Storage device

By setting up spaced storage holes and guide rods in the chassis part, the problem of difficult rod-shaped items in the cylindrical container is solved, and orderly arrangement and convenient gripping effects are achieved.

WO2025152104A1PCT designated stage expired Publication Date: 2025-07-24SHENZHEN YICAI TECHNOLOGY CO LTD
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Patent Information

Application Number
PCT/CN2024/072986
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-01-18
Publication Date
2025-07-24

AI Technical Summary

Technical Problem

When using a cylindrical container to store rod-shaped items, the rod-shaped items cannot be effectively limited, resulting in a decrease in the spacing between adjacent items and making it difficult to accurately grasp.

Method used

A storage device is designed, with a plurality of storage holes arranged on the chassis part, and the storage holes are arranged at intervals in the circumferential direction. The ends of the rod-shaped object should be stored on the storage hole. The storage hole and the chassis part form a preset angle. The guide rod is arranged through the hollow tube for guidance, and the items are identified in a dark environment through the light emitting component.

Benefits of technology

The orderly arrangement and distance between rod-shaped objects is realized, which facilitates users to accurately grab items in dark environments and reduces the space occupied by the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

Provided is a storage device, comprising a baseplate portion (10), wherein a plurality of storage holes (11) are provided in the baseplate portion (10), the ends of a plurality of rod-shaped articles (60) can be stored in the plurality of storage holes (11) in one-to-one correspondence, and there is a preset included angle between the axis of each storage hole (11) and the baseplate portion (10), so as to allow the ends of the plurality of rod-shaped articles (60) respectively stored in the plurality of storage holes (11) away from the baseplate portion (10) to be away from each other. In the storage device, there is a preset included angle between the axis of each storage hole (11) and the baseplate portion (10), so as to allow the ends of the plurality of rod-shaped articles (60) respectively stored in the plurality of storage holes (11) away from the baseplate portion (10) to be away from each other, thereby facilitating grasping of the rod-shaped articles (60) for a user.
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Description

Storage device Technical Field

[0001] The present application relates to the technical field of storage devices, and in particular to a storage device. Background Art

[0002] When rod-shaped objects (such as pens, straws, etc.) need to be stored, most people choose to use cylindrical containers to store the rod-shaped objects.

[0003] However, when using a cylindrical container to store rod-shaped objects, the rod-shaped objects in the cylindrical container cannot be effectively limited, and as the number of rod-shaped objects stored in the cylindrical container increases, the distance between adjacent rod-shaped objects will become smaller and smaller, that is, the rod-shaped objects will move closer to each other, and affect and interfere with each other when the user grabs the rod-shaped objects, making it difficult for the user to accurately grab the rod-shaped objects. Technical issues

[0004] One of the purposes of the embodiments of the present application is to provide a storage device, which aims to solve the problem that using a cylindrical container to store rod-shaped objects may make it difficult for users to accurately grasp the rod-shaped objects. Technical Solutions

[0005] To solve the above technical problems, the technical solutions adopted in the embodiments of the present application are:

[0006] In a first aspect, a storage device is provided for storing rod-shaped objects, the storage device comprising: a chassis portion, a plurality of storage holes being provided on the chassis portion, the plurality of storage holes being arranged at intervals along the circumference of the chassis portion, the ends of the plurality of rod-shaped objects being able to be stored in the plurality of storage holes in a one-to-one correspondence, and a preset angle being provided between the axes of the storage holes and the chassis portion, so that the ends of the plurality of rod-shaped objects respectively stored in the plurality of storage holes, which are away from the chassis portion, can be away from each other.

[0007] In one embodiment, the storage device further includes a guide portion, which includes a plurality of guide rods, which are installed one by one in the plurality of storage holes, and the guide rods extend along the axial direction of the storage holes; the rod-shaped object is a hollow tube, and the guide rod can be passed through the hollow tube to guide the hollow tube.

[0008] In one embodiment, the storage device also includes a light-emitting portion, which includes a plurality of light-emitting components. The plurality of light-emitting components are installed in a plurality of storage holes one by one. The light-emitting components include a translucent lamp body and a light-emitting wick. The light-emitting wick is arranged in the translucent lamp body, and the translucent lamp body forms a guide rod.

