Rabbit cage device

By introducing a soft layer into the rabbit cage device, the assembly instability problem caused by excessive gap between the adapter ring and the rabbit cage is solved, and the assembly accuracy and stability are improved.

CN223272766UActive Publication Date: 2025-08-26SHEN ZHEN NEEWER TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422547634.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-12-01
Filing Date
2024-10-21
Publication Date
2025-08-26
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

During the use of existing rabbit cage devices, the gap between the adapter ring and the rabbit cage may occur too large, causing the adapter ring to retract or loosen and fall off in the sliding direction, affecting the assembly reliability.

Method used

A soft layer is introduced into the rabbit cage device and is arranged on the assembly mechanism and/or the adapter mechanism so that it is located between the adapter mechanism and the cage frame during assembly, compensating for the gap difference and improving assembly compactness and stability.

Benefits of technology

Through the compensation effect of the soft layer, the adapter ring is prevented from retraction and loosening and falling off, which improves the assembly accuracy and stability of the rabbit cage device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223272766U_ABST
    Figure CN223272766U_ABST
Patent Text Reader

Abstract

The utility model discloses a rabbit cage device, and relates to the technical field of photographic equipment, the rabbit cage device comprises a cage frame, an assembling mechanism and a switching mechanism, the assembling mechanism is arranged on the cage frame, and the switching mechanism and the assembling mechanism are detachably assembled; the rabbit cage device further comprises at least one soft layer, and the at least one soft layer is arranged on the assembling mechanism and / or the switching mechanism. When the assembling mechanism and the switching mechanism are assembled, the soft layer is located between the switching mechanism and the cage frame. According to the technical scheme, the assembly accuracy and the assembly stability of the rabbit cage device can be improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of photographic equipment, in particular to a rabbit cage device. Background Art

[0002] When taking photos, different filters are usually installed on the lens to cover the original lens components, so as to obtain special effects photos that filter certain light waves when taking pictures. For example, mobile phone lenses, camera lenses, etc.

[0003] In the related art, taking a mobile phone as an example, in order to install a filter on the mobile phone, it is usually equipped with a cage device, which specifically includes a cage and an adapter ring as an adapter mechanism. The mobile phone is installed in the cage frame of the cage, and the adapter ring is rotatably mounted on the cage. Finally, the filter is removably mounted on the adapter ring. The filter installed on the cage frame is positioned directly opposite the camera of the mobile phone so that the filter covers the camera of the mobile phone. Because the gap between the adapter ring and the cage may be too large after processing or long-term use, there is a risk that the adapter ring will return in the opposite direction of the sliding direction, or the adapter ring may easily loosen and fall off after being installed on the cage during use, affecting the assembly reliability of the cage device. Utility Model Content

[0004] The main purpose of the utility model is to provide a rabbit cage device, aiming to solve the technical problem that the existing rotatably mounted adapter mechanism needs manual calibration of the rotation position when using a filter.

[0005] To achieve the above-mentioned purpose, the rabbit cage device proposed by the present invention comprises:

[0006] a cage frame provided with an assembly mechanism; and

[0007] A transfer mechanism, wherein the transfer mechanism and the assembly mechanism are detachably assembled;

[0008] Wherein, the rabbit cage device further comprises at least one soft layer, and at least one soft layer is provided on the assembly mechanism and / or the transfer mechanism;

[0009] When the assembly mechanism and the switching mechanism are assembled, the soft layer is located between the switching mechanism and the cage frame.

[0010] In one embodiment, the switching mechanism includes:

[0011] A body, wherein the body is provided with a lens hole for mounting a filter; and

[0012] At least one disassembly structure, at least one of the disassembly structures is provided on the main body, the disassembly structure includes a sliding portion, the sliding portion is used for detachably slidingly connecting to the assembly mechanism;

[0013] The soft layer is arranged on the main body and on a side facing the disassembly structure, or the soft layer is arranged on the cage and on a side that is assembled and fitted with the switching mechanism.

[0014] In one embodiment, the sliding portion is provided with a bayonet, and the bayonet is used to engage the assembly mechanism.

[0015] In one embodiment, the sliding portion includes:

[0016] a connecting section, one end of which is connected to the main body; and

[0017] The limiting section is arranged at the other end of the connecting section, and the connecting section, the limiting section and the main body together form the bayonet.

[0018] In one embodiment, the sliding connection between the adapter mechanism and the assembly mechanism is a sliding fit connection between a sliding groove and a slider.

[0019] In one embodiment, the disassembly and assembly structure is provided with at least one positioning groove, and the positioning groove is used to cooperate with the assembly mechanism to limit the position of the body;

[0020] And / or, the switching mechanism is circular; or, the switching mechanism is rectangular;

[0021] And / or, a stop plate is provided on one side of the body, and the stop plate is used to abut and limit the outer edge of the assembly mechanism.

[0022] In one embodiment, the assembly mechanism includes a mounting member;

[0023] The mounting member is provided with an assembly cavity having an opening, and the assembly cavity is used for slidingly assembling the switching mechanism;

[0024] An extension section is provided on the edge of the assembly cavity, and the extension section is used to be snapped into the bayonet of the switching mechanism. The soft layer is sandwiched between the extension section and the inner side wall of the bayonet.

[0025] In one embodiment, the assembly cavity includes a pre-positioning cavity and a locking cavity that are connected to each other, the extension section is located at the top of the locking cavity, and the opening is located at the top of the pre-positioning cavity and is connected to the pre-positioning cavity.

[0026] In one embodiment, the assembly mechanism or the adapter mechanism further includes a positioning component. When the adapter mechanism is installed on the assembly mechanism, the positioning component is used for positioning between the adapter mechanism and the assembly mechanism.

[0027] In one embodiment, one of the assembly mechanism and the transition mechanism is provided with a receiving groove, and the other of the assembly mechanism and the transition mechanism is provided with a positioning groove, and the positioning assembly includes:

[0028] an elastic portion disposed in the receiving groove; and

[0029] The positioning portion, the elastic portion is used to drive at least a portion of the positioning portion into the positioning groove of the other one of the assembly mechanism and the switching mechanism.

