Installation structure and intelligent door lock having the same
By designing an adjustable mounting base plate, the problem of inflexible installation of smart door locks is solved, versatility and flexibility are achieved, the installation process is simplified and material waste is reduced.
Patent Information
- Application Number
- CN202310317296.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-27
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2043-03-27
AI Technical Summary
The installation method of existing smart door locks is inflexible, and the base plate needs to be replaced according to the inner and outer lock shells of different sizes, resulting in cumbersome installation process, troublesome operation, and easy waste of materials.
An installation structure is provided, including an adjustable mounting base plate, the bottom plate consists of a base plate main body and a plurality of mounting sub-plate bodies. Each mounting sub-plate body can be adjusted relative to the bottom plate main body, and different installation states are achieved through the hinge shaft and positioning components, and adapt to door lock housings of different sizes.
It realizes the versatility and flexibility of smart door lock installation, avoids the need to replace the base plate, simplifies the installation process, and reduces material waste.
Smart Images

Figure CN116084773B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of smart door lock installation, and in particular to a mounting structure and a smart door lock having the same. Background Art
[0002] At present, there are national standards for doors, and the openings of doors are also implemented in accordance with national standards. The installation of smart door locks on the market is all based on national standards. The traditional installation method generally involves opening multiple holes such as lock body holes, screw holes, square rod holes, and wire holes on the door panel, and then installing the lock body into the corresponding lock body hole on the door. The lock body is fixed with internal screws, and then the corresponding accessories are installed in the inner lock housing of the inner lock component and the outer lock housing of the outer lock component. After the assembly is completed, the inner lock housing and the outer lock housing are respectively installed on the door panel, and various wiring harnesses are connected. Then, the inner lock housing and the outer lock housing are fixed to the door panel through the bottom plate with screws.
[0003] However, when the lock needs to be replaced, the inner lock shells and outer lock shells of different smart door locks have different sizes. In this way, it is necessary to replace the base plate to install the inner lock shells and outer lock shells of different sizes. This makes the installation of the smart door lock inflexible, and the base plate must be replaced every time the smart door lock is replaced, which easily wastes the manufacturing materials of the base plate, thereby making the installation process of the inner and outer door lock shells cumbersome and troublesome to operate. Summary of the invention
[0004] The main purpose of the present invention is to provide a mounting structure and a smart door lock having the same, so as to solve the problem of poor versatility in the installation of smart door locks in the prior art.
[0005] In order to achieve the above-mentioned purpose, according to one aspect of the present invention, a mounting structure is provided, including: a mounting base plate for being mounted on a door panel, the mounting base plate being used to be connected to a door lock housing of a smart door lock; wherein the mounting base plate includes a base plate main body and a plurality of mounting sub-plate bodies, and each mounting sub-plate body is adjustably arranged relative to the base plate main body so that the mounting base plate can adapt to door lock housings of different sizes.
[0006] Furthermore, the mounting structure also includes: a plurality of hinge shafts, each hinge shaft being passed through a corresponding mounting sub-plate body and a base plate body so as to enable relative rotation between the mounting sub-plate body and the base plate body; wherein the mounting base plate has a first mounting state and a second mounting state, and the door lock shell has a plurality of side walls spaced apart along a circumferential direction of the door lock shell, and when the mounting base plate is in the first mounting state, each mounting sub-plate body is arranged at an angle of 0° or 180° to the base plate body; when the mounting base plate is in the second mounting state, at least part of the plurality of mounting sub-plate bodies is arranged relative to at least one of the plurality of side walls.
[0007] Furthermore, one of the base plate body and the corresponding mounting sub-plate body is provided with a first avoidance groove, and the other of the base plate body and the corresponding mounting sub-plate body is provided with a connecting protrusion, the connecting protrusion is located in the first avoidance groove, and each hinge shaft is passed through the corresponding connecting protrusion and the inner wall surface of the first avoidance groove; a movable groove is provided on the inner wall surface of the first avoidance groove, the movable groove extends along the distribution direction of the mounting sub-plate body and the base plate body, and the hinge shaft is movably arranged in the movable groove.
