CN218541864U - Full-automatic door lock with stretching frame structure - Google Patents
Full-automatic door lock with stretching frame structure Download PDFInfo
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- CN218541864U CN218541864U CN202222752290.8U CN202222752290U CN218541864U CN 218541864 U CN218541864 U CN 218541864U CN 202222752290 U CN202222752290 U CN 202222752290U CN 218541864 U CN218541864 U CN 218541864U
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Abstract
The utility model discloses a full-automatic door lock with tensile frame structure, including outer panel, interior panel, outer panel cooperatees with interior panel, outer panel includes outer handle, password screen glass, outer backing plate, positioning machine component, rotating assembly, outer circuit board subassembly, face identification subassembly, outer panel casing, outer cushion, outer shrouding, emergency power supply, and the interior panel includes interior shrouding, interior cushion, interior panel casing, switch board, lock core, motor, interior circuit board, battery module, adversion subassembly, inner panel decoration, interior backing plate, insurance knob, button, interior handle, interior display screen subassembly, the utility model discloses need not process into specific shape with shell body and interior casing, consequently assembly efficiency, production efficiency improve greatly, manufacturing cost also greatly reduced, the utility model discloses compact structure, shell structure simplifies, has effectively solved the emergence of the unexpected condition and has makeed the unable problem of using of lock.
Description
Technical Field
The utility model relates to a full-automatic door lock with tensile frame construction.
Background
The existing full-automatic door lock needs to be finely processed into a cavity with a specific shape, the cavity structure inside the shell is complex, as shown in fig. 1, the cavity structure of an internal sealing plate needs to be in a fixed shape and cannot be a random cavity, and therefore the material cost and the processing cost are high.
SUMMERY OF THE UTILITY MODEL
The utility model aims at overcoming the not enough in the current product, provide a full-automatic door lock with tensile frame construction.
In order to achieve the purpose, the utility model is realized by the following technical scheme:
a full-automatic door lock with a stretching frame structure comprises an outer panel and an inner panel, wherein the outer panel is matched with the inner panel, the outer panel comprises an outer handle, password screen glass, an outer base plate, a positioning machine component, a rotating component, an outer circuit board component, a face recognition component, an outer panel shell, an outer rubber pad, an outer sealing plate and an emergency power supply, the outer handle is fixed with the outer base plate through the rotating component after penetrating through the password screen glass, the password screen glass is provided with a password button, the positioning machine component is connected with the outer handle after sequentially penetrating through the outer base plate and the password screen glass, the password screen glass is fixed with the outer base plate, the rotating component and the emergency power supply are both mounted on the outer base plate, the outer panel shell is provided with a first cavity, the face recognition component, the outer circuit board component and the outer base plate are all mounted in the first cavity, the outer sealing plate is clamped on the outer panel shell, and the face recognition component and the emergency power supply are both electrically connected with the outer circuit board component; the outer rubber cushion is sleeved on the outer sealing plate; the inner panel comprises an inner sealing plate, an inner rubber pad, an inner panel shell, a switch plate, a lock cylinder, a motor, an inner circuit board, a battery module, an inner rotating assembly, an inner plate decoration part, an inner base plate, a safety knob, a key, an inner handle and an inner display screen assembly, wherein the switch plate, the motor and the inner plate decoration part are all installed on the inner base plate, the inner rotating assembly sequentially penetrates through the inner base plate, the inner plate decoration part and the inner handle to be connected, the safety knob penetrates through the inner plate decoration part to be connected with the inner base plate, the lock cylinder sequentially penetrates through the inner sealing plate and the inner panel shell to be connected with the motor, the inner circuit board and the inner display screen assembly are all installed on the battery module, the inner panel shell is provided with a second cavity, the battery module and the inner base plate are all installed in the second cavity, the inner sealing plate is installed on the inner panel shell, the inner rubber pad is sleeved on the sealing plate, the key is installed on the inner plate decoration part, the battery module, the motor and the inner display screen assembly is electrically connected with the inner circuit board, the circuit board assembly is electrically connected with the outer panel shell and the inner panel shell are of a tensile frame structure.
