Looseness-free mounting assembly

By designing a non-detachable mounting component, utilizing movable connections and multiple mounting holes, the problem of limited installation space for components is solved, achieving efficient connection and enhanced stability.

CN223810010UActive Publication Date: 2026-01-16SHENZHEN CSL VACUUM SCI & TECH CO LTD
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Patent Information

Application Number
CN202520156074.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-01-16
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

When the installation space for two components is limited, the use of screws/bolts for locking in the prior art can affect the arrangement of internal components.

Method used

A non-detachable mounting assembly is provided, including a first mounting member and a second mounting member, which can be switched between different states through a movable connection. The first mounting member is mounted on a first component along a first direction, and the second mounting member is mounted on a second component along a second direction. The connection is achieved by using multiple mounting holes and a non-detachable channel.

Benefits of technology

It reduces the space occupied inside the component, improves installation efficiency and increases connection stability, and avoids screws/bolts passing through the component and affecting the internal component layout.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a non-disengagement installation assembly which comprises a first installation part and a second installation part, the first installation part can be installed on a first component in the first direction through an installation structure of the first installation part, and the first installation part and the second installation part are movably connected so as to be switched between a first state and a second state; in a first state, the mounting end of the second mounting part is positioned outside the first mounting part; in a second state, the mounting end of the second mounting part is positioned in the first mounting part; under the condition that the mounting end of the second mounting piece is located outside the first mounting piece, the mounting end of the second mounting piece can be mounted on a second component in the second direction; wherein the first direction is different from the second direction. The utility model relates to a captive mounting assembly for connecting two components while reducing the occupancy of the internal space of the two components.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of mechanical installation, in particular to a loose installation assembly and a shell. BACKGROUND

[0002] In the prior art, two components are directly locked by screws, however, in the case that the installation space of the two components is limited, and the screws pass through one or both components during locking, the arrangement of the internal devices of one or both components is affected. CONTENT OF THE UTILITY MODEL

[0003] The present application provides a loose installation assembly to connect two components while reducing the internal space occupation of the two components.

[0004] In a first aspect, the present application provides a loose installation assembly, which comprises a first installation piece and a second installation piece, the first installation piece is capable of being installed on a first component in a first direction through its installation structure, and the first installation piece and the second installation piece are both movably connected to switch between a first state and a second state.

[0005] In the first state, the installation end of the second installation piece is located outside the first installation piece.

[0006] In the second state, the installation end of the second installation piece is located inside the first installation piece.

[0007] In the case that the installation end of the second installation piece is located outside the first installation piece, the installation end of the second installation piece is capable of being installed on a second component in a second direction.

[0008] The first direction and the second direction are different.

[0009] In an optional embodiment of the present application, the first installation piece comprises a first body, the first body has a length direction, a width direction and a thickness direction, and the installation structure further comprises a plurality of installation holes, the plurality of installation holes penetrate through the first body in the thickness direction of the first body and are arranged at intervals.

[0010] In an optional embodiment of the present application, the plurality of installation holes are arranged at equal intervals in the length direction of the first body.

[0011] In an optional embodiment of the present application, the first installation piece comprises a first body, the first body has a length direction, a width direction and a thickness direction, and the first installation piece further comprises a loose passage penetrating through the first body in the length direction of the first body.

[0012] The second mounting member comprises a second body and an operation part, the operation part is fixedly connected with one end of the second body, the mounting end is arranged at the end of the second body away from the operation part, and the second body is mounted in the loose channel and can move in the length direction of the first body in the loose channel, so that the mounting end is located in the loose channel or outside the loose channel.

[0013] The first mounting member is used to be mounted on a first component in the thickness direction of the first body through the mounting structure, and the second mounting member is used to be mounted on a second component in the length direction of the first body through the mounting end extending from the loose channel to outside the loose channel, so as to connect the first component and the second component.

[0014] In an optional embodiment of the application, the first mounting member further comprises a blocking structure, and the blocking structure is protruded on the inner wall of the loose channel.

[0015] The second mounting member further comprises a blocking groove, and the blocking groove is recessed in the surface of the second body, and the blocking groove is used to place the blocking structure, so as to limit the blocking structure in the blocking groove.