[0030] The rabbit cage device of the present invention includes a cage frame and an adapter mechanism, wherein the cage frame is provided with an assembly mechanism, and the adapter mechanism can be detachably mounted on the assembly mechanism via a disassembly structure. By providing a soft layer on the assembly mechanism and / or the adapter mechanism, the soft layer can be positioned between the adapter mechanism and the cage frame when the assembly mechanism and the adapter mechanism are assembled, thereby compensating for the gap difference between the adapter mechanism and the cage frame via the soft layer. This can prevent the risk of the adapter ring sliding back in the opposite direction after the adapter mechanism is assembled to the assembly mechanism of the cage frame, or the risk of the adapter ring loosening and falling off after being mounted on the rabbit cage during use, thereby improving the assembly accuracy and assembly stability of the rabbit cage device. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0032] Figure 1 This is a structural diagram of an embodiment of the switching mechanism of the present utility model;

[0033] Figure 1-1 to Figure 1-3 This is a schematic diagram of the working principle of the transfer mechanism of the utility model;

[0034] Figure 2 For example Figure 1 A schematic diagram of the back structure of the switching mechanism of the embodiment;

[0035] Figure 3 This is a schematic diagram of the mounting structure of an embodiment of the assembly mechanism of the utility model;

[0036] Figure 4 This is a schematic structural diagram of the rabbit cage device in use according to an embodiment of the present invention;

[0037] Figure 5 This is a schematic diagram of the exploded structure of a rabbit cage device according to one embodiment of the utility model;

[0038] Figure 6 This is a schematic diagram of the pre-assembly operation structure of an embodiment of the rabbit cage device of the present invention;

[0039] Figure 7 For example Figure 6 Schematic diagram of the cross-sectional structure of the embodiment along EE;

[0040] Figure 8 For example Figure 7 Schematic diagram of the local enlarged structure at the middle Q;

[0041] Figure 9 This is a schematic diagram of the assembled structure of an embodiment of the rabbit cage device of the present invention;

[0042] Figure 10 For example Figure 9 Schematic diagram of the cross-sectional structure of the embodiment along FF;

[0043] Figure 11 For example Figure 10 Schematic diagram of the local enlarged structure at M in the middle;

[0044] Figure 12 This is a schematic structural diagram of another embodiment of the rabbit cage device of the present invention in use;

[0045] Figure 13 For example Figure 12 Schematic diagram of the switching mechanism structure of the embodiment.

[0046] Description of Figure Numbers:

[0047] 100. Adapter mechanism; 10. Main body; 10A. Lens hole; 10B. Positioning groove; 12. Disassembly and assembly structure; 121. Sliding portion; 1211. Connecting section; 1212. Limiting section; 13. Shift plate; 15. Anti-fool structure; 121A. Bayonet; 300. Assembly mechanism; 30A. Opening; 30B. Assembly cavity; 301B. Pre-positioning cavity; 302B. Positioning cavity; 30C. Receiving groove; 30D. Avoidance gap; 30E. Fixing hole; 30. Mounting part; 31. Extension section; 121B. Gap; 500. Rabbit cage device; 50. Cage frame; 50A. Receiving cavity; 50C. Mounting hole; 51. Fastener; 60. Soft layer; 40. Positioning component; 41. Elastic portion; 42. Positioning portion; 900. Shooting terminal.

[0048] The realization of the purpose, functional features and advantages of the present invention will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0049] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0050] When taking photos, different filters are usually replaced and installed on the lens of the shooting terminal 900 such as a mobile phone or camera to cover the original lens assembly, so as to obtain special effect photos that filter certain light waves when taking photos.

[0051] In the related art, taking a mobile phone as an example, in order to install a filter on the mobile phone, a rabbit cage device 500 is usually provided, which specifically includes a rabbit cage and an adapter ring serving as an adapter mechanism 100. The mobile phone is installed in the rabbit cage frame 50, the adapter ring is rotatably mounted on the rabbit cage, and finally, the filter is removably mounted on the adapter ring. The filter mounted on the rabbit cage frame 50 is positioned directly opposite the camera of the mobile phone so that the filter covers the mobile phone's camera. Due to the large gap between the adapter ring and the rabbit cage after processing or long-term use, there is a risk that the adapter ring will return in the opposite direction of the sliding direction or that the adapter ring will easily loosen and fall off after being installed on the rabbit cage during use, affecting the assembly reliability of the rabbit cage device 500.

[0052] The utility model provides a rabbit cage device 500.

[0053] It should be noted that the cage device 500 of the present invention can be a mobile phone cage or a mobile phone case, a protective shell, or a camera cage. Taking the mobile phone cage as an example, the mobile phone cage is called iout Koziro. The mobile phone cage component can be used as a mobile phone holder. The mobile phone holder can also be equipped with other accessories. At least one handle can be provided on the periphery of the mobile phone holder. The handle can be a wooden handle for easy grasping and use.

[0054] like Figures 1-13 , Figure 1 and Figure 2 Schematic diagram of the structure of the switching mechanism 100. Figure 1-1 to Figure 1-3 Schematic diagram of the working principle of the switching mechanism 100. Figure 3 Schematic diagram of the structure of the mounting member 30 of the assembly mechanism 300 of the present invention. Figure 4-11 Schematic diagram of the structure of the rabbit cage device 500 before and after assembly. Figure 12 This is a schematic structural diagram of another embodiment of the rabbit cage device 500 in use; Figure 13 For example Figure 12 Schematic diagram of the structure of the switching mechanism 100.

[0055] The sliding direction of the adapter mechanism 100 relative to the assembly mechanism 300 is defined as the X-axis. The direction in which the sliding portion 121 of the adapter mechanism 100 extends into the assembly cavity 30B of the assembly mechanism 300 is parallel to the Z-axis. The direction perpendicular to the Z-axis and the Y-axis is defined as the X-axis. The intersection of the X-axis, Y-axis, and Z-axis is the origin O. Together, these three axes and the origin O form the spatial rectangular coordinate system O-XYZ. The following description of various embodiments will use this coordinate system as the orientation standard, in conjunction with the orientation markings in the accompanying drawings.