Preferably, the outer backing plate is provided with a cylinder, and the rotating assembly is sleeved on the cylinder.
Preferably, the outer panel shell is further provided with a first clamping column and a second clamping column, the first clamping column and the second clamping column are fixed on the inner wall of the first cavity, the face recognition assembly is provided with a first clamping groove, the outer circuit board assembly is provided with a second clamping groove, the first clamping column is matched with the first clamping groove, and the second clamping column is matched with the second clamping groove.
Preferably, the code screen glass, the outer backing plate and the outer handle are provided with positioning holes, the outer backing plate is provided with positioning columns, the positioning machine components are fixedly connected with the positioning holes, and the positioning machine components are sleeved on the positioning columns.
Preferably, the outer backing plate is further provided with a supporting column, and the emergency power supply is sleeved on the supporting column.
Preferably, the face recognition assembly comprises a support, a camera and a face module, the camera and the face module are both mounted on the support, and the first clamping groove is located on the support.
Preferably, the battery module includes a battery case, and a battery mounted on the battery case.
Preferably, the inner backing plate and the inner plate decorating part are provided with a first round hole and a second round hole, the inward rotation assembly is inserted into the first round hole, the safety knob is inserted into the second round hole, the inner backing plate is provided with a mounting stud, and the motor and the inward rotation assembly are fixed on the mounting stud.
Preferably, the handle further comprises a fingerprint head and a fixing piece, and the fingerprint head is fixed on the outer handle through the fixing piece.
The utility model has the advantages as follows: the utility model discloses shell body and interior casing all are tensile frame construction, and only need stretch into the cavity, then process the mounted position, just can accomplish the installation of lock body, do not need to process shell body and interior casing into specific shape, therefore assembly efficiency, production efficiency improve greatly, manufacturing cost also greatly reduces, the utility model discloses compact structure, the shell structure is simplified, material cost and processing low cost, the equipment is very convenient; the utility model carries out face recognition through the face recognition component, effectively recognizes whether the door is a bad person, and greatly improves the safety; the password screen glass is used for unlocking the password, and the door can be opened without a key; the operation is convenient and fast; the utility model discloses emergency power source has for also can use through emergency power source after the outage, effectively solved the emergence of unexpected condition and make the unable problem of using of lock.
Drawings
FIG. 1 is a schematic diagram of a prior art structure;
FIG. 2 is an exploded view of the outer panel;
FIG. 3 is a schematic structural view of an outer shim plate;
FIG. 4 is a schematic view of the inner panel;
fig. 5 is an electrical connection diagram of the module of the present invention.
Detailed Description
The technical scheme of the utility model is further explained by combining the attached drawings of the specification:
as shown in fig. 2 to 5, a full-automatic door lock with a stretching frame structure comprises an outer panel and an inner panel, wherein the outer panel is matched with the inner panel, the outer panel comprises an outer handle 1, password screen glass 2, an outer pad 3, a positioning machine component 4, a rotating component 5, an outer circuit board component 6, a face recognition component 7, an outer panel shell 8, an outer rubber pad 9, an outer sealing plate 10, an emergency power supply 11, a fingerprint head 12 and a fixing plate 13, the outer handle 1 is fixed with the outer pad 3 through the rotating component 5 after passing through the password screen glass 2, the password screen glass 2 is provided with a password button 21, the positioning machine component 4 sequentially passes through the outer pad 3 and the password screen glass 2 and then is connected with the outer handle 1, the password screen glass 2 is fixed with the outer pad 3, the rotating component 5 and the emergency power supply 11 are both mounted on the outer pad 