Storage device and mobile medical equipment

By arranging a sliding rail on the base surface of the medical equipment to slide with the storage part, the problem of large storage space and high preparation cost is solved, the space saving and cost reduction of the storage device are achieved, and convenient object storage and retrieval functions are provided.

CN223323593UActive Publication Date: 2025-09-12EDAN INSTR
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422029940.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-09-12
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

The storage structure of existing medical equipment takes up a large space and has a high manufacturing cost, especially the sliding guide rail is large in size, which causes the storage device to take up too much space on the medical equipment and increase the cost.

Method used

A storage device is designed. By arranging multiple sliding rail members on the surface of a base body and making the sliding parts of the storage members slide with the sliding rail members, the sliding of the storage members is achieved, the use of sliding guide rails is avoided, the overall size of the storage device is reduced, and the preparation cost is reduced.

Benefits of technology

The space occupied by the storage device is effectively reduced, the preparation cost is lowered, and the opening and closing functions of the storage device are realized, making it easier to store and take out objects.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223323593U_ABST
    Figure CN223323593U_ABST
Patent Text Reader

Abstract

The utility model provides a storage device and mobile medical equipment, and relates to the technical field of medical instruments. The storage device comprises a base body, a storage piece and a plurality of sliding rail pieces, the storage piece and the sliding rail pieces are arranged on the first surface of the base body, the sliding rail pieces are arranged at intervals in the first direction, the storage piece comprises a storage part and a sliding part, a storage space is formed in the storage part, and a storage opening communicated with the storage space is formed in the side, facing the first surface, of the storage part. The sliding part is arranged on the peripheral face of the storage part in a protruding mode and is in sliding fit with the multiple sliding rail pieces. According to the storage device, the storage piece and the sliding rail pieces arranged in the first direction at intervals are arranged on the first surface of the base body, the sliding part of the storage piece is in sliding fit with the sliding rail pieces, the storage piece can slide in the first direction by means of the sliding rail pieces, a sliding guide rail does not need to be arranged, and the storage efficiency is improved. The overall size of the storage device is reduced, the manufacturing cost of the storage device is reduced, and the storage device can be opened and closed by sliding the storage part in the first direction.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the field of medical device technology, and specifically to storage devices and mobile medical equipment. Background Art

[0002] Many medical devices are equipped with storage structures to facilitate the placement and access of medical tools or other items during use. For example, medical trolleys are usually equipped with storage tables, storage baskets, or storage cabinets. Storage tables and storage baskets are usually directly exposed to the outside, which is not convenient for storing items that need to be stored due to hygiene and other requirements. Medical equipment with storage cabinets usually also need to be equipped with sliding rails inside so that the storage cabinets can slide along the sliding rails to open and close. However, the large size of the sliding rails causes the storage structure to occupy more space on the medical equipment and the preparation cost is also relatively high. Utility Model Content

[0003] To solve the above technical problems, an embodiment of the present application provides a storage device, which includes:

[0004] a substrate having a first surface;

[0005] A plurality of slide rail members are provided on the first surface and are spaced apart along a first direction;

[0006] A storage member is provided on the first surface, the storage member includes a storage portion and a sliding portion, the storage portion has a storage space therein, a storage opening communicating with the storage space is provided on a side of the storage portion facing the first surface, the sliding portion is protruded on an outer peripheral surface of the storage portion and slidably cooperates with the plurality of slide rail members;

[0007] In the first state, the base covers the storage opening, and the sliding portion contacts multiple sliding rail members; in the second state, the storage opening is connected to the outside, and the sliding portion is separated from at least one of the multiple sliding rail members; the storage device can switch from the first state to the second state by sliding the storage member along the first direction.

[0008] In some embodiments, the sliding rail member includes a first sliding rail portion and a second sliding rail portion, the first sliding rail portion is protruding from the first surface, and the second sliding rail portion is located at an end of the first sliding rail portion away from the first surface and bent relative to the first sliding rail portion; wherein the first sliding rail portion is located on the side of the sliding portion away from the storage portion, and the second sliding rail portion is located on the side of the sliding portion away from the first surface.

[0009] In some embodiments, the slide rail member further includes a contact portion; the contact portion is protruding from the surface of the first slide rail portion facing the sliding portion, and the contact portion is smaller than the first slide rail portion, and / or the contact portion is protruding from the surface of the second slide rail portion facing the sliding portion, and the contact portion is smaller than the second slide rail portion; the contact portion is configured to contact the sliding portion to reduce the contact area between the sliding portion and the slide rail member.

[0010] In some embodiments, the storage device includes a mounting member fixedly connected to the base, the mounting member including a slide plate and a mounting portion, the slide plate being disposed on the first surface and located between the first surface and the storage member, and the mounting portion being protruding on a side of the slide plate facing away from the first surface;

[0011] The storage portion is arranged on the side of the slide plate away from the first surface, and the sliding portion is protruded on the outer peripheral surface of one end of the storage portion close to the first surface. Multiple slide rail members are installed on the installation portion and are surrounded by the slide plate to form multiple sliding grooves arranged at intervals along the first direction. The sliding portion is embedded in at least one sliding groove and slides with the slide rail member and the slide plate.

[0012] In some embodiments, one of the slide rail member and the mounting portion is provided with an inserting interface, and the other is inserted into the inserting interface.

[0013] In some embodiments, the plug-in port is arranged on a side of the second slide rail portion facing away from the storage portion, and the mounting portion includes a first mounting plate and a second mounting plate. The first mounting plate is protruded on the slide plate, and the second mounting plate is arranged at an end of the first mounting plate facing away from the slide plate, and is bent toward the storage portion relative to the first mounting plate, and the second mounting plate is inserted into the plug-in port.

[0014] In some embodiments, the first mounting plate is provided with a card interface, and a snap portion is protruding on the side of the first slide rail portion away from the sliding portion. The snap portion is passed through the first mounting plate through the card interface and is snapped with the first mounting plate. There is a gap between the snap portion and the slide plate.

[0015] In some embodiments, a first sinking groove, a second sinking groove and an entrance and exit are provided on the first surface, the first sinking groove is provided on the bottom wall of the second sinking groove, the entrance and exit pass through the side wall of the second sinking groove along the first direction, the slide plate is embedded in the first sinking groove, and the storage component is provided in the second sinking groove and can slide through the entrance and exit relative to the slide plate.

[0016] In some embodiments, a response groove is provided on the side of the sliding portion facing the first surface, and the storage device includes a prompt mechanism, which is protruded from the first surface and contacts the sliding portion. The prompt mechanism is located on the trajectory of the response groove when the storage piece slides along the first direction.

[0017] In some embodiments, a limiting groove is further provided on the side of the sliding portion facing the first surface. The limiting groove is a strip groove with the first direction as the length direction. The response groove is provided at the end of the strip groove and is connected to the strip groove, so that the prompt mechanism can slide along the limiting groove into the response groove.

[0018] In some embodiments, the response groove and the limiting groove are both adapted to an end of the prompt mechanism close to the storage element, wherein the depth of the response groove is greater than the depth of the limiting groove.

[0019] In some embodiments, a plurality of response grooves are provided on a side of the sliding portion facing the first surface, the plurality of response grooves are arranged at intervals along the first direction, the plurality of response grooves are respectively provided in different areas of the limiting groove, and are all connected to the limiting groove.

[0020] In some embodiments, the prompt mechanism includes a fixing part and a ball. The fixing part is fixed to the base and protrudes from the first surface. The ball is arranged at one end of the fixing part close to the storage element and is in rolling contact with the groove wall of the limiting groove or the groove wall of the response groove.