[0056] See also Figures 1-13 In one embodiment of the present invention, the rabbit cage device 500 includes:

[0057] a cage 50 provided with an assembly mechanism 300; and

[0058] The adapter mechanism 100 is detachably assembled with the assembly mechanism 300;

[0059] The rabbit cage device 500 further includes at least one soft layer 60, and the at least one soft layer 60 is provided on the assembly mechanism 300 and / or the adapter mechanism 100;

[0060] When the assembling mechanism 300 is assembled with the switching mechanism 100 , the soft layer 60 is located between the switching mechanism 100 and the cage frame 50 .

[0061] The rabbit cage device 500 includes a cage frame 50 and an assembly mechanism 300 mounted on the cage frame 50. The cage frame 50 is provided with a receiving cavity 50A for accommodating the camera terminal 900. The assembly mechanism 300 is located directly opposite the lens module of the camera terminal 900, and the assembly mechanism 300 has a clearance hole corresponding to the lens module. The adapter mechanism 100 can be detachably mounted on the assembly mechanism 300, and different filters can be detachably and interchangeably mounted on the adapter mechanism 100, thereby enabling different types of filters to be installed on the rabbit cage device 500, thereby achieving different mobile phone photography effects.

[0062] In some embodiments, the adapter mechanism 100 can be detachably connected to the assembly mechanism 300 by providing a disassembly structure 12 on its body 10. The disassembly structure 12 can be configured to slide with the assembly mechanism 300. Of course, the disassembly structure 12 can also be detachably connected to the assembly mechanism 300 using other methods, such as a snap-fit ​​connection. Alternatively, the adapter mechanism 100 can be configured such that its body 10 is directly detachably assembled with the assembly mechanism 300. The specific assembly method can be, but is not limited to, a sliding fit.

[0063] Optionally, the sliding connection between the adapter mechanism 100 and the assembly mechanism 300 is a sliding fit connection between a slide groove and a slider. For example, a slider can be provided on one of the assembly mechanism 300 or the adapter mechanism 100, and a slide groove that cooperates with the slider can be provided on the other of the assembly mechanism 300 or the adapter mechanism 100. The specific implementation can be customized according to actual needs.

[0064] Furthermore, the rabbit cage device 500 also includes a soft layer 60. The soft layer 60 can be provided only on the assembly mechanism 300, only on the adapter mechanism 100, or on both the assembly mechanism 300 and the adapter mechanism 100. In some embodiments, the soft layer 60 is a rubber layer, a fiber layer, a fabric layer, a silicone layer, a foam layer, or a combination thereof, or other flexible cushioning material. After assembly, the soft layer 60 is located between the adapter mechanism 100 and the assembly mechanism 300 to compensate for the gap difference between the adapter mechanism 100 and the cage frame 50, thereby improving the compactness of the assembly of the adapter mechanism 100 and the assembly mechanism 300. It also increases the friction between the adapter mechanism 100 and the assembly mechanism 300 along the O-XY plane, preventing the adapter mechanism 100 from sliding back or loosening, ensuring reliable assembly, thereby improving the assembly accuracy and stability of the rabbit cage device 500.

[0065] It should be noted that the adapter mechanism 100 and the assembly mechanism 300 can be designed to assemble along the X-axis or slide along the Y-axis. The corresponding structures and orientations can be adjusted accordingly, which will not be elaborated on here. The X-axis, Y-axis, and Z-axis only assist in identifying orientation and do not limit the structural orientation and assembly orientation of the rabbit cage device 500.

[0066] Optionally, the cage frame 50 has a mounting location, and the assembly mechanism 300 is detachably connected to the mounting location. Specifically, a mounting hole 50C is provided on the periphery of the cage frame 50 adjacent to the mounting location, and the assembly mechanism 300 has a fixing hole 30E. The rabbit cage device 500 also includes a fastener 51, which passes through the fixing hole 30E and is threadedly connected to the mounting hole 50C.

[0067] The mounting position of the cage 50 corresponds to the location of the terminal device's camera module. The cage 50 has at least one mounting hole 50C defined on both sides of its periphery, adjacent to and directly opposite the mounting position. Mounting member 30 of the assembly mechanism 300 is provided with fixing holes 30E on either side, corresponding to the mounting holes 50C. The fixing holes 30E are recessed on the ends facing away from the cage 50, forming protective grooves that provide clearance for the ends of the fasteners 51. Fixing holes 30E can be through-holes, while mounting holes 50C are threaded holes. Fasteners 51 can be screws or bolts. The protective grooves provide recessed protection for the nuts of the screws or bolts, preventing them from protruding from the surface of the mounting member 30. This prevents scratches and loosening of the screws or bolts due to accidental contact over time, thereby enhancing the reliability of the detachable connection between the mounting member 30 and the cage 50.

[0068] In some embodiments, the adapter mechanism 100 is circular, or rectangular, or polygonal or irregular in shape, which is not limited here.

[0069] See also Figure 1 and Figure 2 In an embodiment of the present invention, the switching mechanism 100 includes:

[0070] A body 10, wherein the body 10 is provided with a lens hole 10A for installing a filter; and

[0071] At least one disassembly structure 12, at least one disassembly structure 12 is provided on the body 10, the disassembly structure 12 includes a sliding portion 121, the sliding portion 121 is used for detachably slidingly connecting to the assembly mechanism 300;

[0072] The soft layer 60 is provided on the main body 10 and is located on a side facing the disassembly structure 12 , or the soft layer 60 is provided on the cage frame 50 and is located on a side that is assembled and fitted with the switching mechanism 100 .

[0073] Among them, the main body 10 of the adapter mechanism 100 is provided with a lens hole 10A corresponding to the lens module of the shooting terminal 900, and the assembly mechanism 300 is provided with an avoidance hole corresponding to the lens module, and the lens hole 10A is connected to the avoidance hole. The sliding portion 121 of the adapter mechanism 100 is used to detachably slide and connect the assembly mechanism 300. Specifically, the sliding portion 121 can be made to encounter a blocking component after the assembly mechanism 300 slides to a specific position or an extreme position, and then the sliding portion 121 is stuck in the blocking component. Exemplarily, when the sliding portion 121 slides on the assembly mechanism 300 and encounters the side wall of the assembly mechanism 300, the sliding portion 121 is stuck in the side wall, thereby achieving the purpose of installing the adapter mechanism 100 on the assembly mechanism 300. Furthermore, a soft layer 60 is also provided on the side of the main body 10 facing the disassembly structure 12, so that the gap difference between the main body 10 and the assembly mechanism 300 can be compensated by the soft layer 60. Of course, the technical solution of the present invention is not limited to this. The soft layer 60 can also be provided on the cage frame 50 and located on the side that is assembled with the adapter mechanism 100. In this way, the gap difference between the adapter mechanism 100 and the assembly mechanism 300 can also be compensated by the soft layer 60. The specific implementation method can be set according to actual needs and is not limited here.