[0008] Furthermore, the base plate body has an installation cavity and an installation opening that are interconnected, and at least a portion of the board section of the corresponding installation sub-board body is movably arranged in the installation cavity through the installation opening; wherein, the installation base plate has a third installation state and a fourth installation state, and when the installation base plate is in the third installation state, the installation sub-board body is completely received in the installation cavity; when the installation base plate is in the fourth installation state, at least a portion of the board section of the installation sub-board body is located outside the installation cavity.
[0009] Further, each installation sub-board body has a limiting portion, which is limitedly matched with the wall surface where the installation opening is located; and / or, multiple installation sub-board bodies located in the installation cavity are stacked in sequence along the thickness direction of the base plate body.
[0010] Further, the base plate body is a rectangular plate, and a mounting sub-plate body is disposed on both sides of the base plate body along its length direction; and / or, a mounting sub-plate body is disposed on both sides of the base plate body along its width direction.
[0011] Further, the plurality of mounting sub-panel bodies form a plurality of mounting sub-panel body groups, and the plurality of mounting sub-panel body groups are sequentially arranged around the base plate body; wherein each mounting sub-panel body group comprises a plurality of mounting sub-panel bodies connected sequentially; two adjacent mounting sub-panel bodies among the plurality of mounting sub-panel bodies of each mounting sub-panel body group are rotatably connected; and / or two adjacent mounting sub-panel bodies among the plurality of mounting sub-panel bodies of each mounting sub-panel body group are movably connected.
[0012] Furthermore, the mounting structure also includes: a plurality of third positioning components and a plurality of second positioning components, the plurality of third positioning components are all arranged on the base plate body, the plurality of third positioning components are arranged at circumferential intervals around the base plate body, and the plurality of second positioning components are all arranged on each mounting sub-board body of each group of mounting sub-board bodies; wherein the second positioning components and the third positioning components of each mounting sub-board body of each group of mounting sub-board bodies are detachably connected so that the plurality of mounting sub-board bodies can be selectively connected to the base plate body.
[0013] Furthermore, at least one of the multiple mounting sub-plates of each mounting sub-plate group is arranged opposite to one of the multiple side walls of the door lock housing; the mounting structure includes: multiple first positioning components, the multiple first positioning components are respectively arranged on the multiple side walls of the door lock housing, the multiple first positioning components and the second positioning components on the multiple corresponding mounting sub-plates are connected one by one to connect the door lock housing and the mounting base plate.
[0014] Further, the plurality of first positioning components, the plurality of second positioning components and the plurality of third positioning components are all magnets; or, one of the third positioning component and the second positioning component is a snap-in protrusion, and the other of the third positioning component and the second positioning component is a snap-in groove; one of the second positioning component and the first positioning component is a snap-in protrusion, and the other of the second positioning component and the third positioning component is a snap-in groove.
[0015] According to another aspect of the present invention, a smart door lock is provided, comprising an inner lock assembly and an outer lock assembly, both of which comprise a door lock housing; the above-mentioned mounting structure, wherein the door lock housing is mounted on a door panel via the mounting structure.
[0016] Applying the technical solution of the present invention, the present invention provides a mounting structure, including: a mounting base plate, used for being mounted on a door panel, the mounting base plate being used to connect with a door lock shell of a smart door lock; wherein the mounting base plate includes a base plate main body and a plurality of mounting sub-plate bodies, each of the mounting sub-plate bodies being adjustably arranged relative to the base plate main body so that the mounting base plate can adapt to door lock shells of different sizes, so that when replacing the smart door lock, there is no need to replace the mounting base plate, and the door lock shells of smart door locks of different sizes can be installed by changing the relative position between the mounting sub-plate body and the base plate main body, thereby improving the versatility and flexibility of the installation of the smart door lock. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The drawings constituting a part of the present application are used to provide a further understanding of the present invention. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:
[0018] Figure 1 An exploded view showing a mounting base plate and a door lock housing according to an embodiment of a mounting structure of the present invention; and
[0019] Figure 2 A structural schematic diagram of an embodiment of a mounting structure according to the present invention is shown.
