Bottle frame assembly and refrigeration equipment

By setting limit protrusions on the slide rail structure of the refrigerator bottle frame and combining the base structure and locking structure design, the problem of poor movement stability of the bottle frame is solved, achieving more stable bottle frame movement and more reliable fixing and unlocking functions.

CN222938111UActive Publication Date: 2025-06-03HEFEI MIDEA REFRIGERATOR CO LTD +2
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Patent Information

Application Number
CN202422069220.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-23
Publication Date
2025-06-03
Estimated Expiration
2034-08-23

AI Technical Summary

Technical Problem

The movement stability of existing refrigerator bottle frames is poor, resulting in unstable movements during use.

Method used

A bottle frame assembly is designed. By setting multiple slide rail structures on the door body and setting limiting protrusions on the slide rail structure, combining the design of the base structure and the locking structure, the contact surface between the base structure and the slide rail structure is increased, and the motion stability is improved.

Benefits of technology

By increasing the contact surface, the movement stability of the bottle frame is improved, and accidental movement when opening and closing the refrigerator door or placing items is avoided, which enhances the reliability of the bottle frame for fixing and unlocking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a bottle frame assembly and refrigeration equipment, and the bottle frame assembly comprises a door body; the sliding rail structures are arranged on the door body, and a plurality of limiting protrusions are arranged on the sliding rail structures; the base structure is in sliding connection with the sliding rail structure; the bottle frame body is detachably connected with the base structure; the locking structures are rotationally connected with the base structure, the locking structures correspond to the sliding rail structures, and the sliding rail structures penetrate through the base structure and the locking structures; when the locking structure rotates to the first position, one end of the locking structure abuts against the limiting protrusion to limit the relative position of the base structure and the sliding rail structure, and when the locking structure rotates to the second position, one end of the locking structure is separated from the sliding rail structure. According to the technical scheme, the sliding rail structure penetrates through the locking structure and the base structure, so that the contact surface between the base structure and the sliding rail structure is increased, and the movement stability is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of refrigerator bottle frames, and more specifically, to a bottle frame assembly and a refrigeration device. Background Art

[0002] Currently, most of the bottle frames of refrigerators are fixed on the door body. The positions of the bottle frames of some refrigerators can be adjusted to adapt to objects of different sizes and improve space utilization. In the related art, the structure of the adjustable bottle frame generally adopts a slide rail structure. However, during use, the contact surface between the bottle frame and the guide rail is small, and the movement stability is poor. Summary of the Utility Model

[0003] The utility model aims to at least solve the technical problem of poor stability during the movement of the bottle frame in the prior art or related art.

[0004] In view of this, an embodiment of the first aspect of the utility model provides a bottle frame assembly.

[0005] An embodiment of the second aspect of the utility model provides a refrigeration device.

[0006] To achieve the above object, an embodiment of the utility model provides a bottle frame assembly, including: a door body; a plurality of slide rail structures provided on the door body, with a plurality of limit protrusions provided on the slide rail structures; a base structure slidably connected to the slide rail structures; a bottle frame body detachably connected to the base structure; a plurality of locking structures rotatably connected to the base structure, the locking structures being correspondingly arranged with the slide rail structures, and the slide rail structures passing through the base structure and the locking structures; wherein, when the locking structure rotates to the first position, one end of the locking structure abuts against the limit protrusion to limit the relative position between the base structure and the slide rail structure, and when the locking structure rotates to the second position, one end of the locking structure is separated from the slide rail structure.

[0007] The bottle frame assembly provided by the utility model includes a door body, a slide rail structure, a base structure, a bottle frame body and a locking structure. Under the action of the locking structure and the base structure, by passing the slide rail structure through the locking structure and the base structure, the contact surface between the base structure and the slide rail structure is increased, thereby improving the movement stability. Specifically, the slide rail structure is installed on the door body to provide a sliding track for the bottle frame. It can be understood that the movement of the base structure is determined according to the extension direction of the slide rail structure. A plurality of slide rail structures can be arranged in parallel to ensure the stability of the base structure during movement. It should be noted that by providing a plurality of limit protrusions on the slide rail structure, the relative movement between the base structure and the slide rail structure can be effectively restricted, thereby fixing the position of the base structure. Among them, the limit protrusions are provided on the slide rail structure and correspond to the locking structure, so as to cooperate with the locking structure when the base structure moves to a predetermined position, thereby providing a physical block.

[0008] It can be understood that the base structure, as the support foundation of the bottle frame, is slidably connected to the slide rail structure and detachably connected to the bottle frame body. The base structure and the slide rail structure are relatively fixed to the slide rail through a locking structure, and the base structure can be detachably connected to the bottle frame body by means of a buckle or other methods.

[0009] The bottle frame body is mainly used for storing items. The bottle frame body is detachably connected to the base structure. In this solution, the bottle frame body is not directly connected to the slide rail structure, but indirectly realizes the sliding connection through the base structure.

[0010] Among them, the bottle frame body can be connected to the base structure through a specific design at the bottom, usually in the form of a buckle or a slot, so that the bottle frame body is installed on the base structure and moves along with the sliding of the base structure on the slide rail.

[0011] By setting a locking structure rotatably connected to the base structure, it can cooperate with the limiting protrusion on the slide rail to realize the fixation or unlocking of the bottle frame. It should be added that the locking structure is connected to the base structure through a rotating shaft, and one end of it corresponds to the limiting protrusion on the slide rail.