[0074] In some embodiments, the adapter mechanism 100 comprises a plate-shaped body 10 with a lens aperture 10A defined therein. Sliders 121 are positioned on either side of the lens aperture 10A, facing each other. By assembling the sliders 121 with the assembly mechanism 300, the filter mounted on the body 10 can cover the existing camera of the camera terminal 900. Furthermore, by installing different filters in the lens aperture 10A, the rabbit cage device 500 can be interchanged with other filters.

[0075] In some embodiments, a fool-proof structure 15 is provided on the side of the main body 10 facing away from the disassembly structure 12 , and the fool-proof structure 15 is used for fool-proof assembly.

[0076] The foolproof structure 15 can be a printed foolproof mark or a ridge protruding from the side of the adapter mechanism 100 facing away from the assembly mechanism 300. The foolproof structure 15 can be a symbol, such as an arrow, a textual indication, or a combination of text and symbols, to intuitively determine the assembly orientation of the adapter mechanism 100 and the assembly mechanism 300, thereby improving assembly efficiency and reducing assembly errors.

[0077] In one embodiment, the adapter mechanism 100 includes at least one assembly / disassembly structure 12 disposed on the main body 10. The assembly / disassembly structure 12 includes at least one sliding portion 121 located on one side of the lens aperture 10A. The sliding portion 121 is configured to detachably and slidably connect to the assembly mechanism 300. The adapter mechanism 100, through the assembly mechanism 300, mounts the filter on the cage device 500 to cover the original camera on the camera terminal 900. The assembly process is convenient and requires only inserting the sliding portion 121 of the adapter mechanism 100 through the opening 30A of the assembly mechanism 300 into the assembly cavity 30B. The main body 10 is then slid relative to the assembly mechanism 300 in a first direction so that the sliding portion 121 engages and is retained against the inner wall of the assembly cavity 30B. This prevents disengagement without external force, thereby limiting the relative position of the assembly mechanism 300 and the adapter mechanism 100. This eliminates the need for manual calibration after sliding, improving the stability of the detachable assembly.

[0078] It will be understood that the blocking member described above is configured as a sidewall. In the assembly mechanism 300, this sidewall can be a portion of the wall of the assembly cavity 30B, specifically, an extension section 31 on the assembly mechanism 300. The location and function of the extension section 31 will be described below. The lens aperture 10A and the filter can be assembled by threaded connection, elastic wrapping, or magnetic connection, without limiting the present invention. Specifically, the sidewall of the lens aperture 10A can be threaded, and the filter can be threadedly connected to the lens aperture 10A via the corresponding threaded connection. Alternatively, the lens aperture 10A can be provided with a magnet, and the filter can be made of a material that can be attracted to the magnet, and the filter can be magnetically attached to the lens aperture 10A.

[0079] See also Figure 1 In an embodiment of the present invention, the sliding portion 121 is provided with a bayonet 121A, and the bayonet 121A is used to engage the assembly mechanism 300 .

[0080] The sliding portion 121 is provided with a bayonet 121A. When the sliding portion 121 slides on the assembly mechanism 300 and encounters the side wall of the assembly mechanism 300, the bayonet 121A is engaged with the side wall of the assembly mechanism 300 and is fixed by the friction between the bayonet 121A and the side wall.

[0081] refer to Figure 1-1 As shown, the adapter mechanism 100 slides on the assembly mechanism 300 along the S direction, wherein the bayonet 121A faces the side wall of the assembly mechanism 300, as shown in FIG. Figure 1-2 As shown, when the adapter mechanism 100 slides to the position where the bayonet 121A meets the side wall, the bayonet 121A snaps into the side wall to complete the sliding connection between the adapter mechanism 100 and the assembly mechanism 300 .

[0082] refer to Figure 1-1The sliding portion 121 includes a connecting section 1211 and a limiting section 1212. One end of the connecting section 1211 is connected to the main body 10; the limiting section 1212 is provided at the other end of the connecting section 1211, wherein the connecting section 1211, the limiting section 1212 and the main body 10 together form a bayonet 121A.

[0083] The aforementioned bayonet 121A is positioned directly opposite the side wall of the assembly mechanism 300. The bayonet 121A is formed by the structure of the sliding portion 121 and the structure of the body 10. Of course, the technical solution of the present invention is not limited to this. Alternatively, the bayonet 121A may be configured as a notch 121B formed on the sliding portion 121.

[0084] Specifically, if Figure 1-3 As shown, in another embodiment of the adapter mechanism 100 , the latch 121A is a notch 121B recessed on the sliding portion 121 , and the notch 121B is spaced apart from the body 10 .

[0085] Thus, when the sliding portion 121 slides on the assembly mechanism 300 and encounters the side wall of the assembly mechanism 300 , the notch 121B engages with the side wall of the assembly mechanism 300 , thereby connecting the adapter mechanism 100 to the assembly mechanism 300 .

[0086] In an embodiment of the present invention, a stop plate 13 is provided on one side of the body 10 , and the stop plate 13 is used to abut against and limit the outer edge of the assembly mechanism 300 .

[0087] Among them, the assembly mechanism 300 is provided with an assembly cavity 30B for slidingly assembling the adapter mechanism 100. The assembly cavity 30B can be designed to extend along the X-axis direction to enable the adapter mechanism 100 and the assembly mechanism 300 to be assembled along the X-axis direction; the assembly cavity 30B can also be designed to extend along the Y-axis direction to enable the adapter mechanism 100 and the assembly mechanism 300 to be slidably assembled along the Y-axis direction, which will not be elaborated here.