[0021] In some embodiments, a accommodating space is provided in the fixing portion, and an opening connected to the accommodating space is provided at one end of the fixing portion close to the storage member, the diameter of the opening is smaller than the center diameter of the ball, part of the ball is accommodated in the accommodating space, and the other part is in rolling contact with the groove wall of the limiting groove or the groove wall of the response groove through the opening; the prompt mechanism also includes an elastic member, which is accommodated in the accommodating space and resists the end of the ball away from the sliding portion.

[0022] To solve the above technical problems, an embodiment of the present application also provides a mobile medical device, which includes a mobile device, a host, a display screen and the above-mentioned storage device. The host is set on the mobile device, the display screen is electrically connected to the host, and the storage device is set on the host.

[0023] The storage device provided by the embodiment of the present application provides a storage piece and a plurality of slide rail pieces arranged at intervals along a first direction on the first surface of the base, and the sliding portion of the storage piece is slidably matched with the plurality of slide rail pieces, so that the storage piece can rely on the plurality of slide rail pieces to slide along the first direction without providing a sliding guide rail, which is beneficial to reducing the overall size of the storage device and reducing the preparation cost of the storage device; the storage device also protrudes the sliding portion on the outer peripheral surface of the storage portion, and provides a storage opening connected to the storage space inside the storage portion on the side of the storage portion facing the first surface, so that the storage device can use the base to cover the storage opening of the storage piece in the first state, and can switch from the first state to the second state in which the storage opening is connected to the outside by sliding the storage piece along the first direction, so that the storage device can be opened and closed by sliding the storage piece, so that it can be used to store objects in the first state and to take and put objects in the second state. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] 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 description of the embodiments. 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.

[0025] Figure 1 is a schematic diagram of the three-dimensional structure of a mobile medical device provided in some embodiments of the present application;

[0026] Figure 2 yes Figure 1 A schematic diagram of the three-dimensional structure of the mobile medical device in another state according to the embodiment;

[0027] Figure 3 is a schematic diagram of the three-dimensional structure of the storage device provided in some embodiments of the present application in a first state;

[0028] Figure 4 yes Figure 3 A schematic diagram of the three-dimensional structure of the storage device in the second state according to the embodiment;

[0029] Figure 5 is a partial structural diagram of a storage device provided in some embodiments of the present application;

[0030] Figure 6 is a partial structural diagram of a storage device provided in some embodiments of the present application;

[0031] Figure 7 is a schematic diagram of the three-dimensional structure of a slide rail member provided in some embodiments of the present application;

[0032] Figure 8 is a schematic diagram of the exploded structure of the storage device provided in some embodiments of the present application;

[0033] Figure 9 is a schematic diagram of the three-dimensional structure of some storage devices provided in some embodiments of the present application;

[0034] Figure 10 yes Figure 9 A partially enlarged schematic diagram of a portion of the storage device in the embodiment from another viewing angle;

[0035] Figure 11 is a schematic diagram of the exploded structure of a portion of the storage device shown in 10;

[0036] Figure 12 is a schematic diagram of a partial cross-sectional structure of a storage device provided in some embodiments of the present application;

[0037] Figure 13 is a schematic diagram of the three-dimensional structure of the storage device provided in some embodiments of the present application;

[0038] Figure 14 is a partial schematic diagram of the exploded structure of the storage device provided in some embodiments of the present application;

[0039] Figure 15 is a schematic diagram of the three-dimensional structure of storage items provided in other embodiments of the present application;

[0040] Figure 16is a schematic diagram of the assembly structure of some storage devices provided in some embodiments of the present application;

[0041] Figure 17 yes Figure 16 A schematic diagram of the exploded structure of a portion of the storage device in the embodiment;

[0042] Figure 18 It is a schematic diagram of a partial cross-sectional structure of a storage device provided in some embodiments of the present application. DETAILED DESCRIPTION

[0043] The present application will be further described in detail below in conjunction with the accompanying drawings and examples. It is particularly noted that the following examples are only intended to illustrate the present application and are not intended to limit the scope of the present application. Similarly, the following examples are only some examples of the present application and not all examples. All other examples obtained by those of ordinary skill in the art without creative work are intended to fall within the scope of protection of this application.

[0044] References herein to "embodiments" mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute an independent or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0045] The present application embodiment provides a mobile medical device and a storage device. The storage device can be applied to mobile medical devices and other devices. Figure 1 and Figure 2 , Figure 1 is a schematic diagram of the three-dimensional structure of a mobile medical device provided in some embodiments of the present application. Figure 2 yes Figure 1 A schematic diagram of the three-dimensional structure of the mobile medical device in another state according to the embodiment.

[0046] In some embodiments, the mobile medical device 1000 includes a storage device 10. The storage device 10 may include a base 11 and a storage element 12. The base 11 may be provided on the outer shell of the mobile medical device 1000, or the base 11 may be a part of the outer shell of the mobile medical device 1000. The storage element 12 may be movably provided on the base 11 and may be movable relative to the base 11. A storage space 101 may be provided inside the storage element 12. In some embodiments, a storage opening 102 connected to the storage space 101 may be provided on the side of the storage element 12 facing the base 11, and the storage opening 102 may be used to load or remove objects. The storage element 12 may be slidably provided on the base 11. The storage device 10 may be opened or closed by sliding the storage element 12 relative to the base 11, thereby forming at least two states.

[0047] In the first state, the base body 11 is as Figure 1 The storage opening 102 shown covering the storage member 12 corresponds to the closed state of the storage device 10. In the second state, the storage opening 102 of the storage member 12 is connected to the outside, corresponding to the open state of the storage device 10. The storage device 10 can be switched from the first state to the second state by sliding the storage member 12 along the first direction X. The storage device 10 can also be switched from the second state to the first state by sliding the storage member 12 along the second direction Y. The second direction Y is opposite to the first direction X.

[0048] In some embodiments, the mobile medical device 1000 may further include a mobile device 20. The mobile device 20 may include a roller for implementing a mobile function, and the roller may be provided at the bottom of the mobile device 20. The mobile device 20 may be used to implement the mobile function of the mobile medical device 1000. The mobile medical device 1000 may be a medical trolley, such as a cardiac trolley.

[0049] The storage opening 102 can be located on a side of the storage member 12 facing away from the bottom of the mobile device 20. In other words, the storage opening 102 can be located toward the top of the mobile medical device 1000, allowing items to be stored in or removed from the storage space 101 through the storage opening 102. Alternatively, the base 11 can serve as the outer shell of the host 30, so that the storage member 12 can function as a drawer on the outer shell of the mobile medical device 1000.

[0050] In some embodiments, the mobile medical device 1000 may include a host 30. The host 30 may be mounted on the mobile device 20. The mobile medical device 1000 may also include a display screen 40 electrically connected to the host 30. The display screen 40 may be used to display medical information, such as electrocardiogram (ECG) information. The specific configuration of the host 30 and display screen 40 may refer to existing medical carts and will not be elaborated here.

[0051] The base 11 of the storage device 10 can be set on the host 30. Optionally, the base 11 can be set at the bottom of the host 30, so that the storage device 10 can accommodate the storage items 12 on the bottom side of the host 30, which is conducive to improving the space utilization of the mobile medical device 1000 and making the storage items 12 less likely to collide with foreign objects. The storage items 12 of the storage device 10 can be set on the surface of the base 11 facing away from the host 30, and the storage opening 102 of the storage items 12 faces the top side. In some embodiments, the base 11 can be fixedly connected to the outer shell of the host 30. In other embodiments, the base 11 can serve as at least a part of the outer shell of the host 30.

[0052] Of course, this is merely an example provided herein. In other embodiments, the base 11 may be positioned elsewhere within the mobile medical device 1000, and the orientation of the storage opening 102 of the storage member 12 may be adjusted based on actual circumstances and is not limited to being directed toward the top. In the embodiments of the present application, the storage device 10 may also be applied to other devices, not limited to the mobile medical device 1000 described above.