[0012] Among them, the setting position of the locking structure includes but is not limited to the edge of the base structure. By controlling the rotation of the locking structure, the contact or separation from the limiting protrusion can be realized. When the locking structure rotates to the first position, one end of it will abut against the limiting protrusion on the slide rail structure. At this time, the relative position between the bottle frame base and the slide rail is restricted and cannot slide, and the bottle frame is fixed. When the locking structure rotates to the second position, one end of it separates from the limiting protrusion, and the locking structure no longer restricts the relative position between the bottle frame base and the slide rail, allowing the bottle frame to slide or move up and down.

[0013] Through the cooperation of the limiting protrusion on the slide rail and the locking structure, the bottle frame can be stably fixed at a predetermined position in the natural state, avoiding movement when opening or closing the refrigerator door or placing or taking items.

[0014] In some technical solutions, optionally, the base structure specifically includes: a mating portion and a bearing portion arranged along the first direction. The mating portion is provided with a first through hole for the slide rail structure to pass through, and the bearing portion is provided with a clamping groove, and the shape of the clamping groove is adapted to the shape of the bottle frame body.

[0015] In this technical solution, the base structure includes a mating portion and a bearing portion. The mating portion is used for connecting and cooperating with the slide rail structure. A first through hole for the slide rail structure to pass through is designed on the mating portion. After the slide rail structure passes through the first through hole, the base structure can slide on the slide rail structure.

[0016] Among them, the mating portion can be located at the rear end of the base structure and directly contact the slide rail structure. The opening direction of the first through hole in the mating portion is consistent with the extending direction of the slide rail structure, ensuring smooth sliding of the base.

[0017] The bearing part is another part of the base structure and is used to support the bottle frame body. A clamping groove is provided on the bearing part, and the shape of the clamping groove is adapted to the shape of the bottom of the bottle frame body. This means that the bottle frame body can be firmly clamped into the clamping groove to prevent it from shaking or shifting during use.

[0018] It can be understood that the bearing part is detachably connected to the bottle frame body. The bottle frame is fixed to the base structure through the clamping groove, which is convenient for users to disassemble and assemble and ensures the stability of the bottle frame when fixed.

[0019] The design of the matching part enables the base structure to slide smoothly along the slide rail, and at the same time ensures a firm connection between the slide rail and the base through the first through hole. In this way, during the sliding process, the base structure can remain stable and will not affect the use experience due to loosening or poor sliding. The design of the clamping groove of the bearing part provides a stable support surface by precisely matching the shape of the bottle frame body. When the bottle frame is installed on the bearing part, it can be firmly fixed to the base structure to prevent displacement during sliding or opening and closing the door. This design not only enhances the stability of the bottle frame but also facilitates the disassembly and cleaning of the bottle frame.

[0020] In some technical solutions, optionally, it further includes: an assembly cavity provided at the bottom of the base structure, and at least part of the locking structure is provided in the assembly cavity.

[0021] In this technical solution, by providing an assembly cavity at the bottom of the base structure and arranging part or all of the locking structure in the assembly cavity, the locking structure can be arranged at the bottom of the base structure and thus hidden from the normal view.

[0022] It should be added that by providing an assembly cavity at the bottom, the bottom space of the base structure is reasonably utilized, and part of the locking structure is accommodated in the assembly cavity, improving the space utilization rate and making the structure of the entire bottle frame assembly more compact.

[0023] The locking structure is arranged in the assembly cavity, making the operation more convenient. When the user operates the locking structure, they only need to control the rotation of the locking structure in the assembly cavity through an external operating component (such as a button, wrench, etc.) or directly by touch to fix or unlock the bottle frame.

[0024] In some technical solutions, optionally, the locking structure specifically includes: a rotating shaft structure, and a touch part and a stopping part located at both ends of the rotating shaft structure. The touch part is arranged in a part of the assembly cavity corresponding to the bearing part, and the stopping part is arranged in a part of the assembly cavity corresponding to the matching part; wherein, the stopping part is provided with a second through hole for the slide rail structure to pass through.

[0025] In this technical solution, the locking structure includes a rotating shaft structure, a touch part, and a stopping part. The two ends of the rotating shaft structure are respectively connected to the touch part and the stopping part, enabling the touch part and the stopping part to rotate around the rotating shaft structure. When the touch part is forced to move, the stopping part will move in the opposite direction under the action of the rotating shaft structure. For example, when the touch part moves upward, the stopping part moves downward.

[0026] Among them, the touch part is the part of the locking structure corresponding to the bearing part, used to receive an external operating force to make the locking structure rotate. The touch part is connected to one end of the rotating shaft structure and is located in the corresponding part assembly cavity of the bearing part. The stopping part is the part of the locking structure corresponding to the mating part. Through the interaction with the slide rail structure, the locking and unlocking of the bottle frame are realized. The stopping part is located in the corresponding part assembly cavity of the mating part and is provided with a second through hole for the slide rail structure to pass through. When the locking structure rotates, the stopping part can contact or separate from the slide rail structure through the second through hole.

[0027] When the touch part receives an external operating force, the locking structure rotates around the rotating shaft structure. In the first position, the stopping part abuts against the limiting protrusion on the slide rail structure, restricting the relative position between the base structure and the slide rail structure, thereby realizing the locking of the bottle frame; in the second position, the stopping part separates from the slide rail structure, and the base structure can slide freely on the slide rail structure, realizing the unlocking of the bottle frame.

