Packaging protector for a camera
Patent Information
- Application Number
- CN202521506597.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-18
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-07-18
AI Technical Summary
[0004]基于此,有必要针对传统技术镜头防护与图像清晰度无法兼顾的问题,提供一种用于拍摄设备的包装护具
[0051]综上,实施本实施例技术方案将获得如下有益效果:本方案的包装护具应用于对拍摄设备200包装防护的使用场景中,具体地,使用时,将拍摄设备200安装至第一护具20与第二护具30之间,然后打开箱盖12,将第一护具20、拍摄设备200和第二护具30整体装入箱体11内,最后关上箱盖12(也可以是将第一护具20、拍摄设备200和第二护具30依次装入箱体11内,具体安装顺序和方式可根据实际需要灵活选择),即可完成拍摄设备200的装箱操作。
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Figure CN224797617U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of packaging materials, and in particular to a protective packaging for photographic equipment. Background Technology
[0002] Shooting equipment is an optical imaging device used for capturing images and other data. Therefore, it has high precision and protection requirements, and needs to be packaged for shock and drop protection during transportation. Taking a gimbal camera with a dome lens as an example, when the gimbal camera is working, the lens has the freedom to rotate in the horizontal and / or vertical directions. Therefore, during the transportation of the gimbal camera, the lens will inevitably rotate freely. In this case, in order to avoid collisions or abrasions between the lens and the external dome lens, the distance between the inner wall of the dome lens and the lens is generally designed to be relatively large, usually about 8mm to 15mm. In this case, simple packaging can meet the protection needs against vibration and drops.
[0003] However, when the dome is far from the lens, more ambient light enters the lens, causing severe halos and reducing the sharpness of the image captured by the lens, thus affecting the shooting effect of the gimbal camera. Utility Model Content
[0004] Therefore, it is necessary to provide a protective packaging for shooting equipment to address the problem that traditional technologies cannot simultaneously achieve lens protection and image clarity.
[0005] This application provides a protective packaging for a shooting device, comprising:
[0006] A packaging box, the packaging box including a box body and a box lid that is openable and closable connected to the box body, wherein the box lid, in the closed position, cooperates with the box body to form an installation cavity; and
[0007] First protective gear and second protective gear, the first protective gear and the second protective gear are installed in the mounting cavity, the first protective gear and the second protective gear cooperate to form a receiving cavity, the receiving cavity is used to accommodate the shooting equipment;
[0008] The first protective gear is provided with a first buffer structure, which abuts against the inner wall of the box; the second protective gear is provided with a second buffer structure, which abuts against the inner wall of the box and the box lid.
[0009] This packaging solution is designed for use in scenarios involving the protection of filming equipment. Specifically, in use, the filming equipment is placed between the first and second protective devices. Then, the box lid is opened, and the first, filming, and second protective devices are placed inside the box as a whole. Finally, the box lid is closed (or the first, filming, and second protective devices can be placed inside the box sequentially). This completes the packing operation. Furthermore, the first buffer structure on the first protective device forms an abutment with the inner wall of the box, while the second buffer structure forms an abutment with both the inner wall and the lid. At this point, the first and second protective devices will not contact the box or lid but will form a large gap, protecting the equipment from environmental vibrations, collisions, drops, and other impacts during handling and transportation. When impacted by force, the impact energy is transferred through the housing and / or cover to the first and / or second buffer structures. The first and / or second buffer structures can play an excellent buffering role, effectively consuming the impact energy. Combined with the protective effect of the first and second protective gears on the shooting equipment, the impact energy can be effectively blocked from being transmitted to the shooting equipment, thereby reducing the shaking amplitude when the lens of the shooting equipment rotates and preventing collision or friction damage between the lens and the dome. In this way, the lens of the shooting equipment does not need to be separated from the dome by an excessively large protective distance, allowing the lens to be close to the dome, reducing the amount of ambient light entering the lens, avoiding halos, ensuring the clarity of the images captured by the shooting equipment, and ensuring the shooting capability and effect of the shooting equipment.
[0010] The technical solution of this application will be further described below:
[0011] In one embodiment, the first buffer structure includes at least two first protective components, which are circumferentially spaced on the outer peripheral wall of the first protective device. The at least two first protective components abut against the inner wall of the box, so that a first gap is formed between the outer wall of the first protective device and the inner wall of the box.
[0012] In one embodiment, the box has a first box apex corner, a second box apex corner, a third box apex corner and a fourth box apex corner spaced apart along the circumference of the packaging box, and the first protective component is provided in four parts, the first protective device having a first protective device apex corner, a second protective device apex corner, a third protective device apex corner and a fourth protective device apex corner;
[0013] The first protective device has a first protective component at its top corner, and the first protective component abuts against the inner wall of the top corner of the first box; the second protective device has a first protective component at its top corner, and the first protective component abuts against the inner wall of the top corner of the second box; the third protective device has a first protective component at its top corner, and the first protective component abuts against the inner wall of the top corner of the third box; the fourth protective device has a first protective component at its top corner, and the first protective component abuts against the inner wall of the top corner of the fourth box.
[0014] In one embodiment, the first protective gear further has a first protective gear edge, a second protective gear edge, a third protective gear edge, and a fourth protective gear edge, and the box body further has a first box edge, a second box edge, a third box edge, and a fourth box edge;
[0015] A first gap is formed between the apex corner of the first protective device and the apex corner of the first box; a second gap is formed between the edge of the first protective device and the edge of the first box; a third gap is formed between the apex corner of the second protective device and the apex corner of the second box; a fourth gap is formed between the edge of the second protective device and the edge of the second box; a fifth gap is formed between the apex corner of the third protective device and the apex corner of the third box; a sixth gap is formed between the edge of the third protective device and the edge of the third box; a seventh gap is formed between the apex corner of the fourth protective device and the apex corner of the fourth box; an eighth gap is formed between the edge of the fourth protective device and the edge of the fourth box; a ninth gap is formed between the bottom wall of the first protective device away from the second protective device and the bottom wall of the box body; and a tenth gap is formed between the outer peripheral wall of the first protective device and the outer peripheral wall of the box body. The first gap, the second gap, the third gap, the fourth gap, the fifth gap, the sixth gap, the seventh gap, the eighth gap, the ninth gap, and the tenth gap together constitute the first gap.
