Fence structure and tool for children

By adjusting the spacing between the support positions of the enclosure structure, the depth of the accommodating cavity can be adjusted, solving the problem that existing enclosure structures cannot accommodate children of different ages and heights, thus improving user experience and space utilization efficiency.

CN223817256UActive Publication Date: 2026-01-23GOODBABY CHILD PROD CO LTD
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Patent Information

Application Number
CN202423324249.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-23
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing children's play equipment has a fixed cavity depth, which cannot accommodate children of different ages and heights, resulting in inconvenience in operation or poor restriction effect.

Method used

Design a enclosure structure including a first support position, a second support position, and a flexible connector. The depth of the receiving cavity can be adjusted by adjusting the spacing between the support positions through the connecting components.

Benefits of technology

It expands the applicability of the fencing structure, enhances the user experience, and reduces space occupation during storage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a fence structure and a child appliance, and relates to the technical field of child appliances, the fence structure comprises a fence main body and a connecting assembly, the fence main body comprises a first supporting position and a second supporting position which are oppositely arranged in a first direction, and a flexible connecting piece connected between the first supporting position and the second supporting position, the first supporting position, the second supporting position and the flexible connecting piece jointly define a containing cavity with the variable size in the first direction. The connecting assembly is connected between the first supporting position and the second supporting position so as to adjust the distance between the first supporting position and the second supporting position. According to the technical scheme, a user can correspondingly adjust the depth of the containing cavity corresponding to children of different age groups or different heights, on one hand, the user experience can be improved, and on the other hand, due to the fact that the depth of the containing cavity can be adjusted, the occupied space can be reduced when the containing cavity is stored.
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Description

TECHNICAL FIELD

[0001] The utility model relates to children's appliance technical field, especially in children's appliance with a fence structure. BACKGROUND

[0002] The current children's appliance, for example, baby bed, cradle, game fence etc. will have the fence structure, thereby the activity range of baby or child is limited, the depth of the containing cavity formed by the current fence structure is fixed, if the depth is too deep, user needs to put the baby or hold the baby when, the upper body is inserted into the containing cavity, the operation is inconvenient, if the depth is too shallow, the limitation effect is poor to part of the child of high height, cannot adapt to children of different ages and different heights. SUMMARY

[0003] The utility model discloses a fence structure and children's appliance, which aims to provide a fence structure with adjustable containing cavity depth.

[0004] To achieve the above object, the utility model provides a fence structure, which comprises:

[0005] The fence body comprises a first support position and a second support position arranged oppositely in a first direction, and a flexible connecting piece connected between the first support position and the second support position, wherein the first support position, the second support position and the flexible connecting piece jointly define a containing cavity with variable size in the first direction.

[0006] The connecting assembly is connected between the first support position and the second support position to adjust the distance between the first support position and the second support position.

[0007] In some embodiments, the connecting assembly comprises:

[0008] The first connecting piece is arranged on the fence body.

[0009] The second connecting piece is arranged on the fence body.

[0010] The connecting assembly has a connected state and a non-connected state, in the connected state, the first connecting piece and the second connecting piece are engaged, in the non-connected state, the first connecting piece and the second connecting piece are separated, and the distance between the first support position and the second support position in the non-connected state is greater than that in the connected state.

[0011] In some embodiments, the first connecting piece is arranged on the first support position, the second connecting piece is arranged on the second support position, in the connected state, the fence structure has a first use state, and in the non-connected state, the fence structure has a second use state.

[0012] In some embodiments, the first connector and the second connector are respectively arranged around the outside of the enclosure body, a first end of the first connector is arranged to extend towards the second connector, and / or a first end of part of the second connector is arranged to extend towards the first connector.

[0013] The connection assembly further has an adjusting member, which is correspondingly connected between the first end of the first connector and the first end of the second connector, and when the adjusting member is moved, the first connector and the second connector gradually engage.

[0014] In some embodiments, the first connector has a first body and a first extension, the first body is arranged around the first support position, and the first extension is arranged to extend from the first body towards the second connector;

[0015] The second connector has a second body and a second extension, the second body is arranged around the second support position, and the second extension is arranged to extend from the second body towards the first connector;

[0016] The adjusting member is arranged at a position where the first extension and the second extension approximately meet and is respectively connected to the first extension and the second extension.

[0017] In some embodiments, the position where the first extension and the second extension approximately meet is located in the middle of the first support position and the second support position in the first direction.

[0018] In some embodiments, one of the first connector and the second connector is a male zipper, and the other is a female zipper; and the adjusting member comprises a zipper head.

[0019] In some embodiments, the second support position is located at the bottom of the enclosure body.

[0020] The utility model further provides a children's appliance, which comprises:

[0021] A frame structure;

[0022] An enclosure structure, which is installed on the frame structure and is the enclosure structure as described above.

[0023] In some embodiments, the frame structure comprises:

[0024] A surrounding frame, and

[0025] A support assembly, which is used for supporting the surrounding frame and is foldable, and comprises a first support member and a second support member, the first support member and the second support member being rotatably installed on the surrounding frame.

[0026] In the folding process, the first support and the second support are respectively rotated towards the direction of closing the frame;

[0027] In the folded state, the frame is folded between the first support and the second support.

[0028] In some embodiments, the frame has a first side and a second side in a first direction, and has a first end and a second end in a second direction, wherein the first direction is perpendicular to the second direction;

[0029] In the unfolded state, the first support and the second support are arranged along the second direction and located at the first side of the first support;

[0030] In the folding process, the first support can be rotated to close to the first side of the frame, and the second support can be rotated to close to the second side of the frame.

[0031] In some embodiments, the first support is rotatably connected to the frame through a first rotating part, and the second support is rotatably connected to the frame through a second rotating part;

[0032] Compared with the second rotating part, the first rotating part is located closer to the first side;

[0033] The frame comprises a frame body and a mounting protrusion formed on the frame body and protruding towards the first side;

[0034] The first rotating part is arranged on the mounting protrusion;

[0035] The second rotating part is arranged on the frame body.

[0036] In some embodiments, the first support is formed with a first matching part, and correspondingly, a first positioning part is arranged on the frame, and in the unfolded state, the first positioning part is positioned and matched with the first matching part; and / or,

[0037] The second support is formed with a second matching part, and correspondingly, a second positioning part is arranged on the frame, and in the unfolded state, the second positioning part is positioned and matched with the second matching part.

[0038] In some embodiments, in the unfolded state, the first support is arranged in the third direction as a whole, the first support is rotatably connected to the frame through the first rotating part, the first rotating part and the first positioning part are arranged in the third direction, and compared with the first rotating part, the first positioning part is located closer to the second side; and / or,

[0039] In the non-folded state, the first support member extends as a whole in the fourth direction, and the second support member is rotationally connected to the frame through a second rotation part, the second rotation part and the second positioning part are arranged in the fourth direction in a spaced manner, and the second positioning part is located closer to the first side than the second rotation part.

[0040] In some embodiments, the frame comprises a frame body, and a mounting protrusion and a positioning protrusion formed on the frame body and protruding towards the first direction;

[0041] The first rotation part is arranged on the mounting protrusion;

[0042] The second positioning part is arranged on the positioning protrusion;

[0043] The first positioning part and the second rotation part are arranged on the frame body.