[0016] In an optional embodiment of the application, the loose channel comprises a first sub-channel, a second sub-channel and a third sub-channel connected in sequence, the size of the second sub-channel in the width direction and the thickness direction of the first body is smaller than the size of the first sub-channel and the third sub-channel in the width direction and the thickness direction of the first body, so that the first blocking surface and the second blocking surface are formed at the communication part of the first sub-channel and the second sub-channel.

[0017] The second body comprises a first body part, a second body part and a third body part connected in sequence, the third body part is fixedly connected with the operation part away from the second body part, the mounting end is arranged at the first body part, the first body part is mounted in the first sub-channel or at least partially located outside the first sub-channel, part of the second body part is mounted in the second sub-channel, and the third body part is mounted in the third sub-channel.

[0018] The size of the second body part in the width direction and the thickness direction of the first body is smaller than the size of the first body part and the third body part in the width direction and the thickness direction of the first body, so that the first limiting surface and the second limiting surface are formed at the connection part of the first body part and the second body part.

[0019] The first blocking surface is capable of being in contact with the first limiting surface to limit the movement of the first body part.

[0020] The second blocking surface is capable of being in contact with the second limiting surface to limit the movement of the third body part.

[0021] In an optional embodiment of the present application, the first mounting member further comprises a first recess and a second recess, the first recess and the second recess are arranged on the inner wall of the third sub-channel, and the first recess and the second recess are in communication.

[0022] The second recess is farther away from the second sub-channel than the first recess, and the size of the second recess in the width direction and the thickness direction of the first body is greater than the size of the first recess in the width direction and the thickness direction of the first body.

[0023] In an optional embodiment of the present application, the sizes of the first body part, the second body part and the third body part in the length direction of the first body are sequentially increased.

[0024] In an optional embodiment of the present application, the diameter of the second sub-channel is smaller than the diameters of the first sub-channel and the third sub-channel.

[0025] The diameter of the second body part is smaller than the diameters of the first body part and the third body part.

[0026] In an optional embodiment of the present application, the diameter of the first sub-channel is equal to the diameter of the third sub-channel.

[0027] The diameter of the first body part is equal to the diameter of the third body part.

[0028] In an optional embodiment of the present application, the first direction and the second direction are perpendicular to each other.

[0029] In a second aspect, the embodiments of the present application provide a housing, which comprises:

[0030] A first component;

[0031] A second component;

[0032] The detachable mounting assembly is the detachable mounting assembly as described above.

[0033] The first mounting member is mounted on the first component in the first direction through the mounting structure, and the mounting end of the second mounting member is located outside the first mounting member and is mounted on the second component in the second direction.

[0034] In an alternative embodiment of the application, the first mounting member is mounted on the side wall of the first component in the first direction through the mounting structure, and the mounting end of the second mounting member is located outside the first mounting member and is mounted on the top wall or the bottom wall of the second component in the second direction.

[0035] Beneficial effects: one of the detachable mounting assemblies can be mounted on the first component in the first direction, and the other detachable mounting assembly can be mounted on the second component in the second direction, that is, the detachable mounting assembly of the embodiment of the application can be connected with the first component in the first direction and connected with the second component in the second direction to connect the first component and the second component together; compared with the prior art that uses screws to pass through the first component and / or the second component to connect the first component and the second component, the detachable mounting assembly of the embodiment of the application can connect the first component and the second component without occupying the internal space of the first component and the second component.

[0036] Specifically, the detachable mounting assembly can be mounted on the first component in the first direction through its mounting structure, and it should be noted that the mounting structure of the detachable mounting assembly can be a screw structure or a mounting hole structure for the screw to pass through to be mounted on the first component. In addition, the two movable connections of the detachable mounting assembly, the first mounting member and the second mounting member are movably connected to switch between the first state and the second state, in the first state, the mounting end of the second mounting member is located outside the first mounting member, and in the second state, the mounting end of the second mounting member is located inside the first mounting member; that is, one can move in the other, and the mounting end of the detachable mounting assembly can be exposed or not exposed during the movement. In the case that the mounting end of the detachable mounting assembly is exposed, the mounting end can be connected with the second component.