[0016] In one embodiment, the box body includes a bottom wall and a first box side wall, a second box side wall, a third box side wall and a fourth box side wall that are connected end to end on the bottom wall, and the first protective device includes a bottom wall and a first protective device side wall, a second protective device side wall, a third protective device side wall and a fourth protective device side wall that are connected end to end on the bottom wall.
[0017] The first protective component includes a first buffer, a second buffer, and a third buffer. The first, second, and third buffers located at the top corners of the first protective gear respectively abut against the bottom wall of the box, the first side wall of the box, and the second side wall of the box. The first, second, and third buffers located at the top corners of the second protective gear respectively abut against the bottom wall of the box, the second side wall of the box, and the third side wall of the box. The first, second, and third buffers located at the top corners of the third protective gear respectively abut against the bottom wall of the box, the third side wall of the box, and the fourth side wall of the box. The first, second, and third buffers located at the top corners of the fourth protective gear respectively abut against the bottom wall of the box, the fourth side wall of the box, and the first side wall of the box.
[0018] In one embodiment, the second buffer structure includes at least two second protective components, which are circumferentially spaced on the outer peripheral wall of the second protective device. The at least two second protective components abut against the inner wall of the box and the box cover, so that a second gap is formed between the outer wall of the second protective device and the inner wall of the box and the box cover.
[0019] In one embodiment, the box body and the box lid cooperate to form a fifth box apex corner, a sixth box apex corner, a seventh box apex corner and an eighth box apex corner that are spaced apart along the circumference of the packaging box; the second protective component is provided with four; the second protective gear has a fifth protective gear apex corner, a sixth protective gear apex corner, a seventh protective gear apex corner and an eighth protective gear apex corner.
[0020] The fifth protective device is provided with a second protective component at its top corner, and the second protective component abuts against the inner wall of the top corner of the fifth box; the sixth protective device is provided with a second protective component at its top corner, and the second protective component abuts against the inner wall of the top corner of the sixth box; the seventh protective device is provided with a second protective component at its top corner, and the second protective component abuts against the inner wall of the top corner of the seventh box; the eighth protective device is provided with a second protective component at its top corner, and the second protective component abuts against the inner wall of the top corner of the eighth box.
[0021] In one embodiment, the second protective gear further has a fifth protective gear edge, a sixth protective gear edge, a seventh protective gear edge, and an eighth protective gear edge, and the box body further has a fifth box edge, a sixth box edge, a seventh box edge, and an eighth box edge;
[0022] An eleventh gap is formed between the apex corner of the fifth protective device and the apex corner of the fifth box; a twelfth gap is formed between the edge of the fifth protective device and the edge of the fifth box; a thirteenth gap is formed between the apex corner of the sixth protective device and the apex corner of the sixth box; a fourteenth gap is formed between the edge of the sixth protective device and the edge of the sixth box; a fifteenth gap is formed between the apex corner of the seventh protective device and the apex corner of the seventh box; a sixteenth gap is formed between the edge of the seventh protective device and the edge of the seventh box; a seventeenth gap is formed between the apex corner of the eighth protective device and the apex corner of the eighth box; an eighteenth gap is formed between the edge of the eighth protective device and the edge of the eighth box; a nineteenth gap is formed between the top wall of the second protective device, which is away from the first protective device, and the box lid; a twentieth gap is formed between the outer peripheral wall of the second protective device and the outer peripheral wall of the box body. The eleventh, twelfth, thirteenth, fourteenth, fifteenth, sixteenth, seventeenth, eighteenth, nineteenth, and twentieth gaps together constitute the second gap.
[0023] In one embodiment, the box body includes a bottom wall and a first box side wall, a second box side wall, a third box side wall and a fourth box side wall that are connected end to end on the bottom wall, and the second protective device includes a top wall and a fifth protective device side wall, a sixth protective device side wall, a seventh protective device side wall and an eighth protective device side wall that are connected end to end on the top wall.
[0024] The second protective component includes a fourth, a fifth, and a sixth buffer member. The fourth, fifth, and sixth buffer members located at the top corner of the fifth protective device respectively abut against the lid, the first side wall of the box, and the second side wall of the box; the fourth, fifth, and sixth buffer members located at the top corner of the sixth protective device respectively abut against the lid, the second side wall of the box, and the third side wall of the box; the fourth, fifth, and sixth buffer members located at the top corner of the seventh protective device respectively abut against the lid, the third side wall of the box, and the fourth side wall of the box; and the fourth, fifth, and sixth buffer members located at the top corner of the eighth protective device respectively abut against the lid, the fourth side wall of the box, and the first side wall of the box.
[0025] In one embodiment, the top wall of the second protective gear has a clearance hole that communicates with the receiving cavity. The clearance hole is used to accommodate the lens and dome of the shooting equipment, and a safe distance is formed between the wall of the clearance hole and the dome. Attached Figure Description
[0026] The accompanying drawings, which form part of this application, are used to provide a further understanding of this application. The illustrative embodiments of this application and their descriptions are used to explain this application and do not constitute an undue limitation of this application.