[0028] It can be understood that the design of the touch part enables the user to control the rotation of the locking structure through simple operations (such as pressing, toggling, etc.), thereby realizing the locking and unlocking of the bottle frame and improving the convenience of operation.

[0029] In some technical solutions, optionally, the limiting protrusion is provided at one end of the slide rail structure away from the bottle frame body; among them, a tongue structure protruding towards the slide rail structure is provided at one end of the second through hole away from the touch part. When the locking structure is in the first position, the tongue structure abuts against the limiting protrusion.

[0030] In this technical solution, by restricting the position of the limiting protrusion, specifically restricting it to one end of the slide rail structure away from the bottle frame body, such a position design enables the locking structure to interact with the limiting protrusion at the end of the slide rail structure when the bottle frame needs to be fixed, providing an effective locking function. It can be understood that the limiting protrusion is used to cooperate with the tongue structure of the locking structure to restrict the position of the base structure on the slide rail structure, thereby achieving the purpose of locking the bottle frame.

[0031] The tongue structure is located at one end of the second through hole away from the touch part and protrudes towards the slide rail structure. When the locking structure is in the first position, the tongue structure can abut against the limiting protrusion, thereby preventing the base structure from moving on the slide rail structure.

[0032] Among them, the tongue structure is a part of the abutting portion, integrally formed with or fixedly connected to the abutting portion.

[0033] When the locking structure rotates to the first position, the tongue structure abuts against the limiting protrusion, so that the base structure cannot move further on the sliding rail structure, thereby realizing the locking of the bottle frame. This locking method is simple and reliable, and can effectively prevent the bottle frame from accidentally sliding when it does not need to move.

[0034] In some technical solutions, optionally, it further includes: an elastic member, both ends of the elastic member respectively abut against the other end of the locking structure and the base structure, and when the locking structure is in the first position, the elastic member is compressed.

[0035] In this technical solution, by providing the elastic member, a restoring force and a holding force can be provided for the locking structure. When the locking structure is in the first position and the entire bottle frame assembly is in the locked state at this time, the elastic member is compressed, and the generated elastic force makes the tongue structure tightly abut against the limiting protrusion, enhancing the stability of the locking and preventing the locking structure from accidentally loosening. When unlocking is required, an external force is applied to rotate the locking structure to overcome the pressure of the elastic member, and when the external force disappears, the elastic force of the elastic member can make the locking structure return to the first position again.

[0036] Among them, one end of the elastic member abuts against the other end of the locking structure. The other end of the locking structure refers to a part of one end of the rotating shaft structure provided with the touching portion. The other end of the elastic member abuts against the base structure, thereby connecting the locking structure and the base structure together.

[0037] It can be understood that the elastic member is located in the assembly cavity between the locking structure and the base structure, and its specific position depends on the positions of the parts on the locking structure and the base structure that abut against it.

[0038] When the locking structure is in the first position, the pressure of the elastic member makes the abutment between the tongue structure and the limiting protrusion closer, effectively preventing the accidental sliding of the bottle frame in the locked state and improving the stability of the bottle frame. When an external force rotates the locking structure from the first position to the second position, and it is in the unlocked state at this time, once the external force disappears, the elastic force of the elastic member will prompt the locking structure to automatically return to the first position, realizing the automatic reset function and facilitating the operation of the user.

[0039] In some technical solutions, optionally, it further includes: a positioning protrusion provided on the base structure, one end of the elastic member is sleeved on the positioning protrusion; a connecting groove provided on the other end of the locking structure, and the other end of the elastic member abuts against the bottom of the connecting groove.

[0040] In this technical solution, by providing positioning protrusions and connecting grooves, it is convenient to fix the elastic member. Specifically, the positioning protrusions are provided on the base structure, and one end of the elastic member is sleeved on the positioning protrusions, realizing the connection between the elastic member and the base structure. The positioning protrusions are used to fix one end of the elastic member, preventing the elastic member from shifting or dislocating during operation, and ensuring that the elastic member can function stably.

[0041] The connecting groove provides a fixed contact point for the other end of the elastic member, enabling the elastic member to effectively transmit force to the locking structure. The connecting groove is provided at the other end of the locking structure, and the other end of the elastic member abuts against the bottom of the connecting groove, realizing the connection between the elastic member and the locking structure.

[0042] Through the provision of the positioning protrusions and the connecting groove, the elastic member can be more firmly connected between the base structure and the locking structure, avoiding unstable factors of the elastic member during operation, and improving the stability of the entire bottle frame assembly.

[0043] It can be understood that the positioning protrusions are located at the part of the base structure connected to the elastic member, and their positions and shapes should match one end of the elastic member to ensure that the elastic member can be accurately sleeved on it. Similarly, the connecting groove is located at the part of the locking structure connected to the elastic member, and its position and shape should match the other end of the elastic member to ensure that the elastic member can stably abut against the bottom of the groove.

[0044] In some technical solutions, optionally, the slide rail structure extends along the height direction of the door body, and the upper surface of the bottle frame body is flush with the upper surface of the base structure.

[0045] In this technical solution, the extending direction of the slide rail structure is the height direction of the door body, and the user can slide the bottle frame up and down as needed to make reasonable use of the space inside the refrigerator. The bottle frame body is detachably connected to the base structure, and the upper surface of the bottle frame body is flush with the upper surface of the base structure, improving the overall stability and usability of the bottle frame assembly. In actual use, the user can more easily put items into or take them out of the bottle frame without worrying about the items slipping or tipping over due to the unevenness of the bottle frame. In addition, this design also makes the space utilization inside the refrigerator more reasonable and does not waste space due to the structural problems of the bottle frame.