[0009] In one embodiment, the storage device further includes a power supply portion, which is disposed on the chassis portion and electrically connected to the light-emitting assembly for supplying power to the light-emitting assembly.

[0010] In one embodiment, the chassis portion includes an upper cover assembly and a base assembly. The upper cover assembly is rotatably mounted on the base assembly. The storage holes are arranged on a side of the upper cover assembly away from the base assembly. The axes of the multiple storage holes are extended in a direction away from the base assembly, gradually approaching and then moving away from each other in the direction from the base assembly to the upper cover assembly.

[0011] In one embodiment, a mounting cam is provided on one end of the upper cover assembly close to the base assembly, and a mounting hole is provided on one end of the base assembly close to the upper cover assembly. The mounting cam is rotatably inserted into the mounting hole.

[0012] In one embodiment, the chassis portion further includes a bearing assembly, which is disposed between the mounting boss and the mounting hole, wherein the outer ring of the bearing assembly abuts against the inner wall of the mounting hole, and the inner ring of the bearing assembly abuts against the outer wall of the mounting boss.

[0013] In one embodiment, a rotation axis is provided between the upper cover assembly and the base assembly, and a preset angle is formed between the rotation axis and the axis of the receiving hole.

[0014] In one embodiment, a accommodating cavity is provided in the upper cover assembly, and the storage device also includes a control unit, which includes a control board. The control board is provided in the accommodating cavity and is electrically connected to the power supply unit and the light-emitting wick. The power supply unit can supply power to the light-emitting wick through the control board.

[0015] In one embodiment, the control unit further includes a switch assembly, which is disposed on the upper cover assembly and electrically connected to the control board for controlling the switch of the light-emitting wick.

[0016] In one embodiment, the control unit further includes a dimming component, which is disposed on the upper cover component and electrically connected to the control board for controlling the brightness of the light-emitting lamp core.

[0017] In one embodiment, the power supply unit includes a wireless power supply component, which is disposed on the control board and electrically connected to the control board. An external wireless power supply device can power the control unit through the wireless power supply component.

[0018] In one embodiment, the power supply unit further includes a power interface, which is provided on the upper cover assembly and electrically connected to the control board. An external power supply device can supply power to the control unit through the power interface. Beneficial effects

[0019] The beneficial effect of the storage device provided by the embodiment of the present application is that: the storage device provided by the present application provides a plurality of storage holes on the chassis portion, so that the storage device provided by the present application can store a plurality of rod-shaped objects by allowing the ends of the plurality of rod-shaped objects to be passed through the plurality of storage holes in a one-to-one correspondence, and since the plurality of storage holes are arranged at intervals along the circumference of the chassis portion, the plurality of rod-shaped objects can be arranged in an orderly manner. At the same time, by setting the axis of the storage hole to have a preset angle with the chassis portion, the ends of the plurality of rod-shaped objects respectively stored in the plurality of storage holes that are away from the chassis portion can be moved away from each other, thereby facilitating the user to grab the rod-shaped objects. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the embodiments or exemplary technical descriptions. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0021] FIG1 is a cross-sectional schematic diagram of a storage device provided in an embodiment of the present application;

[0022] FIG2 is a schematic structural diagram of a storage device provided in an embodiment of the present application;

[0023] FIG3 is a top view of a storage device provided in an embodiment of the present application;

[0024] FIG4 is a schematic structural diagram of a storage device for rod-shaped objects provided in an embodiment of the present application;

[0025] FIG5 is a structural schematic diagram of a storage device containing rod-shaped objects from another perspective provided by an embodiment of the present application;

[0026] FIG6 is a schematic structural diagram of a storage device provided with a light-emitting portion according to an embodiment of the present application;

[0027] FIG7 is a front view of a storage device containing rod-shaped objects provided in an embodiment of the present application;

[0028] FIG8 is a top view of a storage device containing rod-shaped objects provided in an embodiment of the present application;

[0029] FIG9 is a bottom view of the storage device containing rod-shaped objects provided in an embodiment of the present application.