[0027] To more clearly illustrate the technical solutions in the embodiments 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 only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0028] Figure 1 This is an exploded structural diagram of the packaging protective gear for a shooting device according to an embodiment of this application.
[0029] Figure 2 This is a schematic diagram of the exploded structure of a protective package for a camera device, according to another embodiment.
[0030] Figure 3 This is a schematic diagram of the exploded structure of a protective package for a camera device, according to yet another embodiment.
[0031] Explanation of reference numerals in the attached figures:
[0032] 100. Packaging protective gear for filming equipment; 10. Packaging box; 11. Box body; 111. Top corner of the first box; 112. Top corner of the second box; 113. Top corner of the third box; 114. Top corner of the fourth box; 114a. Top corner of the fifth box; 114b. Top corner of the sixth box; 114c. Top corner of the seventh box; 114d. Top corner of the eighth box; 115. Edge of the first box; 116. Edge of the second box; 117. Edge of the third box; 118. Edge of the fourth box; 118a. Edge of the fifth box 118b, Sixth box edge; 118c, Seventh box edge; 118d, Eighth box edge; 119, Box bottom wall; 119a, First box side wall; 119b, Second box side wall; 119c, Third box side wall; 119d, Fourth box side wall; 12, Box lid; 13, Mounting cavity; 20, First protective device; 21, First protective device apex corner; 22, Second protective device apex corner; 23, Third protective device apex corner; 24, Fourth protective device apex corner; 25, First protective device edge; 26, Second protective device Edges; 27. Third protective gear edge; 28. Fourth protective gear edge; 29. Bottom wall; 29a. First protective gear side wall; 29b. Second protective gear side wall; 29c. Third protective gear side wall; 29d. Fourth protective gear side wall; 30. Second protective gear; 31. Fifth protective gear apex angle; 32. Sixth protective gear apex angle; 33. Seventh protective gear apex angle; 34. Eighth protective gear apex angle; 35. Fifth protective gear edge; 36. Sixth protective gear edge; 37. Seventh protective gear edge; 38. Eighth protective gear edge; 39. Fifth protective gear sidewall; 39a, Sixth protective gear sidewall; 39b, Seventh protective gear sidewall; 39c, Eighth protective gear sidewall; 30a, clearance hole; 40, First buffer structure; 41, First protective component; 411, First buffer element; 412, Second buffer element; 413, Third buffer element; 50, Second buffer structure; 51, Second protective component; 511, Fourth buffer element; 512, Fifth buffer element; 513, Sixth buffer element; 200, Filming equipment; 210, Lens. Detailed Implementation
[0033] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.
[0034] In the description of this application, it should be understood that if terms such as "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" appear, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.
[0035] Furthermore, where the terms "first" and "second" appear, these terms are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, where the term "multiple" appears, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0036] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0037] In this application, unless otherwise expressly specified and limited, the use of descriptions such as "above" or "below" the second feature indicates that the first and second features are in direct contact or indirect contact via an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. Similarly, "below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.
[0038] It should be noted that if an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or there may be an intervening element. If an element is considered to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. If so, the terms "vertical," "horizontal," "upper," "lower," "left," "right," and similar expressions used in this application are for illustrative purposes only and do not represent the only possible implementation.
[0039] During the transportation of a gimbal camera, the lens 210 inevitably rotates freely. To prevent collisions or abrasions between the lens 210 and the external dome cover, the distance between the inner wall of the dome cover and the lens 210 is generally designed to be relatively large, typically about 8mm to 15mm. In this case, simple packaging can meet the protection requirements against vibration and drops. However, when the distance between the dome cover and the lens 210 is too great, more ambient light will enter the lens 210, causing severe halos and reducing the sharpness of the image captured by the lens 210, thus affecting the shooting performance of the gimbal camera.
[0040] To address the aforementioned issues, this application improves and optimizes the structure of conventional packaging by further designing and manufacturing a first buffer structure 40 and a second buffer structure 50 for the first protective gear 20 and the second protective gear 30 used to package the shooting equipment 200. This enhances the cushioning capacity of the packaging to prevent vibration and impact from being transmitted to the shooting equipment 200, thereby preventing the lens 210 from rotating relative to the dome and preventing the lens 210 from being damaged by collision or friction. In this way, it is not necessary to maintain a large distance between the lens 210 and the dome, thus preventing ambient stray light from entering the lens 210 and affecting the quality of the captured image.
[0041] See Figure 1 This application illustrates a packaging protective device 100 for a shooting device 200, which may be, but is not limited to, a gimbal camera. The gimbal camera is equipped with a dome cover, which covers the outside of the lens 210 and protects the lens 210.
[0042] Typically, a dome cover is a spherical transparent protective cover, made of transparent materials such as glass, acrylic, or plastic, to avoid obstructing the lens 210.
[0043] The packaging protective gear encloses the shooting equipment 200 inside, which protects the shooting equipment 200 from damage caused by collisions during handling and transportation.
[0044] Please continue reading. Figures 1 to 3For example, the packaging protective gear includes a packaging box 10, a first protective gear 20, and a second protective gear 30. The packaging box 10 serves as the entire external protective component of the packaging protective gear, providing protection for the first protective gear 20, the second protective gear 30, and the filming equipment 200.
[0045] For example, packaging box 10 can be, but is not limited to, a cardboard box. The material of the cardboard box can be corrugated paper, etc., which has excellent protective and cushioning effects.
[0046] Please continue reading. Figure 1 In this application, the packaging box 10 includes a box body 11 and a box cover 12 that is closable and connected to the box body 11. The box cover 12 in the closed position cooperates with the box body 11 to form an installation cavity 13.