[0044] In some embodiments, the mounting protrusion and / or the positioning protrusion protrude in a direction away from the second side;

[0045] The mounting protrusion and the positioning protrusion are arranged in a spaced manner in the second direction.

[0046] In some embodiments, the first positioning part and / or the second positioning part comprises a locking spring pin;

[0047] The first fitting part and / or the second fitting part comprises a pin hole.

[0048] In some embodiments, the children's appliance comprises a children's bed, and the children's bed further comprises a bearing plate supported on the bottom of the frame body, and the second support position is located on the bottom of the frame body;

[0049] In the connected state, the bearing plate is located at the height of the first support position, and in the non-connected state, the bearing plate is located at the height of the second support position.

[0050] The technical scheme of the utility model adjusts the distance between the first support position and the second support position through the connecting assembly connected in the bracket of the first support position and the second support position, and further changes the size of the accommodating cavity in the first direction, so that the depth of the accommodating cavity in the first direction can be adjusted, and users can adjust the depth of the accommodating cavity corresponding to children of different ages or different heights, which can improve the experience of users on one hand, and on the other hand, since the depth is adjustable, the space occupied by the children's bed can be reduced when the children's bed is stored. BRIEF DESCRIPTION OF DRAWINGS

[0051] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only constitute some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained according to the structures shown in these drawings without creative labor.

[0052] Figure 1 The structure schematic view of the child tool in the unfolded state according to the first embodiment of the present application is provided.

[0053] Figure 2 The structure schematic view of the child tool in the folded state is provided. Figure 1

[0054] Figure 3 The structure schematic view of the child tool according to the second embodiment of the present application is provided.

[0055] Figure 4 The structure schematic view of the child tool according to the third embodiment of the present application is provided.

[0056] Figure 5 The structure schematic view of the child tool according to the fourth embodiment of the present application is provided.

[0057] Figure 6 The structure schematic view of the child tool according to the fifth embodiment of the present application is provided.

[0058] Figure 7 The structure schematic view of the frame structure (in the supporting position) according to an embodiment of the present application is provided.

[0059] Figure 8 The structure schematic view of the frame structure (in the folding process) according to an embodiment of the present application is provided.

[0060] Figure 9 The structure schematic view of the frame structure (in the folded position) according to an embodiment of the present application is provided.

[0061] Explanation of the drawing reference numerals:

[0062] 100, child tool; 1, fence structure; 11, fence main body; 12, first supporting position; 13, second supporting position; 14, flexible connecting piece; 2, connecting assembly; 21, first connecting piece; 22, second connecting piece; 23, adjusting piece; 24, first extension section; 25, second extension section; 26, winding part; 30, upper fence; 40, fixed part; 41, fixed matching part.

[0063] 200, frame structure;

[0064] ​110, enclosure; 110a, first end portion; 110b, second end portion; 111, enclosure main body; 1111, first positioning portion; 1112, second rotation portion; 120, mounting protrusion; 121, first rotation portion; 130, positioning protrusion; 131, second positioning portion; 210, first support; 220, second support.

[0065] 300, base plate structure.

[0066] The implementation, functional features and advantages of the present application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION

[0067] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0068] It should be noted that if the embodiments of the present application involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative positional relationship, movement condition, etc. between the components in a certain posture, and if the certain posture changes, the directional indications also change accordingly.

[0069] In addition, if the embodiments of the present application involve descriptions of "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features with "first" and "second" can explicitly or implicitly include at least one of the features. In addition, "and / or" or "and / or" appearing throughout the text means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B simultaneously satisfy the scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, nor within the scope of protection required by the present application.

[0070] The current children's tools, such as baby beds, cradles, game fences and the like, have a surrounding structure to limit the activity range of the baby or child. The depth of the accommodating cavity formed by the current surrounding structure is fixed. If the depth is too deep, the user needs to insert the upper body into the accommodating cavity when placing or holding the baby, which is inconvenient to operate. If the depth is too shallow, the limiting effect on some children with high height is poor, and it cannot adapt to children of different ages and different heights.

[0071] The utility model provides a kind of surrounding structure 1. Please refer to Figure 1 And Figure 9 In an embodiment of the utility model, the surrounding structure 1 includes a surrounding main body 11 and a connecting assembly 2, the surrounding main body 11 includes a first support site 12 and a second support site 13 oppositely arranged in the first direction, and a flexible connecting piece 14 connected between the first support site 12 and the second support site 13, the first support site 12, the second support site 13 and the flexible connecting piece 14 jointly define the accommodating cavity with variable size in the first direction;The connecting assembly 2 is connected between the first support site 12 and the second support site 13, and the size of the connecting assembly 2 in the first direction is adjustably arranged to adjust the spacing between the first support site 12 and the second support site 13.

[0072] The technical scheme of the utility model adjusts the spacing between the first support site 12 and the second support site 13 through the connecting assembly 2 connected in the bracket of the first support site 12 and the second support site 13, and then changes the size of the accommodating cavity in the first direction, so that the depth of the accommodating cavity in the first direction can be adjusted, and the user can adjust the depth of the accommodating cavity corresponding to children of different ages or different heights. On the one hand, it can improve the user experience, and on the other hand, since its depth is adjustable, it can reduce the space occupied when it is stored.

[0073] It should be emphasized that the specific implementation form of the flexible connecting piece 14 is not limited, which can be in the form of cloth bag, or in the form of multiple flexible connection plate blocks, such as multiple connecting plates flexibly connected in the first direction, etc., as long as it can be folded and unfolded in the first direction.

[0074] The specific form of the first direction is not limited. When the surrounding structure 1 is installed on the children's tool 100, and the children's tool 100 is in a self-standing state, the first direction is upward and downward, and in other placement directions, it is the depth direction of the accommodating cavity of the surrounding structure 1.

[0075] The connecting assembly 2 is connected between the first support position 12 and the second support position 13, which can be directly connected with the flexible connecting piece 14, or connected with the flexible connecting piece 14 corresponding to the frame 110 of the first support position 12 and the second support position 13, which is not limited here.

[0076] The specific implementation form of the size adjustment of the connecting assembly 2 in the first direction is not limited, in some embodiments, the connecting assembly 2 adopts a non-separable adjustment form, for example, the connecting assembly 2 adopts a telescopic form, such as a telescopic rod extending in the first direction, by the telescopic of the telescopic rod, directly changing the size of the connecting assembly 2 in the first direction, for example, in the form of a winding part 26 and a cable, in particular, the winding part 26 can be a lock or a rope wheel, taking the rope wheel as an example, by rotating the rope wheel, the cable is wound and unwound, thereby adjusting the distance between the first support position 12 and the second support position 13.

[0077] In some embodiments, the connecting assembly 2 can also adopt a separable adjustment form, the connecting assembly 2 includes a first connecting piece 21 and a second connecting piece 22, the first connecting piece 21 and the second connecting piece 22 are both arranged on the frame body 11, the connecting assembly 2 has a connected state and a non-connected state, in the connected state, the first connecting piece 21 and the second connecting piece 22 are engaged, in the non-connected state, the first connecting piece 21 and the second connecting piece 22 are separated, the distance between the first support position 12 and the second support position 13 in the non-connected state is greater than that in the connected state; in this way, when it is needed to adjust the distance between the first support position 12 and the second support position 13, the connecting assembly 2 is switched between the connected state and the non-connected state, that is, the distance between the first support position 12 and the second support position 13 is changed by the engagement and separation of the first connecting piece 21 and the second connecting piece 22.