[0020] The above drawings include the following reference numerals:
[0021] 10. Install the base plate; 100. Door lock housing; 11. Base plate body; 12. Install the sub-plate body; 101. Side wall; 110. First avoidance groove; 111. Connecting protrusion. DETAILED DESCRIPTION
[0022] It should be noted that, in the absence of conflict, the embodiments and features in the embodiments of the present application can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0023] Please refer to Figure 1 to Figure 2 The present invention provides a mounting structure, including: a mounting base plate 10, which is used to be mounted on a door panel, and the mounting base plate 10 is used to be connected to a door lock housing 100 of a smart door lock; wherein the mounting base plate 10 includes a base plate main body 11 and a plurality of mounting sub-plate bodies 12, and each mounting sub-plate body 12 is adjustably arranged relative to the base plate main body 11, so that the mounting base plate 10 can adapt to door lock housings 100 of different sizes. In this way, when replacing the smart door lock, there is no need to replace the mounting base plate 10. By changing the relative position between the mounting sub-plate body 12 and the base plate main body 11, the door lock housings of smart door locks of different sizes can be installed, thereby improving the versatility and flexibility of the installation of the smart door lock.
[0024] In the first embodiment of the present application, the mounting structure further includes: a plurality of hinge shafts, each of which is disposed on the corresponding mounting sub-plate body 12 and the base plate body 11, so that the mounting sub-plate body 12 and the base plate body 11 can rotate relative to each other; wherein the mounting base plate 10 has a first mounting state and a second mounting state, and the door lock housing 100 has a plurality of side walls 101 arranged at intervals along the circumferential direction of the door lock housing 100, and when the mounting base plate 10 is in the first mounting state, each mounting sub-plate body 12 is arranged at an angle of 0° or 180° with the base plate body 11; when the mounting base plate 10 is in the second mounting state, at least part of the plurality of mounting sub-plate bodies 12 is arranged relative to at least one of the plurality of side walls 101, so that the door lock housing 100 can be mounted stably. In this way, when the mounting base plate 10 has different mounting states, it can adapt to different mounting situations, further improving the versatility of the mounting base plate 10.
[0025] like Figure 2As shown, one of the base plate body 11 and the corresponding installation sub-plate body 12 is provided with a first avoidance groove 110, and the other of the base plate body 11 and the corresponding installation sub-plate body 12 is provided with a connecting protrusion 111, and the connecting protrusion 111 is located in the first avoidance groove 110, and each hinge shaft is penetrated through the corresponding connecting protrusion 111 and the inner wall surface of the first avoidance groove 110; a movable groove is provided on the inner wall surface of the first avoidance groove 110, and the movable groove extends along the distribution direction of the installation sub-plate body 12 and the base plate body 11, and the hinge shaft is movably arranged in the movable groove, so that the installation sub-plate body 12 can be moved relative to the base plate body 11, and can also be rotated relative to the base plate body 11, so that the flexibility of installing the base plate 10 is further improved.
[0026] In the second embodiment of the present application, the base plate body 11 has an installation cavity and an installation opening that are interconnected, and at least a portion of the board section of the corresponding installation sub-board body 12 is movably arranged in the installation cavity through the installation opening; wherein, the installation base plate 10 has a third installation state and a fourth installation state, when the installation base plate 10 is in the third installation state, the installation sub-board body 12 is completely received in the installation cavity; when the installation base plate 10 is in the fourth installation state, at least a portion of the board section of the installation sub-board body 12 is located outside the installation cavity.