[0047] Specifically, the top of the box body 11 has an opening, and the box cover 12 is rotatably mounted on the box body 11, which can close or open the opening. The box cover 12 can be integrally formed with the box body 11, or it can be detachably assembled with the box body 11, which can be flexibly selected according to actual needs.
[0048] Furthermore, in order to facilitate opening and closing operations and improve the protective effect of the packaging box 10 after it is closed, the box cover 12 consists of four flaps arranged in a rectangular shape. When closed, the four flaps seal the opening by at least partially stacking.
[0049] The first protective gear 20 and the second protective gear 30 are installed in the mounting cavity 13. The first protective gear 20 and the second protective gear 30 cooperate to form a receiving cavity, which is used to accommodate the shooting equipment 200.
[0050] Please continue reading. Figures 1 to 3 The first protective gear 20 is provided with a first buffer structure 40, which abuts against the inner wall of the box 11; the second protective gear 30 is provided with a second buffer structure 50, which abuts against the inner wall of the box 11 and the box cover 12.
[0051] In summary, implementing the technical solution of this embodiment will achieve the following beneficial effects: The packaging protective gear of this solution is applied to the use scenario of packaging and protecting the shooting equipment 200. Specifically, when using it, the shooting equipment 200 is installed between the first protective gear 20 and the second protective gear 30, then the box cover 12 is opened, and the first protective gear 20, the shooting equipment 200 and the second protective gear 30 are put into the box body 11 as a whole. Finally, the box cover 12 is closed (or the first protective gear 20, the shooting equipment 200 and the second protective gear 30 can be put into the box body 11 in sequence. The specific installation order and method can be flexibly selected according to actual needs), and the boxing operation of the shooting equipment 200 can be completed.
[0052] Based on this, the first buffer structure 40 pre-set on the first protective gear 20 forms an abutment relationship with the inner wall of the box 11, while the second buffer structure 50 forms an abutment relationship with the inner wall of the box 11 and the lid 12. At this time, the first protective gear 20 and the second protective gear 30 will not contact the box 11 and the lid 12, but will form a large area of gap. When subjected to environmental vibration, collision, drop and other impact forces during handling and circulation, the impact energy is transferred through the box 11 and / or the lid 12 to the first buffer structure 40 and / or the second buffer structure 50. The first buffer structure 40 and / or the second buffer structure 50 can play an excellent buffering role and effectively consume the impact energy. The impact energy, combined with the protective effect of the first protective gear 20 and the second protective gear 30 on the shooting device 200, can effectively block the transmission of impact energy to the shooting device 200, thereby reducing the shaking amplitude when the lens 210 of the shooting device 200 rotates, and preventing collision or friction damage between the lens 210 and the dome. In this way, the lens 210 of the shooting device 200 does not need to be separated from the dome by an excessively large protective distance, allowing the lens 210 to be close to the dome, reducing the amount of ambient light entering the lens 210, avoiding halo problems, ensuring the clarity of the images captured by the shooting device 200, and ensuring the shooting capability and effect of the shooting device 200.
[0053] Optionally, in one embodiment, both the first protective gear 20 and the second protective gear 30 are components of trays or pads made of EPE (Expanded Polyethylene, also known as pearl cotton, is an environmentally friendly packaging material made of low-density polyethylene (LDPE) and formed into a closed-cell structure using a physical foaming process), which have excellent cushioning and vibration damping performance.
[0054] To improve the stability of the shooting equipment 200, the first protective device 20 has a contoured groove recessed on the side wall (which can be understood as the top wall of the first protective device 20) facing the second protective device 30. The contoured groove is adapted to the shape and size of the main unit of the shooting equipment 200, so that the shooting equipment 200 can be well locked and the shooting equipment 200 is not easy to shake or loosen after it is installed in the first protective device 20.
[0055] Please continue reading. Figure 1 Furthermore, in another embodiment, the top wall of the second protective device 30 is provided with a clearance hole 30a, which is connected to the receiving cavity. The clearance hole 30a is used to accommodate the lens 210 and the dome of the shooting device 200, and a safe distance is formed between the hole wall of the clearance hole 30a and the dome.
[0056] A clearance hole 30a is provided to accommodate the lens 210 and the dome of the shooting device 200, and to form a safe distance between the wall of the clearance hole 30a and the dome, so as to avoid the lens 210 still rotating and causing contact wear between the lens 210 and the dome in the event of an accidental drop or other accident, because the dome is blocked by the wall of the clearance hole 30a.
[0057] For example, the safety distance between the spherical cover and the wall of the clearance hole 30a shall not be less than 15mm.
[0058] It should be noted that when the shooting device 200 has two or more lenses 210, two or more clearance holes 30a are also provided on the second protective device 30, with each clearance hole 30a corresponding to a lens 210. Alternatively, only one clearance hole 30a may be provided, but the size of the single clearance hole 30a may be enlarged to accommodate two or more lenses 210 simultaneously. The specific configuration can be flexibly adjusted according to actual needs.
[0059] In this application, the packaging box 10 is specifically rectangular in shape, wherein the box body 11 has five side walls and the box lid 12 serves as the sixth side wall. Correspondingly, the first protective gear 20 and the second protective gear 30 are also rectangular in shape, so that the packaging box 10, the first protective gear 20 and the second protective gear 30 can be better fitted and assembled, making full use of the space of the mounting cavity 13.
[0060] Please continue reading. Figures 2 to 3 Furthermore, in one embodiment, the first buffer structure 40 includes at least two first protective components 41, which are circumferentially spaced on the outer peripheral wall of the first protective device 20. The at least two first protective components 41 abut against the inner wall of the box 11 to form a first gap between the outer wall of the first protective device 20 and the inner wall of the box 11.