[0037] In addition, the first mounting member and the second mounting member of the detachable mounting assembly form a detachable assembly relationship with each other. On the one hand, during the connection of the first component and the second component by the detachable mounting assembly, there is no need to additionally assemble the first mounting member and the second mounting member, compared with the way of connecting the first component and the second component by using separate first mounting members and second mounting members, the embodiment of the application can improve the installation efficiency. On the other hand, after the first mounting member is connected with the first component and the second mounting member is connected with the second component, the first mounting member and the second mounting member can restrict each other, which can increase the stability of the detachable mounting assembly connecting the first component and the second component. BRIEF DESCRIPTION OF DRAWINGS

[0038] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments description will be briefly introduced. Obviously, the drawings in the following description only show some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort on the basis of these drawings.

[0039] In order to more completely understand the present application and its beneficial effects, the following will be described in conjunction with the drawings, wherein the same reference numerals in the following description represent the same parts.

[0040] Figure 1 A structural schematic view of the detachable mounting assembly provided by the embodiments of the present application.

[0041] Figure 2 A structural schematic view of the detachable mounting assembly provided by the embodiments of the present application. Figure 1 A sectional view of the detachable mounting assembly shown in FIG. 1 along the direction of A-A.

[0042] Figure 3 A sectional view of the first component in the detachable mounting assembly shown in FIG. 1 along the direction of A-A. Figure 1

[0043] A sectional view of the second component in the detachable mounting assembly shown in FIG. 1 along the direction of A-A. Figure 4 Figure 1 A state perspective view of the detachable mounting assembly provided by the embodiments of the present application.

[0044] Figure 5 An exploded view of the detachable mounting assembly provided by the embodiments of the present application.

[0045] Figure 6 A state perspective view of the detachable mounting assembly provided by the embodiments of the present application.

[0046] Figure 7 Another state perspective view of the detachable mounting assembly provided by the embodiments of the present application.

[0047] Figure 8 A state view of the detachable mounting assembly provided by the embodiments of the present application connecting the first component and the second component.

[0048] Figure 9 A state view of the detachable mounting assembly provided by the embodiments of the present application connecting the first component and the second component.

[0049] Figure 10 A state view of the detachable mounting assembly provided by the embodiments of the present application connecting the first component and the second component.

[0050] A state view of the detachable mounting assembly provided by the embodiments of the present application connecting the first component and the second component.

[0051] 1, a housing;

[0052] ​10, snap-fit mounting assembly; D1, length direction (second direction); D2, width direction; D3, thickness direction (first direction);

[0053] 100, first mounting member; 110, first body; 120, snap-fit passage; 121, first sub-passage; 122, second sub-passage; 123, third sub-passage; 130, blocking structure; 131, first blocking surface; 132, second blocking surface; 140, first recess; 150, second recess; 160, mounting structure; 161, mounting hole;

[0054] 200, second mounting member; 210, second body; 211, first body portion; 212, second body portion; 213, third body portion; 220, operation portion; 230, blocking groove; 231, first limiting surface; 232, second limiting surface; 240, step structure; 250, mounting end.

[0055] 20, first component; 21, side wall;

[0056] 30, second component; 31, top wall. DETAILED DESCRIPTION

[0057] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. The following description of at least one exemplary embodiment is actually only illustrative, but not as any limitation on the present application and its application or use. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the present application.

[0058] Reference to "an embodiment" or "the embodiment" in this text means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the present application. The appearance of the phrase in various places in the specification does not necessarily all refer to the same embodiment, nor is it necessarily independent or alternative embodiments to other embodiments. Those skilled in the art explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.

[0059] As Figures 1-8 shown, the embodiments of the present application provide a snap-fit mounting assembly 10 which can connect two components. Exemplarily, as Figure 9 and Figure 10 , the snap-fit mounting assembly 10 can connect a first component 20 and a second component 30 to connect the first component 20 and the second component 30 together.

[0060] Exemplarily, the first component 20 and the second component 30 can be a part of a housing, and the inside and / or outside of which can be mounted with components such as power components. The embodiments of the present application also provide a housing 1, which can include one or more detachable mounting assemblies 10, and one or more first components 20 and one or more second components 30. Wherein, one first component 20 or multiple first components 20 and one or more second components 30 are connected, that is, one first component 20 can be connected with one second component 30, one first component 20 can be connected with multiple second components 30, and multiple first components 20 can be connected with one second component 30. One detachable mounting assembly 10 can be connected with one first component 20 and one second component 30, or multiple detachable mounting assemblies 10 can be connected with one first component 20 and one second component 30, or multiple detachable mounting assemblies 10 can be connected with multiple first components 20 and one second component 30, or multiple detachable mounting assemblies 10 can be connected with one first component 20 and multiple second components 30.