[0046] In some technical solutions, optionally, the locking structure is in the first position, and the other end of the locking structure protrudes from the lower surface of the base structure.

[0047] In this technical solution, when the locking structure is in the first position, the bottle frame is in the locked state. In this locked state, the other end of the locking structure protrudes from the lower surface of the base structure, enabling the user to easily determine whether the bottle frame is in the locked state. When it is seen or determined by touch that the other end of the locking structure protrudes from the lower surface of the base structure, it is known that the bottle frame is locked and cannot be slid. It can be understood that the protruding part can, to a certain extent, prevent the user from accidentally operating and attempting to move the locked bottle frame without knowing it.

[0048] When the bottle frame needs to be unlocked, the user can find the locking structure based on this protruding part and perform corresponding operations (such as pressing, toggling, etc.) to rotate the locking structure from the first position to the second position to unlock the bottle frame.

[0049] An embodiment of the second aspect of the present application provides a refrigeration device, including: a box body, a storage cavity is provided inside the box body; any of the above bottle frame assemblies, the door body of the bottle frame assembly is rotatably connected to the box body; wherein, the bottle frame body of the bottle frame assembly is arranged on the side of the door body facing the storage cavity.

[0050] According to the refrigeration device provided by the present application, including a box body and a bottle frame assembly, wherein, the box body provides a storage cavity for storing items to be refrigerated, and through the refrigeration function of the refrigeration device, the low-temperature environment inside the cavity is maintained to extend the storage time of the items.

[0051] The door body of the bottle frame assembly is connected to the box body, and the bottle frame body is arranged on the side of the door body facing the storage cavity. When the door body is closed, the bottle frame body is located inside the storage cavity and can be affected by the refrigeration of the refrigeration device.

[0052] Since the refrigeration device includes any of the above bottle frame assemblies, it has the beneficial effects of any of the above bottle frame assemblies, which will not be elaborated here.

[0053] Among them, the refrigeration device includes but is not limited to devices such as refrigerators and freezers that have a refrigeration function and will experience frosting during operation.

[0054] The additional aspects and advantages of the present utility model will become apparent in the following description section or be understood through the practice of the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS

[0055] Figure 1 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0056] Figure 2 Shows an expanded structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0057] Figure 3Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0058] Figure 4 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0059] Figure 5 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0060] Figure 6 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0061] Figure 7 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0062] Figure 8 Shows an expanded structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0063] Figure 9 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0064] Figure 10 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0065] Figure 11 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0066] Figure 12 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0067] Figure 13 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0068] Figure 14 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0069] Figure 15 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0070] Figure 16 Shows an exploded schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0071] Figure 17 Shows a schematic structural diagram of a bottle frame assembly according to an embodiment of the present utility model;

[0072] Figure 18 The structural schematic diagram of a refrigeration device according to an embodiment of the present invention is shown.

[0073] Among them, Figures 1 to 18 The corresponding relationship between the reference numerals and the component names in the figure is as follows:

[0074] 100: bottle frame assembly; 102: door body; 104: slide rail structure; 1042: limit protrusion; 106: base structure; 1062: mating part; 1063: first through hole; 1064: bearing part; 1065: clamping groove; 107: assembly cavity; 108: locking structure; 1082: rotating shaft structure; 1084: touching part; 1086: abutting part; 1088: second through hole; 109: tongue structure; 110: elastic member; 1102: positioning protrusion; 1104: connecting groove; 112: bottle frame body

[0075] 200: refrigeration device; 202: box body; 2022: storage cavity. Specific embodiments

[0076] In order to more clearly understand the above-mentioned objects, features and advantages of the embodiments of the present invention, the embodiments of the present invention will be further described in detail below with reference to the drawings and specific embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.

[0077] Many specific details are set forth in the following description in order to provide a thorough understanding of the present application. However, the embodiments of the present invention may be implemented in other ways different from those described herein. Therefore, the scope of protection of the present application is not limited to the limitations of the specific embodiments disclosed below.

[0078] The following refers to Figures 1 to 18 Describe some embodiments according to the present invention.

[0079] As Figure 1 and Figure 2 shown, this embodiment provides a bottle frame assembly 100, including a door body 102, a slide rail structure 104, a base structure 106, a bottle frame body 112 and a locking structure 108. Under the action of the locking structure 108 and the base structure 106, as Figure 3 , Figure 4 and Figure 5As shown, by passing the slide rail structure 104 through the locking structure 108 and the base structure 106, the contact surface between the base structure 106 and the slide rail structure 104 is increased, thereby improving the movement stability. Specifically, the slide rail structure 104 is installed on the door body 102 and can provide a track for the bottle frame to slide. It can be understood that the movement of the base structure 106 is determined according to the extension direction of the slide rail structure 104. Multiple slide rail structures 104 can be arranged in parallel to ensure the stability of the base structure 106 during movement. It should be noted that by providing a plurality of limiting protrusions 1042 on the slide rail structure 104, the relative movement between the base structure 106 and the slide rail structure 104 can be effectively restricted, thereby fixing the position of the base structure 106. Among them, the limiting protrusions 1042 are provided on the slide rail structure 104 and correspond to the locking structure 108, so as to cooperate with the locking structure 108 when the base structure 106 moves to a predetermined position, thereby providing physical blockage.

