In this embodiment, when the equipment is placed inside the housing 1, the two sides of the column 120 abut against the two first limiting blocks 4 spaced apart along the short side in each limiting assembly. Furthermore, a column support 6 is provided between the two first limiting blocks 4 of each limiting assembly, and the column support 6 is used to support the column 120.

[0047] In this embodiment, the column support 6 is first placed between the two first limiting blocks 4 of each limiting component, and then the equipment is placed in the box 1. This can prevent the column 120 from moving towards the base plate 101 and also prevent damage to the column 120.

[0048] Specifically, the column support 6 is pearl cotton, also known as polyethylene foam (EPE).

[0049] like Figure 2 As shown, the second handle 140 is further provided in the middle of the column 120, and a fourth limiting mechanism is also provided on the inner wall of the base plate 101; the fourth limiting mechanism is located between the two limiting components; the fourth limiting mechanism includes two second limiting blocks 5, which are spaced apart on the base plate 101 along the long side direction, and the gap between the two second limiting blocks 5 is used to fix the second handle 140.

[0050] In this embodiment, when the device is placed inside the housing 1, the two sides of the column 120 abut against the two first limiting blocks 4, and the two sides of the second handle 140 abut against the two second limiting blocks 5, thereby further realizing the fixation and positioning of the column 120.

[0051] like Figures 1-5 As shown, the device further includes a panoramic CT imaging arm 150, which is disposed on the side wall of the column 120 away from the base 110. The housing 1 includes a first side plate 102, a second side plate 103, a third side plate 104, and a fourth side plate 105 that are sequentially connected and vertically disposed on the base plate 101. The end of the first side plate 102 away from the second side plate 103 is connected to the fourth side plate 105. The housing 1 also includes a top plate 106, which is connected to the ends of the first side plate 102, the second side plate 103, the third side plate 104, and the fourth side plate 105 away from the base plate 101.

[0052] The packaging structure also includes a base support 7 and a panoramic CT imaging support 8; the base support 7 abuts against the first side plate 102, the second side plate 103 and the fourth side plate 105 to support the base 110; the panoramic CT imaging support 8 abuts against the second side plate 103, the third side plate 104 and the fourth side plate 105 to support the panoramic CT imaging arm 150.

[0053] In this embodiment, during assembly, the base plate 101, second side plate 103, third side plate 104, and fourth side plate 105 can be fixed together first to facilitate equipment placement. After placing the equipment on the base plate 101 and fixing the column 120 and base 110 using the first, second, and third limiting mechanisms, the panoramic CT imaging support 8 is placed between the second side plate 103 and the panoramic CT imaging arm 150, between the third side plate 104 and the panoramic CT imaging arm 150, and between the fourth side plate 105 and the panoramic CT imaging arm 150, providing support for the panoramic CT imaging arm 150. The panoramic CT imaging support 8 also fills the gaps between the panoramic CT imaging arm 150 and the second side plate 103, third side plate 104, and fourth side plate 105, preventing damage during transport. During transport, the panoramic CT imaging arm 150 was damaged. The base support 7 was then secured to the base 110, clamping the base support 7 between the second side plate 103 and the base 110, and between the fourth side plate 105 and the base 110. Then, the first side plate 102 was connected to the second side plate 103, the fourth side plate 105, and the bottom plate 101, so that the base support 7 was clamped between the first side plate 102 and the base 110. The base support 7 provides support for the base 110 and fills the gaps between the base 110 and the first side plate 102, the second side plate 103, and the fourth side plate 105, thus preventing damage to the base 110 during transport. Then, the top plate 106 was connected to the first side plate 102, the second side plate 103, the third side plate 104, and the fourth side plate 105.

[0054] Specifically, the base support 7 and the panoramic CT imaging support 8 are made of pearl cotton, also known as polyethylene foam (EPE).

[0055] Specifically, the base support 7 is square and has a first receiving groove (not shown) extending through both ends in the middle. The first receiving groove is used to receive the base 110 so that the assembler can fasten the base 110 support frame 18 onto the base 110. Of course, the base support 7 and the first receiving groove can also be other shapes, which can be set according to the actual shape of the base 110. This application does not impose any restrictions on them.