[0053] All directional indications in the embodiments of the present application (such as up, down, left, right, front, back, etc.) are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0054] Please combine Figure 1 and Figure 2 , see Figure 3 and Figure 4 , Figure 3 is a schematic diagram of the three-dimensional structure of the storage device provided in some embodiments of the present application in the first state, Figure 4 yes Figure 3 Schematic diagram of the three-dimensional structure of the storage device in the second state in the embodiment.

[0055] In some embodiments, the storage device 10 includes a base 11, storage items 12, and multiple slide rails 13. The base 11 has a first surface 111. The first surface 111 can be the outer surface of the base 11. The first surface 111 of the base 11 can be provided with structures such as, but not limited to, grooves, through holes, protrusions, etc. according to installation requirements, or it can be a flat surface. The storage items 12 and the multiple slide rails 13 can both be provided on the first surface 111. The multiple slide rails 13 can be arranged at intervals along the first direction X. Each slide rail 13 can extend along the first direction X, and the multiple slide rails 13 can be spaced apart from each other to form a straight extension, so as to form a sliding track extending along the first direction X. The storage items 12 can slide with the multiple slide rails 13 to achieve relative sliding with the base 11 in the first direction X. The number of slide rails 13 can be selected according to the length and size of the storage items 12. Optionally, to achieve stability in the sliding of the storage items 12, two slide rails can be provided at intervals. The two sliding rails can be distributed on opposite sides of the storage portion 121 and restrict the storage member 12 between the two sliding rails. The two sliding rails can be arranged parallel to the first surface 111, corresponding to the upper edges of the two parallel sides of the storage member 12.

[0056] Among them, the storage part 12 may include a storage portion 121 and a sliding portion 122. A storage space 101 is provided in the storage portion 121. The storage space 101 may be in the shape of a groove, formed by the depression of the storage portion 121. The sliding portion 122 may be protruding from the outer peripheral surface of the storage portion 121, such as being provided on the upper edge of the two parallel sides of the groove-shaped storage portion 121, and slidingly cooperate with the plurality of slide rail members 13. Optionally, the first surface 111 is located on the outer side of the bottom of the base 11, and the sliding portion 122 may be protruding from the outer peripheral surface of one end of the storage portion 121 close to the first surface 111, and extend horizontally outward. The storage opening 102 of the storage part 12 can be shielded or opened by the outer side of the bottom of the base 11. Optionally, sliding portions 122 may be protruding from the outer peripheral surfaces on opposite sides of the storage portion 121, and respectively form a sliding fit with the two sliding rails. The sliding portion 122 may be parallel to the first surface 111.

[0057] In some embodiments, the sliding portion 122 may include an elongated protrusion, and the length direction is parallel to the first direction X. In the first state, the sliding portion 122 may contact the plurality of slide rail members 13. In the second state, the sliding portion 122 may be separated from at least one of the plurality of slide rail members 13. The storage device 10 may switch from the first state to the second state by sliding the storage member 12 along the first direction X. During the state switching process, the sliding portion 122 may generate sliding friction with the slide rail member 13.

[0058] In some embodiments, the storage part 12 may include two elongated sliding portions 122, and the two sliding portions 122 may be respectively arranged on opposite sides of the storage part 121. In other embodiments, the sliding portion 122 may be a convex portion extending from one side of the storage part 121 to the other opposite side of the storage part 121. The sliding portion 122 may be an annular convex portion convexly arranged on the outer peripheral surface of the storage part 121. It can be understood that the annular convex portion can be connected end to end, or a gap can be provided in the middle. In other embodiments, the storage device 10 may also include only one sliding track, which can cooperate with the base 11 to limit the storage part 12. The storage device 10 may also include more than two sliding tracks, wherein multiple sliding tracks can be located on the same side of the storage part 121, and accordingly, multiple sliding portions 122 can be provided on the outer peripheral surface of the storage part 121. The following description takes the storage device 10 including two sliding tracks as an example.

[0059] The storage opening 102 of the storage member 12 can be located on the side of the storage portion 121 facing the first surface 111. In the first state, the base 11 can cover the storage opening 102, so that the storage device 10 is in a closed state. The storage device 10 can be switched from the first state to the second state by sliding the storage member 12 along the first direction X, so that the storage member 12 is at least partially moved out of the coverage area of ​​the base 11. In the second state, the storage opening 102 is in communication with the outside, and the storage device 10 is in an open state.

[0060] See also Figure 4 and Figure 5 , Figure 5 This is a partial structural diagram of a storage device provided in some embodiments of the present application.

[0061] In some embodiments, the storage member 12 may further include a push-pull portion 123. At least a portion of the push-pull portion 123 is spaced apart from the storage portion 121, and is located on the side of the storage portion 121 facing the first direction X. Optionally, the sliding portion 122 may extend between the push-pull portion 123 and the storage portion 121, and be connected to the push-pull portion 123 and the storage portion 121, respectively. The push-pull portion 123 may protrude from the side of the sliding portion 122 away from the first surface 111, and be used to control the sliding of the storage member 12. In some embodiments, the push-pull portion 123 may be approximately perpendicular to the sliding portion 122. The storage portion 121 may be approximately perpendicular to the sliding portion 122. The push-pull portion 123 may be arranged opposite to the storage portion 121. As Figure 5 As shown, in some embodiments, a reinforcing rib 124 may be provided at the connection between the push-pull portion 123 and the sliding portion 122. The number of the reinforcing rib 124 may be one or a plurality of reinforcing ribs spaced apart from each other.

[0062] In some embodiments, the storage member 12 may further include a limiting portion 125. The limiting portion 125 may be protruding on the side of the sliding portion 122 facing away from the first surface 111 and located on the periphery of the storage portion 121. At least part of the reinforcing ribs 124 may extend from the push-pull portion 123 to the limiting portion 125. The portion of the limiting portion 125 located between the slide rail member 13 and the storage portion 121 may extend along the first direction X and slide in cooperation with the slide rail member 13. During the process of the storage device 10 switching from the first state to the second state, the limiting portion 125 may generate sliding friction with the slide rail member 13 on at least one side of the storage portion 121.

[0063] See also Figure 6 , Figure 6 This is a partial structural diagram of a storage device provided in some embodiments of the present application.

[0064] In some embodiments, the slide rail member 13 may include a first slide rail portion 131 and a second slide rail portion 132. The first slide rail portion 131 is protruding from the first surface 111. The second slide rail portion 132 may be located at an end of the first slide rail portion 131 away from the first surface 111 and bent relative to the first slide rail portion 131. The first slide rail portion 131 of at least a portion of the slide rail member 13 may be located on a side of the sliding portion 122 facing away from the storage portion 121. The second slide rail portion 132 of at least a portion of the slide rail member 13 may be located on a side of the sliding portion 122 facing away from the first surface 111.

[0065] It should be noted that the "protruding arrangement" here refers to the first slide rail portion 131 being arranged on the first surface 111 and protruding relative to the first surface 111, but does not limit whether the first slide rail portion 131 and the first surface 111 have a contact or extension relationship. For example, the first slide rail portion 131 may be a part of a structural member directly connected to the first surface 111. For another example, the first slide rail portion 131 may be connected to another structural member arranged on the first surface 111, that is, it is arranged on the first surface 111 through the structural member without directly contacting the first surface 111. For another example, the first slide rail portion 131 may extend from the first surface 111. The same applies to other descriptions of the protruding arrangement in this document. The setting adopted by the storage device 10 of the embodiment of the present application can be determined according to actual needs. In addition, the above-mentioned slide rail member 13 structure is only an example of the present application, and the slide rail member 13 of the embodiment of the present application is not limited to the above-mentioned structure. For example, the slide rail member 13 may only include the first slide rail portion 131 or the second slide rail portion 132. For another example, the second slide rail portion 132 may be disposed in the middle portion of the first slide rail portion 131 rather than at the end portion.