[0027] Part of the plurality of mounting sub-board bodies 12 moves along the first direction, and another part of the plurality of mounting sub-board bodies 12 moves along the second direction; wherein the first direction is perpendicular to the second direction.
[0028] Specifically, each mounting sub-board body 12 has a limiting portion, which cooperates with the wall surface where the mounting opening is located to prevent the mounting sub-board body 12 from falling out; and / or, multiple mounting sub-board bodies 12 located in the mounting cavity are stacked in sequence along the thickness direction of the base plate body 11, so that each mounting sub-board body 12 has a larger range of motion, thereby further improving the installation flexibility of the mounting base plate 10.
[0029] Specifically, the base plate body 11 is a rectangular plate, and a mounting sub-plate body 12 is disposed on both sides of the base plate body 11 along its length direction; and / or, a mounting sub-plate body 12 is disposed on both sides of the base plate body 11 along its width direction. In this way, the adjustment range of the mounting sub-plate body 12 relative to the base plate body 11 is increased, thereby further improving the versatility of the mounting base plate, and in this way, when the mounting sub-plate body 12 rotates relative to the base plate body 11, the mounting base plate 10 is in the second mounting state, and the mounting sub-plate body 12 is disposed on both sides of the base plate body 11 or on the outer periphery of the base plate body 11, so that the installation of the door lock housing can be more stable.
[0030] Specifically, the plurality of mounting sub-board bodies 12 form a plurality of mounting sub-board body groups, and the plurality of mounting sub-board body groups are sequentially arranged around the base plate body 11; wherein each mounting sub-board body group includes a plurality of mounting sub-board bodies 12 connected sequentially; two adjacent mounting sub-board bodies 12 in the plurality of mounting sub-board bodies 12 in each mounting sub-board body group are rotatably connected; and / or two adjacent mounting sub-board bodies 12 in the plurality of mounting sub-board bodies 12 in each mounting sub-board body group are movably connected. In this way, the adjustment range of the mounting base plate 10 is improved, and the versatility of the mounting base plate is further improved.
[0031] The distribution direction of the plurality of mounting sub-board bodies 12 of each mounting sub-board body group is parallel to the distribution direction of the corresponding mounting sub-board body group and the bottom plate main body 11 .
[0032] Specifically, the mounting structure also includes a rotating shaft, which is arranged on one of the two adjacent mounting sub-board bodies 12 in each group of mounting sub-board bodies. The other of the two adjacent mounting sub-board bodies 12 is provided with a slide groove, and the rotating shaft is movably arranged in the slide groove, and the two adjacent mounting sub-board bodies 12 rotate around the axis of the rotating shaft.
[0033] Specifically, the installation structure further includes: a plurality of third positioning components and a plurality of second positioning components, wherein the plurality of third positioning components are all arranged on the base plate body 11, the plurality of third positioning components are arranged at intervals around the circumference of the base plate body 11, and the plurality of second positioning components are all arranged on each installation sub-plate body 12 of each group of installation sub-plate bodies; wherein the second positioning components and the third positioning components of each installation sub-plate body 12 of each group of installation sub-plate bodies are detachably connected, so that the plurality of installation sub-plate bodies 12 can be selectively connected to the base plate body 11. In this way, the installation sub-plate body 12 can be positioned at a predetermined installation position by the third positioning components and the second positioning components, and then the door lock housing is fixed, so that the installation base plate 10 is convenient for installing the door lock housing; wherein the sizes of the installation base plates at different predetermined installation positions are different.
[0034] Specifically, at least one of the multiple mounting sub-boards 12 of each mounting sub-board group is arranged opposite to one of the multiple side walls 101 of the door lock housing 100; the mounting structure includes: a plurality of first positioning components, the plurality of first positioning components are respectively arranged on the multiple side walls 101 of the door lock housing 100, the plurality of first positioning components and the second positioning components on the plurality of corresponding mounting sub-boards 12 are connected one by one to connect the door lock housing 100 and the mounting base plate 10, so that the installation of the door lock housing 100 is stable.