[0056] Specifically, the panoramic CT imaging support 8 is square and has a second receiving groove (not shown) extending through both ends in the middle. The second receiving groove is used to accommodate the panoramic CT imaging arm 150, so that the assembly personnel can place the panoramic CT imaging support 8 between the panoramic CT imaging arm 150 and the housing 1 from top to bottom. Of course, the panoramic CT imaging support 8 and the second receiving groove can also be other shapes, which can be set according to the actual shape of the panoramic CT imaging arm 150. This application does not impose any restrictions here.

[0057] Furthermore, the device also includes a lateral imaging mechanism 160, on which a lateral arm 170 is mounted; the packaging structure also includes a lateral arm support 9 and a lateral support 10; the lateral arm support 9 abuts against the end of the panoramic CT imaging support 8 away from the base plate 101, and is used to support the end of the lateral arm 170 away from the lateral imaging mechanism 160; the lateral support 10 is used to support the lateral imaging mechanism 160.

[0058] In this embodiment, after assembling the first side plate 102, the second side plate 103, the third side plate 104, the base plate 101, the column 120, the base 110, the base support 7, and the panoramic CT imaging support 8, the lateral support 10 is fitted onto the lateral imaging mechanism 160. Then, the lateral imaging mechanism 160, together with the lateral support 10, is placed between the panoramic CT imaging arm 150 and the base 110, thereby reducing the area occupied by the equipment after packaging and avoiding damage to the lateral imaging mechanism 160 during transportation. The end of the lateral arm 170 away from the lateral imaging mechanism 160 is located between the fourth side plate 105 and the panoramic CT imaging arm 150, on the end of the lateral support 10 away from the base plate 101. The lateral support 10 can also provide support for the lateral arm 170. Subsequently, the lateral arm support 9 is fitted onto the end of the lateral arm 170 away from the lateral imaging mechanism 160, thereby avoiding damage to the lateral arm 170 during transportation.

[0059] In addition, when the equipment needs to be installed after transportation, the lateral arm 170 only needs to be installed on the panoramic CT imaging arm 150. The packaging method provided in this application not only ensures the safety of the equipment, but also improves the convenience of installation.

[0060] Specifically, the side arm support 9 and the side support 10 are pearl cotton, also known as polyethylene foam (EPE).

[0061] Specifically, the side arm support 9 is square, and a third receiving groove (not shown) is provided on one side near the bottom plate 101. The third receiving groove is used to receive the end of the side arm 170 away from the side imaging mechanism 160, so that the assembler can put the side arm support 9 on the end of the side arm 170 from top to bottom. Of course, the side arm support 9 and the third receiving groove can also be other shapes, which can be set according to the actual shape of the side arm 170. This application does not limit them here.

[0062] like Figure 6 As shown, specifically, the side support 10 is square, and a fourth receiving groove 1001 is provided in the middle of the end away from the base plate 101. The fourth receiving groove 1001 is used to accommodate the side imaging mechanism 160, so that the assembler can fit the side support 10 onto the side imaging mechanism 160 from bottom to top. Of course, the side support 10 and the fourth receiving groove 1001 can also be other shapes, which can be set according to the actual shape of the side imaging mechanism 160. This application does not impose any restrictions here.

[0063] like Figure 3 , 4 As shown, the packaging structure further includes two first limiting support members 11. Each first limiting support member 11 includes a mounting base 1101 and a clamping plate 1102 disposed on one side of the mounting base 1101. The mounting base 1101 is disposed on the base plate 101, and the side support member 10 is disposed at the end of the mounting base 1101 away from the base plate 101. The clamping plate 1102 of one of the first limiting support members 11 is located between the side support member 10 and the second side plate 103, and the clamping plate 1102 of the other first limiting support member 11 is located between the side support member 10 and the fourth side plate 105.

[0064] The packaging structure also includes a second limiting support 12, and a limiting groove 1201 is provided on one side of the second limiting support 12. The limiting groove 1201 is used to accommodate one end of the lateral arm 170 near the lateral imaging mechanism 160.