[0061] At least two first protective components 41 are arranged circumferentially on the outer peripheral wall of the first protective device 20, and each first protective component 41 is in contact with the inner wall of the box 11. This ensures that no matter what spatial posture the packaging box 10 falls in, the impact energy will be dispersed to each first protective component 41 through the first gap, so that the impact energy can be consumed by the first protective components 41, thus providing a good buffering and protection effect for the shooting equipment 200.
[0062] More specifically, since the packaging box 10 is rectangular in shape, in one embodiment, the box body 11 has a first box apex corner 111, a second box apex corner 112, a third box apex corner 113, and a fourth box apex corner 114 spaced apart along the circumference of the packaging box 10. It can be understood that these four box apex corners are the four box apex corners of the bottom of the packaging box 10. The first protective component 41 is provided with four parts, and the first protective device 20 has a first protective device apex corner 21, a second protective device apex corner 22, a third protective device apex corner 23, and a fourth protective device apex corner 24.
[0063] A first protective component 41 is provided at the top corner 21 of the first protective gear, and the first protective component 41 abuts against the inner wall of the top corner 111 of the first box; a first protective component 41 is provided at the top corner 22 of the second protective gear, and the first protective component 41 abuts against the inner wall of the top corner 112 of the second box; a first protective component 41 is provided at the top corner 23 of the third protective gear, and the first protective component 41 abuts against the inner wall of the top corner 113 of the third box; a first protective component 41 is provided at the top corner 24 of the fourth protective gear, and the first protective component 41 abuts against the inner wall of the top corner 114 of the fourth box.
[0064] Thus, when the packaging box 10 containing the shooting equipment 200 falls to the ground at any one of the first box corner 111, the second box corner 112, the third box corner 113, and the fourth box corner 114, there is a corresponding first protective component 41 to directly buffer the impact energy, thereby improving the protection effect on the shooting equipment 200.
[0065] Please continue reading. Figures 2 to 3 Furthermore, in yet another embodiment, the first protective gear 20 also has a first protective gear edge 25, a second protective gear edge 26, a third protective gear edge 27 and a fourth protective gear edge 28, and the box body 11 also has a first box edge 115, a second box edge 116, a third box edge 117 and a fourth box edge 118.
[0066] A first gap is formed between the apex angle 21 of the first protective gear and the apex angle 111 of the first box; a second gap is formed between the edge 25 of the first protective gear and the edge 115 of the first box; a third gap is formed between the apex angle 22 of the second protective gear and the apex angle 112 of the second box; a fourth gap is formed between the edge 26 of the second protective gear and the edge 116 of the second box; a fifth gap is formed between the apex angle 23 of the third protective gear and the apex angle 113 of the third box; a sixth gap is formed between the edge 27 of the third protective gear and the edge 117 of the third box; and a fourth gap is formed between the apex angle 24 of the fourth protective gear and the top of the fourth box. A seventh gap is formed between the corners 114, an eighth gap is formed between the edge 28 of the fourth guard and the edge 118 of the fourth box, a ninth gap is formed between the bottom wall 29 of the first guard 20 away from the second guard 30 and the bottom wall 119 of the box body 11, and a tenth gap is formed between the outer peripheral wall of the first guard 20 and the outer peripheral wall of the box body 11. The first gap, the second gap, the third gap, the fourth gap, the fifth gap, the sixth gap, the seventh gap, the eighth gap, the ninth gap and the tenth gap cooperate to form the first gap.
[0067] Therefore, in actual use, when the packaging box 10 is accidentally dropped and hits the ground by any one of the edges of the first box 115, the second box 116, the third box 117, and the fourth box 118, or by any one of the top corners of the first box 111, the second box 112, the third box 113, and the fourth box 114, or by any one of the side walls of the box body 11, the resulting impact energy will be transmitted to each of the first protective components 41 through the corresponding intervals. The first protective components 41 will buffer and absorb the energy, reducing or eliminating the impact force transmitted to the shooting equipment 200 and protecting the safety of the shooting equipment 200.
[0068] Furthermore, based on any of the above embodiments, the box body 11 includes a bottom wall 119 and a first box side wall 119a, a second box side wall 119b, a third box side wall 119c, and a fourth box side wall 119d that are connected end to end and surrounded on the bottom wall 119. The first protective device 20 includes a bottom wall 29 and a first protective device side wall 29a, a second protective device side wall 29b, a third protective device side wall 29c, and a fourth protective device side wall 29d that are connected end to end and surrounded on the bottom wall 29.
[0069] Please continue reading. Figures 2 to 3The first protective component 41 includes a first buffer 411, a second buffer 412, and a third buffer 413. The first buffer 411, second buffer 412, and third buffer 413, located at the top corner 21 of the first protective device, respectively abut against the bottom wall 119, the first side wall 119a, and the second side wall 119b of the container. The first buffer 411, second buffer 412, and third buffer 413, located at the top corner 22 of the second protective device, respectively abut against the bottom wall 119, the second side wall 119a, and the third side wall 119b of the container. 9b and the third box side wall 119c abut against each other in a corresponding manner; the first buffer 411, the second buffer 412 and the third buffer 413 set at the top corner 23 of the third protective gear abut against the bottom wall 119, the third box side wall 119c and the fourth box side wall 119d respectively; the first buffer 411, the second buffer 412 and the third buffer 413 set at the top corner 24 of the fourth protective gear abut against the bottom wall 119, the fourth box side wall 119d and the first box side wall 119a respectively.