[0061] Please continue to refer to Figures 1-8 The detachable mounting assembly 10 can be mounted on the first component 20 in the first direction D3 and mounted on the second component 30 in the second direction D1 to connect the first component 20 and the second component 30. Compared with the prior art that uses screws to pass through the first component and / or the second component to connect the first component and the second component, the detachable mounting assembly of the embodiments of the present application can connect the first component 20 and the second component 30 in the case of reducing the internal space of the first component 20 and the second component 30.

[0062] Wherein, the first direction D3 and the second direction D1 are different. Exemplarily, the first direction D3 and the second direction D1 are perpendicular to each other.

[0063] Exemplarily, the detachable mounting assembly 10 can be mounted on the first component 20 in the first direction D3 through the mounting structure 160 of the detachable mounting assembly 10 itself. It should be noted that the mounting structure 160 of the detachable mounting assembly 10 itself can be a screw structure, or a mounting hole 161 for the screw to pass through to be mounted on the first component 20.

[0064] Exemplarily, the detachable mounting assembly 10 includes two mounting parts, one mounting part of the detachable mounting assembly 10 can be mounted on the first component 20 in the first direction D3, and the other mounting part of the detachable mounting assembly 10 can be mounted on the second component 30 in the second direction D1. Exemplarily, the two mounting parts of the detachable mounting assembly 10 are movably connected, and the two mounting parts together form a detachable mounting relationship, that is, the two mounting parts of the detachable mounting assembly 10 can be connected and can move relative to each other without being separated.

[0065] Exemplarily, the detachable mounting assembly 10 comprises a first mounting member 100 and a second mounting member 200, both of which are movably connected to switch between a first state and a second state. In the first state, the mounting end 250 of the second mounting member 200 is located outside the first mounting member 100; in the second state, the mounting end 250 of the second mounting member 200 is located inside the first mounting member 100; in the case that the mounting end 250 of the second mounting member 200 is located outside the first mounting member 100, the mounting end 250 of the second mounting member 200 can be mounted to the second component 30 in the second direction D1, that is, one of the two mounting members of the detachable mounting assembly 10 can move in the other, and the mounting end 250 of the detachable mounting assembly 10 can be exposed or not exposed during the movement, and in the case that the mounting end 250 of the detachable mounting assembly 10 is exposed, the mounting end 250 can be connected with the second component 30.

[0066] In the process of connecting the first component 20 and the second component 30 by using the detachable mounting assembly 10, the first mounting member 100 and the second mounting member 200 do not need to be combined by manual operation, which can improve the installation efficiency compared with the way of connecting the first component and the second component by using separate first mounting members and second mounting members.

[0067] Exemplarily, the first mounting member 100 comprises a first body 110, the first body 110 has a length direction D1, a width direction D2 and a thickness direction D3, and the mounting structure 160 further comprises a plurality of mounting holes 161, the plurality of mounting holes 161 penetrate through the first body 110 in the thickness direction D3 of the first body 110 and are arranged at intervals.

[0068] Among them, the length direction D1 of the first body 110 can be understood as the second direction D1, and the thickness direction D3 of the first body 110 can be understood as the first direction D3.

[0069] It should be noted that the number of mounting holes 161 included in the mounting structure 160 is not limited to a plurality, and in some cases, the mounting structure 160 can only include one mounting hole 161.

[0070] Exemplarily, the plurality of mounting holes 161 are arranged at equal intervals in the length direction D1 of the first body 110. In other optional embodiments, the plurality of mounting holes 161 can also be arranged at unequal intervals in the length direction D1 of the first body 110.

[0071] It can be understood that the number of mounting holes 161 and the arrangement of the mounting holes 161 are set according to actual needs, and will not be illustrated one by one here.