[0078] The separable adjustment form also has many forms, for example, two zippers are arranged on the first support position 12 and the second support position 13, in the non-connected state, the two zippers are separated, at this time, the distance between the first support position 12 and the second support position 13 is relatively far, in the connected state, the two zippers are engaged, so that the first support position 12 and the second support position 13 are close; for example, a buckle form can also be adopted, or a magic tape form can also be adopted, etc., which is not limited here.

[0079] In view of the fact that the existing enclosure structure 1 is generally designed for babies and children of a certain height, and in the process of use, it generally has two states to meet the daily use. Correspondingly, the first connecting piece 21 is arranged at the first support position 12, and the second connecting piece 22 is arranged at the second support position 13. In the connected state, the distance between the first support position 12 and the second support position 13 is short, and the flexible piece is in a folded state. Correspondingly, the enclosure structure 1 has a first use state, at which time the depth of the containing cavity is shallow, and is suitable for use for babies, or is suitable for storage of the enclosure structure 1. In the non-connected state, the enclosure structure 1 has a second use state, at which time the first connecting piece 21 and the second connecting piece 22 are separated, the distance between the first support position 12 and the second support position 13 is relatively larger, the flexible connecting piece 14 is in a natural stretched state, and the depth of the containing cavity is relatively deeper, which can be suitable for children of a certain height.

[0080] Specifically, the second support position 13 is located at the bottom of the enclosure main body 11. In the connected state, the second support position 13 is close to the first support position 12 upward, and in the non-connected state, the second support position 13 is downward relative to the first support position 12.

[0081] The adjustment of the distance between the first support position 12 and the second support position 13 can be in the form of stepless adjustment, that is, the second support position 13 can hover at any distance relative to the first support position 12. It can be understood that the height of children of different ages differs greatly, and if the distance between the first support position 12 and the second support position 13 is only two kinds, the application range of the enclosure structure 1 will be limited. In order to improve the application range of the enclosure structure 1, in some embodiments, please refer to Figures 3 to 6 , the first connecting piece 21 and the second connecting piece 22 are respectively arranged around the outside of the enclosure main body 11, the first end of the first connecting piece 21 extends towards the second connecting piece 22, and / or part of the first end of the second connecting piece 22 extends towards the first connecting piece 21; the connecting assembly 2 further has an adjusting piece 23, the adjusting piece 23 is connected between the first end of the first connecting piece 21 and the first end of the second connecting piece 22, and when the adjusting piece 23 moves, the first connecting piece 21 and the second connecting piece 22 gradually engage.

[0082] In the technical scheme of the embodiment, when the interval between the first support position 12 and the second support position 13 needs to be adjusted, the first connecting piece 21 and the second connecting piece 22 are gradually engaged or gradually separated by the movement of the adjusting piece 23; when the first connecting piece 21 and the second connecting piece 22 are gradually separated, the interval between the first support position 12 and the second support position 13 becomes larger and larger, thereby gradually increasing the depth of the accommodating cavity; when the first connecting piece 21 and the second connecting piece 22 are completely separated, the interval between the first support position 12 and the second support position 13 reaches the maximum; when the first connecting piece 21 and the second connecting piece 22 are gradually engaged, in this process, the interval between the first support position 12 and the second support position 13 becomes smaller and smaller, and the depth of the accommodating cavity gradually decreases; when the first connecting piece 21 and the second connecting piece 22 are completely engaged, the interval between the first support position 12 and the second support position 13 reaches the minimum. In this way, the interval between the first support position 12 and the second support position 13 can be adjusted arbitrarily within a certain range, that is, the depth of the accommodating cavity can be adjusted arbitrarily, and different heights of babies and children can be adapted.

[0083] It should be noted that "the first end of the first connecting piece 21 extends towards the second connecting piece 22, and / or part of the first end of the second connecting piece 22 extends towards the first connecting piece 21" can be that only one end of the first connecting piece 21 extends towards the second connecting piece 22, or only the first end of the second connecting piece 22 extends towards the first connecting piece 21, or both the first end of the first connecting piece 21 extends towards the second connecting piece 22 and the first end of the second connecting piece 22 extends towards the first connecting piece 21.

[0084] Please refer to Figure 1 and Figure 3 In an embodiment, one of the first connecting piece 21 and the second connecting piece 22 is a male zipper, and the other is a female zipper, and the adjusting piece 23 is a zipper head. In the zipper scheme, one end of the male zipper can extend towards the female zipper, or one end of the female zipper can extend towards the male zipper. Please refer to Figure 3 The male zipper and the female zipper can also extend towards each other, and the male zipper and the female zipper can be gradually engaged or separated by pulling the zipper head, thereby infinitely adjusting the interval between the first support position 12 and the second support position 13.

[0085] Please refer to Figure 4 and Figure 5In an embodiment, the second connecting member 22 is a cable, the first connecting member 21 and the adjusting member 23 are at least parts of a rope wheel, the rope wheel is installed on the first support site 12, one end of the cable is fixedly connected to the second support site 13, the other end extends towards the first connecting member 21 and is fixedly connected to the rope wheel, so that the cable is reeled or released under the rotation of the rope wheel to lift or lower the second support site 13, thereby infinitely adjusting the depth of the accommodating cavity.

[0086] Please refer to Figure 5 In an embodiment, the first connecting member 21 and the second connecting member 22 are both cables, the adjusting member 23 is a rope wheel, the rope wheel is arranged between the first support site 12 and the second support site 13, one end of one cable is fixedly connected to the first support site 12, the other end extends towards the second support site 13 and is fixedly connected to the rope wheel, one end of the other cable is fixedly connected to the second support site 13, the other end extends towards the first support site 12 and is fixedly connected to the rope wheel. When it is necessary to adjust the distance between the first support site 12 and the second support site 13, the rope wheel is rotated to reel or release the two cables synchronously, thereby adjusting the distance between the first support site 12 and the second support site 13.

[0087] In a further embodiment, the first connecting member 21 has a first main body and a first extension segment 24, the first main body is arranged around the first support site 12, the first extension segment 24 extends from the first main body towards the second connecting member 22, the second connecting member 22 has a second main body and a second extension segment 25, the second main body is arranged around the second support site 13, the second extension segment 25 extends from the second main body towards the first connecting member 21, and the adjusting member 23 is arranged at the position where the first extension segment 24 and the second extension segment 25 approximately meet and is connected to the first extension segment 24 and the second extension segment 25 respectively.

[0088] It can be understood that the first extension section 24 and the second extension section 25 are adjacent, that is, the opposite ends of the first extension section 24 and the second extension section 25 are arranged in the first direction. Since the adjusting member 23 is connected to the approximate intersection position of the first extension section 24 and the second extension section 25, the adjusting member 23 can limit the position of the approximate intersection position of the first extension section 24 and the second extension section 25 in the first direction. Therefore, from the position of the adjusting member 23 to the opposite ends of the first extension section 24 and the second extension section 25, the first extension section 24 and the second extension section 25 are arranged in the first direction. The longer the distance is, the shorter the size of the first extension section 24 and the second extension section 25 in the first direction is. The shorter the distance is, the longer the size of the first extension section 24 and the second extension section 25 in the first direction is. Therefore, under the activity of the adjusting member 23, the first extension section 24 and the second extension section 25 gradually approach or move away in the first direction. When the first extension section 24 and the second extension section 25 gradually approach, the size of the connecting assembly 2 in the first direction gradually decreases. When the first extension section 24 and the second extension section 25 gradually move away, the size of the connecting assembly 2 in the first direction gradually increases, thereby realizing the depth adjustment of the accommodating cavity.