[0066] The first rail portion 131 and the second rail portion 132 of the plurality of rail members 13 can cooperate with the base 11 to form a sliding track extending along the first direction X, and slide with the sliding portion 122 of the storage member 12. At least a portion of the sliding portion 122 can be accommodated in the sliding track, and can slide relative to the base 11 along the sliding track. In other embodiments, the sliding track can also be formed by the plurality of rail members 13 themselves. For example, a third rail portion can be provided at one end of the first rail portion 131 close to the first surface 111. The third rail portion is located between the sliding portion 122 and the first surface 111, and cooperates with the first rail portion 131 and the second rail portion 132 to form a sliding track.

[0067] The terms used in this specification and the appended claims are only for the purpose of describing specific embodiments and are not intended to limit this application. As used in this specification and the appended claims, unless the context clearly indicates otherwise, the singular forms "a", "an" and "the" are intended to include the plural forms. For example, the terms "first" and "second" in the description of this application are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the said features. For example, in the description of this application, the meaning of "multiple" is two or more, unless otherwise clearly and specifically defined.

[0068] In the process of switching the storage device 10 between the first state and the second state, the sliding portion 122 can generate sliding friction with at least one of the first slide rail portion 131 and the second slide rail portion 132, which can be specifically determined according to the size and relative position of the slide rail portion 13 and the storage portion 12, and the placement posture of the storage device 10.

[0069] In some embodiments, the first rail portion 131 facing the sliding portion 122 may contact the sliding portion 122 and generate sliding friction with the sliding portion 122 when the sliding portion 122 slides along the first direction X. For example, the two first rail portions 131 located on both sides of the storage portion 121 may both contact an end of the sliding portion 122 facing away from the storage portion 121 .

[0070] In other embodiments, at least a portion of the first rail portion 131 facing the sliding portion 122 can form a gap with the sliding portion 122. For example, the two first rail portions 131 located on opposite sides of the storage portion 121 can cooperate to confine the storage component 12 in the middle, and there is a gap between at least one of them and the storage portion 121, so that the storage component 12 can move between the two first rail portions 131, while the sliding portion 122 is always in the sliding track. Specifically, when the sliding portion 122 slides along the first direction X, it can generate sliding friction with one of the two first rail portions 131, or there can be a gap between it and both first rail portions 131.

[0071] In some embodiments, the second rail portion 132 opposite the sliding portion 122 may be in contact with the sliding portion 122 and generate sliding friction with the sliding portion 122 when the sliding portion 122 slides along the first direction X. For example, the second rail portion 132 may press the side of the sliding portion 122 facing away from the first surface 111, so that the sliding portion 122 remains in contact with the second rail portion 132 even when the placement posture of the storage device 10 changes.

[0072] In other embodiments, the second rail portion 132 facing the sliding portion 122 can contact the sliding portion 122 or separate from the sliding portion 122 according to the application scenario. In some application scenarios, the storage device 10 is placed in a state where the second rail portion 132 is located on the top side of the sliding portion 122. Under the action of gravity, a gap is formed between the sliding portion 122 and the second rail portion 132, and the sliding portion 122 is confined between the second rail portion 132 and the first surface 111. In other application scenarios, the storage device 10 is placed in a state where the second rail portion 132 is located on the bottom side of the sliding portion 122 (such as Figure 1 As shown in FIG, the sliding portion 122 contacts the second slide rail portion 132 under the action of gravity, and sliding friction occurs during sliding.

[0073] The tightness of the fit between the slide rail 13 and the sliding portion 122 can be designed to be greater as needed to prevent the storage member 12 from loosening, or smaller to improve the smoothness of the sliding of the storage member 12, as long as the sliding portion 122 of the storage member 12 does not completely disengage from the sliding track. It is understood that the "sliding fit" mentioned in this application refers to a fit relationship that enables sliding, including but not limited to a fit relationship that generates sliding friction during sliding. The aforementioned fit relationship in which there is a gap between the two during sliding also falls within the scope of sliding fit. For example, in the case of the first and second slide rail portions 131, 132 sliding fit with the storage member 12, one of the first and second slide rail portions 131, 132 can be in contact with the storage member 12, while the other is only used to confine the storage member 12 in the sliding track, with a gap between the storage member 12 and the sliding portion 122 when the storage member 12 slides. Of course, the sliding fit between the first and second slide rail portions 131, 132 and the storage member 12 is not limited to this example.

[0074] See also Figure 6 and Figure 7 , Figure 7 It is a schematic diagram of the three-dimensional structure of the slide rail member provided in some embodiments of the present application.

[0075] In some embodiments, the slide rail member 13 may include a contact portion 133 , and the contact portion 133 is configured to contact the sliding portion 122 to reduce a contact area between the sliding portion 122 and the slide rail member 13 .

[0076] The contact portion 133 may be protruding from the surface of the first slide rail portion 131 facing the sliding portion 122, and the contact portion 133 may be smaller than the first slide rail portion 131. There may be one or more contact portions 133.

[0077] The contact portion 133 may also be as follows Figure 7 As shown, the contact portion 133 is protruded on the surface of the second rail portion 132 facing the sliding portion 122, and is smaller than the second rail portion 132. There can be one or more contact portions 133.

[0078] The contact portion 133 may also be protruded from both the surface of the first rail portion 131 facing the sliding portion 122 and the surface of the second rail portion 132 facing the sliding portion 122. There are multiple contact portions 133. The contact portion 133 protruded from the first rail portion 131 is smaller than the first rail portion 131, and the contact portion 133 protruded from the second rail portion 132 is smaller than the second rail portion 132.

[0079] Among them, the contact portion 133 is smaller than the first sliding rail portion 131 (or the second sliding rail portion 132), which means that the contact portion 133 is only arranged on a partial area of ​​the surface of the first sliding rail portion 131 (or the second sliding rail portion 132) facing the sliding portion 122. When the sliding portion 122 and the sliding rail member 13 have sliding friction, the contact portion 133 can replace the first sliding rail portion 131 (or the second sliding rail portion 132) to have sliding friction with the sliding portion 122, so as to reduce the contact area between the sliding rail member 13 and the sliding portion 122, reduce the resistance encountered by the sliding portion 122 when sliding along the first direction X, and improve the sliding smoothness.

[0080] It can be understood that when the contact portion 133 provided on the first slide rail portion 131 contacts the sliding portion 122, a gap may be formed between the first slide rail portion 131 and the sliding portion 122; when the contact portion 133 provided on the second slide rail portion 132 contacts the sliding portion 122, a gap may be formed between the second slide rail portion 132 and the sliding portion 122.

[0081] In some embodiments, the shape of the contact portion 133 is as follows: Figure 7 The illustrated embodiment is a long strip-shaped bump, the length direction of which is parallel to the first direction X. In other embodiments, the contact portion 133 may also be designed in other shapes, such as but not limited to a hemispherical shape.

[0082] Optionally, the sliding portion 122 may be provided with a sliding groove adapted to the contact portion 133. When the storage member 12 slides along the first direction X, the contact portion 133 may be located in the sliding groove on the sliding portion 122 and generate sliding friction with the groove wall of the sliding groove.

[0083] In some embodiments of the present application, the slide rail member 13 can be fixed to the base 11 by, for example, but not limited to, snap-fitting, pinning, nailing, or bonding, and can form the aforementioned sliding fit with the storage member 12 disposed on the base 11. In other embodiments of the present application, the slide rail member 13 can also be connected to another structural member fixed to the base 11. The storage member 12 can also be disposed on the base 11 via this structural member.