[0065] In this embodiment, after assembling the first side plate 102, the second side plate 103, the third side plate 104, the base plate 101, the column 120, the panoramic CT imaging arm 150, the base 110, the base support 7, and the panoramic CT imaging support 8, the two limiting supports are inserted from the base 110 toward the column 120, so that the clamping plate 1102 of one limiting support abuts against the second side plate 103, and the clamping plate 1102 of the other limiting support abuts against the fourth side plate 105. Then, the lateral imaging mechanism 160 together with the lateral support 10 is placed between the panoramic CT imaging arm 150 and the base 110, so that the lateral support 10... The device is placed on a base 110 with two limiting supports. The two limiting supports can provide support for the side support 10 and the side imaging mechanism 160, and clamp the side support 10 and the side imaging mechanism 160, further preventing the side imaging mechanism 160 from tilting to the left or right due to the shift of the center of gravity during transportation. Then, the second limiting support 12 is placed at the end of the side imaging mechanism 160 away from the base plate 101, and the side arm 170 is aligned with the limiting groove 1201. The second limiting support 12 can not only limit the position of the side arm 170 and prevent the side arm 170 from rotating during transportation, but also further protect the end of the side imaging mechanism 160.

[0066] Specifically, the first limiting support 11 is a honeycomb cardboard.

[0067] Specifically, the second limiting support 12 is pearl cotton, also known as polyethylene foam (EPE).

[0068] Furthermore, the packaging structure also includes a lateral clamping member 13 and a panoramic CT imaging clamping member 14; the lateral clamping member 13 abuts against the top plate 106 and is used to clamp the end of the lateral imaging mechanism 160 away from the bottom plate 101; the panoramic CT imaging clamping member 14 abuts against the top plate 106 and is used to clamp the end of the panoramic CT imaging arm 150 away from the bottom plate 101.

[0069] In this embodiment, after assembling the first side plate 102, the second side plate 103, the third side plate 104, the fourth side plate 105, the base plate 101, the panoramic CT imaging arm 150, the column 120, the base 110, the base support 7, the panoramic CT imaging support 8, the lateral support 10, the lateral imaging mechanism 160, the lateral arm 170, and the lateral arm support 9, the lateral clamping member 13 is placed on the end of the lateral imaging mechanism 160 away from the base plate 101, and the panoramic CT imaging clamping member 14 is placed on the panoramic CT imaging arm 150. The top plate 106 is then connected to the first side plate 102, the second side plate 103, the third side plate 104, and the fourth side plate 105 at the end away from the bottom plate 101. This allows the lateral clamping member 13 to be located between the lateral support member 10 and the top plate 106, and the panoramic CT imaging clamping member 14 to be located between the end of the panoramic CT imaging arm 150 away from the bottom plate 101 and the top plate 106. This prevents the equipment from moving towards the top plate 106 and also prevents damage to the panoramic CT imaging arm 150 and the lateral imaging mechanism 160 when installing the top plate 106.

[0070] Specifically, the panoramic CT imaging clamping component 14 is pearl cotton, also known as polyethylene foam (EPE).

[0071] Specifically, the side clamping member 13 is a honeycomb paperboard.

[0072] like Figures 1-5 As shown, the device further includes a workstation 180, a display 190, and a lead block box 200. The packaging structure also includes a fifth limiting mechanism for restricting the workstation 180. The fifth limiting mechanism includes two third limiting blocks 15 spaced apart along the long side, one of which is located near the second side plate 103 and the other is located near the third side plate 104. The adjacent sides of the workstation 180 abut against the two third limiting blocks 15 respectively. The gap between one of the first limiting support members 11 and the workstation 180 is used to accommodate the display 190, and the gap between the workstation 180 and the side support member 10 is used to accommodate the lead block box 200.

[0073] In this embodiment, after assembling the first side plate 102, the second side plate 103, the third side plate 104, the base plate 101, the column 120, the panoramic CT imaging arm 150, and the base 110, the lead block box 200 is directly fixed to the base plate 101 with screws. Then, the workstation 180 is inserted into the gap between the panoramic CT imaging arm 150 and the second side plate 103, and the adjacent sides of the workstation 180 abut against the two third limiting blocks 15 respectively. Next, the display 190 is inserted from the base 110 toward the column 120, so that the adjacent sides of the display 190 abut against the workstation 180 and the lead block box 200. One of the first limiting support members 11 is inserted from the base 110 toward the column 120, so that the side of the display 190 away from the workstation 180 abuts against the first limiting support member 11. This application uses the gap between the column 120 and the second side plate 103 to place the workstation 180, the display 190 and the lead block box 200, thereby reducing the area occupied by the equipment after packaging. The gap between the fifth limiting mechanism and the first limiting support member 11 is used to place the workstation 180 and the display 190 to fix the workstation 180 and the display 190 and avoid the workstation 180 and the display 190 from shifting and being damaged during transportation.