[0080] It can be understood that as Figure 17 shown, the base structure 106 serves as a support base for the bottle frame, is slidably connected to the slide rail structure 104, and is detachably connected to the bottle frame body 112. The base structure 106 and the slide rail structure 104 are relatively fixed to the slide rail through the locking structure 108. The base structure 106 and the bottle frame body 112 can be detachably connected by snap fasteners or other means.

[0081] The bottle frame body 112 can be removed from the base structure 106, which can meet the usage scenarios where the bottle frame body 112 is needed, or the bottle frame body 112 and the items inside need to be taken out as a whole.

[0082] The bottle frame body 112 is mainly used for storing items. The bottle frame body 112 is detachably connected to the base structure 106. In this solution, the bottle frame body 112 is not directly connected to the slide rail structure 104, but is indirectly slidably connected through the base structure 106.

[0083] Among them, the bottle frame body 112 can be connected to the base structure 106 through a specific design at the bottom, usually in the form of snap fasteners or slots, so that the bottle frame body 112 is installed on the base structure 106 and moves along with the sliding of the base structure 106 on the slide rail.

[0084] By providing a locking structure 108 rotatably connected to the base structure 106, it can cooperate with the limiting protrusions 1042 on the slide rail to realize the fixation or unlocking of the bottle frame. It should be added that the locking structure 108 is connected to the base structure 106 through a rotating shaft, and one end thereof corresponds to the limiting protrusions 1042 on the slide rail.

[0085] Among them, the setting position of the locking structure 108 includes but is not limited to the edge of the base structure 106. By controlling the rotation of the locking structure 108, contact or separation from the limiting protrusion 1042 can be achieved. When the locking structure 108 rotates to the first position, as Figure 15 and Figure 16 shown, one end of it will abut against the limiting protrusion 1042 on the slide rail structure 104. At this time, the relative position between the bottle frame base and the slide rail is restricted and cannot slide, and the bottle frame is fixed. When the locking structure 108 rotates to the second position, as Figure 13 and Figure 14 shown, one end of it separates from the limiting protrusion 1042, and the locking structure 108 no longer restricts the relative position between the bottle frame base and the slide rail, allowing the bottle frame to slide or move up and down.

[0086] Through the cooperation of the limiting protrusion 1042 on the slide rail and the locking structure 108, the bottle frame can be stably fixed at a predetermined position in the natural state, avoiding movement when opening or closing the refrigerator door or placing or taking items.

[0087] In some embodiments, optionally, the base structure 106 includes a mating portion 1062 and a bearing portion 1064. The mating portion 1062 is used to connect and cooperate with the slide rail structure 104. A first through hole 1063 for the slide rail structure 104 to pass through is designed on the mating portion 1062. After the slide rail structure 104 passes through the first through hole 1063, the base structure 106 can slide on the slide rail structure 104.

[0088] Among them, the mating portion 1062 can be located at the rear end of the base structure 106 and directly contact the slide rail structure 104. The opening direction of the first through hole 1063 in the mating portion 1062 is consistent with the extending direction of the slide rail structure 104, ensuring smooth sliding of the base.

[0089] The bearing portion 1064 is another part of the base structure 106 and is used to support the bottle frame body 112. A clamping groove 1065 is provided on the bearing portion 1064, and the shape of the clamping groove 1065 is adapted to the bottom shape of the bottle frame body 112. This means that the bottle frame body 112 can be firmly clamped into the clamping groove 1065 to prevent it from shaking or shifting during use.

[0090] It can be understood that the bearing portion 1064 is detachably connected to the bottle frame body 112. The bottle frame is fixed to the base structure 106 through the clamping groove 1065, which is convenient for users to disassemble and assemble and ensures the stability of the bottle frame when fixed.

[0091] The design of the mating part 1062 enables the base structure 106 to slide smoothly along the slide rail. At the same time, the first through hole 1063 ensures a firm connection between the slide rail and the base. In this way, during the sliding process, the base structure 106 can remain stable and will not affect the use experience due to looseness or poor sliding. The clamping groove 1065 of the bearing part 1064 is designed to provide a stable supporting surface by precisely matching the shape of the bottle frame body 112. When the bottle frame is installed on the bearing part 1064, it can be firmly fixed on the base structure 106 to prevent displacement during sliding or door opening and closing. This design not only enhances the stability of the bottle frame but also facilitates the disassembly and cleaning of the bottle frame.

[0092] Among them, the first direction can be the front-back direction of the door body 102, that is, the thickness direction of the door body 102.

[0093] In some embodiments, optionally, an assembly cavity 107 is provided at the bottom of the base structure 106, and part or all of the locking structure 108 is arranged in the assembly cavity 107. The locking structure 108 can be arranged at the bottom of the base structure 106 so as to be hidden under normal viewing angles.

[0094] It should be added that by providing the assembly cavity 107 at the bottom, the bottom space of the base structure 106 is reasonably utilized, and part of the locking structure 108 is received in the assembly cavity 107, improving the space utilization rate and making the structure of the entire bottle frame assembly 100 more compact.

[0095] The locking structure 108 is arranged in the assembly cavity 107, making the operation more convenient. When the user operates the locking structure 108, only by using an external operating component (such as a button, a wrench, etc.) or directly by touch to control the rotation of the locking structure 108 in the assembly cavity 107, the fixing or unlocking of the bottle frame can be achieved.