[0084] Please combine Figure 1 and Figure 2 , see Figure 8 and Figure 9 , Figure 8 is a schematic diagram of the exploded structure of the storage device provided in some embodiments of the present application. Figure 9 It is a schematic diagram of the three-dimensional structure of some storage devices provided in some embodiments of the present application.

[0085] In some embodiments, the storage device 10 may include a mounting member 14. The mounting member 14 may be fixedly connected to the base 11, for example, but not limited to, screw connection, nesting, snap-fitting, bonding, welding, etc. The mounting member 14 may be disposed on the first surface 111 of the base 11. The slide member 13 may be mounted on the mounting member 14. The storage member 12 may be disposed on the mounting member 14 and slide relative to the mounting member 14 along the first direction X through sliding engagement with the slide member 13.

[0086] Among them, the mounting member 14 may include a slide plate 141. The slide plate 141 is arranged on the first surface 111 of the base 11, and is located between the first surface 111 and the storage member 12. The storage portion 121 of the storage member 12 can be arranged on the side of the slide plate 141 away from the first surface 111, and slides with the slide plate 141. When the storage device 10 is placed so that the slide plate 141 is located on the bottom side of the storage member 12, the storage portion 121 can contact the slide plate 141 and slide on the slide plate 141. In some embodiments, the sliding portion 122 can be arranged on the outer peripheral surface of one end of the storage portion 121 close to the first surface 111, and slides with the slide plate 141. When the storage portion 121 contacts the slide plate 141, the sliding portion 122 can fit on the slide plate 141 and slide relative to the slide plate 141.

[0087] In some embodiments, the storage member 12 can be tightly fitted with the slide plate 141 by virtue of the restriction of the slide rail member 13. When the slide plate 141 is located on the top or bottom side of the storage member 12, the storage member 12 can generate sliding friction with the slide plate 141 when sliding. In other embodiments, when the storage member 12 is located on the top side of the slide plate 141, it can contact the slide plate 141 under the action of gravity and generate sliding friction with the slide plate 141 when sliding; when the storage member 12 is located on the bottom side of the slide plate 141, a gap may exist between the storage member 12 and the slide plate 141.

[0088] The mounting member 14 may further include a mounting portion 142. The mounting portion 142 is provided on the slide plate 141 and is used to mount the slide rail member 13. In some embodiments, the mounting member 14 may include multiple mounting portions 142, each mounting portion 142 being used to mount a slide rail member 13. In other embodiments, the mounting member 14 may include at least one mounting portion 142, and one mounting portion 142 may be used to mount multiple slide rail members 13. Optionally, mounting portions 142 are provided at opposite ends of the slide plate 141 for mounting two slide rails.

[0089] In some embodiments, a plurality of slide rail members 13 are mounted on the mounting portion 142, and are arranged together with the slide plate 141 to form a plurality of slide grooves 103 spaced apart along the first direction X. The plurality of slide grooves 103 cooperate to form a slide track extending along the first direction X. The first slide rail portion 131 of the slide rail member 13 can serve as the bottom wall of the slide groove 103, and the second slide rail portion 132 and the slide plate 141 can serve as two opposite side walls of the slide groove 103. The notches of the slide grooves 103 formed by the slide plates 141 in cooperation with the slide rail members 13 of the two sliding tracks can be directly opposite to each other. The slide grooves 103 can cooperate to limit the sliding trajectory of the storage member 12.

[0090] The sliding portion 122 is embedded in at least one sliding groove 103 and slides with the slide rail member 13 and the slide plate 141. It can be understood that when the storage device 10 is in the first state, the sliding portion 122 can be embedded in multiple sliding grooves 103. Each slide rail member 13 and the slide plate 141 can slide with the sliding portion 122. When the storage device 10 is in the second state, the sliding portion 122 is embedded in at least one sliding groove 103. Parts of each slide rail member 13 and the slide plate 141 can slide with the sliding portion 122.

[0091] In some embodiments, the slide plate 141 may be embedded in the base 11. The first surface 111 of the base 11 may be provided with a first sinking groove 104. At least a portion of the slide plate 141 may be as follows: Figure 4 As shown, it is arranged in the first sinking groove 104 to be embedded in the base 11, so that the storage device 10 can hide the slide plate 141 in the base 11. Among them, the size of the first sinking groove 104 can be adapted to the slide plate 141. The surface of the slide plate 141 away from the bottom wall of the first sinking groove 104 can smoothly transition with the area of ​​the first surface 111 where the first sinking groove 104 is not formed, so that the storage component 12 can smoothly slide from the slide plate 141 to the first surface 111. The outer peripheral surface of the slide plate 141 can contact the side wall of the first sinking groove 104 to prevent the slide plate 141 from shifting during the sliding process of the storage component 12.

[0092] Optionally, a second sinking groove 105 and an entrance and exit 106 may be further provided on the first surface 111. The first sinking groove 104 may be provided on the bottom wall of the second sinking groove 105, so that the first sinking groove 104 and the second sinking groove 105 may share part of the groove side wall. The storage member 12 may be provided in the second sinking groove 105 and slidably cooperate with the slide plate 141. The entrance and exit 106 may pass through the side wall of the second sinking groove 105 along the first direction X. Figure 4 As shown, the storage member 12 can slide relative to the slide plate 141 through the entrance 106.

[0093] By arranging the storage member 12 in the second sunken groove 105, the storage member 12 can be limited by the sidewalls of the second sunken groove 105. The storage member 12 can also be partially embedded in the first surface 111 of the base 11, thereby partially storing the storage member 12 within the base 11, which helps to reduce the overall volume of the storage device 10. The portion of the storage member 12 arranged in the second sunken groove 105 can include a sliding portion 122 and a portion of the storage portion 121.

[0094] In some embodiments, the mounting portion 142 may be a protrusion provided on the slide plate 141. The mounting portion 142 is provided protrudingly on the side of the slide plate 141 facing away from the first surface 111. The mounting portion 142 may extend beyond the first sinking groove 104. In other embodiments of the present application, the mounting portion 142 may also be other structures. For example, the mounting portion 142 may be a through hole or groove provided on the slide plate 141, and the slide rail member 13 may be inserted into or passed through the mounting portion 142. The following description will be further described using the mounting portion 142 being a protrusion as an example.

[0095] See also Figure 10 and Figure 11 , Figure 10 yes Figure 9 A partially enlarged schematic diagram of a portion of the storage device in the embodiment from another perspective, Figure 11 10 is a schematic diagram of the exploded structure of a portion of the storage device shown.

[0096] In some embodiments, one of the slide rail member 13 and the mounting portion 142 is provided with an insertion port 107, and the other is inserted into the insertion port 107. The insertion port 107 can be designed as a through hole or a blind hole as needed. For example, the insertion port 107 can be provided on the mounting portion 142, in which case the mounting portion 142 is a convex portion having a groove or a through hole provided on the slide plate 141, and the slide rail member 13 can be inserted into the insertion port 107 to achieve installation of the slide rail member 13 on the mounting portion 142. For another example, the insertion port 107 can be provided on the slide rail member 13, and the mounting portion 142 can be inserted into the insertion port 107 to achieve a fixed connection with the slide rail member 13.

[0097] The plug-in interface 107 can be as follows: Figure 11As shown, it is arranged on the side of the second slide rail portion 132 facing away from the storage portion 121. The mounting portion 142 may include a first mounting plate 1421 and a second mounting plate 1422, and the first mounting plate 1421 is protruded on the slide plate 141. The second mounting plate 1422 can be arranged at one end of the first mounting plate 1421 facing away from the slide plate 141, and bent toward the storage portion 121 relative to the first mounting plate 1421. The first mounting plate 1421 and the second mounting plate 1422 can both be long strips extending along the first direction X. The second mounting plate 1422 is inserted into the plug port 107, so that the first slide rail portion 131 can be located on the side of the first mounting plate 1421 facing the storage portion 121. In some embodiments, the first slide rail portion 131 can be attached to the first mounting plate 1421.