[0030] The reference numerals used in the above drawings are as follows:

[0031] 10. Chassis; 11. Storage hole; 12. Upper cover assembly; 121. First body; 122. Second body; 123. Accommodation cavity; 124. Mounting cam; 13. Base assembly; 14. Bearing assembly;

[0032] 20. Guide portion; 21. Guide rod;

[0033] 31. Light-emitting components;

[0034] 41. Wireless power supply component; 42. Power interface;

[0035] 51. Control panel; 52. Dimming component; 53. Switch component;

[0036] 60. Rod-shaped objects. Modes for Carrying Out the Invention

[0037] In order to make the purpose, technical solutions and advantages of this application more clearly understood, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit this application.

[0038] It should be noted that when a component is referred to as being "fixed on" or "disposed on" another component, it may be directly on the other component or indirectly on the other component. When a component is referred to as being "connected to" another component, it may be directly or indirectly connected to the other component. The terms "upper", "lower", "left", "right", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of description and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on this application. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to the specific circumstances. The terms "first" and "second" are only used for the purpose of convenience of description and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features. "Multiple" means two or more, unless otherwise clearly and specifically defined.

[0039] In order to illustrate the technical solution provided by this application, a detailed description is given below with reference to specific drawings and embodiments.

[0040] As described in the background art, when storing rod-shaped objects (such as pens and straws), most people choose to use cylindrical containers. However, when using cylindrical containers to store rod-shaped objects, the rod-shaped objects inside the cylindrical containers cannot be effectively restrained. Moreover, as the number of rod-shaped objects stored in the cylindrical container increases, the distance between adjacent rod-shaped objects becomes smaller and smaller, making it difficult for users to accurately grasp the rod-shaped objects.

[0041] Referring to Figures 1 to 9, in order to solve the above-mentioned problems, according to one aspect of the present application, an embodiment of the present application provides a storage device for storing rod-shaped objects 60, and the storage device includes: a chassis portion 10, a plurality of storage holes 11 are provided on the chassis portion 10, and the plurality of storage holes 11 are arranged at intervals along the circumference of the chassis portion 10, and the ends of the plurality of rod-shaped objects 60 can be stored in the plurality of storage holes 11 one by one, and there is a preset angle between the axis of the storage hole 11 and the chassis portion 10, so that the ends of the plurality of rod-shaped objects 60 respectively stored in the plurality of storage holes 11 away from the chassis portion 10 can be away from each other. The storage device provided in this embodiment is provided with multiple storage holes 11 on the chassis portion 10, so that the storage device provided in this embodiment can store multiple rod-shaped objects 60 by allowing the ends of multiple rod-shaped objects 60 to be passed through the multiple storage holes 11 one by one. Since the multiple storage holes 11 are arranged at intervals along the circumference of the chassis portion 10, the multiple rod-shaped objects 60 can be arranged in an orderly manner. At the same time, by setting the axis of the storage hole 11 to have a preset angle with the chassis portion 10, the ends of the multiple rod-shaped objects 60 respectively stored in the multiple storage holes 11 away from the chassis portion 10 can be moved away from each other, thereby facilitating the user to grab the rod-shaped objects 60.

[0042] In an optional embodiment, the chassis portion provided in this embodiment is a cylinder, and the multiple storage holes 11 provided in this embodiment are arranged on the chassis portion 10 at intervals along the circumference of the cylinder. Of course, in other embodiments, when the chassis portion 10 provided in this embodiment is of other shapes, the multiple storage holes 11 provided in this embodiment can also be directly arranged in a circular array on the chassis portion 10.

[0043] Specifically, the ends of the multiple rod-shaped objects 60 provided in this embodiment are far away from each other at one end away from the chassis portion 10, which means that the distance between the ends of two adjacent rod-shaped objects 60 among the multiple rod-shaped objects 60 away from the chassis portion 10 is greater than the distance between the ends of the two adjacent rod-shaped objects 60 close to the chassis portion 10, so that the ends of the two adjacent rod-shaped objects away from the chassis portion can maintain a sufficient gap.