3, the outer panel shell 8 is provided with a first cavity 83, the face recognition component 7, the outer circuit board component 6 and the outer pad 3 are all mounted in the first cavity 83, the outer panel shell 7 is electrically connected with the face recognition component 6 and the outer panel shell 11; the outer rubber pad 9 is sleeved on the outer sealing plate 10; the inner panel comprises an inner sealing plate 14, an inner rubber pad 15, an inner panel shell 16, a switch plate 17, a lock cylinder 18, a motor 19, an inner circuit board 20, a battery module 22, an inner rotary component 23, an inner plate decoration 24, an inner pad plate 25, a safety knob 26, a key 27, an inner handle 28 and an inner display screen component 29, the switch plate 17, the motor 19 and the inner plate decoration 24 are all installed on the inner pad plate 25, the inner rotary component 23 sequentially penetrates the inner pad plate 25, the inner plate decoration 24 and the inner handle 28 to be connected, the safety knob 26 penetrates the inner plate decoration 24 to be connected with the inner pad plate 25, the lock cylinder 18 sequentially penetrates the inner sealing plate 14 and the inner panel shell 16 to be connected with the motor 19, the inner circuit board 20 and the inner display screen component 29 are all installed on the battery module 22, the inner panel shell 16 is provided with a second cavity 161, the inner sealing plate 14 is installed on the inner panel shell 16, the inner rubber pad 15 is sleeved on the inner sealing plate 14, the key 27 is installed on the inner plate decoration 24, the inner plate module 22, the inner plate decoration 19 and the outer panel shell 20 and the outer circuit board 20 and the outer panel shell are connected with the electric connection structure of the motor panel.
As shown in fig. 2 to 4, the outer backing plate 3 is provided with a cylinder 31, the rotating assembly 5 is sleeved on the cylinder 31, the outer backing plate shell 8 is further provided with a first clamping column 81 and a second clamping column 82, the first clamping column 81 and the second clamping column 82 are both fixed on the inner wall of the first cavity 83, the face recognition assembly 7 is provided with a first clamping groove 74, the outer circuit board assembly 6 is provided with a second clamping groove 61, the first clamping column 81 is matched with the first clamping groove 74, the second clamping column 82 is matched with the second clamping groove 61, the password screen glass 2, the outer backing plate 3 and the outer handle 1 are all provided with a positioning hole 101, the outer backing plate 3 is provided with a positioning column 32, the positioning machine component 4 is fixedly connected with the positioning hole 101, and the positioning machine component 4 is sleeved on the positioning column 32.
As shown in fig. 2 to 4, the outer cushion plate 3 is further provided with a supporting column 33, the emergency power supply 11 is sleeved on the supporting column 33, the face recognition assembly 7 includes a bracket 71, a camera 72 and a face module 73, the camera 72 and the face module 73 are both mounted on the bracket 71, the first slot 74 is located on the bracket 71, the battery module 22 includes a battery box 222 and a battery 221, the battery 221 is mounted on the battery box 222, the inner cushion plate 25 and the inner plate decoration 24 are both provided with a first circular hole 251 and a second circular hole 252, the inner rotating assembly 23 is inserted into the first circular hole 251, the safety knob 26 is inserted into the second circular hole 252, the inner cushion plate 25 is provided with a mounting stud 253, and the motor 19 and the inner rotating assembly 23 are both fixed on the mounting stud 253.
The working principle is as follows:
assembling process of the outer panel:
as shown in fig. 2 to 4, fix fingerprint head 12 on outer handle 1 through stationary blade 13, then outer handle 1 passes behind password screen glass 2 and is fixed mutually with outer backing plate 3 through rotating assembly 5, location machine component 4 passes outer backing plate 3 in proper order, be connected with outer handle 1 behind password screen glass 2, then install password screen glass 2 on outer backing plate 3, then rotating assembly 5, emergency power source 11 installs on outer backing plate 3, face identification subassembly 7, outer line board subassembly 6, outer backing plate 3 all installs in first cavity 83, then block outer shrouding 10 on outer panel casing 8, then outer cushion 9 overlaps on outer shrouding 10.