[0070] At this time, the bottom wall 29 of the first protective gear 20 abuts against the bottom wall 119 of the box simultaneously through four buffers, the side wall 29a of the first protective gear abuts against the side wall 119a of the first box simultaneously through two buffers, the side wall 29b of the second protective gear abuts against the side wall 119b of the second box simultaneously through two buffers, the side wall 29c of the third protective gear abuts against the side wall 119c of the third box simultaneously through two buffers, and the side wall 29d of the fourth protective gear abuts against the side wall 119d of the fourth box simultaneously through two buffers. The impact energy generated by the fall can be distributed to different buffers to obtain a better cushioning and energy absorption effect, thereby strengthening the drop protection performance of the packaging box 10.
[0071] Optionally, the first buffer 411, the second buffer 412 and the third buffer 413 can be any one of the following, but not limited to, airbags, rubber blocks, foam pads, etc., and can be flexibly selected according to actual needs.
[0072] Optionally, the first buffer 411, the second buffer 412, and the third buffer 413 can be any structural shape such as a square, a sphere, or a cylinder.
[0073] During installation, the first protective device 20 is positioned near the lower part of the box 11, primarily to protect the box 10 from falling downwards. The second protective device 30 is positioned near the upper part of the box 10, primarily to protect the box 10 from falling downwards.
[0074] Please continue reading. Figures 2 to 3Specifically, in one embodiment, the second buffer structure 50 includes at least two second protective components 51, which are circumferentially spaced on the outer peripheral wall of the second protective device 30. The at least two second protective components 51 abut against the inner wall of the box 11 and the box cover 12, so that a second gap is formed between the outer wall surface of the second protective device 30 and the inner wall of the box 11 and the box cover 12.
[0075] Similarly, at least two second protective components 51 are arranged circumferentially on the outer peripheral wall of the second protective device 30, and each second protective component 51 is in contact with the inner wall of the box 11. This ensures that no matter what spatial posture the packaging box 10 falls in, the impact energy will be dispersed to each second protective component 51 through the second gap, so that the impact energy can be consumed by the second protective components 51, thus providing a good buffering and protection effect for the shooting equipment 200.
[0076] More specifically, in one embodiment, the box body 11 and the box cover 12 cooperate to form a fifth box apex corner 114a, a sixth box apex corner 114b, a seventh box apex corner 114c and an eighth box apex corner 114d that are spaced apart along the circumference of the packaging box 10. The second protective component 51 is provided with four parts, and the second protective gear 30 has a fifth protective gear apex corner 31, a sixth protective gear apex corner 32, a seventh protective gear apex corner 33 and an eighth protective gear apex corner 34.
[0077] A second protective component 51 is provided at the top corner 31 of the fifth protective gear, and the second protective component 51 abuts against the inner wall of the top corner 114a of the fifth box; a second protective component 51 is provided at the top corner 32 of the sixth protective gear, and the second protective component 51 abuts against the inner wall of the top corner 114b of the sixth box; a second protective component 51 is provided at the top corner 33 of the seventh protective gear, and the second protective component 51 abuts against the inner wall of the top corner 114c of the seventh box; a second protective component 51 is provided at the top corner 34 of the eighth protective gear, and the second protective component 51 abuts against the inner wall of the top corner 114d of the eighth box.
[0078] Thus, when the packaging box 10 containing the shooting equipment 200 falls to the ground at any one of the fifth box apex angle 114a, the sixth box apex angle 114b, the seventh box apex angle 114c, and the eighth box apex angle 114d, there is a corresponding second protective component 51 to directly buffer the impact energy, thereby improving the protection effect on the shooting equipment 200.
[0079] Please continue reading. Figures 2 to 3 Furthermore, based on the above embodiments, the second protective gear 30 also has a fifth protective gear edge 35, a sixth protective gear edge 36, a seventh protective gear edge 37 and an eighth protective gear edge 38, and the box body 11 also has a fifth box edge 118a, a sixth box edge 118b, a seventh box edge 118c and an eighth box edge 118d.
[0080] The eleventh interval is formed between the apex angle 31 of the fifth protective gear and the apex angle 114a of the fifth box; the twelfth interval is formed between the edge 35 of the fifth protective gear and the edge 118a of the fifth box; the thirteenth interval is formed between the apex angle 32 of the sixth protective gear and the apex angle 114b of the sixth box; the fourteenth interval is formed between the edge 36 of the sixth protective gear and the edge 118b of the sixth box; the fifteenth interval is formed between the apex angle 33 of the seventh protective gear and the apex angle 114c of the seventh box; the sixteenth interval is formed between the edge 37 of the seventh protective gear and the edge 118c of the seventh box; the eleventh interval is formed between the apex angle 34 of the eighth protective gear and the apex angle 114a of the fifth box; the eleventh interval is formed between the apex angle 35 of the fifth protective gear and the edge 118a of the fifth box; the eleventh interval is formed between the apex angle 32 of the sixth protective gear and the apex angle 114b of the sixth box; the thirteenth interval is formed between the edge 36 of the sixth protective gear and the edge 118b of the sixth box; the fifteenth interval is formed between the apex angle 33 of the seventh protective gear and the apex angle 114c of the seventh box; the sixteenth interval is formed between the edge 37 of the seventh protective gear and the edge 118c of the seventh box; the eleventh interval is formed between the apex angle 34 of the eighth protective gear and the apex angle 114a of the fifth box; the eleventh interval is formed between the apex angle 35 of the fifth protective gear and the edge 114a of the fifth box; the eleventh interval is formed between the apex angle 35 of the The seventeenth gap is formed between the top corners 114d of the eight boxes, the eighteenth gap is formed between the edge 38 of the eighth guard and the edge 118d of the eighth box, the nineteenth gap is formed between the top wall of the second guard 30, which is located away from the first guard 20, and the box cover 12, and the twentieth gap is formed between the outer peripheral wall of the second guard 30 and the outer peripheral wall of the box body 11. The eleventh, twelfth, thirteenth, fourteenth, fifteenth, sixteenth, seventeenth, eighteenth, nineteenth, and twentieth gaps cooperate to form the second gap.