[0088] When the adapter mechanism 100 slides along the assembly cavity 30B of the assembly mechanism 300 to a preset position or an extreme position, the stop plate 13 abuts against the outer edge of the assembly mechanism 300 and is retained. In some embodiments, the assembly mechanism 300 has an escape notch 30D at one end along the X-axis, and the adapter mechanism 100 is provided with a stop plate 13 corresponding to the escape notch 30D. The stop plate 13 is protruded from the body 10 of the adapter mechanism 100. As shown in the figure, the length of the stop plate 13 extends along the Y-axis, the height of the stop plate 13 extends along the Z-axis, and the stop plate 13 protrudes toward the side of the body 10 facing the assembly mechanism 300. The shift plate 13 is located on one side edge of the main body 10, specifically on the side of the sliding portion 121 on the main body 10 that is opposite to the assembly sliding direction. The shift plate 13 is spaced apart from the sliding portion 121. When the assembly is completed, the shift plate 13 is engaged with the avoidance notch 30D, so that the assembly sliding of the adapter mechanism 100 along the X-axis direction is restricted, thereby improving the alignment accuracy of the lens hole 10A after the adapter plate is assembled.

[0089] See Reference Figure 3 、 Figure 5 、 Figure 7 as well as Figure 10 As shown, in the embodiment of the present invention, the assembly mechanism 300 includes a mounting member 30;

[0090] The mounting member 30 is provided with an assembly cavity 30B having an opening 30A, and the assembly cavity 30B is used for slidingly assembling the adapter mechanism 100;

[0091] An extension section 31 is provided at the edge of the assembly cavity 30B. The extension section 31 is used to be snapped into the bayonet 121A of the adapter mechanism 100 . The soft layer 60 is provided on the inner side wall of the extension section 31 and / or the bayonet 121A.

[0092] The soft layer 60 can be provided only on the extension section 31, only on the inner sidewall of the retaining plate 121A, or on both the extension section 31 and the inner sidewall of the retaining plate 121A. The assembly mechanism 300 is provided with an assembly cavity 30B having an opening 30A. The sliding portion 121 of the adapter mechanism 100 slides into the assembly cavity 30B along the X-axis direction described below, thereby enabling a detachable connection between the assembly mechanism 300 and the adapter mechanism 100. The assembly cavity 30B serves as a guide and positioning mechanism. When the adapter mechanism 100 slides to its limit position or a preset position within the assembly cavity 30B and the retaining plate 121A engages the sidewall, the lens aperture 10A aligns with the camera of the terminal device mounted on the rabbit cage assembly. The assembly mechanism 300 is detachably connected to the cage frame 50, facilitating replacement of the assembly mechanism 300.

[0093] In this way, when the extension section 31 of the assembly mechanism 300 is inserted into the bayonet 121A of the adapter mechanism 100, the soft layer 60 is clamped between the extension section 31 and the inner wall of the bayonet 121A. The soft layer 60 can thereby compensate for the gap difference between the extension section 31 and the inner wall of the bayonet 121A, thereby improving the assembly compactness of the adapter mechanism 100 and the assembly mechanism 300.

[0094] Specifically, refer to Figure 6 , the back of the main body 10 is attached to the assembly mechanism 300 along the O-XY plane and slides relative to the assembly mechanism 300 along the X-axis to assemble the sliding part 121. The sliding part 121 includes a connecting section 1211 and a limiting section 1212, wherein the connecting section 1211 is provided on the back of the main body 10 of the adapter mechanism 100, one end of the connecting section 1211 is connected to the main body 10, and the other end is extended along the Z-axis direction so as to extend into the assembly cavity 30B along the Z-axis during assembly. The limiting section 1212 is provided at the other end of the connecting section 1211, and the extension direction of the limiting section 1212 is parallel to the sliding direction. Specifically, it can be set to extend along the X-axis direction and be perpendicular to the connecting section 1211 so as to slide and limit in the assembly cavity 30B along the sliding direction. The connecting section 1211, the limiting section 1212 and the main body 10 are together enclosed to form a bayonet 121A for clamping the assembly mechanism 300.

[0095] See also Figure 6-Figure 8 In an embodiment of the present invention, the assembly cavity 30B includes a pre-positioning cavity 301B and a locking cavity 302B that are connected to each other, the extension section 31 is located at the top of the locking cavity 302B, and the opening 30A is located at the top of the pre-positioning cavity 301B and is connected to the pre-positioning cavity 301B.

[0096] The pre-positioning cavity 301B is used for pre-installing the adapter mechanism 100 , and the locking cavity 302B and the extension section 31 are used for cooperating with the limiting adapter mechanism 100 .

[0097] Specifically, the first direction is defined as being parallel to the X-axis direction, the Z-axis direction is defined as being parallel to the second direction, and the direction perpendicular to both the first and second directions is defined as the third direction, and the third direction is defined as being parallel to the Y-axis direction. On the assembly mechanism 300, the assembly cavity 30B includes a pre-positioning cavity 301B and a locking cavity 302B that are connected along the first direction; the assembly mechanism 300 is provided with an extension section 31 adjacent to the opening 30A, the extension section 31 being located at the top of the locking cavity 302B, and the opening 30A being located at the top of the pre-positioning cavity 301B and connected to the pre-positioning cavity 301B. Figure 8As shown, the extension section 31 is designed as the side wall of the assembly cavity 30B. When in use, one end of the sliding portion 121 of the adapter mechanism 100 extends into the locking cavity 302B along the Z direction and then slides to the limit position or the preset position along the X direction. That is, the sliding portion 121 drives the bayonet 121A to slide until the bayonet 121A encounters and enters the extension section 31. Then, relying on the friction between the opening 30A and the extension section 31, the sliding portion 121 is assembled on the extension section 31. At this time, as shown in FIG. Figure 11 As shown, the limiting section 1212 is accommodated in the locking cavity 302B.

[0098] Specifically, if Figure 6-Figure 8 As shown, in the pre-assembly stage, the connecting section 1211 and the limiting section 1212 first extend into the pre-positioning cavity 301B of the assembly cavity 30B through the opening 30A along the Z-axis direction to pre-position the relative position of the adapter mechanism 100 and the assembly mechanism 300. After the pre-positioning, the adapter mechanism 100 is pushed to move relative to the assembly mechanism 300 along the X-axis direction to push the limiting section 1212 into the locking cavity 302B, that is, the extension section 31 is inserted into the connecting section 1211, the limiting section 1212 and the main body 10 to form a snap-in 121A to complete the assembly.