[0089] It should be emphasized that in the present embodiment, the first connecting member 21 and the second connecting member 22 can be a cable, and the adjusting member 23 can be in the form of a rope ring. Alternatively, the first connecting member 21 and the second connecting member 22 can be a male zipper and a female zipper, and the adjusting member 23 can be a zipper head, and the like, which are not limited herein.

[0090] Since the first extension section 24 and the second extension section 25 are folded to reduce the distance between the first support position 12 and the second support position 13, when the approximate intersection position of the first extension section 24 and the second extension section 25 is located at a non-central position of the flexible connecting member 14, the first support position 12 and the second support position 13 cannot be in contact. In the folded state, the optimal folding effect cannot be guaranteed.

[0091] Therefore, in an embodiment, the approximate intersection position of the first extension section 24 and the second extension section 25 is located at the middle of the first support position 12 and the second support position 13 in the first direction, so that in the folded state, the first connecting member 21 and the second connecting member 22 can be completely in contact, thereby realizing the optimal folding effect.

[0092] It can be understood that the first connecting piece 21 and the second connecting piece 22 are connected with the flexible connecting piece 14, which can be that the first connecting piece 21 and the second connecting piece 22 are partially connected with the flexible connecting piece 14, or the first connecting piece 21 and the second connecting piece 22 are fully connected with the flexible connecting piece 14, and the stability is optimal when fully connected.

[0093] In further embodiments, one of the first connecting piece 21 and the second connecting piece 22 comprises a male zipper, the other comprises a female zipper, the adjusting piece 23 is a zipper head, and the zipper head is adapted to the male zipper and the female zipper.

[0094] In the technical scheme of the embodiment, the user can directly change the distance between the first support position 12 and the second support position 13 during the operation of the zipper head, thereby changing the depth of the accommodating cavity, and the operation is simple.

[0095] Please refer to Figure 1 and Figure 3 , the connecting assembly 2 can be provided with one group or multiple groups, which is not limited herein, and in an embodiment, the connecting assembly 2 is provided with multiple groups along the circumference of the enclosure body 11, so that the adjustment of the distance between the first support position 12 and the second support position 13 by multiple groups of the connecting assembly 2 has better stability.

[0096] Of course, please refer to 4 to 6, in other embodiments, one of the first connecting piece 21 and the second connecting piece 22 is provided as a cable, and the two ends of the cable are connected with the first support position 12 and the second support position 13; the adjusting piece 23 comprises a winding part 26 for winding the cable, and the winding part 26 constitutes the other of the first connecting piece 21 and the second connecting piece 22.

[0097] Specifically, the winding part 26 can be a lock or a rope wheel. Taking the rope wheel as an example, the rope is wound or unwound by rotating the rope wheel. Specifically, the rope wheel can be provided on one of the first support position 12 and the second support position 13, one end of the cable is fixed on the rope wheel, and the other end is connected with the other of the first support position 12 and the second support position 13, for example, please refer to Figure 4 , the rope wheel is provided on the first support position 12, and the other end of the cable is connected with the second support position 13, so that the cable is wound or unwound by rotating the rope wheel.

[0098] In addition, please refer to Figure 6The plurality of cables can be connected to different positions of the second support position 13 through the other ends of the plurality of cables, and the one ends of the plurality of cables are fixed on the rope wheel. In this way, the different positions of the second support position 13 can be pulled through the rotation of the rope wheel, and the stability during the movement is improved.

[0099] In addition, referring to Figure 5 In other embodiments, the rope wheel can also wind the middle part of the cable, and the two ends of the cable are connected to the first support position 12 and the second support position 13. The rope wheel winds the middle part of the cable, so that the rope wheel rotates one circle, and the two parts of the cable in the first direction can be wound, and the efficiency of winding and releasing the cable is improved.

[0100] In order to improve the stability of the enclosure body 11 in the completely folded state, prevent the relative movement of the first support position 12 and the second support position 13 in the completely folded state, the enclosure structure 1 further comprises a fixing structure, the fixing structure comprises a fixing part 40 and a fixing matching part 41 which are arranged separately on the first support position 12 and the second support position 13, so as to position the first support position 12 and the second support position 13 through the positioning and matching of the fixing part 40 and the fixing matching part 41.

[0101] In the technical scheme of the embodiment, through the fixing structure, the fixing part 40 and the matching part can be positioned and matched when the enclosure body 11 is in the completely folded state, so as to position the first support position 12 and the second support position 13, and the stability of the enclosure body 11 in the completely folded state is improved.

[0102] It should be emphasized that the specific implementation form of the fixing part 40 and the fixing matching part 41 is not limited, which can be in the form of male zipper and female zipper, in the form of male magic tape and female magic tape, in the form of magnetic attraction, etc., and is not limited herein as long as the first support position 12 and the second support position 13 can be fixed.

[0103] Further, the fixing part 40 and the fixing matching part 41 include a male zipper and a female zipper, and the male zipper and the female zipper are arranged in the circumferential direction of the flexible connecting piece 14. When the connecting assembly 2 includes a zipper head, the male zipper and the female zipper of the fixing structure are matched with the zipper head of the connecting assembly 2.

[0104] It is emphasized that the fixed part 40 and the matching part can be provided with a separate zipper head, and when the connecting assembly 2 includes a zipper head, a zipper head shared with the connecting assembly 2 can also be used, thereby reducing the operation of the user and improving the user experience.

[0105] It can be understood that the male zipper and the female zipper are arranged in the circumferential direction of the flexible connecting piece 14, and one end of the first connecting piece 21 extends to be connected with the first support position 12; one end of the second connecting piece 22 extends to be connected with the second support position 13, so that the zipper head can freely move on the male zipper and the female zipper of the connecting piece and the male zipper and the female zipper of the fixed structure.

[0106] In this way, during the unfolding of the accommodating cavity, the user pulls the zipper head to separate the fixed part 40 and the matching part, and then the zipper head moves to the first connecting piece 21 and the second connecting piece 22, so that the first connecting piece 21 and the second connecting piece 22 are gradually unfolded. During the unfolding process, the depth of the accommodating cavity gradually increases until the first connecting piece 21 and the second connecting piece 22 are completely unfolded, at which time the flexible main body is completely unfolded, and the corresponding accommodating cavity is also completely unfolded.

[0107] During the folding process, through the movement of the zipper head, the first connecting piece 21 and the second connecting piece 22 are gradually folded, so that the flexible main body is gradually folded, and the depth of the corresponding accommodating cavity is also gradually reduced. When the first connecting piece 21 and the second connecting piece 22 are completely folded, the zipper head continues to move to the fixed structure, so that the fixed part 40 and the matching part are gradually engaged, thereby improving the stability of the enclosing main body 11 in the completely folded state.