[0074] Furthermore, the packaging structure also includes a protective component 16, which is disposed between the workstation 180 and the panoramic CT imaging arm 150; the protective component 16 serves to buffer and absorb shock.

[0075] Specifically, the protective component 16 is pearl cotton, also known as polyethylene foam (EPE).

[0076] Furthermore, the device also includes an auxiliary component 210, and the packaging structure further includes a sixth limiting mechanism for limiting the auxiliary component 210. The fifth limiting mechanism and the sixth limiting mechanism are spaced apart on the base plate 101 along the short side direction. The sixth limiting mechanism includes two fourth limiting blocks 17 spaced apart on the base plate 101 along the long side direction. One of the fourth limiting blocks 17 is located near the fourth side plate 105, and the other is located near the third side plate 104. The two adjacent sides of the auxiliary component 210 abut against the two fourth limiting blocks 17 respectively. The panoramic CT imaging support 8 abuts against one end near the base plate 101 and the other end of the auxiliary component 210 and the working part away from the base plate 101.

[0077] In this embodiment, after assembling the first side plate 102, the second side plate 103, the third side plate 104, the base plate 101, the column 120, the panoramic CT imaging arm 150, and the base 110, the auxiliary component 210 is inserted into the gap between the panoramic CT imaging arm 150 and the fourth side plate 105, and the adjacent sides of the auxiliary component 210 abut against the two fourth limiting blocks 17 respectively. After installing the auxiliary component 210 and the workstation 180, the panoramic CT imaging support component 8 is installed, and the bottom of the panoramic CT imaging support component 8 abuts against the top of the auxiliary component 210 and the workstation 180. The auxiliary component 210 is fixed by the cooperation of the sixth limiting structure and the panoramic CT imaging support component 8, and the workstation 180 is fixed by the cooperation of the fifth limiting structure and the panoramic CT imaging support component 8, so as to avoid the workstation 180 and the auxiliary component 210 shifting and causing damage during transportation.

[0078] like Figure 1 As shown, the packaging structure further includes a support frame 18, which is disposed on the bottom plate 101 and abuts against the top plate 106, and the support frame 18 is located between the bottom plates 101.

[0079] In this embodiment, a support frame 18 is provided on the bottom plate 101 to abut against the top. During transportation, the support frame 18 can distribute and bear the load from the top plate 106, which improves the compressive strength of the box 1 and prevents the top plate 106 from bending under force and damaging the equipment.

[0080] Furthermore, the packaging structure also includes a waterproof bag 19, which is disposed in the space enclosed by the bottom plate 101, the first side plate 102, the second side plate 103, the third side plate 104, the fourth side plate 105 and the top plate 106. The equipment, the base support 7, the panoramic CT imaging support 8, the support frame 18, the side arm support 9, the side support 10, the first limiting support 11, the second limiting support 12, the side clamping member 13 and the panoramic CT imaging clamping member 14 are all located in the waterproof bag 19.

[0081] In this embodiment, the waterproof bag 19 can effectively block external moisture and prevent the items inside the box 1 from getting damp.

[0082] Obviously, the embodiments described above are only some embodiments of this application, not all embodiments. The accompanying drawings show preferred embodiments of this application, but do not limit the patent scope of this application. This application can be implemented in many different forms; rather, the purpose of providing these embodiments is to provide a more thorough and comprehensive understanding of the disclosure of this application. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing specific embodiments, or make equivalent substitutions for some of the technical features. Any equivalent structures made using the content of this application's specification and drawings, directly or indirectly applied to other related technical fields, are similarly within the scope of patent protection of this application.

Claims

1. A packaging structure for packaging a base and a device with a column on the base, characterized in that, The device includes a housing, which includes a base plate for placing the upright. The inner wall of the base plate is provided with a first limiting mechanism, a second limiting mechanism, and a third limiting mechanism. The first limiting mechanism is used to fix the end of the upright away from the base, the second limiting mechanism is used to fix the end of the upright close to the base, and the third limiting mechanism is used to fix both sides of the upright.