[0072] Exemplarily, the first mounting member 100 further comprises a loose-through channel 120 penetrating the first body 110 in the length direction D1 of the first body 110, that is, the loose-through channel 120 penetrates both end surfaces of the first body 110 in the length direction D1 of the first mounting member 100. The second mounting member 200 comprises a second body 210 and an operation part 220, the operation part 220 is fixedly connected to one end of the second body 210, and a mounting end 250 is arranged at the end of the second body 210 away from the operation part 220. The second body 220 is installed in the loose-through channel 120, and the second body 200 can move in the loose-through channel 120 along the length direction D1 of the first body 110, so that the mounting end 250 is located in the loose-through channel 120 or outside the loose-through channel 120. The second mounting member 200 is used to be installed on the second part 30 along the length direction D1 of the first body 110 by the mounting end 250 extending from the inside of the loose-through channel 120 to the outside of the loose-through channel 120, so as to connect the first part 20 and the second part 30.

[0073] Exemplarily, the first mounting member 100 further comprises a blocking structure 130 protruding from the inner wall of the loose-through channel 120, and the second mounting member 200 further comprises a blocking groove 230 recessed in the surface of the second body 210. The blocking groove 230 is used to place the blocking structure 130, so as to limit the blocking structure 130 in the blocking groove 230. It can be understood that the size of the blocking structure 130 along the length direction D1 of the first body 110 is smaller than the size of the blocking groove 230 along the length direction D1 of the first body 110, so that the blocking structure 130 can move in the blocking groove 230 along the length direction D1 of the first body 110, and is limited by the two wall surfaces forming the blocking groove 230 to realize the connection relationship between the first mounting member 100 and the second mounting member 200.

[0074] In an alternative embodiment of the present application, the loose channel 120 comprises a first sub-channel 121, a second sub-channel 122 and a third sub-channel 123 connected in sequence, the size of the second sub-channel 122 in the width direction D2 and the thickness direction D3 of the first body 110 is smaller than the size of the first sub-channel 121 and the third sub-channel 123 in the width direction D2 and the thickness direction D3 of the first body 110, so that the second sub-channel 122 and the first sub-channel 121 and the third sub-channel 123 form a first blocking surface 131 and a second blocking surface 132, that is, the first sub-channel 121 and the second sub-channel 122 form the first blocking surface 131, and the second sub-channel 122 and the third sub-channel 123 form the second blocking surface 132. The first blocking surface 131 and the second blocking surface 132 can be understood as two end surfaces of the blocking structure 130.

[0075] In an alternative embodiment of the present application, the second body 210 comprises a first body portion 211, a second body portion 212 and a third body portion 213 connected in sequence, the third body portion 213 is fixedly connected to the operating portion 220 away from one end of the second body portion 212, the mounting end 250 is arranged on the first body portion 211, the first body portion 211 is arranged in the first sub-channel 121 or at least partially arranged outside the first sub-channel 121, part of the second body portion 212 is arranged in the second sub-channel 122, and the third body portion 213 is arranged in the third sub-channel 123.

[0076] It can be understood that the first body portion 211 can move in the length direction D1 of the first body 110 in the first sub-channel 121, so that the first body portion 211 is arranged in the first sub-channel 121 or at least partially arranged outside the first sub-channel 121, which can be understood as at least part of the first body portion 211 exposed to the first mounting member 100 or not exposed to the first mounting member 100. It should be noted that in the case that the first body portion 211 is not exposed to the first mounting member 100, the first body portion 211 can be completely arranged in the first sub-channel 121. In the case that the first body portion 211 is exposed to the first mounting member 100, at least the mounting end 250 is exposed to the first mounting member 100, that is, at least the mounting end 250 is arranged outside the first sub-channel 121.

[0077] It can be understood that the second body portion 212 can move in the length direction D1 of the first body 110 in the second sub-channel 122, part of the second body portion 212 is arranged in the second sub-channel 122, and another part of the second body portion 212 is arranged in the first sub-channel 121 or the third sub-channel 123. In another alternative embodiment, part of the second body portion 212 is arranged in the second sub-channel 122, and another part of the second body portion 212 is arranged in the first sub-channel 121 and the third sub-channel 123.