[0044] In a specific embodiment, the rod-shaped object 60 provided in this embodiment has a preset length. Specifically, the preset length refers to the length by which the ends of the multiple rod-shaped objects 60 away from the chassis 10 can be separated from each other when the ends of the multiple rod-shaped objects 60 are passed through the multiple storage holes 11 in a one-to-one correspondence.

[0045] In an optional embodiment, when the rod-shaped object 60 provided in this embodiment is a solid rod such as a pencil, or a hard tube such as a stainless steel straw, a glass straw, etc., the storage device provided in this embodiment can store the rod-shaped object 60 by directly passing the end of the rod-shaped object 60 into the storage hole 11.

[0046] Referring to Figures 4 to 9, in a specific embodiment, the storage device in this embodiment further includes a guide portion 20, which includes a plurality of guide rods 21. The plurality of guide rods 21 are installed one-to-one in the plurality of storage holes 11, and the guide rods 21 extend along the axis of the storage holes 11. The rod-shaped object 60 is a hollow tube, and the guide rods 21 can be inserted into the hollow tube to guide the hollow tube. By installing the plurality of guide rods 21 provided in this embodiment one-to-one in the plurality of storage holes 11, and extending the guide rods 21 along the axis of the storage holes 11, the storage device provided in this embodiment can guide and limit the hollow tube by inserting the guide rods 21 into the hollow tube when the rod-shaped object 60 is a hollow tube, so that the hollow tube can be effectively stored.

[0047] In an optional embodiment, when the hollow tube provided in this embodiment is a hose, the storage device provided in this embodiment can effectively support the hose through the guide tube, thereby preventing the hose from twisting and deforming.

[0048] As shown in FIG6 , in a specific embodiment, to facilitate user identification of the hollow tube on the guide rod 21, the storage device of this embodiment further includes a light-emitting unit. The light-emitting unit includes a plurality of light-emitting components 31, each of which is mounted in a corresponding manner within the plurality of storage holes 11. The light-emitting components 31 include a translucent lamp body and a light-emitting wick. The light-emitting wick is disposed within the translucent lamp body, and the translucent lamp body forms the guide rod 21. By disposing the light-emitting wick provided in this embodiment within the translucent lamp body and configuring the guide rod 21 to be formed from the translucent lamp body, the guide tube provided in this embodiment can be illuminated by the light-emitting wick. Furthermore, when the hollow tube provided in this embodiment is a hollow tube with a certain degree of light transmittance, such as a silicone straw or a glass straw, the hollow tube mounted on the guide tube can display its position and color under the light emitted by the light-emitting wick, allowing the user to clearly see the position and color of the hollow tube in a dark environment, thereby facilitating accurate grasping of the hollow tube.

[0049] 1 and 3 , in a specific embodiment, in order to power the light-emitting assembly 31, the storage device in this embodiment further includes a power supply unit, which is disposed on the chassis 10 and electrically connected to the light-emitting assembly 31 for powering the light-emitting assembly 31. By disposing the power supply unit on the chassis 10 provided in this embodiment and electrically connecting the power supply unit to the light-emitting assembly 31, the storage device provided in this embodiment can power the light-emitting assembly 31 via the power supply unit.

[0050] Referring to Figures 1 to 6, in a specific embodiment, the chassis portion 10 in this embodiment includes an upper cover assembly 12 and a base assembly 13. The upper cover assembly 12 is rotatably mounted on the base assembly 13. The receiving holes 11 are provided on a side of the upper cover assembly 12 away from the base assembly 13. The axes of the multiple receiving holes 11 are extended in a direction away from the base assembly 13, gradually approaching each other and then moving away from each other from the base assembly 13 to the upper cover assembly 12. By providing the receiving holes 11 provided in this embodiment on a side of the upper cover assembly 12 away from the base assembly 13, and extending the axes of the multiple receiving holes 11 in a direction away from the base assembly 13, gradually approaching each other and then moving away from each other from the base assembly 13 to the upper cover assembly 12, the radial dimension of the guide portion 20 provided in this embodiment in the chassis portion 10 can be effectively reduced, so that the storage device provided in this embodiment can have a smaller occupied space.