[0096] In some embodiments, optionally, as Figure 7 shown, the locking structure 108 includes a rotating shaft structure 1082, a touching part 1084, and a stopping part 1086. The two ends of the rotating shaft structure 1082 are respectively connected to the touching part 1084 and the stopping part 1086, enabling the touching part 1084 and the stopping part 1086 to rotate around the rotating shaft structure 1082. When the touching part 1084 is forced to move, the stopping part 1086 will move in the opposite direction under the action of the rotating shaft structure 1082. For example, when the touching part 1084 moves upward, the stopping part 1086 moves downward.

[0097] Among them, the touch part 1084 is the part of the locking structure 108 corresponding to the bearing part 1064, which is used to receive an external operating force to make the locking structure 108 rotate. The touch part 1084 is connected to one end of the rotating shaft structure 1082, and the touch part 1084 is located in the assembly cavity 107 corresponding to the bearing part 1064. The abutting part 1086 is the part of the locking structure 108 corresponding to the mating part 1062. Through the interaction with the slide rail structure 104, the locking and unlocking of the bottle frame are realized. The abutting part 1086 is located in the assembly cavity 107 corresponding to the mating part 1062, and is provided with a second through hole 1088 for the slide rail structure 104 to pass through. When the locking structure 108 rotates, the abutting part 1086 can contact or separate from the slide rail structure 104 through the second through hole 1088.

[0098] When the touch part 1084 receives an external operating force, the locking structure 108 rotates around the rotating shaft structure 1082 and rotates to a specific position as Figure 8 shown. At the first position, as Figure 9 and Figure 10 shown, the abutting part 1086 abuts against the limit protrusion 1042 on the slide rail structure 104, restricting the relative position between the base structure 106 and the slide rail structure 104, thereby realizing the locking of the bottle frame; at the second position, as Figure 11 and Figure 12 shown, the abutting part 1086 separates from the slide rail structure 104, and the base structure 106 can slide freely on the slide rail structure 104, realizing the unlocking of the bottle frame.

[0099] It can be understood that the design of the touch part 1084 enables the user to control the rotation of the locking structure 108 through simple operations (such as pressing, toggling, etc.), thereby realizing the locking and unlocking of the bottle frame and improving the convenience of operation.

[0100] In some embodiments, optionally, as Figure 13 、 Figure 14 、 Figure 15 and Figure 16 shown, the position of the limit protrusion 1042 is restricted. Specifically, it is restricted to the end of the slide rail structure 104 away from the bottle frame body 112. Such a position design enables the locking structure 108 to interact with the limit protrusion 1042 at the end of the slide rail structure 104 when the bottle frame needs to be fixed, providing an effective locking function. It can be understood that the limit protrusion 1042 is used to cooperate with the tongue structure 109 of the locking structure 108 to restrict the position of the base structure 106 on the slide rail structure 104, thereby achieving the purpose of locking the bottle frame.

[0101] The tongue structure 109 is located at the end of the second through hole 1088 away from the touch part 1084 and protrudes towards the slide rail structure 104. When the locking structure 108 is in the first position, asFigure 15 and Figure 16 As shown, the tongue structure 109 can abut against the limiting protrusion 1042, thereby preventing the base structure 106 from moving on the slide rail structure 104.

[0102] Among them, the tongue structure 109 is a part of the abutting portion 1086, and is integrally formed or fixedly connected with the abutting portion 1086.

[0103] When the locking structure 108 rotates to the first position, the tongue structure 109 abuts against the limiting protrusion 1042, making the base structure 106 unable to continue moving on the slide rail structure 104, thereby realizing the locking of the bottle frame. This locking method is simple and reliable, and can effectively prevent the bottle frame from accidentally sliding when it does not need to move. When the locking structure 108 rotates to the second position, as Figure 13 and Figure 14 shown, the tongue structure 109 is separated from the limiting protrusion 1042.

[0104] In some embodiments, optionally, as Figure 7 shown, an elastic member 110 is provided, which can provide a restoring force and a holding force for the locking structure 108. When the locking structure 108 is in the first position, and at this time the entire bottle frame assembly 100 is in the locked state, the elastic member 110 is compressed, and the generated elastic force makes the tongue structure 109 closely abut against the limiting protrusion 1042, enhancing the locking stability and preventing the locking structure 108 from accidentally loosening. When unlocking is required, an external force is applied to rotate the locking structure 108 to overcome the pressure of the elastic member 110. After the external force disappears, the elastic force of the elastic member 110 can make the locking structure 108 return to the first position.

[0105] Among them, one end of the elastic member 110 abuts against the other end of the locking structure 108. The other end of the locking structure 108 refers to a part of the end of the rotating shaft structure 1082 provided with the touching portion 1084. The other end of the elastic member 110 abuts against the base structure 106, thereby connecting the locking structure 108 and the base structure 106 together.

[0106] It can be understood that the elastic member 110 is located in the assembly cavity 107 between the locking structure 108 and the base structure 106, and its specific position depends on the positions of the parts on the locking structure 108 and the base structure 106 that abut against it.

[0107] When the locking structure 108 is in the first position, the pressure of the elastic member 110 makes the abutment between the tongue structure 109 and the limiting protrusion 1042 closer, effectively preventing the accidental sliding of the bottle frame in the locked state and improving the stability of the bottle frame. When an external force causes the locking structure 108 to rotate from the first position to the second position, it is in the unlocked state at this time. Once the external force disappears, the elastic force of the elastic member 110 will prompt the locking structure 108 to automatically return to the first position, realizing the automatic reset function and facilitating the operation of the user.