Assembling process of the inner panel:
as shown in fig. 2 to 4, the switch board 17, the motor 19, and the inner plate decoration 24 are all mounted on the inner backing board 25, the inner rotating assembly 23 sequentially passes through the inner backing board 25 and a first circular hole 251 of the inner plate decoration 24 and then is fixedly connected with the inner handle 28, the safety knob 26 passes through the inner backing board 25 and a second circular hole 252 of the inner plate decoration 24 and then is connected with the inner backing board 25, the lock cylinder 18 sequentially passes through the inner sealing board 14 and the inner panel housing 6 and then is connected with the motor 19, the inner circuit board 20 and the inner display screen assembly 29 are all mounted on the battery module 22, then the battery module 22 and the inner backing board 25 are all mounted in the second cavity 161, the inner sealing board 14 is mounted on the inner panel housing 16, the inner rubber pad 15 is sleeved on the inner sealing board 14, and the key 27 is mounted on the inner plate decoration 24.
The door opening mode is as follows: fingerprint, password, mechanical key.
The utility model discloses shell body and interior casing all are tensile frame construction, and only need stretch into the cavity, then process the mounted position, just can accomplish the installation of lock body, do not need to process shell body and interior casing into specific shape, therefore assembly efficiency, production efficiency improve greatly, manufacturing cost also greatly reduces, the utility model discloses compact structure, the shell structure is simplified, material cost and processing low cost, the equipment is very convenient; the utility model carries out face recognition through the face recognition component, effectively recognizes whether the door is a bad person, and greatly improves the safety; the password screen glass is used for unlocking the password, and the door can be opened without a key; the operation is convenient and quick; the utility model discloses emergency power source has for also can use through emergency power source after the outage, effectively solved the emergence of unexpected condition and make the unable problem of using of lock.
It should be noted that the above list is only one specific embodiment of the present invention. Obviously, the present invention is not limited to the above embodiments, and many modifications can be made, and in short, all modifications that can be directly derived or suggested by the person skilled in the art from the disclosure of the present invention should be considered as the protection scope of the present invention.
Claims (9)
1. The utility model provides a full-automatic door lock with tensile frame structure, a serial communication port, including outer panel, interior panel, outer panel cooperatees with interior panel, outer panel includes outer handle (1), password screen glass (2), outer liner plate (3), positioning machine component (4), rotating assembly (5), outer line board subassembly (6), face identification subassembly (7), outer panel casing (8), outer cushion (9), outer shrouding (10), emergency power source (11), outer handle (1) is passed password screen glass (2) back and is fixed mutually through rotating assembly (5) and outer liner plate (3), password screen glass (2) are equipped with password button (21), positioning machine component (4) are connected with outer handle (1) after having passed outer liner plate (3), password screen glass (2) in proper order, password screen glass (2) are fixed mutually with outer liner plate (3), rotating assembly (5), power source (11) are all installed on outer liner plate (3), outer panel (8) are equipped with first cavity (83) and are all installed at outer line board subassembly (7), face identification subassembly (7) outer liner plate (7), face identification subassembly (7) outer panel (3) outer line subassembly (83) is installed on outer panel casing (7), face identification subassembly (3) outer line board (3), face identification subassembly (7) outer panel The emergency power supply (11) is electrically connected with the external circuit board assembly (6);
the outer rubber pad (9) is sleeved on the outer sealing plate (10); the inner panel comprises an inner sealing plate (14), an inner rubber pad (15), an inner panel shell (16), a switch plate (17), a lock cylinder (18), a motor (19), an inner circuit board (20), a battery module (22), an inner rotating assembly (23), an inner plate decoration (24), an inner pad plate (25), a safety knob (26), a key (27), an inner handle (28) and an inner display screen assembly (29), wherein the switch plate (17), the motor (19) and the inner plate decoration (24) are all installed on the inner pad plate (25), the inner rotating assembly (23) sequentially penetrates through the inner pad plate (25) and the inner plate decoration (24) to be connected with the inner handle (28), the safety knob (26) is connected with the inner pad plate (25) after penetrating through the inner plate decoration (24), the lock cylinder (18) sequentially penetrates through the inner sealing plate (14) and the inner panel shell (16) to be connected with the motor (19), the inner circuit board (20) and the inner display screen assembly (29) are all installed on the battery module (22), the inner panel shell (16) is provided with a second cavity (161), and the inner panel (161) and the inner panel (16) is installed on the inner panel shell (161), interior cushion (15) cover is on interior shrouding (14), install on inner panel decoration (24) button (27), battery module (22), motor (19), interior display screen subassembly (29) all with interior wiring board (20) electric connection, interior wiring board (20), exterior wiring board subassembly (6) electric connection, outer panel casing (8) and inner panel casing (16) all are tensile frame construction.