[0108] In this embodiment, during the folding or unfolding of the enclosing structure 1, the user only needs to operate one zipper head to achieve the folding or unfolding of the enclosing structure 1, thereby simplifying the operation of the user.

[0109] The utility model discloses still propose a children's appliance 100, this children's appliance 100 including frame structure 200 and the enclosure structure 1, the specific structure of this enclosure structure 1 refers to the above embodiment, because the children's appliance 100 of the present application adopts all the technical solutions of the above all embodiments, therefore at least have all the beneficial effects brought by the technical scheme of the above embodiment, here will not repeat one by one. Among them, the enclosure structure 1 includes enclosure main body 11 and connecting assembly 2, the enclosure main body 11 includes the first support site 12 and the second support site 13 that are oppositely arranged in the first direction and the flexible connecting piece 14 that is connected between the first support site 12 and the second support site 13, the first support site 12, the second support site 13 and the flexible connecting piece 14 jointly define the accommodation cavity of variable size in the first direction, the connecting assembly 2 is connected between the first support site 12 and the second support site 13, and the size of the connecting assembly 2 in the first direction is adjustably arranged to adjust the spacing between the first support site 12 and the second support site 13.

[0110] The technical scheme of the utility model discloses the connecting assembly 2 of adjustable size in the first direction is arranged, and the connecting assembly 2 is connected between the first support site 12 and the second support site 13, so that when the size of the connecting assembly 2 in the first direction changes, the size of the accommodation cavity in the first direction is changed synchronously, so that the depth of the accommodation cavity in the first direction can be adjusted, and users can adjust the depth of the accommodation cavity corresponding to children of different ages or different heights, which can improve the experience of users and reduce the space occupied during storage.

[0111] It can be understood that the enclosure structure 1 can constitute the entire enclosure of the children's appliance 100, so that the enclosure of the children's appliance 100 is adjustably arranged, or only a part, which is not limited, and in a further embodiment, the frame structure 200 is provided with an upper enclosure 30, the enclosure structure 1 is fixedly connected with the upper enclosure 30 through the first support site 12, and the second support site 13 is movable in the first direction to adjust the depth of the accommodation cavity.

[0112] The existing children's bed frame usually has a surrounding frame 110 structure and two groups of support legs, and the support legs are used to support the surrounding frame 110 structure to a certain height, so as to surround a protective space suitable for children's activities through the surrounding frame 110 structure, for the convenience of storing the children's bed frame when not in use, the current children's bed frame adopts a detachable design of the surrounding frame 110 structure and the support leg, however, users generally encounter the problem of disassembly difficulty when disassembling the existing children's bed frame.

[0113] Analyzing the above problems, in order to ensure the connection is stable, the existing children's bed frame surrounding frame 110 structure and support leg are generally positioned by inserting structure, and then connected by bolts or pins, the user needs to remove the bolts or pins before disassembling the children's bed frame, and then separate the surrounding frame 110 structure and the support leg, which leads to the problem of difficult disassembly for the user.

[0114] Therefore, the utility model provides a frame structure 200 and children's appliances 100, through two support members are rotatably installed in the surrounding frame 110, and the frame structure 200 is folded by rotating the support member, which improves the problem of difficult disassembly encountered by the user when disassembling the existing children's bed frame.

[0115] Among them, Figure 7 The structure schematic diagram of a frame structure 200 (in the non-folded state) provided by the utility model is provided; Figure 8 The structure schematic diagram of a frame structure 200 (in the folding process) provided by the utility model is provided; Figure 9 The structure schematic diagram of a frame structure 200 (in the folded state) provided by the utility model is provided.

[0116] Please refer to Figures 7 to 9 In an embodiment of the utility model, the frame structure 200 includes a surrounding frame 110 and a support assembly, the support assembly is used for supporting the surrounding frame 110 and can be folded, the support assembly includes a first support member 210 and a second support member 220, the first support member 210 and the second support member 220 are rotatably installed in the surrounding frame 110; in the folding process, the first support member 210 and the second support member 220 are rotated towards the direction of closing the surrounding frame 110 respectively; in the folded state, the surrounding frame 110 is folded between the first support member 210 and the second support member 220.

[0117] It should be noted that the enclosure 110 is generally a surrounding structure to form an enclosure therebetween, and the opening direction of the enclosure is generally the height direction of the enclosure 110; the support assembly includes a first support 210 and a second support 220, and the first support 210 and the second support 220 are rotatably installed on the enclosure 110. Therefore, the "support assembly is used to support the enclosure 110 and can be folded" means that the first support 210 and the second support 220 have a non-folded state and a folded state within the rotation range of the first support 210 and the second support 210 relative to the enclosure 110, and a folding process between the non-folded state and the folded state. In the non-folded state, the first support 210 and the second support 220 can support the enclosure 110, and the state can be maintained by other positioning structures inside the frame structure 200, or by external positioning structures. The present embodiment does not limit this. In the folding process, the first support 210 and the second support 220 can rotate towards the enclosure 110, and finally reach the folded state. In the folded state, the enclosure 110 can be relatively folded between the first support 210 and the second support 220. Here, it can be understood that the first support 210 and the second support 220 are coplanar or parallel with the surrounding plane of the enclosure 110, and in the opening direction of the enclosure 110, the first support 210 and the second support 220 are at least partially arranged opposite to each other, and at least partially wrap the enclosure 110 in the surrounding circumferential direction of the enclosure 110, for example Figure 9 As shown, the first support 210 and the second support 220 that can reach the folded state have many forms of rotation connection with the enclosure 110, and the present embodiment does not limit this.

[0118] The technical scheme of the utility model, the first support 210 and the second support 220 are rotatably installed on the enclosure 110, and can reach the position of supporting the enclosure 110 within the rotation range, so as to be used by children. When the user needs to store the frame structure 200, the first support 210 and the second support 220 only need to be rotated towards the enclosure 110, so that the enclosure 110 is folded between the two. This rotating and folding mode has low operation difficulty, and improves the disassembly difficulty problem encountered by the user when disassembling the existing children's bed frame.

[0119] Further, in an embodiment, the enclosure 110 has a first side and a second side in a first direction, and has a first end 110a and a second end 110b in a second direction, wherein the first direction is perpendicular to the second direction; in the non-folded state, the first support 210 and the second support 220 are arranged along the second direction and located on the first side of the first support 210; in the folded state, the first support 210 can be rotated to the first side of the enclosure 110, and the second support 220 can be rotated to the second side of the enclosure 110.

[0120] It should be noted that the first direction generally refers to the height direction of the enclosure 110, i.e. the opening direction of the enclosure cavity of the enclosure 110, and the first side and the second side are the two sides of the height direction of the enclosure 110. Since the first support 210 and the second support 220 are in the support position, they are on the first side of the enclosure 110. It can be understood that, in use, the first side of the enclosure 110 of the frame structure 200 is arranged towards the external load-bearing structure, for example, towards the ground.