[0051] In a specific embodiment, by setting the extension line of the axis of the storage hole provided in this embodiment in the direction away from the base assembly 13 to gradually approach and then move away from each other in the direction from the base assembly 13 to the upper cover assembly 12, the multiple rod-shaped objects 60 respectively stored in the multiple storage holes 11 can gradually approach and then move away from each other in the direction from the base assembly to the upper cover assembly, and sufficient gaps are left between the top ends of the multiple rod-shaped objects 60 (that is, the end of the rod-shaped object 60 away from the base assembly), so that the user can easily grab the rod-shaped object 60.

[0052] Referring to FIG. 1 , in a specific embodiment, a mounting protrusion 124 is provided on one end of the upper cover assembly 12 near the base assembly 13, and a mounting hole is provided on one end of the base assembly 13 near the upper cover assembly 12. The mounting protrusion 124 is rotatably inserted into the mounting hole. By providing the mounting protrusion 124 on the end of the upper cover assembly 12 near the base assembly 13, providing the mounting hole on the end of the base assembly 13 near the upper cover assembly 12, and allowing the mounting protrusion 124 to rotatably insert into the mounting hole, the upper cover assembly 12 provided in this embodiment can be rotated relative to the base assembly 13 through the cooperation of the mounting protrusion 124 and the mounting hole. This allows the user to adjust the position of the rod-shaped object 60 on the storage device by rotating the upper cover assembly 12, thereby facilitating the user to grab the rod-shaped object 60 on the storage device.

[0053] As shown in FIG1 , in a specific embodiment, the chassis portion 10 of this embodiment further includes a bearing assembly 14, which is disposed between the mounting boss 124 and the mounting hole. The outer ring of the bearing assembly 14 abuts the inner sidewall of the mounting hole, while the inner ring of the bearing assembly 14 abuts the outer sidewall of the mounting boss 124. By disposing the bearing assembly 14 provided in this embodiment between the mounting boss 124 and the mounting hole, and by abutting the outer ring of the bearing assembly 14 against the inner sidewall of the mounting hole and the inner ring of the bearing assembly 14 against the outer sidewall of the mounting boss 124, the sliding friction between the mounting boss 124 provided in this embodiment and the mounting hole is converted into rolling friction within the bearing assembly 14, thereby effectively reducing the friction between the upper cover assembly 12 and the base assembly 13.

[0054] In an optional embodiment, a rotation axis is provided between the upper cover assembly 12 and the base assembly 13 in this embodiment, and a preset angle is formed between the rotation axis and the axis of the receiving hole 11 .

[0055] Referring to Figures 1 to 3, in a specific embodiment, a housing cavity 123 is provided in the upper cover assembly 12 of this embodiment, and the storage device further includes a control unit, which includes a control board 51. The control board 51 is provided in the housing cavity 123 and is electrically connected to the power supply unit and the light wick. The power supply unit can supply power to the light wick through the control board 51. By providing the control board 51 in the housing cavity 123 provided in this embodiment and electrically connecting the control board 51 to the power supply unit and the light wick, the power supply unit provided in this embodiment can supply power to the light wick through the control board 51.

[0056] Referring to Figures 2 to 4 , in a specific embodiment, the control unit of this embodiment further includes a switch assembly 53. The switch assembly 53 is disposed on the upper cover assembly 12 and electrically connected to the control board 51 for controlling the on / off switching of the light wick. By disposing the switch assembly 53 on the upper cover assembly 12 provided in this embodiment and electrically connecting the switch assembly 53 to the control board 51, the storage device provided in this embodiment can control the on / off switching of the light wick via the switch assembly 53.

[0057] Referring to Figures 2 to 4 and 7 , in a specific embodiment, the control unit of this embodiment further includes a dimming component 52, which is disposed on the upper cover assembly 12 and electrically connected to the control board 51 for controlling the brightness of the light wick. By disposing the dimming component 52 on the upper cover assembly 12 provided in this embodiment and electrically connecting the dimming component 52 to the control board 51, the storage device provided in this embodiment can control the brightness of the light wick via the dimming component 52.

[0058] As shown in Figure 1, in a specific embodiment, the power supply part in this embodiment includes a wireless power supply component 41, which is arranged on the control board and electrically connected to the control board 51. The external wireless power supply device can power the control part through the wireless power supply component 41.