2. Fully automatic door lock with stretching frame structure according to claim 1, characterized in that the outer backing plate (3) is provided with a cylinder (31), and the rotating assembly (5) is sleeved on the cylinder (31).
3. The fully automatic door lock with the stretching frame structure according to claim 1, wherein the outer panel shell (8) is further provided with a first clamping column (81) and a second clamping column (82), the first clamping column (81) and the second clamping column (82) are both fixed on an inner wall of the first cavity (83), the face recognition component (7) is provided with a first clamping groove (74), the outer circuit board component (6) is provided with a second clamping groove (61), the first clamping column (81) is matched with the first clamping groove (74), and the second clamping column (82) is matched with the second clamping groove (61).
4. The full-automatic door lock with the stretching frame structure is characterized in that the code screen glass (2), the outer backing plate (3) and the outer handle (1) are provided with positioning holes (101), the outer backing plate (3) is provided with positioning columns (32), the positioning machine component (4) is fixedly connected with the positioning holes (101), and the positioning machine component (4) is sleeved on the positioning columns (32).
5. The fully automatic door lock with a stretching frame structure according to claim 1, characterized in that the outer backing plate (3) is further provided with a support column (33), and the emergency power supply (11) is sleeved on the support column (33).
6. The fully automatic door lock with the stretching frame structure is characterized in that the face recognition component (7) comprises a bracket (71), a camera (72) and a face module (73), the camera (72) and the face module (73) are both mounted on the bracket (71), and the first clamping groove (74) is located on the bracket (71).
7. The fully automatic door lock with stretching frame structure according to claim 1, wherein the battery module (22) comprises a battery box (222), a battery (221), and the battery (221) is mounted on the battery box (222).
8. The fully automatic door lock with the stretching frame structure is characterized in that the inner backing plate (25) and the inner plate decorating part (24) are provided with a first round hole (251) and a second round hole (252), the inward rotating component (23) is inserted into the first round hole (251), the safety knob (26) is inserted into the second round hole (252), the inner backing plate (25) is provided with a mounting stud (253), and the motor (19) and the inward rotating component (23) are fixed on the mounting stud (253).
9. The fully automatic door lock with a stretching frame structure according to claim 1 is characterized by further comprising a fingerprint head (12) and a fixing plate (13), wherein the fingerprint head (12) is fixed on the outer handle (1) through the fixing plate (13).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202222752290.8U CN218541864U (en) | 2022-10-19 | 2022-10-19 | Full-automatic door lock with stretching frame structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202222752290.8U CN218541864U (en) | 2022-10-19 | 2022-10-19 | Full-automatic door lock with stretching frame structure |
Publications (1)
Publication Number | Publication Date |
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CN218541864U true CN218541864U (en) | 2023-02-28 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202222752290.8U Active CN218541864U (en) | 2022-10-19 | 2022-10-19 | Full-automatic door lock with stretching frame structure |
Country Status (1)
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CN (1) | CN218541864U (en) |
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2022
- 2022-10-19 CN CN202222752290.8U patent/CN218541864U/en active Active
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