[0078] It can be understood that the third body part 213 can move along the length direction D1 of the first body 110 within the third sub-channel 123, and when the mounting end 250 is located outside the first sub-channel 121, the third body part 213 can be completely located within the third sub-channel 123. Of course, when the mounting end 250 is located outside the first sub-channel 121, the third body part 213 can be partially located within the third sub-channel 123 and partially located outside the third sub-channel 123, such as outside the first mounting member 100. When the mounting end 250 is located within the first sub-channel 121, the third body part 213 is partially located within the third sub-channel 123 and partially located outside the third sub-channel 123, i.e. outside the first mounting member 100.

[0079] For example, the size of the second body part 212 in the width direction D2 and the thickness direction D3 of the first body 110 is smaller than the size of the first body part 211 and the third body part 213 in the width direction D2 and the thickness direction D3 of the first body 110, so that the connection between the first body part 211 and the third body part 213 and the second body part 212 forms the first limiting surface 231 and the second limiting surface 232. That is, the first limiting surface 231 is formed between the first body part 211 and the second body part 212, and the second limiting surface 232 is formed between the second body part 212 and the third body part 213.

[0080] It can be understood that the first limiting surface 231 and the second limiting surface 232 are two wall surfaces for forming the blocking groove 230.

[0081] The first limiting surface 231 can abut against the first limiting surface 231 to limit the movement of the first body part 211. The second limiting surface 232 can abut against the second limiting surface 232 to limit the movement of the third body part 213. Thus, the connection relationship between the first mounting member 100 and the second mounting member 200 is achieved without being separated.

[0082] For example, the size of the first body part 211, the second body part 212 and the third body part 213 in the length direction D1 of the first body 110 increases in turn.

[0083] For example, the diameter of the second sub-channel 122 is smaller than the diameter of the first sub-channel 121 and the diameter of the third sub-channel 123; the diameter of the second body part 212 is smaller than the diameter of the first body part 211 and the diameter of the third body part 213.

[0084] For example, the diameter of the first sub-channel 121 is equal to the diameter of the third sub-channel 123; the diameter of the first body part 211 is equal to the diameter of the third body part 213.

[0085] Exemplarily, the first mounting member 100 further comprises a first recess 140 and a second recess 150, both of which are arranged on the inner wall of the third sub-passage 123 and are in communication with each other; the second recess 150 is farther away from the second sub-passage 122 than the first recess 140, and the size of the second recess 150 in the width direction D2 and the thickness direction D3 of the first body 110 is greater than the size of the first recess 140 in the width direction D2 and the thickness direction D3 of the first body 110. In an alternative embodiment, the operation part 220 is at least partially accommodated in the second recess 150. Exemplarily, the operation part 220 can be completely accommodated in the second recess 150 without being exposed.

[0086] In an alternative embodiment, the operation part 220 can comprise an operation structure, which can comprise a threaded groove for a screwdriver operation.

[0087] Please continue to refer to Figure 9 and Figure 10 The first component 20 has a side wall 21, the second component 30 has a top wall 31, the first mounting member 100 is mounted on the side wall 21 of the first component 20 along the first direction D3 through the mounting structure 160, and the mounting end 250 of the second mounting member 200 is located outside the first mounting member 100 and is mounted on the top wall 31 of the second component 30 along the second direction D1. It should be noted that the second mounting member 200 can also be mounted on the bottom wall of the second component 30 through the mounting end 250.

[0088] It can be understood that the position at which the detachable mounting assembly 10 connects the first component 20 and the second component 30 is not limited to the side wall 21 of the first component 20 and the top wall 31 or the bottom wall of the second component 30, and can be adjusted according to actual needs.

[0089] Specifically, the second component 30 is provided with a connecting groove corresponding to the mounting end 250 for mounting the mounting end 250, and the mounting end 250 is mounted in the connecting groove of the second component 30 to realize the connection between the detachable mounting assembly 10 and the second component 30. Exemplarily, the connecting groove is formed on the top wall or the bottom wall of the second component 30.

[0090] The detachable mounting assembly and the shell provided by the embodiments of the present application are described in detail above, and the principles and implementation manners of the present application are described by applying specific examples; the above description of the embodiments is only used to help understand the method of the present application and its core idea; meanwhile, for those skilled in the art, the specific implementation manners and application ranges can be changed according to the idea of the present application, and the above description of the present application should not be understood as a limitation.