[0099] Furthermore, in an embodiment of the present invention, the other one of the assembly mechanism 300 and the switching mechanism 100 is provided with a positioning groove 10B. When the elastic portion drives the positioning portion 42 , at least a portion of the positioning portion 42 enters the positioning groove 10B.

[0100] Specifically, see Figure 2 、 Figure 7-Figure 8 as well as Figure 10-11 In an embodiment of the present invention, the disassembly and assembly structure 12 is provided with at least one positioning groove 10B, which is used to cooperate with the assembly mechanism 300 to limit the position of the body 10. In this way, the positioning groove 10B can limit the sliding direction of the adapter mechanism 100 and the assembly mechanism 300 along the X-axis, thereby improving the assembly stability of the adapter mechanism 100 and the assembly mechanism 300.

[0101] like Figures 9-11 As shown, when assembly is complete, the entire sliding portion 121 is retained within the assembly cavity 30B, and the positioning assembly 40 is engaged and retained within the positioning groove 10B. The retaining section 1212 is circumferentially limited along the Y and Z axes by the retaining cavity 302B and the extension section 31. The positioning assembly 40 cooperates with the positioning groove 10B to limit the relative displacement of the adapter mechanism 100 and the assembly mechanism 300 along the X axis, thereby improving the assembly reliability of the assembly mechanism 300 and the adapter mechanism 100.

[0102] Further, refer to Figure 3 、 Figure 5 、 Figure 7as well as Figure 10 As shown, the mounting member 30 of the assembly mechanism 300 has a thickness along the Z-axis direction, so that the side plane where the mounting member 30 is in contact with the adapter mechanism 100 is recessed with the above-mentioned assembly cavity 30B, the receiving groove 30C and the avoidance gap 30D, and the adapter mechanism 100 and the mounting member 30 are slidably assembled to detachably assemble or disassemble the assembly mechanism 300 and the adapter mechanism 100.

[0103] See also Figure 2 、 Figure 7-Figure 8 as well as Figure 10-11 In an embodiment of the present invention, the assembly mechanism 300 or the adapter structure 100 further includes a positioning component 40. When the adapter mechanism 100 is installed on the assembly mechanism 300, the positioning component 40 is used for positioning between the adapter mechanism 100 and the assembly mechanism 300.

[0104] In some embodiments, the positioning assembly 40 is disposed on the mounting member 30, spaced apart from the assembly cavity 30B, and is used to position the adapter mechanism 100. The assembly / disassembly structure 12 is provided with at least one positioning groove 10B, which is used to cooperate with the assembly mechanism 300 to limit the position of the body 10. The assembly mechanism 300 is provided with a positioning assembly 40 corresponding to the positioning groove 10B. The assembly mechanism 300 is provided with a receiving groove 30C facing the adapter mechanism 100, and the positioning assembly 40 is disposed within the receiving groove 30C to achieve positioning and cooperation between the assembly mechanism 300 and the adapter mechanism 100.

[0105] Specifically, the disassembly and assembly structure 12 of the adapter mechanism 100 has a sliding portion 121. When the sliding portion 121 extends from the opening 30A into the assembly cavity 30B along the Z axis, the sliding portion 121 is limited along the Y axis direction. After the sliding portion 121 slides to a preset position or an extreme position along the X axis, one end of the sliding portion 121 is locked and limited in the assembly cavity 30B, so that the sliding portion 121 is limited along the Y axis and the Z axis at the same time. In the absence of external force, the sliding portion 121 will not retreat in the opposite direction along the X axis. When the sliding portion 121 slides to the preset position or the extreme position, the positioning groove 10B of the adapter mechanism 100 is aligned with the receiving groove 30C of the assembly mechanism 300, and the positioning component 40 is elastically extended at one end of the receiving groove 30C to push into the positioning groove 10B to limit the adapter mechanism 100 along the X-axis direction, thereby improving the stability of the sliding portion 121 in the assembly cavity 30B and improving the reliability of the adapter mechanism 100 in limiting the relative position of the assembly mechanism 300.

[0106] It is understood that the receiving groove 30C is formed on the assembly mechanism 300 along the Z-axis, with the opening of the receiving groove 30C facing the side of the adapter mechanism 100. When the adapter mechanism 100 and the assembly mechanism 300 are not assembled, one end of the positioning assembly 40 is fixedly connected to the bottom wall or side wall of the receiving groove 30C, and the other end extends along the Z-axis toward the opening of the groove.

[0107] In a natural state, one end of the positioning assembly 40 is fixed in the receiving groove 30C, and the other end is a free end that passes over the notch.

[0108] Combined with reference Figure 7 and Figure 8 As shown, during the sliding process of the adapter mechanism 100 relative to the assembly mechanism 300 along the X-axis, the adapter mechanism 100 is in close contact with the upper surface of the assembly mechanism 300, so that the positioning assembly 40 is pressed down by the adapter mechanism 100, and the free end of the positioning assembly 40 is pressed down along the Z-axis and retracted into the receiving groove 30C, and the positioning assembly 40 is in a compressed state. Figure 10 and Figure 11 As shown, after the sliding portion 121 slides to a preset position or an extreme position along the X-axis, the positioning groove 10B is opposite to the receiving groove 30C, so that the free end of the positioning component 40 pops out along the Z-axis and is inserted into the positioning groove 10B, so as to limit the sliding direction of the adapter mechanism 100 and the assembly mechanism 300 along the X-axis, thereby improving the assembly stability of the adapter mechanism 100 and the assembly mechanism 300.

[0109] Optionally, the switching mechanism 100 includes two disassembly structures 12 , and the two disassembly structures 12 are spaced apart and located on two sides facing the lens hole 10A.

[0110] In this embodiment, a disassembly and assembly structure 12 includes a sliding portion 121 and a positioning groove 10B. The sliding portion 121 and the limiting groove are arranged on the main body 10 at intervals along the X-axis direction, and the two can be arranged on the same side of the lens hole 10A, or on both sides of the lens hole 10A. The sliding portion 121 is used for sliding assembly and limiting with the assembly cavity 30B, and the positioning groove 10B is used for cooperating with the positioning component 40 of the assembly mechanism 300 to limit within the O-XY plane.