2. The packaging structure according to claim 1, characterized in that, The column is provided with a first handle at the end away from the base, and the base plate includes a long side and a short side; The first limiting mechanism includes a first buckle and a first slot, which are spaced apart on the base plate along the long side. The first buckle and the first slot engage to fix the first handle; or, the first limiting mechanism includes a first strap on the base plate to fix the first handle. The second limiting mechanism includes a second buckle and a second slot, which are spaced apart on the base plate along the short side direction. The second buckle and the second slot engage to fix the column; or, the second limiting mechanism includes a second strap on the base plate, which is used to bind the column. The third limiting mechanism includes two limiting components, which are spaced apart on the base plate along the long side direction. Each limiting component includes two first limiting blocks, which are spaced apart on the base plate along the short side direction. In one limiting component, the gap between the two first limiting blocks is used to fix the column.

3. The packaging structure according to claim 2, characterized in that, The second handle is located in the middle of the column, and a fourth limiting mechanism is also provided on the inner wall of the base plate; the fourth limiting mechanism is located between the two limiting components; the fourth limiting mechanism includes two second limiting blocks, which are spaced apart on the base plate along the long side direction, and the gap between the two second limiting blocks is used to fix the second handle.

4. The packaging structure according to any one of claims 2 to 3, characterized in that, The device also includes a panoramic CT imaging arm, which is disposed on the side wall of the column away from the base. The housing includes a first side plate, a second side plate, a third side plate, and a fourth side plate that are connected in sequence and perpendicularly disposed on the base plate. The end of the first side plate away from the second side plate is connected to the fourth side plate. The housing also includes a top plate, which is connected to the end of the first side plate, the second side plate, the third side plate, and the fourth side plate away from the base plate. The packaging structure also includes a base support and a panoramic CT imaging support; the base support abuts against the first side plate, the second side plate and the fourth side plate to support the base; the panoramic CT imaging support abuts against the second side plate, the third side plate and the fourth side plate to support the panoramic CT imaging arm.

5. The packaging structure according to claim 4, characterized in that, The device further includes a lateral imaging mechanism, which has a lateral arm; the packaging structure further includes a lateral arm support and a lateral support; the lateral arm support abuts against the end of the panoramic CT imaging support away from the base plate, and is used to support the end of the lateral arm away from the lateral imaging mechanism; the lateral support is used to support the lateral imaging mechanism.

6. The packaging structure according to claim 5, characterized in that, The packaging structure includes two first limiting support members. Each first limiting support member includes a mounting base and a clamping plate disposed on one side of the mounting base. The mounting base is disposed on the base plate, and the side support member is disposed at the end of the mounting base away from the base plate. The clamping plate of one first limiting support member is located between the side support member and the second side plate, and the clamping plate of the other first limiting support member is located between the side support member and the fourth side plate. The packaging structure also includes a second limiting support member, and a limiting groove is provided on one side of the second limiting support member. The limiting groove is used to accommodate one end of the lateral arm adjacent to the lateral imaging mechanism.

7. The packaging structure according to claim 5, characterized in that, The packaging structure also includes a lateral clamping component and a panoramic CT imaging clamping component; the lateral clamping component abuts against the top plate and is used to clamp the end of the lateral imaging mechanism away from the bottom plate; the panoramic CT imaging clamping component abuts against the top plate and is used to clamp the end of the panoramic CT imaging arm away from the bottom plate.

8. The packaging structure according to claim 6, characterized in that, The device also includes a workstation, a display, and a lead block box. The packaging structure further includes a fifth limiting mechanism for restricting the workstation. The fifth limiting mechanism includes two third limiting blocks spaced apart along the long side, one of which is located near the second side plate and the other is located adjacent to the third side plate. The adjacent sides of the workstation abut against the two third limiting blocks respectively. The gap between one of the first limiting supports and the workstation is used to accommodate the display, and the gap between the workstation and the side support is used to accommodate the lead block box.

9. The packaging structure according to claim 8, characterized in that, The device also includes auxiliary components, and the packaging structure further includes a sixth limiting mechanism for limiting the auxiliary components. The fifth limiting mechanism and the sixth limiting mechanism are spaced apart on the base plate along the short side direction. The sixth limiting mechanism includes two fourth limiting blocks spaced apart on the base plate along the long side direction, one of which is located near the fourth side plate and the other is located near the third side plate. The adjacent sides of the auxiliary components abut against the two fourth limiting blocks respectively. The panoramic CT imaging support abuts against one end near the base plate and the other end of the auxiliary components and the workstation away from the base plate.

10. The packaging structure according to claim 4, characterized in that, The packaging structure also includes a support frame, which is disposed on the base plate and abuts against the top plate, and the support frame is located between the base plates.