[0098] The plug-in port 107 is a groove on the side of the second rail portion 132 facing away from the storage portion 121. The bottom wall of the groove may be provided with a plurality of ribs, and the plurality of ribs may be arranged at intervals along the first direction X. When the rail member 13 is installed on the mounting portion 142, each rib may squeeze the second mounting plate 1422 of the mounting portion 142. In other embodiments, the bottom wall of the plug-in port 107 serving as a groove may not be provided with ribs, and the bottom wall may directly abut the second mounting plate 1422. Optionally, a notch may be provided on the side of the second rail portion 132 facing away from the slide plate 141. The notch may be connected to the plug-in port 107 to serve as an observation port, which may be used to observe the installation progress during installation.

[0099] In some embodiments, the first mounting plate 1421 may be provided with a snap-fit ​​interface 108. A snap-fit ​​portion 1311 may be protruding from the side of the first rail portion 131 facing away from the sliding portion 122. The snap-fit ​​portion 1311 passes through the snap-fit ​​interface 108 and is snap-fitted to the first mounting plate 1421. The rail member 13 can utilize the ribs within the insertion interface 107 to abut against the second mounting plate 1422 and the snap-fit ​​portion 1311 to snap onto the first mounting plate 1421, thereby applying force to the mounting portion 142 from two opposite directions, thereby ensuring a stable installation on the mounting portion 142.

[0100] There may be a gap between the snap-fit ​​portion 1311 and the slide plate 141 to facilitate the installation and disassembly of the slide rail member 13. Specifically, the card interface 108 may extend at one end to the end of the slide plate 141 where the first mounting plate 1421 is protruding, and the other end may extend to the area between the two ends of the first mounting plate 1421, such as the middle of the first mounting plate 1421. When the slide rail member 13 is installed, the snap-fit ​​portion 1311 may be deformed by extrusion and inserted from one end of the card interface 108, and then rebound to the other end of the card interface 108 after the extrusion is released, and be clamped to the first mounting plate 1421. When the slide rail member 13 is disassembled, the snap-fit ​​portion 1311 may be deformed by extrusion and moved out from one end of the card interface 108 through the gap between the snap-fit ​​portion 1311 and the slide plate 141. A through hole may be provided on the first slide rail portion 131 to facilitate the extrusion deformation of the snap-fit ​​portion 1311.

[0101] It is understood that the structure of the mounting portion 142 described above is merely an example of the present application. In other embodiments of the present application, the mounting portion 142, which is a protruding portion, may also have other structures. For example, the mounting portion 142 may simply include a first mounting plate 1421 protruding from the guide plate 141. The first mounting plate 1421 may be inserted into the insertion port 107 on the guide rail member 13, and the insertion port 107 may be disposed toward the first surface 111.

[0102] See also Figure 12 , Figure 12 This is a partial cross-sectional structural diagram of a storage device provided in some embodiments of the present application. Figure 12 As shown, the sliding portion 122 of the storage component 12 can be embedded in at least one sliding groove 103 formed by a slide plate 141, a first slide rail portion 131 and a second slide rail portion 132. A plurality of sliding grooves 103 are arranged at intervals along the first direction X, forming a sliding track extending along the first direction X, so that the storage component 12 can rely on a plurality of slide rail components 13 to slide along the first direction X without the need for a sliding guide rail. Conventional sliding mechanisms usually require more than two sections of slide rails, so the width and thickness need to be designed to be relatively large, which occupies more internal space of the device. The size of the slide rail component 13 provided in the embodiment of the present application can be designed to be smaller than the size of a traditional slide rail, which is beneficial to saving installation space. Through the above-mentioned design, the embodiment of the present application is conducive to reducing the overall size of the storage device 10 and reducing the preparation cost of the storage device 10.

[0103] Among them, any one of the slide plate 141, the first slide rail portion 131 and the second slide rail portion 132 can be tightly fitted with the sliding portion 122, or there can be a gap, which can be specifically set according to the sliding resistance of the storage component 12. Among them, a limiting portion 125 can also be protruded on the side of the sliding portion 122 away from the slide plate 141. The limiting portion 125 can be opposite to the side of the second slide rail portion 132 facing the storage portion 121. The limiting portion 125 can be slidably fitted with the second slide rail portion 132 to further limit the sliding trajectory of the storage component 12. Similarly, the limiting portion 125 can interfere with the second slide rail portion 132, or form a gap with the second slide rail portion 132.

[0104] It should be noted that in other embodiments of the present application, the storage device 10 can eliminate the mounting member 14 and directly mount the rail member 13 on the base 11. The above-mentioned assembly design of the mounting member 14 and the rail member 13 can be applied to the base 11. For example, the base 11 may include a mounting portion 142 protruding from the first surface 111. The specific structure of the mounting portion 142 is described above and is not described in detail here.

[0105] The following description will continue with the example of the storage device 10 including the mounting member 14. Figure 12 As shown, in some embodiments, a response groove 201 may be provided on the side of the sliding portion 122 facing the first surface 111. Figure 13 and Figure 14 , Figure 13 is a schematic diagram of the three-dimensional structure of the storage device provided in some embodiments of the present application. Figure 14 This is a partial schematic diagram of the exploded structure of the storage device provided in some embodiments of the present application.

[0106] In some embodiments, a response groove 201 may be provided on the side of the sliding portion 122 facing the first surface 111. The storage device 10 may include a prompting mechanism 15 protruding from the first surface 111. The end of the prompting mechanism 15 is adapted to fit within the response groove 201. The prompting mechanism 15 may contact the sliding portion 122. The prompting mechanism 15 is located along the path of the response groove 201 as the storage member 12 slides along the first direction X. Thus, when the storage member 12 slides to a predetermined position, the prompting mechanism 15 can engage with the response groove 201 and collide with the wall of the response groove 201. The collision sound can serve as a warning sound, indicating that the storage member 12 has slid into place, thereby reducing the risk of the storage member 12 being forcibly pushed or pulled further after it has slid into place. It is understood that the coordinated design of the response groove 201 and the prompting mechanism 15 not only provides a warning sound but also restricts further sliding of the storage member 12 once it has slid into place, thereby preventing the storage member 12 from slipping out.

[0107] Optionally, the prompt mechanism 15 includes an elastic structure, which can be elastically deformed before being embedded in the response groove 201 and elastically reset when embedded in the response groove 201, thereby colliding with the groove wall of the response groove 201.

[0108] Optionally, the prompt mechanism 15 includes a flexible structure, which can be deformed by squeezing the sliding portion 122 before being inserted into the response groove 201 , and restored when inserted into the response groove 201 , thereby colliding with the groove wall of the response groove 201 .

[0109] In other embodiments, the prompt mechanism 15 may also be a rigid structure. The prompt mechanism 15 may be located at the bottom side of the sliding portion 122 and lift the sliding portion 122 before inserting into the response groove 201. When inserting into the response groove 201, the sliding portion 122 falls under the action of gravity, causing the prompt mechanism 15 to collide with the groove wall of the response groove 201.

[0110] It is understandable that the structure of the prompt mechanism 15 can be selected according to the application requirements of the storage device 10. For example, when the storage device 10 is used in Figure 1 When the medical device 1000 is moved as shown, the prompting mechanism 15 may include an elastic structure or a flexible structure.