[0111] The number of the disassembly and assembly structures 12 can be one or more. In one embodiment, the switching mechanism 100 includes two disassembly and assembly structures 12. Figure 2 、 Figure 9 and Figure 13As shown, each disassembly structure 12 is provided with a sliding portion 121 and a positioning groove 10B. Two disassembly structures 12 are located on opposite sides of the lens aperture 10A, such that the two sliding portions 121 are located on opposite sides of the lens aperture 10A, and the two positioning grooves 10B are also located on opposite sides of the lens aperture 10A. The line connecting the two sliding portions 121 is parallel to the Y-axis, or the line connecting a sliding portion 121 and a positioning groove 10B is parallel to the Y-axis. Each sliding portion 121 extends in the same direction along the X-axis at one end away from the body 10. This allows for removable assembly of the lens aperture 10A on the adapter mechanism 100 with the assembly cavity 30B on opposite sides, improving assembly balance and stability.

[0112] It is understood that the adapter mechanism 100 is provided with at least one sliding portion 121 adjacent to a positioning slot 10B; the number of assembly cavities 30B corresponds to the number of sliding portions 121; and at least one sliding portion 121 is provided on the same side of the lens aperture 10A as the positioning slot 10B. Optionally, each assembly / disassembly structure 12 includes two sliding portions 121, which are spaced apart and located on either side of the positioning slot 10B.

[0113] In this embodiment, the number of disassembly structures 12 provided on a transition mechanism 100 may be one or more. Each disassembly structure 12 may include at least two sliding portions 121, and the assembly mechanism 300 may be provided with an assembly cavity 30B corresponding to each sliding portion 121. The two sliding portions 121 are arranged along the X-axis and spaced apart on either side of the positioning groove 10B, allowing the lens aperture 10A on the same side to be removably assembled with the assembly cavity 30B via the two sliding portions 121. The transition mechanism 100 body 10 on either side of the positioning groove 10B is retained in position in both the Z- and Y-axis directions by the sliding portions 121 engaging the assembly hole. The transition mechanism 100 body 10 located between the two sliding portions 121 is retained in position within the O-XY plane by the elastic engagement of the positioning assembly 40 with the positioning groove 10B. This simplifies assembly, prevents skew during assembly of the transition mechanism 100, reduces calibration and alignment steps, and improves assembly balance and reliability.

[0114] Optionally, each disassembly structure 12 includes two positioning grooves 10B, and the two positioning grooves 10B are spaced apart and located on both sides of the sliding portion 121 .

[0115] In this embodiment, the adapter mechanism 100 may include one or more disassembly structures 12. For example, two disassembly structures 12 are provided on either side of the lens aperture 10A along the Y-axis to detachably assemble the two sides of the body 10 of the adapter mechanism 100 with the assembly mechanism 300.

[0116] The adapter mechanism 100 may be provided with a sliding portion 121 and a positioning groove 10B at the same side of the lens hole 10A, or may be provided with a combination of a sliding portion 121 and two positioning grooves 10B. When two positioning grooves 10B are provided, the two positioning grooves 10B are respectively located on both sides of the sliding portion 121 along the X-axis. The adapter mechanism 100 uses the two positioning grooves 10B to perform two-point positioning of the main body 10 along the sliding direction, which can prevent the adapter mechanism 100 from being assembled crooked, so that the filter is set at an accurate position and is stationary relative to the lens module, thereby improving the image quality of the filter photography.

[0117] refer to Figure 8 Opening 30A is located at the top of pre-positioning cavity 301B along the Z-axis, and opening 30A is connected to pre-positioning cavity 301B. During assembly, sliding portion 121 is inserted from opening 30A into pre-positioning cavity 301B along the Z-axis. Assembly mechanism 300 is provided with an extension section 31 adjacent to opening 30A, positioning cavity 302B at the bottom of extension section 31 along the Z-axis, and positioning cavity 302B to one side of pre-positioning cavity 301B along the X-axis. Furthermore, the thickness of extension section 31 matches the width of opening 30A of retaining notch 121A or notch 121B, ensuring that retaining notch 121A can be secured by friction after being engaged with extension section 31. The assembly cavity 30B is connected through the opening 30A, the pre-positioning cavity 301B and the locking cavity 302B to form an L-shaped sliding cavity. The connection between the opening 30A and the pre-positioning cavity 301B forms the vertical side of the L, and the connection between the pre-positioning cavity 301B and the locking cavity 302B forms the horizontal side of the L.

[0118] The sliding portion 121 extends into the pre-positioning cavity 301B through the opening 30A along the Z-axis direction to pre-position the assembly position of the assembly mechanism 300 and the adapter mechanism 100; thereafter, the adapter mechanism 100 slides along the X-axis direction so that one end of the sliding portion 121 extending into the assembly cavity 30B slides until it is engaged in the engagement cavity 302B. This end is limited in the Z-axis direction by the extension section 31 and in the Y-axis direction by the two side walls of the engagement cavity 302B, thereby improving the assembly stability of the sliding portion 121 engaged in the assembly cavity 30B.

[0119] Furthermore, along the extension direction of the X-axis, the assembly mechanism 300 is provided with a receiving groove 30C spaced from the assembly cavity 30B, and the adapter mechanism 100 is provided with a positioning groove 10B spaced from the sliding portion 121. The positioning groove 10B corresponds to the positioning component 40 recessed on the side of the adapter mechanism 100 facing the assembly mechanism 300, and the positioning component 40 is arranged in the receiving groove 30C.

[0120] When the adapter mechanism 100 slides relative to the assembly mechanism 300 until the positioning groove 10B is aligned with the receiving groove 30C, one end of the positioning assembly 40 pops out and inserts into the positioning groove 10B, thereby limiting the sliding direction of the adapter mechanism 100 and the assembly mechanism 300 along the X-axis. The arrangement of the sliding portion 121 and the positioning assembly 40 can fully limit the position of the adapter mechanism 100 and the assembly mechanism 300 along the X-axis, Y-axis, and Z-axis, thereby improving the assembly reliability of the adapter mechanism 100 and the assembly mechanism 300.