[0059] In a specific embodiment, when the wireless power supply component 41 provided in this embodiment is used to power the control unit, since the wireless power supply component 41 will not affect the power supply of the wireless power supply component 41 by the external wireless power supply device when it rotates with the upper cover component, the upper cover component 12 provided in this embodiment can rotate freely relative to the base component 13.

[0060] As shown in Figure 5, in a specific embodiment, the power supply part in this embodiment also includes a power interface 42, which is arranged on the upper cover assembly 12 and electrically connected to the control board 51. The external power supply device can power the control part through the power interface 42.

[0061] In a specific embodiment, when the power interface 42 provided in this embodiment is used to power the control unit, since the external power supply device and the power interface 42 on the upper cover assembly 12 provided in this embodiment need to be connected by wire, the rotation of the upper cover assembly 12 relative to the base assembly 13 may be subject to certain restrictions.

[0062] In an optional embodiment, the upper cover assembly 12 provided in this embodiment includes a first body 121 and a second body 122. The first body 121 provided in this embodiment is arranged on the second body 122. A first recess is provided on the side of the first body 121 close to the second body 122, and a second recess is provided on the side of the second body 122 close to the first body 121. The first recess and the second recess together form a accommodating cavity 123.

[0063] In an optional embodiment, the wireless power supply assembly 41 provided in this embodiment is disposed in the mounting hole and is located on a side of the bearing assembly 14 away from the upper cover assembly 12 .

[0064] In an optional embodiment, the power supply part provided in this embodiment also includes a battery assembly. The battery assembly provided in this embodiment is arranged in the accommodating cavity 123 and is electrically connected to the control part and the light-emitting part, and is used to power the control part and the light-emitting part provided in this embodiment. By arranging the battery assembly in the accommodating cavity 123 and electrically connecting the battery assembly to the control part and the light-emitting part, the control part and the light-emitting part provided in this embodiment can work normally without being electrically connected to an external power supply device or an external wireless power supply device, thereby effectively improving the convenience of the storage device provided in this embodiment.

[0065] In an optional embodiment, the power interface 42 and the wireless charging component provided in this embodiment are both electrically connected to the battery component. By setting the power interface 42 and the wireless charging component provided in this embodiment to be electrically connected to the battery component, the storage device provided in this embodiment can charge the battery component through the power interface 42 and the wireless charging component when the battery component is low on power.

[0066] In an optional embodiment, a first threaded structure is provided on the outer wall of the light-emitting component 31 provided in this embodiment at one end close to the storage hole 11, and a second threaded structure is provided on the inner wall of the storage hole 11 provided in this embodiment. The light-emitting component 31 provided in this embodiment and the storage hole 11 can be fixedly connected through the cooperation of the first threaded structure and the second threaded structure.

[0067] In an optional embodiment, the storage device provided in this embodiment also includes a communication component, which is arranged in the accommodating cavity 123 and electrically connected to the control board 51 for wireless communication with an external terminal device; by arranging the communication component in the accommodating cavity 123 provided in this embodiment and electrically connecting the communication component to the control board 51, the storage device provided in this embodiment can wirelessly communicate with the external terminal device through the communication module, so that the user can remotely control the light-emitting part provided in this embodiment through the external terminal device, thereby effectively improving the user experience.

[0068] In an optional embodiment, the storage device provided in this embodiment further includes a lighting assembly, which is provided on the end of the upper cover assembly 12 away from the base assembly 13 and electrically connected to the control board 51 for illuminating the outer walls of the multiple rod-shaped objects 60 stored in the multiple storage holes 11; by providing the lighting assembly on the end of the upper cover assembly 12 provided in this embodiment away from the base assembly 13 and electrically connecting the lighting assembly to the control board 51, the storage device provided in this embodiment can illuminate the outer walls of the multiple rod-shaped objects 60 stored in the multiple storage holes 11 through the lighting assembly when the rod-shaped objects 60 are made of an opaque material, thereby enabling the user to accurately identify the rod-shaped objects 60, so as to facilitate the user to accurately grasp the rod-shaped objects 60.