[0121] Wherein, the first end 110a and the second end 110b belong to the two ends of the enclosure 110 in the second direction. The second direction can be the length direction of the enclosure 110 as a whole, or the width direction of the enclosure 110 as a whole, in combination with Figure 7 It can be known that the second direction herein belongs to the length direction of the enclosure 110 as a whole. Since the first support 210 and the second support 220 need to be finally folded to the side of the enclosure 110, the size of the first support 210 and the second support 220 generally needs to be adapted to the corresponding size of the enclosure 110. Generally, when the first end 110a and the second end 110b are arranged as the two ends in the length direction of the enclosure 110, the first support 210 and the second support 220 can be designed to be longer to adapt to the length size of the enclosure 110, i.e. the enclosure 110 can be erected to a higher height when the first support 210 and the second support 220 are in the support position. The first end 110a and the second end 110b should not be understood in a narrow sense as the two top end frame bodies of the enclosure 110 in the second direction, but should also cover the frame structures close to the two top end frame bodies, for example, please refer to Figure 7 Wherein, the connection points of the first support 210 and the second support 220 with the enclosure 110 are not on the two top end frame bodies of the enclosure 110 in the second direction, but on the frame structures close to the two top end frame bodies.

[0122] Wherein, when folded, the first support 210 can be rotated to the first side of the enclosure 110, and the second support 220 can be rotated to the second side of the enclosure 110, so that the enclosure 110 is folded between the first support 210 and the second support 220. Here, the first support 210 should not be understood in a narrow sense as being able to move only on the first side of the enclosure 110. Before the second support 220 is folded to the enclosure 110, the first support 210 can also be flipped around the first end 110a of the enclosure 110 to the second side of the enclosure 110.

[0123] Wherein, the specific structural form of the first support 210 and the second support 220 has many forms, as long as it can play a role in supporting the enclosure 110 to a certain height on the external load-bearing structure in the unfolded state, and the specific structural form of the embodiment is not limited.

[0124] The technical scheme of the utility model, through first support piece 210 and second support piece 220 are respectively rotatably connected in the first end portion 110a and the second end portion 110b of the frame 110, have non-folded state in the rotation stroke of both, can play the role of supporting the frame 110 in the first side of the frame 110 in non-folded state, in the folding process, first support piece 210 can rotate and close to the first side of the frame 110, and second support piece 220 can rotate and close to the second side of the frame 110, both can avoid each other in the turning process, to fold to the frame 110, not only, first support piece 210 and second support piece 220 are not influenced by the position of rotatable connecting point between the other and the frame 110, therefore, the length of first support piece 210 and second support piece 220 can be set longer, to be able to support the frame 110 to higher height.

[0125] In an embodiment, the first support piece 210 is rotatably connected to the frame 110 by a first rotating part 121, and the second support piece 220 is rotatably connected to the frame 110 by a second rotating part 1112. The first rotating part 121 is located closer to the first side than the second rotating part 1112. The frame 110 includes a frame body 111 and a mounting protrusion 120 formed on the frame body 111 and protruding towards the first side. The first rotating part 121 is arranged on the mounting protrusion 120, and the second rotating part 1112 is arranged on the frame body 111.

[0126] It should be noted that the first rotating part 121 and the second rotating part 1112 generally include a rotating bolt and a connecting pin hole to realize the rotatable connection of the first support piece 210 and the second support piece 220 to the frame 110. The purpose of limiting the first rotating part 121 and the second rotating part 1112 in this embodiment is only to emphasize the positional relationship of the rotatable connection points of the first support piece 210 and the second support piece 220 to the frame 110, and does not limit the specific structure thereof.

[0127] The "frame body 111" is the main part of the frame 110, which is usually a surrounding structure to form the above-mentioned surrounding cavity therebetween. In this embodiment, the mounting protrusion 120 protrudes towards the first side, i.e., the mounting protrusion 120 is part of the frame 110 close to the first side, which serves to provide a mounting base for the first rotating part 121 to be closer to the first side of the frame 110. The mounting protrusion 120 and the frame body 111 can be integrally formed or separately installed and formed, which is not limited in this embodiment.

[0128] According to the above technical solution, the first rotating part 121 between the first support 210 and the enclosure 110 is arranged closer to the first side of the enclosure 110 than the second rotating part 1112 between the second support 220 and the enclosure 110, so that there is a displacement in the first direction between the first rotating part 121 and the second rotating part 1112. Therefore, the first support 210 and the second support 220 can be arranged relatively in the first direction after being folded to the enclosure 110, so as to maintain flush with the enclosure 110, which is more beautiful in appearance and is a more space-saving folding state. Moreover, the mounting protrusion 120 is formed on the enclosure body 111 and protrudes towards the first side, which can extend the first rotating part 121 towards the first side, that is, ensure the mutual displacement of the first rotating part 121 and the second rotating part 1112 in the first direction. In addition, due to the arrangement of the mounting protrusion 120, the frame height of the enclosure body 111 can be designed to be relatively low, which saves the material for producing the enclosure 110 and is beneficial to meet the lightweight requirement of the enclosure 110.

[0129] In other embodiments, in the folded position, the first support 210 and the second support 220 overlap in the direction relative to the enclosure 110, that is, the first support 210 and the second support 220 are folded in the side direction of the enclosure 110, so as to clamp part of the frame wall of the enclosure 110.

[0130] Generally, the first support 210 and the second support 220 need to be stably maintained in the unfolded state, so as to meet the safety requirement of the user using the frame structure 200. At present, most of the methods are to limit the swing range of the first support 210 and the second support 220, so that the first support 210 and the second support 220 cannot be further opened to each other when being in the supporting position. However, this way makes the second support 220 unable to be flipped to the second side of the enclosure 110, which cannot meet the design requirement of the technical solution.

[0131] Therefore, in some embodiments, the first support 210 is formed with a first matching part, and a first positioning part 1111 is arranged on the enclosure 110 correspondingly. In the unfolded state, the first positioning part 1111 is positioned and matched with the first matching part.

[0132] The first matching part and the first positioning part 1111 can be positioned and matched with each other, and after being positioned and matched, the first supporting part 210 can be limited to rotate to be limited in the supporting position, and it is difficult to be out of the supporting position under the action of a relatively large external force, for example, when the weight of the surrounding frame 110 is borne by a child, the weight of the child is far from being able to destroy the positioning and matching of the first matching part and the first positioning part 1111. Of course, the user can also realize the rotation and folding of the first supporting part 210 and the second supporting part 220 by actively releasing the positioning and matching of the first positioning part 1111 and the first matching part. It is worth mentioning that the active release needs to be determined according to the specific structure of the first matching part and the first positioning part 1111.

[0133] According to the above technical solution, the first supporting part 210 can be positioned in the supporting position through the positioning and matching of the first matching part and the first positioning part 1111, thereby improving the safety factor of the frame structure 200. In addition, the user can also release the positioning and matching of the first matching part and the first positioning part 1111, so that the first supporting part 210 can continue to be folded to the surrounding frame 110.

[0134] In other embodiments, the second supporting part 220 is formed with a second matching part, and a second positioning part 131 is arranged on the surrounding frame 110. In the non-folded state, the second positioning part 131 is positioned and matched with the second matching part.

[0135] The positioning and matching mode of the second matching part and the second positioning part 131 is similar to the positioning and matching mode of the first matching part and the first positioning part 1111, which will not be described here.

[0136] According to the above technical solution, the second supporting part 220 can be positioned in the supporting position through the positioning and matching of the second matching part and the second positioning part 131, thereby improving the safety factor of the frame structure 200. In addition, the user can also release the positioning and matching of the second matching part and the second positioning part 131, so that the second supporting part 220 can continue to be folded to the surrounding frame 110.