[0081] Therefore, in actual use, when the packaging box 10 is accidentally dropped and hits the ground by any one of the edges of the fifth box 118a, the sixth box 118b, the seventh box 118c, and the eighth box 118d, or by any one of the top corners of the fifth box 114a, the sixth box 114b, the seventh box 114c, and the eighth box 114d, or by any one of the side walls of the box body 11, the resulting impact energy will be transmitted to each of the second protective components 51 through the corresponding intervals. The second protective components 51 will buffer and absorb the energy, reducing or eliminating the impact force transmitted to the shooting equipment 200 and protecting the safety of the shooting equipment 200.
[0082] Furthermore, based on any of the above embodiments, the box body 11 includes a bottom wall 119 and a first box side wall 119a, a second box side wall 119b, a third box side wall 119c and a fourth box side wall 119d that are connected end to end and surrounded on the bottom wall 119. The second protective device 30 includes a top wall and a fifth protective device side wall 39, a sixth protective device side wall 39a, a seventh protective device side wall 39b and an eighth protective device side wall 39c that are connected end to end and surrounded on the top wall.
[0083] Please continue reading. Figures 2 to 3The second protective component 51 includes a fourth buffer 511, a fifth buffer 512, and a sixth buffer 513. The fourth buffer 511, fifth buffer 512, and sixth buffer 513 located at the apex 31 of the fifth protective device respectively abut against the lid 12, the first side wall 119a, and the second side wall 119b. The fourth buffer 511, fifth buffer 512, and sixth buffer 513 located at the apex 32 of the sixth protective device respectively abut against the lid 12, the second side wall 119b, and the first side wall 119a. 9b and the third box side wall 119c abut against each other in a corresponding manner; the fourth buffer 511, the fifth buffer 512 and the sixth buffer 513 located at the top corner 33 of the seventh protective gear abut against the box cover 12, the third box side wall 119c and the fourth box side wall 119d respectively; the fourth buffer 511, the fifth buffer 512 and the sixth buffer 513 located at the top corner 34 of the eighth protective gear abut against the box cover 12, the fourth box side wall 119d and the first box side wall 119a respectively.
[0084] At this time, the top wall of the second protective gear 30 abuts against the lid 12 simultaneously through four buffers, the side wall 39 of the fifth protective gear abuts against the side wall 119a of the first box simultaneously through two buffers, the side wall 39a of the sixth protective gear abuts against the side wall 119b of the second box simultaneously through two buffers, the side wall 39b of the seventh protective gear abuts against the side wall 119c of the third box simultaneously through two buffers, and the side wall 39c of the eighth protective gear abuts against the side wall 119d of the fourth box simultaneously through two buffers. The impact energy generated by the fall can be distributed to different buffers to obtain a better cushioning and energy absorption effect, thereby strengthening the drop protection performance of the packaging box 10.
[0085] Optionally, the fourth buffer 511, the fifth buffer 512 and the sixth buffer 513 can be any one of the following, but not limited to, airbags, rubber blocks, foam pads, etc., and can be flexibly selected according to actual needs.
[0086] Optionally, the fourth buffer 511, the fifth buffer 512 and the sixth buffer 513 can be any structural shape such as a square, a sphere, or a cylinder.
[0087] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0088] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.
Claims
1. A protective packaging for photographing equipment, characterized in that, include: A packaging box, the packaging box including a box body and a box cover that is openable and closable connected to the box body, wherein the box cover in the closed position cooperates with the box body to form an installation cavity; as well as First protective gear and second protective gear, the first protective gear and the second protective gear are installed in the mounting cavity, the first protective gear and the second protective gear cooperate to form a receiving cavity, the receiving cavity is used to accommodate the shooting equipment; The first protective gear is provided with a first buffer structure, which abuts against the inner wall of the box; the second protective gear is provided with a second buffer structure, which abuts against the inner wall of the box and the box lid.
2. The protective packaging for filming equipment according to claim 1, characterized in that, The first buffer structure includes at least two first protective components, which are circumferentially spaced on the outer periphery of the first protective device. The at least two first protective components abut against the inner wall of the box body, so that a first gap is formed between the outer wall surface of the first protective device and the inner wall of the box body.
3. The protective packaging for filming equipment according to claim 2, characterized in that, The box has a first box apex corner, a second box apex corner, a third box apex corner and a fourth box apex corner that are spaced apart along the circumference of the packaging box. The first protective component is provided in four parts, and the first protective gear has a first protective gear apex corner, a second protective gear apex corner, a third protective gear apex corner and a fourth protective gear apex corner. The first protective component is provided at the top corner of the first protective gear, and the first protective component abuts against the inner wall of the top corner of the first box; The second protective device is provided with a first protective component at the top corner, and the first protective component abuts against the inner wall of the top corner of the second box; The third protective device is provided with a first protective component at the top corner, and the first protective component abuts against the inner wall of the top corner of the third box; The fourth protective device is provided with a first protective component at the top corner, and the first protective component abuts against the inner wall of the top corner of the fourth box.