[0069] In an optional embodiment, the storage device provided in this embodiment also includes a sealing component, which is arranged between the first body 121 and the second body 122, and is used to seal the gap between the first body 121 and the second body 122; by arranging the sealing component between the first body 121 and the second body 122 provided in this embodiment, the storage device provided in this embodiment can seal the gap between the first body 121 and the second body 122 through the sealing component, thereby effectively preventing liquids and other substances in the external environment from entering the accommodating cavity 123 through the gap between the first body 121 and the second body 122, thereby effectively improving the waterproof performance of the storage device provided in this embodiment.

[0070] In an optional embodiment, the storage device provided by this embodiment further includes a plurality of trigger assemblies, and the plurality of trigger assemblies provided by this embodiment are installed one-to-one in a plurality of storage holes 11, and the plurality of trigger assemblies are electrically connected to the control board 51. When a rod-shaped object 60 is stored in the storage hole 11 provided by this embodiment, the trigger assembly can abut against the rod-shaped object 60 and be triggered by the rod-shaped object 60; by installing the plurality of trigger assemblies provided by this embodiment one-to-one in a plurality of storage holes 11, and electrically connecting the plurality of trigger assemblies to the control board 51, the storage device provided by this embodiment can monitor the status of the trigger assembly through the control board 51, thereby determining whether a rod-shaped object 60 is stored in the storage hole 11, and further enabling the storage device to selectively open the light-emitting assembly on the storage hole 11 that stores the rod-shaped object 60, so as to reduce the energy consumption of the storage device of this embodiment.

[0071] In an optional embodiment, the storage device provided in this embodiment further includes a blowing component and a plurality of ejection components. The blowing component provided in this embodiment is arranged in the accommodating cavity 123 and is electrically connected to the control board 51. The plurality of ejection components are installed in the storage hole 11 in a one-to-one correspondence. The output end of the blowing component provided in this embodiment can be connected to at least one of the plurality of ejection components for blowing air into the ejection component so that the ejection component can extend in a direction away from the base component to eject the rod-shaped object out of the storage hole 11. By arranging the blowing component in the accommodating cavity 123 provided in this embodiment, The air component is configured to electrically connect the air outlet component provided in this embodiment to the control board 51, and the output end of the air blowing component is configured to be able to communicate with at least one of the multiple ejection components, so that the storage device provided in this embodiment can, when the user grabs the rod-shaped object 60 stored in the storage hole 11, that is, when the trigger component is switched from the triggered state to the untriggered state, blow air to the ejection component in the storage hole 11 through the air blowing component, so that the rod-shaped object 60 can be separated from the storage hole 11 under the action of the ejection component, so that the user can grab the rod-shaped object 60.

[0072] In an optional embodiment, the upper cover assembly 12 provided in this embodiment also includes a plurality of storage assemblies, and the plurality of storage assemblies are arranged at circumferential intervals along the upper cover assembly 12. A ball head connection structure is provided on the first end of the storage assembly provided in this embodiment, and a storage hole 11 is provided on the second end of the storage assembly. The first end of the storage assembly provided in this embodiment is hinged to the side of the upper cover assembly 12 away from the base assembly 13 through the ball head connection structure, so that the angle between the axis of the storage hole 11 provided in this embodiment and the chassis part 10 can be adjusted.

[0073] In summary, the storage device provided by this embodiment has at least the following beneficial technical effects: the storage device provided by this embodiment provides a plurality of storage holes 11 on the chassis portion 10, so that the storage device provided by this embodiment can store a plurality of rod-shaped objects 60 by allowing the ends of the plurality of rod-shaped objects 60 to be passed through the plurality of storage holes 11 one by one, and since the plurality of storage holes 11 are provided in a circular array on the chassis portion 10, the plurality of rod-shaped objects 60 can be arranged in an orderly manner. At the same time, by setting the axis of the storage hole 11 to have a preset angle with the chassis portion 10, the ends of the plurality of rod-shaped objects 60 respectively stored in the plurality of storage holes 11 away from the chassis portion 10 can be away from each other and maintain sufficient gaps with each other, so that the user can accurately grab the rod-shaped objects 60.

[0074] The above are merely optional embodiments of the present application and are not intended to limit the present application. For those skilled in the art, the present application may have various modifications and variations. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present application should be included within the scope of the claims of the present application.