[0137] It should be noted that the above-mentioned parallel technical solutions "the first support 210 is formed with a first matching part, and correspondingly, the first positioning part 1111 is arranged on the surrounding frame 110, and in the unfolded state, the first positioning part 1111 is positioned and matched with the first matching part" and "the second support 220 is formed with a second matching part, and correspondingly, the second positioning part 131 is arranged on the surrounding frame 110, and in the unfolded state, the second positioning part 131 is positioned and matched with the second matching part" can be set alternatively, or can be set simultaneously. Obviously, the effect of setting simultaneously is better, which can simultaneously meet the positioning requirements of the first support 210 and the second support 220, and improve the safety factor of the frame structure 200.

[0138] In combination with the above-mentioned embodiments, the first positioning part 1111 and the first matching part correspond to each other in the unfolded state of the first support 210. The first matching part can be arranged at various positions of the first support 210, as long as it can limit the rotation of the first support 210. In theory, the first support 210 needs to be connected to the surrounding frame 110 through the first rotating part 121, and the first matching part can be arranged at various positions of the circumferential side of the first rotating part 121, for example, relative to the first rotating part 121, on the width direction of the first support 210. However, this way undoubtedly needs to increase the design width of the first support 210, or set a protrusion on one side of the width of the first support 210 for the first matching part to be installed, which is not conducive to the manufacturing and positioning of the first support 210.

[0139] Therefore, in some embodiments, in the unfolded state, the first support 210 is arranged in the third direction as a whole, the first support 210 is connected to the surrounding frame 110 through the first rotating part 121, the first rotating part 121 and the first positioning part 1111 are arranged in the third direction, and the first positioning part 1111 is located closer to the second side than the first rotating part 121.

[0140] Wherein, the third direction is the direction based on the first support 210 itself, which can also be considered as the length direction of the first support 210. In the unfolded state of the first support 210, the third direction can be consistent with the first direction, or can be arranged at a certain angle with the first direction, and the third direction should generally be deviated to the first direction. It is worth mentioning that since the first rotating part 121 and the first positioning part 1111 are arranged in the length direction of the first support 210, in order to realize the positioning and matching of the first positioning part 1111 and the first matching part in the unfolded state of the first support 210, the position of the first matching part on the surrounding frame 110 should be arranged in the third direction with the first rotating part 121.

[0141] According to the technical solution, the first rotating part 121 of the first support 210 and the first positioning part 1111 are arranged in the third direction, the length of the first support 210 is fully utilized, the first positioning part 1111 at the position can provide sufficient rotation stopping torque for the first support 210 after positioning and cooperating with the first cooperating part, the stability of the first support 210 is ensured, meanwhile, the width of the first support 210 can be set to be relatively small, and the lightweight design requirement of the first support 210 is met.

[0142] Similarly to the setting requirement of the first positioning part 1111, in some embodiments, in the unfolded state, the first support 210 is arranged in the fourth direction, the second support 220 is rotationally connected to the frame 110 through the second rotating part 1112, the second rotating part 1112 and the second positioning part 131 are arranged in the fourth direction, and the second positioning part 131 is located closer to the first side than the second rotating part 1112.

[0143] The fourth direction is the direction of the second support 220 itself, and can also be considered as the length direction of the second support 220. In the unfolded state of the second support 220, the fourth direction can be consistent with the first direction, or can be set at a certain angle with the first direction, and the fourth direction should be generally deviated from the first direction. It is worth mentioning that, since the second rotating part 1112 and the second positioning part 131 are arranged in the length direction of the second support 220, in order to realize the positioning and cooperation between the second positioning part 131 and the second cooperating part in the unfolded state of the second support 220, the position of the second cooperating part on the frame 110 should be arranged in the fourth direction away from the second rotating part 1112.

[0144] According to the technical solution, the second rotating part 1112 of the second support 220 and the second positioning part 131 are arranged in the third direction, the length of the second support 220 is fully utilized, the second positioning part 131 at the position can provide sufficient rotation stopping torque for the second support 220 after positioning and cooperating with the second cooperating part, the stability of the second support 220 is ensured, meanwhile, the width of the second support 220 can be set to be relatively small, and the lightweight design requirement of the second support 220 is met.

[0145] It should be noted that the above-mentioned parallel technical solutions "in the non-folded state, the first support 210 is arranged in the third direction, the first support 210 is connected to the frame 110 through the first rotating part 121, the first rotating part 121 and the first positioning part 1111 are arranged in the third direction, and the first positioning part 1111 is located closer to the second side than the first rotating part 121" and "in the non-folded state, the first support 210 is arranged in the fourth direction, the second support 220 is connected to the frame 110 through the second rotating part 1112, the second rotating part 1112 and the second positioning part 131 are arranged in the fourth direction, and the second positioning part 131 is located closer to the first side than the second rotating part 1112" can be set alternatively, or can be set simultaneously. Obviously, the effect of simultaneous setting is better, the first positioning part 1111 and the second positioning part 131 can simultaneously provide sufficient torque for the first support 210 and the second support 220, and the first support 210 and the second support 220 can be arranged relatively narrow.

[0146] In combination with the above-mentioned embodiments, since the first positioning part 1111 and the first rotating part 121 are arranged in the third direction, the second positioning part 131 and the second rotating part 1112 are arranged in the fourth direction, and the third direction and the fourth direction are deviated from the first direction, the frame 110 needs to provide sufficient mounting space in the first direction for the first positioning part 1111 and the first rotating part 121, the second positioning part 131 and the second rotating part 1112, which means that the frame height of the frame 110 needs to be set relatively high, thereby being not conducive to the lightweight design of the frame 110. In view of this, in some embodiments, the frame 110 comprises a frame body 111, and a mounting protrusion 120 and a positioning protrusion 130 formed on the frame body 111 and protruding towards the first direction; the first rotating part 121 is arranged on the mounting protrusion 120; the second positioning part 131 is arranged on the positioning protrusion 130; the first positioning part 1111 and the second rotating part 1112 are arranged on the frame body 111.

[0147] It should be noted that the mounting protrusion 120 and the positioning protrusion 130 protrude from the frame body 111 towards the first direction, which can protrude towards the first side of the frame 110 simultaneously, or can protrude towards the second side of the frame 110, or can protrude towards the first side and the second side of the frame 110 respectively, and the present embodiment does not limit this; the mounting protrusion 120, the positioning protrusion 130 and the frame body 111 can be integrally formed, or can be formed by separate installation, and the present embodiment does not limit this.

[0148] According to the technical solution, the first positioning part 1111 and the first rotating part 121 are arranged on the frame body 111 and the mounting protrusion 120 respectively, and the second positioning part 131 and the second rotating part 1112 are arranged on the positioning protrusion 130 and the frame body 111 respectively, so that the positioning parts and the rotating parts are arranged at intervals in the third direction, and meanwhile, the overall frame height of the frame body 111 can be reduced, and only the strength of the frame body 111 needs to be ensured, thereby saving the material for producing the frame 110 and facilitating to meet the lightweight requirement of the frame 110. In addition, since the first rotating part 121 and the second rotating part 1112 are arranged on the mounting protrusion 120 and the frame body 111 respectively, the first rotating part 121 and the second rotating part 1112 are misaligned in the first direction, and therefore, the first support 210 and the second support 220 can be arranged relatively in the first direction after being folded to the frame 110, so as to keep flush with the frame 110, which is more beautiful in appearance and is a more space-saving folding state.