4. The protective packaging for filming equipment according to claim 3, characterized in that, The first protective gear also has a first protective gear edge, a second protective gear edge, a third protective gear edge, and a fourth protective gear edge, and the box body also has a first box edge, a second box edge, a third box edge, and a fourth box edge; A first gap is formed between the apex corner of the first protective device and the apex corner of the first box; a second gap is formed between the edge of the first protective device and the edge of the first box; a third gap is formed between the apex corner of the second protective device and the apex corner of the second box; a fourth gap is formed between the edge of the second protective device and the edge of the second box; a fifth gap is formed between the apex corner of the third protective device and the apex corner of the third box; a sixth gap is formed between the edge of the third protective device and the edge of the third box; a seventh gap is formed between the apex corner of the fourth protective device and the apex corner of the fourth box; an eighth gap is formed between the edge of the fourth protective device and the edge of the fourth box; a ninth gap is formed between the bottom wall of the first protective device away from the second protective device and the bottom wall of the box body; and a tenth gap is formed between the outer peripheral wall of the first protective device and the outer peripheral wall of the box body. The first gap, the second gap, the third gap, the fourth gap, the fifth gap, the sixth gap, the seventh gap, the eighth gap, the ninth gap, and the tenth gap together constitute the first gap.
5. The protective packaging for filming equipment according to claim 3, characterized in that, The box body includes a bottom wall and a first box side wall, a second box side wall, a third box side wall and a fourth box side wall that are connected end to end on the bottom wall. The first protective device includes a bottom wall and a first protective device side wall, a second protective device side wall, a third protective device side wall and a fourth protective device side wall that are connected end to end on the bottom wall. The first protective component includes a first buffer, a second buffer, and a third buffer. The first, second, and third buffers located at the top corners of the first protective gear respectively abut against the bottom wall of the box, the first side wall of the box, and the second side wall of the box. The first, second, and third buffers located at the top corners of the second protective gear respectively abut against the bottom wall of the box, the second side wall of the box, and the third side wall of the box. The first, second, and third buffers located at the top corners of the third protective gear respectively abut against the bottom wall of the box, the third side wall of the box, and the fourth side wall of the box. The first, second, and third buffers located at the top corners of the fourth protective gear respectively abut against the bottom wall of the box, the fourth side wall of the box, and the first side wall of the box.
6. The protective packaging for filming equipment according to claim 1, characterized in that, The second buffer structure includes at least two second protective components, which are circumferentially spaced on the outer periphery of the second protective device. The at least two second protective components abut against the inner wall of the box and the box cover, so that a second gap is formed between the outer wall of the second protective device and the inner wall of the box and the box cover.
7. The protective packaging for filming equipment according to claim 6, characterized in that, The box body and the box lid cooperate to form a fifth box top corner, a sixth box top corner, a seventh box top corner and an eighth box top corner that are spaced apart along the circumference of the packaging box. The second protective component is provided with four, and the second protective gear has a fifth protective gear top corner, a sixth protective gear top corner, a seventh protective gear top corner and an eighth protective gear top corner. The fifth protective device is provided with a second protective component at the top corner, and the second protective component abuts against the inner wall of the top corner of the fifth box; A second protective component is provided at the top corner of the sixth protective device, and the second protective component abuts against the inner wall of the top corner of the sixth box; The seventh protective device is provided with a second protective component at the top corner, and the second protective component abuts against the inner wall of the top corner of the seventh box; The eighth protective device is provided with a second protective component at the top corner, and the second protective component abuts against the inner wall of the top corner of the eighth box.
8. The protective packaging for filming equipment according to claim 7, characterized in that, The second protective gear also has a fifth protective edge, a sixth protective edge, a seventh protective edge and an eighth protective edge, and the box body also has a fifth box edge, a sixth box edge, a seventh box edge and an eighth box edge; An eleventh gap is formed between the apex corner of the fifth protective device and the apex corner of the fifth box; a twelfth gap is formed between the edge of the fifth protective device and the edge of the fifth box; a thirteenth gap is formed between the apex corner of the sixth protective device and the apex corner of the sixth box; a fourteenth gap is formed between the edge of the sixth protective device and the edge of the sixth box; a fifteenth gap is formed between the apex corner of the seventh protective device and the apex corner of the seventh box; a sixteenth gap is formed between the edge of the seventh protective device and the edge of the seventh box; a seventeenth gap is formed between the apex corner of the eighth protective device and the apex corner of the eighth box; an eighteenth gap is formed between the edge of the eighth protective device and the edge of the eighth box; a nineteenth gap is formed between the top wall of the second protective device, which is away from the first protective device, and the box lid; a twentieth gap is formed between the outer peripheral wall of the second protective device and the outer peripheral wall of the box body. The eleventh, twelfth, thirteenth, fourteenth, fifteenth, sixteenth, seventeenth, eighteenth, nineteenth, and twentieth gaps together constitute the second gap.
9. The protective packaging for filming equipment according to claim 8, characterized in that, The box body includes a bottom wall and a first box side wall, a second box side wall, a third box side wall and a fourth box side wall that are connected end to end on the bottom wall. The second protective device includes a top wall and a fifth protective device side wall, a sixth protective device side wall, a seventh protective device side wall and an eighth protective device side wall that are connected end to end on the top wall. The second protective component includes a fourth, a fifth, and a sixth buffer member. The fourth, fifth, and sixth buffer members located at the top corner of the fifth protective device respectively abut against the lid, the first side wall of the box, and the second side wall of the box; the fourth, fifth, and sixth buffer members located at the top corner of the sixth protective device respectively abut against the lid, the second side wall of the box, and the third side wall of the box; the fourth, fifth, and sixth buffer members located at the top corner of the seventh protective device respectively abut against the lid, the third side wall of the box, and the fourth side wall of the box; and the fourth, fifth, and sixth buffer members located at the top corner of the eighth protective device respectively abut against the lid, the fourth side wall of the box, and the first side wall of the box.
10. The protective packaging for a shooting device according to any one of claims 1 to 9, characterized in that, The top wall of the second protective gear has a clearance hole, which is connected to the receiving cavity. The clearance hole is used to accommodate the lens and dome of the shooting equipment, and a safe distance is formed between the wall of the clearance hole and the dome.