[0111] In some embodiments, a limiting groove 202 may be provided on the side of the sliding portion 122 facing the first surface 111. The limiting groove 202 is a strip-shaped groove with the first direction X as the length direction. The storage device 10 includes a prompt mechanism 15 protruding from the first surface 111. The end of the prompt mechanism 15 can be embedded in the limiting groove 202 and move along the limiting groove 202 during the sliding of the storage component 12. The limiting groove 202 can cooperate with the prompt mechanism 15 to limit the sliding trajectory of the storage component 12 to prevent the storage component 12 from slipping. Particularly, the prompt mechanism 15 can generate sliding friction or rolling friction with the groove wall of the limiting groove 202 during the sliding of the storage component 12 to reduce the sliding resistance of the storage component 12.

[0112] The response groove 201 can be arranged in the limiting groove 202 and communicated with the limiting groove 202, so that the prompt mechanism 15 can slide along the limiting groove 202 into the response groove 201. For example, the limiting groove 202 is a strip groove, and the response groove 201 can be arranged at the end of the strip groove and communicated with the strip groove, so that during the sliding of the storage member 12, the prompt mechanism 15 can move along the limiting groove 202 relative to the sliding portion 122 until it is embedded in the response groove 201 and emits a prompt sound, prompting the storage member 12 to slide into place. The response groove 201 is arranged at the end of the limiting groove 202, specifically, it can be arranged at one end of the limiting groove 202, or it can be arranged at both ends of the limiting groove 202. The response groove 201 and the limiting groove 202 are both adapted to the end of the prompt mechanism 15 close to the storage member 12.

[0113] Optionally, the depth of the response groove 201 is greater than the depth of the limiting groove 202, so that when the prompt mechanism 15 is embedded in the response groove 201, due to the difference in height between the groove wall of the response groove 201 and the groove wall of the limiting groove 202, the prompt mechanism 15 will collide with the groove wall of the response groove 201. It is understandable that the width of the response groove 201 can also be greater than the width of the limiting groove 202. In the embodiment of the present application, the storage device 10 can be designed so that the contact area between the prompt mechanism 15 and the groove wall of the response groove 201 when embedded in the response groove 201 is greater than the contact area between the prompt mechanism 15 and the groove wall of the limiting groove 202 before the prompt mechanism 15 is embedded in the response groove 201, so that the prompt mechanism 15 will collide with the groove wall when embedded in the response groove 201.

[0114] In other embodiments, the response groove 201 and the limiting groove 202 may also have the same size. The response groove 201 may be provided at the end of the limiting groove 202, so that when the prompt mechanism 15 moves relative to the sliding portion 122 and fits into the response groove 201, it may collide with the end wall to emit a prompt sound.

[0115] In the embodiment of the present application, the above-mentioned coordinated design of the response groove 201 and the prompt mechanism 15 eliminates the need for the storage device 10 to include other limiting structures to prevent the storage member 12 from slipping out. Since the coordinated structure of the response groove 201 and the prompt mechanism 15 achieves positional limitation only through the engagement of the end of the prompt mechanism 15 with the response groove 201, the storage device 10 can further slide the storage member 12 along the first direction X after the storage member 12 has slid into place along the first direction X, so that the prompt mechanism 15 is disengaged from the response groove 201, allowing the storage member 12 to be removed from the base 11, thereby facilitating the loading or unloading of larger objects.

[0116] See also Figure 15 , Figure 15 It is a schematic diagram of the three-dimensional structure of storage items provided in other embodiments of the present application.

[0117] In some embodiments, a plurality of response grooves 201 may be provided on the side of the sliding portion 122 facing the first surface 111. The plurality of response grooves 201 are arranged at intervals along the first direction X. The prompt mechanism 15 is located on the trajectory of the plurality of response grooves 201 during the sliding of the storage member 12 along the first direction X, so that during the sliding of the storage member 12, the prompt mechanism 15 can be embedded in different response grooves 201 multiple times to prompt the storage member 12 to slide to various preset positions. Thus, the storage device 10 can form a plurality of sliding gears for the storage member 12, and when the storage member 12 slides to a gear, the prompt mechanism 15 will be embedded in the response groove 201 and emit a prompt sound. Among them, the plurality of response grooves 201 can be as follows Figure 15 As shown, they are respectively arranged in different areas of the limiting groove 202 and are all communicated with the limiting groove 202 .

[0118] Optionally, the storage device 10 may be provided with a plurality of marks on the exterior surface so that the user can know to which preset position the storage member 12 slides. For example, the storage device 10 may be provided with a first mark on the storage member 12 and a plurality of second marks on the base 11. The plurality of second marks are spaced apart along the first direction X and correspond to a preset position respectively. When the storage member 12 slides to the prompt mechanism 15 and is embedded in the response slot 201 and a prompt sound is emitted, the storage device 10 may prompt to which preset position the storage member 12 slides by the correspondence between the first mark and the second mark. Similarly, the storage device 10 may also be provided with a first mark on the base 11 and a plurality of second marks on the storage member 12. The first mark and the second mark may be, for example, but not limited to, patterns, colors, concave-convex structures, and the like.

[0119] In other embodiments, the storage device 10 may also use other methods to indicate which preset position the storage member 12 has slid to. For example, the multiple response slots 201 may have different sizes. The depths of the multiple response slots 201 arranged along the first direction X may increase sequentially, so that the storage device 10 can use different prompt sounds to indicate which preset position the storage member 12 has slid to. Similarly, the depths of the multiple response slots 201 arranged along the first direction X may decrease sequentially, or the multiple response slots 201 may be arranged in alternating patterns of large and small, or other structures that can produce different prompt sounds.

[0120] See also Figure 14 、 Figure 16 and Figure 17 , Figure 16 This is a schematic diagram of the assembly structure of some storage devices provided in some embodiments of the present application. Figure 17 yes Figure 16 Schematic diagram of the exploded structure of part of the storage device in the embodiment.

[0121] In some embodiments, the prompt mechanism 15 may include a fixing portion 151 and a ball bearing 152. The fixing portion 151 may be fixed to the base 11 and protruded from the first surface 111. The ball bearing 152 may be located at an end of the fixing portion 151 near the storage element 12 and may roll against the wall of the limiting groove 202 or the wall of the response groove 201.

[0122] Among them, the fixing portion 151 can be fixed to the base 11 by being installed on the mounting member 14. The fixing portion 151 protrudes from the side of the slide plate 141 facing away from the first surface 111. Specifically, the prompt mechanism 15 may further include a fixing member 153. The fixing member can connect the fixing portion 151 and the mounting member 14 to fix the fixing portion 151 on the mounting member 14. The prompt mechanism 15 may further include a limit pin 154. The fixing member 153 can be fixed on the side of the slide plate 141 facing the first surface 111 through the limit pin 154. The limit pin 154 can be passed through the slide plate 141 and stop at opposite sides of the slide plate 141 to achieve the fixation of the fixing member 153 on the slide plate 141. The prompt mechanism 15 may further include a locking screw 155. The fixing member 153 can be fixedly connected to the fixing portion 151 through the locking screw 155, thereby achieving the fixation of the fixing portion 151 on the mounting member 14. The fixing portion 151 may be disposed through the guide plate 141 to protrude from a side of the guide plate 141 facing away from the first surface 111 .

[0123] Of course, the fixing member 153 may also secure the fixing portion 151 to the mounting member 14 through other means, such as, but not limited to, pinning, snapping, nailing, or bonding. The fixing portion 151 may also be secured to the mounting member 14 through other structures, such as, but not limited to, pinning, snapping, nailing, bonding, welding, or integral molding. In other embodiments, the fixing portion 151 may also be directly secured to the base 11, such as by being fixedly connected to the base 11 or integrally molded with the base 11. The specific connection method can be found above and will not be described in detail here.