[0149] In combination with the above embodiments, the first side of the frame 110 is usually the side facing the external support structure, and the second side is usually the side facing the sky and is the side more frequently contacted by the user's hand. Therefore, in some embodiments, the mounting protrusion 120 and / or the positioning protrusion 130 are arranged to protrude away from the second side, and the mounting protrusion 120 and the positioning protrusion 130 are arranged at intervals in the second direction.

[0150] It should be noted that the mounting protrusion 120 and the positioning protrusion 130 correspond to the first rotating part 121 of the first support 210 and the second positioning part 131 of the second support 220 respectively, and therefore, the parts actually providing the mounting base and the positioning base are arranged at intervals in the second direction with the first support 210 and the second support 220.

[0151] According to the technical solution, the mounting protrusion 120 and / or the positioning protrusion 130 can protrude in the direction away from the second side, and obviously, if both the mounting protrusion 120 and the positioning protrusion 130 protrude in the direction away from the second side, it means that only the frame body 111 corresponding to the second side of the surrounding frame 110 protrudes in the second direction, and the protruding block of the frame body 111 in the second direction is reduced, thereby improving the user experience in use. For example, when the audience of the frame structure 200 is children, the children like to put their hands on the second side of the surrounding frame 110 when they are in the surrounding frame 110. If both the mounting protrusion 120 and the positioning protrusion 130 protrude in the direction of the first side, the blocking of the hands of the children is reduced, and the situation that the hands are clamped by the mounting protrusion 120 and / or the positioning protrusion 130 and the support is also reduced. Moreover, the mounting protrusion 120 and the positioning protrusion 130 are arranged in the second direction like the first support 210 and the second support 220, which can greatly reduce the material for forming the mounting protrusion 120 and the positioning protrusion 130, and contribute to the overall light weight of the surrounding frame 110.

[0152] In some embodiments, the first positioning part 1111 and / or the second positioning part 131 includes a locking spring pin, and the first matching part and / or the second matching part includes a pin hole.

[0153] It should be noted that one of the first positioning part 1111 and the second positioning part 131 can be provided as a locking spring pin, and one of the first matching part and the second matching part can be provided as a pin hole. The first positioning part 1111 and the second positioning part 131 can be provided as locking spring pins, and the first matching part and the second matching part can be provided as pin holes. For the specific combination of the locking spring pin and the pin hole, for example, when the positioning cooperation of the locking spring pin and the pin hole needs to be released, the user needs to apply a certain driving force to the first support 210 or the second support 220 in the circumferential direction, and the corresponding support structure can extrude the locking spring pin out of the pin hole, thereby releasing the positioning cooperation. When the positioning cooperation of the locking spring pin and the pin hole needs to be achieved, the user needs to apply a certain driving force to the first support 210 or the second support 220 in the circumferential direction, and the corresponding support structure can first extrude the locking spring pin out of the support stroke, and when the pin hole reaches the position of the locking spring pin, the locking spring pin can automatically pop out and combine with the pin hole.

[0154] According to the technical solution, the positioning cooperation of the locking spring pin and the pin hole can position the first support 210 and the second support 220 in the support position, and the positioning effect is stable and reliable. Moreover, the structure of the locking spring pin and the pin hole is relatively simple, which can reduce the overall weight of the frame structure 200 and reduce the production cost.

[0155] The primary intended users of the child use 100 include children and infants, and in some embodiments, the child use 100 includes, but is not limited to, a crib.

[0156] The above merely describes the exemplary embodiments of the present application, and does not limit the patent scope of the present application, and any equivalent structural transformation, direct / indirect application in other related technical fields made by using the present application specification and drawings under the technical concept of the present application are included in the patent protection scope of the present application.

Claims

1. An enclosure structure, characterized by, The enclosure structure comprises: an enclosure body comprising a first support position and a second support position oppositely arranged in a first direction, and a flexible connecting member connecting between the first support position and the second support position, the first support position, the second support position and the flexible connecting member collectively defining a receiving cavity with a variable size in the first direction; a connecting assembly connecting between the first support position and the second support position to adjust the distance between the first support position and the second support position.

2. The enclosure structure of claim 1, wherein, The connecting assembly comprises: a first connecting member arranged on the enclosure body; a second connecting member arranged on the enclosure body; The connecting assembly has a connected state and a non-connected state, in the connected state, the first connecting member and the second connecting member are engaged, in the non-connected state, the first connecting member and the second connecting member are separated, and the distance between the first support position and the second support position in the non-connected state is greater than that in the connected state.

3. The enclosure structure of claim 2, wherein, The first connecting member is arranged on the first support position, and the second connecting member is arranged on the second support position, in the connected state, the enclosure structure has a first use state, and in the non-connected state, the enclosure structure has a second use state.

4. A containment structure according to claim 2 or 3, wherein The first connecting member and the second connecting member are respectively arranged around the outside of the enclosure body, a first end of the first connecting member extends towards the second connecting member, and / or a first end of part of the second connecting member extends towards the first connecting member; The connecting assembly further has an adjusting member, the adjusting member is correspondingly connected between the first end of the first connecting member and the first end of the second connecting member, and when the adjusting member moves, the first connecting member and the second connecting member gradually engage.

5. The enclosure structure of claim 4, wherein, The first connecting member has a first main body and a first extension segment, the first main body is arranged around the first support position, and the first extension segment extends from the first main body towards the second connecting member; The second connecting member has a second main body and a second extension segment, the second main body is arranged around the second support position, and the second extension segment extends from the second main body towards the first connecting member; The adjusting member is arranged at a position where the first extension segment and the second extension segment approximately meet and is connected to the first extension segment and the second extension segment respectively.

6. The enclosure structure of claim 5, wherein, The position where the first extension segment and the second extension segment approximately meet is located in the middle of the first support position and the second support position in the first direction.

7. The enclosure structure according to claim 5, wherein: One of the first connecting member and the second connecting member is a male zipper, and the other is a female zipper; and the adjusting member comprises a zipper head.

8. The enclosure structure of claim 3, wherein, The second support position is located at the bottom of the enclosure body.

9. A child's implement, characterised in that The enclosure structure comprises: a frame structure; an enclosure structure mounted on the frame structure, and the enclosure structure is the enclosure structure according to any one of claims 1 to 8.

10. A child use as claimed in claim 9, wherein The child appliance comprises a child bed, and the child bed further has a bearing plate supported on the bottom of the enclosure body, and the second support position is located at the bottom of the enclosure body. In the connected state, the bearing plate is located at the height of the first support position, and in the non-connected state, the bearing plate is located at the height of the second support position.

11. The child use of claim 9, wherein The frame structure comprises: a surrounding frame, and a support assembly for supporting the surrounding frame and being foldable, the support assembly comprising a first support member and a second support member, the first support member and the second support member being rotatably mounted to the surrounding frame; In the folding process, the first support member and the second support member rotate towards the direction of closing the surrounding frame, respectively; In the folded state, the surrounding frame is folded between the first support member and the second support member.