[0121] Combined with reference Figure 7 、 Figure 8 、 Figure 10 and Figure 11 As shown, in an embodiment of the present invention, one of the assembly mechanism 300 and the adapter mechanism 100 is provided with a receiving groove 30C, and the other of the assembly mechanism 300 and the adapter mechanism 100 is provided with a positioning groove 10B. The positioning assembly 40 includes:

[0122] an elastic portion 41 disposed in the receiving groove 30C; and

[0123] The positioning portion 42 and the elastic portion 41 are used to drive at least a portion of the positioning portion 42 into the positioning groove 10B of the other one of the assembly mechanism 300 and the switching mechanism 100 .

[0124] The compression or extension direction of the elastic portion 41 is arranged at an angle to the sliding direction of the adapter mechanism 100 relative to the assembly mechanism 300. The elastic portion 41 is configured as a spring, the positioning portion 42 can be a positioning post with an arc-shaped top surface or a spherical positioning bead, and the positioning groove 10B is configured as an arc-shaped inner concave surface. The inner concave surface of the positioning groove 10B is adapted to the contact surface of the positioning post or positioning bead, thereby improving the tightness of the locking and positioning between the adapter mechanism 100 and the assembly mechanism 300. The positioning portion 42 can be a round bead, and the opening 30A of the receiving groove 30C is smaller than the diameter of the round bead. As a result, the round bead can partially extend out of the notch of the receiving groove 30C under the push of the elastic portion 41 without completely falling out of the receiving groove 30C.

[0125] Specifically, if Figure 8As shown, in this embodiment, the adapter mechanism 100 slides relative to the assembly mechanism 300 along the X-axis direction for assembly or disassembly, and the compression or tension direction of the elastic portion 41 is parallel to the Z-axis direction. The two directions are arranged at an angle, and the angle can preferably be a right angle, or an acute angle or an obtuse angle close to a right angle. The receiving groove 30C is opened on the side of the mounting member 30 of the assembly mechanism 300 facing the adapter mechanism 100, that is, the notch of the receiving groove 30C is opened toward the Z-axis, and one end of the elastic portion 41 along the Z-axis direction is connected to the bottom wall of the receiving groove 30C, and the positioning portion 42 is relatively fixedly arranged at the other end of the elastic portion 41 along the Z-axis direction, so that the elastic portion 41 can store and release energy to drive the positioning portion 42 to be engaged in the positioning groove 10B.

[0126] It should be noted that the positioning assembly 40 can be installed on the assembly mechanism 300 or on the adapter mechanism 100. In addition, the positioning assembly can also be an integral assembly including a spring and a ball or a cylinder and a sleeve for accommodating the spring and the ball, and then the integral assembly is directly installed on the assembly mechanism 300 or the receiving groove 30C on the adapter mechanism 100.

[0127] The above description is merely an exemplary embodiment of the present invention and does not limit the patent scope of the present invention. All equivalent structural transformations made using the contents of the present invention specification and drawings under the technical concept of the present invention, or direct / indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. A rabbit cage device, characterized in that: include: A cage frame, wherein the cage frame is provided with an assembly mechanism; as well as A transfer mechanism, wherein the transfer mechanism and the assembly mechanism are detachably assembled; Wherein, the rabbit cage device further comprises at least one soft layer, and at least one soft layer is provided on the assembly mechanism and / or the transfer mechanism; When the assembly mechanism and the switching mechanism are assembled, the soft layer is located between the switching mechanism and the cage frame.

2. The rabbit cage device according to claim 1, characterized in that: The switching mechanism includes: A body, wherein the body is provided with a lens hole for mounting a filter; and At least one disassembly structure, at least one of the disassembly structures is provided on the main body, the disassembly structure includes a sliding portion, the sliding portion is used for detachably slidingly connecting to the assembly mechanism; The soft layer is arranged on the main body and on a side facing the disassembly structure, or the soft layer is arranged on the cage and on a side that is assembled and fitted with the switching mechanism.

3. The rabbit cage device according to claim 2, characterized in that: The sliding portion is provided with a bayonet, and the bayonet is used for clamping the assembly mechanism.

4. The rabbit cage device according to claim 3, characterized in that: The sliding portion includes: a connecting section, one end of which is connected to the main body; and The limiting section is arranged at the other end of the connecting section, and the connecting section, the limiting section and the main body together form the bayonet.

5. The rabbit cage device according to claim 2, characterized in that: The sliding connection between the transfer mechanism and the assembly mechanism is a sliding fit connection between a sliding groove and a sliding block.

6. The rabbit cage device according to claim 2, characterized in that: The disassembly and assembly structure is provided with at least one positioning groove, and the positioning groove is used to cooperate with the assembly mechanism to limit the position of the body; And / or, a stop plate is provided on one side of the body, and the stop plate is used to abut and limit the outer edge of the assembly mechanism.

7. The rabbit cage device according to any one of claims 1 to 6, characterized in that: The assembly mechanism includes a mounting member; The mounting member is provided with an assembly cavity having an opening, and the assembly cavity is used for slidingly assembling the switching mechanism; An extension section is provided on the edge of the assembly cavity, and the extension section is used for being snapped into the bayonet of the switching mechanism.

8. The rabbit cage device according to claim 7, characterized in that: The assembly cavity comprises a pre-positioning cavity and a locking cavity which are connected to each other. The extension section is located at the top of the locking cavity. The opening is located at the top of the pre-positioning cavity and is connected to the pre-positioning cavity.

9. The rabbit cage device according to any one of claims 1 to 6, characterized in that: The assembly mechanism or the adapter mechanism further includes a positioning component. When the adapter mechanism is installed on the assembly mechanism, the positioning component is used for positioning between the adapter mechanism and the assembly mechanism.

10. The rabbit cage device according to claim 9, characterized in that: One of the assembly mechanism and the transition mechanism is provided with a receiving groove, and the other of the assembly mechanism and the transition mechanism is provided with a positioning groove, and the positioning assembly includes: an elastic portion disposed in the receiving groove; and The positioning portion, the elastic portion is used to drive at least a portion of the positioning portion into the positioning groove of the other one of the assembly mechanism and the switching mechanism.