[0108] In some embodiments, optionally, as Figure 6 shown, a positioning protrusion 1102 and a connecting groove 1104 are provided to facilitate the fixation of the elastic member 110. Specifically, the positioning protrusion 1102 is provided on the base structure 106, and one end of the elastic member 110 is sleeved on the positioning protrusion 1102, realizing the connection between the elastic member 110 and the base structure 106. The positioning protrusion 1102 is used to fix one end of the elastic member 110, preventing the elastic member 110 from shifting or dislocating during operation, and ensuring that the elastic member 110 can stably play its role.

[0109] The connecting groove 1104 provides a fixed contact point for the other end of the elastic member 110, enabling the elastic member 110 to effectively transmit force to the locking structure 108. The connecting groove 1104 is provided at the other end of the locking structure 108, and the other end of the elastic member 110 abuts against the bottom of the connecting groove 1104, realizing the connection between the elastic member 110 and the locking structure 108.

[0110] Through the setting of the positioning protrusion 1102 and the connecting groove 1104, the elastic member 110 can be more firmly connected between the base structure 106 and the locking structure 108, avoiding the unstable factors of the elastic member 110 during operation and improving the stability of the entire bottle frame assembly 100.

[0111] It can be understood that the positioning protrusion 1102 is located at the part of the base structure 106 connected to the elastic member 110, and its position and shape should match one end of the elastic member 110 to ensure that the elastic member 110 can be accurately sleeved on it. Similarly, the connecting groove 1104 is located at the part of the locking structure 108 connected to the elastic member 110, and its position and shape should match the other end of the elastic member 110 to ensure that the elastic member 110 can stably abut against the bottom of the groove.

[0112] In some embodiments, optionally, the extending direction of the sliding rail structure 104 is the height direction of the door body 102. Users can slide the bottle frame up and down as needed to make rational use of the space inside the refrigerator. The bottle frame body 112 is detachably connected to the base structure 106, and the upper surface of the bottle frame body 112 is flush with the upper surface of the base structure 106, which improves the overall stability and usability of the bottle frame assembly 100. In actual use, users can more easily put items into or take items out of the bottle frame without worrying about the items slipping or tipping over due to the unevenness of the bottle frame. In addition, this design also makes the space utilization inside the refrigerator more reasonable and does not waste space due to the structural problems of the bottle frame.

[0113] In some embodiments, optionally, when the locking structure 108 is in the first position, the bottle frame is in the locked state. In this locked state, the other end of the locking structure 108 protrudes from the lower surface of the base structure 106, enabling users to easily determine whether the bottle frame is in the locked state. When it is seen or determined by touch that the other end of the locking structure 108 protrudes from the lower surface of the base structure 106, it is known that the bottle frame is locked and cannot be slid. It can be understood that the protruding part can, to a certain extent, prevent users from accidentally operating and attempting to move the locked bottle frame without knowing it.

[0114] When the bottle frame needs to be unlocked, users can find the locking structure 108 based on this protruding part and perform corresponding operations (such as pressing, toggling, etc.) to rotate the locking structure 108 from the first position to the second position to unlock the bottle frame.

[0115] As Figure 18 shown, an embodiment of the second aspect of the present application provides a refrigeration device 200, including a box body 202 and a bottle frame assembly 100. Among them, the box body 202 provides a storage cavity 2022 for storing items that need to be refrigerated. Through the refrigeration function of the refrigeration device 200, a low-temperature environment inside the cavity is maintained to extend the storage time of the items.

[0116] The door body 102 of the bottle frame assembly 100 is connected to the box body 202, and the bottle frame body 112 is arranged on the side of the door body 102 facing the storage cavity 2022. When the door body 102 is closed, the bottle frame body 112 is located inside the storage cavity 2022 and can be affected by the refrigeration of the refrigeration device 200.

[0117] Since the refrigeration device 200 includes any of the above-mentioned bottle frame assemblies 100, it has the beneficial effects of any of the above-mentioned bottle frame assemblies 100, which will not be elaborated here.

[0118] Among them, the refrigeration device 200 includes, but is not limited to, refrigerators, freezers and other devices with refrigeration functions that will frost during operation.

[0119] In a specific embodiment, a refrigerator is defined, including: a door body 102; a bottle frame slide rail fixing member provided on the door body 102, which has fixed hole positions; a bottle frame slide rail (i.e., the slide rail structure 104), connected to the slide rail fixing member to form a carrier for the bottle frame to move, and the bottle frame moves along this slide rail; a bottle frame base (i.e., the base structure 106), the bottle frame base passes through the bottle frame slide rail, and through a bottom button (i.e., the locking structure 108), the locking and free sliding of the bottle frame are realized; a bottle frame (i.e., the bottle frame body 112), the bottle frame is designed to be separable from the base, and is clamped with the base through the bottom shape design to ensure stability during the moving process; the bottle frame base includes a locking structure 108 passing through the slide rail, the middle rotating shaft of the locking structure 108 is combined with the bottle frame base, by pressing the front end of this mechanism (i.e., the touching part 1084), the back part (i.e., the abutting part 1086) will descend, the mechanism disengages from the slide rail, and the bottle frame can move freely up and down; the bottom of the bottle frame base includes a spring structure (i.e., the elastic member 110), when the pressing is released, the spring will eject the pressing mechanism, causing the pressing mechanism to rotate around the rotating shaft, the rear half of the pressing mechanism rises, the space with the bottle frame slide rail decreases, and the bottle frame base is locked on the slide rail and cannot move.

[0120] The bottle frame base passes through the slide rail, and by controlling the gaps around it, it cannot move forward, backward, left or right.