Claims

1. A storage device for storing rod-shaped objects (60), characterized in that, The storage device includes: A chassis part (10) is provided with a plurality of storage holes (11). The plurality of storage holes (11) are arranged at intervals along the circumferential direction of the chassis part (10). The ends of the plurality of rod-shaped objects (60) can be respectively received in the plurality of storage holes (11). There is a preset included angle between the axis of the storage hole (11) and the chassis part (10), so that the ends of the plurality of rod-shaped objects (60) respectively received in the plurality of storage holes (11) and away from the chassis part (10) can be away from each other.

2. The storage device according to claim 1, wherein The storage device further includes a guiding part (20). The guiding part (20) includes a plurality of guiding rods (21). The plurality of guiding rods (21) are respectively installed in the plurality of storage holes (11). The guiding rods (21) extend along the axial direction of the storage holes (11). The rod-shaped object (60) is a hollow tube. The guiding rod (21) can be inserted into the hollow tube to guide the hollow tube.

3. The storage device according to claim 2, characterized in that, The storage device further includes a light-emitting part. The light-emitting part includes a plurality of light-emitting components (31). The plurality of light-emitting components (31) are respectively installed in the plurality of storage holes (11). The light-emitting component (31) includes a light-transmitting lamp body and a light-emitting lamp core. The light-emitting lamp core is arranged in the light-transmitting lamp body. The light-transmitting lamp body forms the guiding rod (21).

4. The storage device according to claim 3, characterized in that, The storage device further includes a power supply part. The power supply part is arranged on the chassis part (10) and is electrically connected to the light-emitting component (31) for supplying power to the light-emitting component (31).

5. The storage device according to claim 4, characterized in that, The chassis part (10) includes an upper cover component (12) and a base component (13). The upper cover component (12) is rotatably installed on the base component (13). The storage holes (11) are arranged on the side of the upper cover component (12) away from the base component (13). The extension lines of the axes of the plurality of storage holes (11) in the direction away from the base component (13) gradually approach and then move away from each other in the direction from the base component (13) to the upper cover component (12).

6. The storage device according to claim 5, wherein An installation convex shaft (124) is arranged at one end of the upper cover component (12) close to the base component (13). An installation hole is arranged at one end of the base component (13) close to the upper cover component (12). The installation convex shaft (124) is rotatably inserted into the installation hole.

7. The storage device according to claim 6, characterized in that The chassis part (10) further includes a bearing component (14). The bearing component (14) is arranged between the installation convex shaft (124) and the installation hole. The outer ring of the bearing component (14) abuts against the inner side wall of the installation hole. The inner ring of the bearing component (14) abuts against the outer side wall of the installation convex shaft (124).

8. The storage device according to claim 5, wherein There is a rotation axis between the upper cover component (12) and the base component (13). The preset included angle is formed between the rotation axis and the axis of the storage hole (11).

9. The storage device according to claim 5, characterized in that An accommodation cavity (123) is provided in the upper cover assembly (12). The storage device further includes a control unit, and the control unit includes a control board (51). The control board (51) is arranged in the accommodation cavity (123) and is electrically connected to the power supply unit and the light-emitting wick. The power supply unit can supply power to the light-emitting part through the control board (51).

10. The storage device according to claim 9, wherein, The control unit further includes a switch assembly (53). The switch assembly (53) is arranged on the upper cover assembly (12) and is electrically connected to the control board (51) for controlling the switch of the light-emitting wick; The control unit further includes a dimming assembly (52). The dimming assembly (52) is arranged on the upper cover assembly (12) and is electrically connected to the control board (51) for controlling the brightness of the light-emitting wick; The power supply unit includes a wireless power supply assembly (41). The wireless power supply assembly (41) is arranged on the control board (51) and is electrically connected to the control board (51). An external wireless power supply device can supply power to the control unit through the wireless power supply assembly (41); The power supply unit further includes a power interface (42). The power interface (42) is arranged on the upper cover assembly (12) and is electrically connected to the control board (51). An external power supply device can supply power to the control unit through the power interface (42).

Citation Information

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