[0035] Optionally, the plurality of first positioning components, the plurality of second positioning components and the plurality of third positioning components are all magnets; or, one of the third positioning component and the second positioning component is a clamping protrusion, and the other of the third positioning component and the second positioning component is a clamping groove; one of the second positioning component and the first positioning component is a clamping protrusion, and the other of the second positioning component and the third positioning component is a clamping groove. In this way, the positioning of the mounting base is convenient.
[0036] The present invention also provides a smart door lock, including an inner lock assembly and an outer lock assembly, both of which include a door lock housing 100; and a mounting structure, wherein the door lock housing 100 is mounted on a door panel via the mounting structure.
[0037] From the above description, it can be seen that the above embodiments of the present invention achieve the following technical effects:
[0038] The present invention provides a mounting structure, comprising: a mounting base plate 10, which is used to be mounted on a door panel, and the mounting base plate 10 is used to be connected to a door lock housing 100 of a smart door lock; wherein the mounting base plate 10 comprises a base plate main body 11 and a plurality of mounting sub-plate bodies 12, and each mounting sub-plate body 12 is adjustably arranged relative to the base plate main body 11, so that the mounting base plate 10 can adapt to door lock housings 100 of different sizes, so that when replacing the smart door lock, there is no need to replace the mounting base plate 10, and the door lock housings of smart door locks of different sizes can be installed by changing the relative position between the mounting sub-plate body 12 and the base plate main body 11, thereby improving the versatility and flexibility of the installation of the smart door lock.
[0039] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. For those skilled in the art, the present invention may have various modifications and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A mounting structure, characterized in that: include: A mounting base plate (10) is used for mounting on a door panel, and the mounting base plate (10) is used for connecting to a door lock housing (100) of an intelligent door lock; wherein the mounting base plate (10) comprises a base plate main body (11) and a plurality of mounting sub-plate bodies (12), and each of the mounting sub-plate bodies (12) is arranged to be adjustable in position relative to the base plate main body (11), so that the mounting base plate (10) can adapt to door lock housings (100) of different sizes; a plurality of hinge shafts, each hinge shaft being arranged on a corresponding mounting sub-plate body (12) and the base plate body (11), so as to enable the mounting sub-plate body (12) and the base plate body (11) to rotate relative to each other; The mounting base plate (10) has a first mounting state and a second mounting state, the door lock housing (100) has a plurality of side walls (101) arranged at intervals along the circumferential direction of the door lock housing (100), and when the mounting base plate (100) is in the first mounting state, each of the mounting sub-plate bodies (12) is arranged at an angle of 0° or 180° with the base plate main body (11); when the mounting base plate (10) is in the second mounting state, at least part of the plurality of mounting sub-plate bodies (12) is arranged relative to at least one of the plurality of side walls (101).
2. The mounting structure according to claim 1, characterized in that: One of the base plate body (11) and the corresponding mounting sub-plate body (12) is provided with a first avoidance groove (110), and the other of the base plate body (11) and the corresponding mounting sub-plate body (12) is provided with a connecting protrusion (111), the connecting protrusion (111) is located in the first avoidance groove (110), and each of the hinge shafts is passed through the inner wall surface of the corresponding connecting protrusion (111) and the first avoidance groove (110); A movable groove is provided on the inner wall surface of the first avoidance groove (110), the movable groove extends along the distribution direction of the installation sub-plate body (12) and the bottom plate body (11), and the hinge shaft is movably arranged in the movable groove.