[0121] On the back of the bottle frame slide rail, a rack design (i.e., the limiting protrusion) is added to increase the stability when the bottle frame is locked.

[0122] Among them, the slide rail structure can be fixed to the door body through a fixing mechanism. The specific fixing mechanism includes but is not limited to door body embedded parts, screws, etc. The slide rail is designed as a detachable structure to facilitate the installation and disassembly of the bottle frame base. Removing the fixing mechanism, the bottle frame base can pass through the bottle frame slide rail to complete the installation of the bottle frame base. In the natural state, the locking structure will engage with the rack on the back through the protrusion at the rear (i.e., the tongue structure) to realize the fixation of the bottle frame;

[0123] The bottle frame corresponds to the base groove through the bottom shape, and realizes the limitation of the bottle frame by combining with the base shape, ensuring the stability of the bottle frame during the up and down movement;

[0124] In the natural state, the locking structure receives a downward force under the action of the elastic member. At the same time, due to the existence of the rotating shaft structure, the rear half of the locking structure moves in the opposite direction and finally contacts the base structure and cannot move up and down continuously. In the natural state, the protrusion of the rear half of the locking structure is completely in contact with the slide rail structure of the bottle frame and is embedded in the rack on the back of the slide rail structure. When the bottle frame receives a downward force, the acting force of the rack increases, and the bottle frame will be clamped more firmly. At the same time, due to the very small gap between the protruding part of the base structure and the slide rail structure, the base structure cannot move back and forth, left and right. By pressing the front end of the locking structure to make it move upward, through the rotating shaft structure, the rear end of the connecting rod mechanism will move downward. During the movement, the gap between the locking structure and the slide rail structure will increase. At the same time, the protrusion structure of the rear end of the locking structure embedded in the rack on the back of the slide rod mechanism will move backward and disengage from the rack of the slide rail structure. Without the limit of the rack, the bottle frame can move up and down freely in this state.

[0125] In the present utility model, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance; the term "plurality" means two or more unless otherwise clearly defined. The terms such as "mounted", "connected", "connected", "fixed" should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection; "connected" can be a direct connection or an indirect connection through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0126] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "front", "rear", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or unit referred to must have a specific direction, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model.

[0127] In the description of this specification, the description of the terms "one embodiment", "some embodiments", "specific embodiments", etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.

[0128] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, the present utility model can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A bottle frame assembly, characterized in that: include: Door body; A plurality of slide rail structures are arranged on the door body, and a plurality of limiting protrusions are arranged on the slide rail structures; A base structure, slidably connected to the slide rail structure; A bottle frame body, detachably connected to the base structure; A plurality of locking structures are rotatably connected to the base structure, the locking structures are arranged corresponding to the slide rail structures, and the slide rail structures pass through the base structure and the locking structures; Among them, the locking structure rotates to the first position, one end of the locking structure abuts against the limiting protrusion to limit the relative position of the base structure and the slide rail structure, and the locking structure rotates to the second position, one end of the locking structure is separated from the slide rail structure.

2. The bottle frame assembly according to claim 1, characterized in that: The base structure specifically includes: The matching part and the bearing part are arranged along the first direction, the matching part is provided with a first through hole for the slide rail structure to pass through, and the bearing part is provided with a clamping groove, the shape of which is adapted to the shape of the bottle frame body.

3. The bottle frame assembly according to claim 2, characterized in that: Also includes: An assembly cavity is arranged at the bottom of the base structure, and at least a part of the locking structure is arranged in the assembly cavity.

4. The bottle frame assembly according to claim 3, characterized in that: The locking structure specifically includes: A rotating shaft structure, and a contact portion and a stop portion located at both ends of the rotating shaft structure, wherein the contact portion is disposed in a portion of the assembly cavity corresponding to the bearing portion, and the stop portion is disposed in a portion of the assembly cavity corresponding to the matching portion; Wherein, the stop portion is provided with a second through hole for the slide rail structure to pass through.

5. The bottle frame assembly according to claim 4, characterized in that: Also includes: The limiting protrusion is arranged at one end of the slide rail structure away from the bottle frame body; Wherein, an end of the second through hole away from the contact portion is provided with a tongue structure protruding toward the slide rail structure, and the locking structure is in the first position, and the tongue structure abuts against the limiting protrusion.

6. The bottle frame assembly according to claim 1, characterized in that: Also includes: An elastic member, two ends of which are respectively in contact with the other end of the locking structure and the base structure; the locking structure is in the first position and the elastic member is under pressure.

7. The bottle frame assembly according to claim 6, characterized in that: Also includes: A positioning protrusion is provided on the base structure, and one end of the elastic member is sleeved on the positioning protrusion; The connecting groove is arranged at the other end of the locking structure, and the other end of the elastic member abuts against the bottom of the connecting groove.

8. The bottle frame assembly according to any one of claims 1 to 7, characterized in that: The slide rail structure extends along the height direction of the door body, and the upper surface of the bottle frame body is flush with the upper surface of the base structure.

9. The bottle frame assembly according to any one of claims 1 to 7, characterized in that: The locking structure is in the first position, and the other end of the locking structure protrudes out of the lower surface of the base structure.

10. A refrigeration device, characterized in that: include: A box body, wherein a storage cavity is provided in the box body; The bottle frame assembly according to any one of claims 1 to 9, wherein the door body of the bottle frame assembly is rotatably connected to the box body; in, The bottle frame body of the bottle frame assembly is arranged on a side of the door body facing the storage cavity.