Claims

1. A snap-fit mounting assembly, characterized by, The first mounting member is capable of being mounted to a first component in a first direction by a mounting structure of the first mounting member, and the first mounting member and the second mounting member are movably connected to switch between a first state and a second state. In the first state, a mounting end of the second mounting member is located outside the first mounting member. In the second state, the mounting end of the second mounting member is located inside the first mounting member. In the case that the mounting end of the second mounting member is located outside the first mounting member, the mounting end of the second mounting member is capable of being mounted to a second component in a second direction. The first direction and the second direction are different.

2. The loose-mount assembly of claim 1, wherein, The first mounting member includes a first body having a length direction, a width direction and a thickness direction, and the mounting structure further includes a plurality of mounting holes penetrating through the first body in the thickness direction of the first body and arranged at intervals.

3. The loose-mount assembly of claim 2, wherein, The plurality of mounting holes are arranged at equal intervals in the length direction of the first body.

4. The loose-mount assembly of claim 1, wherein, The first mounting member includes a first body having a length direction, a width direction and a thickness direction, and the first mounting member further includes a loose passage penetrating through the first body in the length direction of the first body. The second mounting member includes a second body and an operation portion, the operation portion is fixedly connected to one end of the second body, the mounting end is arranged at one end of the second body away from the operation portion, the second body is mounted in the loose passage, and the second body is capable of moving in the length direction of the first body in the loose passage, so that the mounting end is located in the loose passage or outside the loose passage. The first mounting member is used to be mounted to a first component in the thickness direction of the first body through the mounting structure, and the second mounting member is used to be mounted to a second component in the length direction of the first body by the mounting end extending from the loose passage to outside the loose passage, so as to connect the first component and the second component.

5. The loose-mount assembly of claim 4, wherein, The first mounting member further includes a blocking structure protruding from an inner wall of the loose passage. The second mounting member further includes a blocking groove recessed in a surface of the second body, and the blocking groove is used to place the blocking structure to limit the blocking structure in the blocking groove.

6. The loose-mount assembly of claim 4, wherein The loose passage includes a first sub-passage, a second sub-passage and a third sub-passage connected in sequence, the size of the second sub-passage in the width direction and the thickness direction of the first body is smaller than the size of the first sub-passage and the third sub-passage in the width direction and the thickness direction of the first body, so that the first sub-passage and the third sub-passage form a first blocking surface and a second blocking surface at the communication with the second sub-passage. ​ The second body includes a first body part, a second body part and a third body part connected in sequence, the third body part is fixedly connected with the operating part and away from one end of the second body part, the mounting end is arranged on the first body part, the first body part is installed in the first sub-channel or at least partially located outside the first sub-channel, part of the second body part is installed in the second sub-channel, and the third body part is installed in the third sub-channel. The size of the second body part in the width direction and the thickness direction of the first body is smaller than the size of the first body part and the third body part in the width direction and the thickness direction of the first body, so that the first limiting surface and the second limiting surface are formed at the connection of the first body part and the third body part and the second body part. The first blocking surface can abut against the first limiting surface to limit the movement of the first body part. The second blocking surface can abut against the second limiting surface to limit the movement of the third body part.

7. The loose-mount assembly of claim 6, wherein The first mounting member further includes a first groove and a second groove, the first groove and the second groove are arranged on the inner wall of the third sub-channel, and the first groove and the second groove are communicated. The second groove is farther away from the second sub-channel than the first groove, and the size of the second groove in the width direction and the thickness direction of the first body is larger than the size of the first groove in the width direction and the thickness direction of the first body.

8. The loose-mount assembly of claim 6, wherein, The size of the first body part, the second body part and the third body part in the length direction of the first body increases in sequence.

9. The loose-mount assembly of claim 6, wherein, The diameter of the second sub-channel is smaller than the diameter of the first sub-channel and the diameter of the third sub-channel. The diameter of the second body part is smaller than the diameter of the first body part and the diameter of the third body part. The diameter of the first sub-channel is equal to the diameter of the third sub-channel. The diameter of the first body part is equal to the diameter of the third body part.

10. The loose-mount assembly of claim 1, wherein, The first direction and the second direction are perpendicular to each other.