3. A mounting structure, characterized in that: include: A mounting base plate (10) for mounting on a door panel, wherein the mounting base plate (10) is used to be connected to a door lock housing (100) of a smart door lock; The mounting base plate (10) comprises a base plate body (11) and a plurality of mounting sub-plate bodies (12), and each of the mounting sub-plate bodies (12) is arranged to be adjustable relative to the base plate body (11), so that the mounting base plate (10) can adapt to door lock housings (100) of different sizes. The base plate body (11) has a mounting cavity and a mounting opening which are interconnected, and at least a portion of the corresponding mounting sub-plate body (12) passes through the mounting opening and is movably arranged in the mounting cavity; The mounting base plate (10) has a third mounting state and a fourth mounting state. When the mounting base plate (10) is in the third mounting state, the mounting sub-plate body (12) is completely received in the mounting cavity; when the mounting base plate (10) is in the fourth mounting state, at least a portion of the plate section of the mounting sub-plate body (12) is located outside the mounting cavity.
4. The mounting structure according to claim 3, characterized in that: Each of the installation sub-plate bodies (12) has a limiting portion, and the limiting portion is in limiting cooperation with the wall surface where the installation opening is located; and / or, The plurality of installation sub-plate bodies (12) located in the installation cavity are stacked in sequence along the thickness direction of the base plate body (11).
5. The mounting structure according to any one of claims 1 to 4, characterized in that: The bottom plate body (11) is a rectangular plate. The bottom plate body (11) is provided with a mounting sub-plate body (12) on both sides along the length direction thereof; and / or, One mounting sub-plate body (12) is provided on each of the two sides of the bottom plate main body (11) along its width direction.
6. The mounting structure according to any one of claims 1 to 4, characterized in that: The plurality of mounting sub-board bodies (12) form a plurality of mounting sub-board body groups, and the plurality of mounting sub-board body groups are sequentially arranged around the base plate body (11); wherein each of the mounting sub-board body groups comprises a plurality of mounting sub-board bodies (12) connected sequentially; Two adjacent mounting sub-board bodies (12) among the plurality of mounting sub-board bodies (12) of each mounting sub-board body group are rotatably connected; and / or two adjacent mounting sub-board bodies (12) among the plurality of mounting sub-board bodies (12) of each mounting sub-board body group are movably connected.
7. The mounting structure according to claim 6, characterized in that: The mounting structure further comprises: a plurality of third positioning components and a plurality of second positioning components, wherein the plurality of third positioning components are all arranged on the base plate body (11), the plurality of third positioning components are arranged at intervals around the circumference of the base plate body (11), and the plurality of second positioning components are all arranged on each of the mounting sub-plate bodies (12) of each group of the mounting sub-plate bodies; The second positioning component and the third positioning component of each mounting sub-board body (12) of each group of mounting sub-board bodies are detachably connected, so that a plurality of mounting sub-board bodies (12) can be selectively connected to the base plate body (11).
8. The mounting structure according to claim 7, characterized in that: At least one of the plurality of mounting sub-plate bodies (12) of each mounting sub-plate body group is arranged opposite to one of the plurality of side walls (101) of the door lock housing (100); the mounting structure comprises: A plurality of first positioning components, wherein the plurality of first positioning components are respectively arranged on the plurality of side walls (101) of the door lock housing (100), and the plurality of first positioning components and the plurality of second positioning components on the corresponding mounting sub-plate bodies (12) are connected one-to-one to connect the door lock housing (100) and the mounting base plate (10).
9. The mounting structure according to claim 8, characterized in that: The first positioning components, the second positioning components and the third positioning components are all magnets; or, One of the third positioning component and the second positioning component is a snap-in protrusion, and the other of the third positioning component and the second positioning component is a snap-in groove; one of the second positioning component and the first positioning component is a snap-in protrusion, and the other of the second positioning component and the third positioning component is a snap-in groove.
10. A smart door lock, characterized in that: include An inner lock assembly and an outer lock assembly, each of the inner lock assembly and the outer lock assembly comprising a door lock housing (100); The mounting structure according to any one of claims 1 to 9, wherein the door lock housing (100) is mounted on the door panel via the mounting structure.
Citation Information
Patent Citations
Door lock edge strip adjustment device and use method thereof
CN108661428A