[0124] See also Figure 17 and Figure 18 , Figure 18 It is a schematic diagram of a partial cross-sectional structure of a storage device provided in some embodiments of the present application.

[0125] In some embodiments, a receiving space 301 is defined within the fixing portion 151, and an opening 302 is defined at one end of the fixing portion 151 adjacent to the storage element 12, communicating with the receiving space 301. The ball 152 can be partially contained within the receiving space 301, while the other portion can roll through the opening 302 in contact with the wall of the limiting groove 202 or the wall of the response groove 201.

[0126] The prompt mechanism 15 may further include an elastic member 156. The elastic member 156 may be a compression spring. The elastic member 156 may be accommodated in the accommodating space 301 and abut against one end of the ball 152 that faces away from the sliding portion 122, so as to provide a force for the ball 152 to be embedded in the response groove 201 or the limit groove 202. The other end of the elastic member 156 may abut against the fixing portion 151, and the elastic member 156 may always be in a compressed state. In other embodiments, the other end of the elastic member 156 may also abut against other fixing structures, such as a locking screw 155. The diameter of the opening 302 of the fixing portion 151 may be smaller than the center diameter of the ball 152 to prevent the ball 152 from escaping from the accommodating space 301 under the action of the elastic force.

[0127] In the embodiment of the present application, the ball 152 of the prompt mechanism 15 can be used to roll with the limiting groove 202 to limit the sliding trajectory of the storage member 12 while minimizing the sliding resistance. The ball 152 can be spherical so that when inserted into the response groove 201, it contacts a larger area of ​​the groove wall, thereby producing a louder prompt sound.

[0128] It should be noted that the terms "include," "comprise," and "have," and any variations thereof, are intended to cover non-exclusive inclusions. For example, a process, method, system, product, or apparatus comprising a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or other steps or units inherent to the process, method, product, or apparatus.

[0129] The above descriptions are only some embodiments of the present application and do not limit the scope of protection of the present application. Any equivalent device or equivalent process transformation made using the contents of the description and drawings of this application, or directly or indirectly applied in other related technical fields, are also included in the scope of patent protection of this application.

Claims

1. A storage device, characterized in that: The storage device comprises: a substrate having a first surface; A plurality of slide rail members are provided on the first surface and are spaced apart along a first direction; a storage member disposed on the first surface, the storage member comprising a storage portion and a sliding portion, the storage portion having a storage space therein, a storage opening communicating with the storage space being provided on a side of the storage portion facing the first surface, the sliding portion being protruding from an outer circumferential surface of the storage portion and slidably engaged with the plurality of slide rail members; In the first state, the base covers the storage opening, and the sliding portion is in contact with the multiple sliding rail members; in the second state, the storage opening is connected to the outside, and the sliding portion is separated from at least one of the multiple sliding rail members; the storage device can switch from the first state to the second state by sliding the storage member along the first direction.

2. The storage device according to claim 1, characterized in that: The slide rail member includes a first slide rail portion and a second slide rail portion, the first slide rail portion is protruding from the first surface, and the second slide rail portion is provided at an end of the first slide rail portion away from the first surface and bent relative to the first slide rail portion; wherein, the first slide rail portion is located on a side of the sliding portion away from the storage portion, and the second slide rail portion is located on a side of the sliding portion away from the first surface.

3. The storage device according to claim 2, characterized in that: The slide rail member also includes a contact portion; the contact portion is protruding from the surface of the first slide rail portion facing the sliding portion, and the contact portion is smaller than the first slide rail portion, and / or the contact portion is protruding from the surface of the second slide rail portion facing the sliding portion, and the contact portion is smaller than the second slide rail portion; the contact portion is configured to contact the sliding portion to reduce the contact area between the sliding portion and the slide rail member.

4. The storage device according to claim 2, characterized in that: The storage device includes a mounting member fixedly connected to the base, the mounting member including a slide plate and a mounting portion, the slide plate is provided on the first surface and located between the first surface and the storage member, and the mounting portion is protruded on a side of the slide plate facing away from the first surface; The storage portion is arranged on a side of the slide plate away from the first surface, and the sliding portion is protruded on the outer peripheral surface of one end of the storage portion close to the first surface. The multiple slide rail members are all installed on the installation portion and are surrounded by the slide plate to form a plurality of sliding grooves arranged at intervals along the first direction. The sliding portion is embedded in at least one of the sliding grooves and slides with the slide rail member and the slide plate.

5. The storage device according to claim 4, characterized in that: One of the slide rail member and the mounting portion is provided with an inserting interface, and the other is inserted into the inserting interface.

6. The storage device according to claim 5, characterized in that: The plug-in port is arranged on a side of the second slide rail portion facing away from the storage portion, and the mounting portion includes a first mounting plate and a second mounting plate, the first mounting plate is protruding from the slide plate, the second mounting plate is arranged at an end of the first mounting plate facing away from the slide plate, and is bent toward the storage portion relative to the first mounting plate, and the second mounting plate is inserted into the plug-in port.

7. The storage device according to claim 6, characterized in that: The first mounting plate is provided with a card interface, and a snap portion is protruded on the side of the first slide rail portion facing away from the sliding portion. The snap portion is passed through the first mounting plate through the card interface and is snapped with the first mounting plate. There is a gap between the snap portion and the slide plate.

8. The storage device according to claim 4, characterized in that: A first sinking groove, a second sinking groove and an entrance and exit are provided on the first surface. The first sinking groove is provided on the bottom wall of the second sinking groove. The entrance and exit pass through the side wall of the second sinking groove along the first direction. The slide plate is embedded in the first sinking groove. The storage component is provided in the second sinking groove and can slide through the entrance and exit relative to the slide plate.

9. The storage device according to claim 1, characterized in that: A response groove is provided on the side of the sliding portion facing the first surface, and the storage device includes a prompt mechanism, which is protruded from the first surface and contacts the sliding portion. The prompt mechanism is located on the trajectory passed by the response groove during the sliding of the storage piece along the first direction.

10. The storage device according to claim 9, characterized in that: A limiting groove is also provided on the side of the sliding portion facing the first surface. The limiting groove is a strip groove with the first direction as the length direction. The response groove is provided at the end of the strip groove and is connected to the strip groove, so that the prompt mechanism can slide along the limiting groove into the response groove.

11. The storage device according to claim 10, characterized in that: The response groove and the limiting groove are both adapted to one end of the prompt mechanism close to the storage element, wherein the depth of the response groove is greater than the depth of the limiting groove.

12. The storage device according to claim 11, characterized in that: A plurality of response grooves are provided on the side of the sliding portion facing the first surface. The plurality of response grooves are arranged at intervals along the first direction. The plurality of response grooves are respectively provided in different areas of the limiting groove and are all connected to the limiting groove.

13. The storage device according to claim 10, characterized in that: The prompt mechanism includes a fixing part and a ball. The fixing part is fixed to the base and protrudes from the first surface. The ball is arranged at one end of the fixing part close to the storage element and is in rolling contact with the groove wall of the limiting groove or the groove wall of the response groove.

14. The storage device according to claim 13, characterized in that: A accommodating space is provided in the fixing portion, and an opening connected to the accommodating space is provided at one end of the fixing portion close to the storage member, the diameter of the opening is smaller than the center diameter of the ball, part of the ball is accommodated in the accommodating space, and the other part is in rolling contact with the groove wall of the limiting groove or the groove wall of the response groove through the opening; the prompt mechanism also includes an elastic member, which is accommodated in the accommodating space and abuts against the end of the ball facing away from the sliding portion.

15. A mobile medical device, characterized in that: The mobile medical device includes a mobile device, a host, a display screen, and a storage device according to any one of claims 1 to 14, wherein the host is arranged on the mobile device, the display screen is electrically connected to the host, and the storage device is arranged on the host.