CN108986284A - A kind of long-endurance smart lock based on Internet of Things - Google Patents
A kind of long-endurance smart lock based on Internet of Things Download PDFInfo
- Publication number
- CN108986284A CN108986284A CN201810855492.0A CN201810855492A CN108986284A CN 108986284 A CN108986284 A CN 108986284A CN 201810855492 A CN201810855492 A CN 201810855492A CN 108986284 A CN108986284 A CN 108986284A
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- sliding shoe
- support bar
- smart lock
- endurance
- things
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- 230000001050 lubricating effect Effects 0.000 claims abstract description 13
- 238000005461 lubrication Methods 0.000 claims abstract description 9
- 239000000463 material Substances 0.000 claims description 3
- 230000005540 biological transmission Effects 0.000 claims description 2
- 239000007787 solid Substances 0.000 claims description 2
- 238000005299 abrasion Methods 0.000 abstract description 9
- 238000010586 diagram Methods 0.000 description 5
- 239000000314 lubricant Substances 0.000 description 4
- 238000000926 separation method Methods 0.000 description 3
- 238000005516 engineering process Methods 0.000 description 2
- 238000012423 maintenance Methods 0.000 description 2
- 230000002035 prolonged effect Effects 0.000 description 2
- 239000003795 chemical substances by application Substances 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 230000007812 deficiency Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000004134 energy conservation Methods 0.000 description 1
- 230000003993 interaction Effects 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 239000002699 waste material Substances 0.000 description 1
Classifications
-
- G—PHYSICS
- G07—CHECKING-DEVICES
- G07C—TIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
- G07C9/00—Individual registration on entry or exit
- G07C9/00174—Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys
-
- G—PHYSICS
- G07—CHECKING-DEVICES
- G07C—TIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
- G07C9/00—Individual registration on entry or exit
- G07C9/00174—Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys
- G07C9/00944—Details of construction or manufacture
-
- G—PHYSICS
- G07—CHECKING-DEVICES
- G07C—TIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
- G07C9/00—Individual registration on entry or exit
- G07C9/00174—Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys
- G07C2009/00634—Power supply for the lock
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- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Engineering & Computer Science (AREA)
- Manufacturing & Machinery (AREA)
- Lock And Its Accessories (AREA)
- Closing And Opening Devices For Wings, And Checks For Wings (AREA)
Abstract
The present invention relates to a kind of long-endurance smart lock based on Internet of Things, slip lid, main body, keyboard, lock core and handle, it further include energy-saving mechanism, lubricating structure and Zhong Kong mechanism, the energy-saving mechanism includes Power Component, clutch component, first support bar, second support bar, third support rod and fixed link, the Power Component includes runner, second spring, second drive rod, limited block, first sliding shoe, gag lever post, torsionspring and rotating bar, the lubrication assembly includes sleeve, piston, driving assembly, third drive rod and oil pipe, in the long-endurance smart lock based on Internet of Things, pass through energy-saving mechanism, when so that smart lock is in locked state, the electric power loop of smart lock can be disconnected, to reduce the power consumption of smart lock, pass through lubricating structure, profit periodically can be added to the inside of lock core Lubrication prescription, so that the abrasion inside lock core between each device is reduced, to reduce the probability that smart lock breaks down.
Description
Technical field
The present invention relates to smart lock field, in particular to a kind of long-endurance smart lock based on Internet of Things.
Background technique
Smart lock, which refers to, is different from tradition machinery lock, in user's identification, safety, the more intelligentized lock of managerial aspect
Tool, smart lock is the execution unit locked a door in access control system, present smart lock " first open and scan again " different from the past
Mode, scanning mode is very simple, the scanning of the top at scanning from top to bottom is placed a finger on, without pressing finger
At scanning, the mode of scanning more reduces fingerprint residues, substantially reduces a possibility that fingerprint is replicated.
Nowadays smart lock to people's lives brings many conveniences with the development of technology, at the same smart lock there is also
Some defects, general intelligence lock when locked state, smart lock is in standby, at this time the electronics inside smart lock
The electric energy that device can continue consumption power supply shortens the cruise duration of smart lock, not only such as to cause the waste of electric energy
This, the lock core of general intelligence lock is by after prolonged use, the lubricant inside lock core will be slowly lost, to accelerate
Abrasion inside lock core between each device, to improve the probability that smart lock breaks down.
Summary of the invention
The technical problem to be solved by the present invention is for overcome the deficiencies in the prior art, provide a kind of based on Internet of Things
Long-endurance smart lock.
The technical solution adopted by the present invention to solve the technical problems is: a kind of long-endurance intelligence based on Internet of Things
It can lock, including the top of the side of main body is arranged in slip lid, main body, keyboard, lock core and handle, the keyboard, the slip lid is set
It sets in the side of the close keyboard of main body, the inside of main body is arranged in the lock core, and the close key of main body is arranged in the handle
The middle part of the side of disk, the handle are connect with lock core, further include energy-saving mechanism, lubricating structure and Zhong Kong mechanism, the energy conservation
The inside of main body is arranged in mechanism, and the lubricating structure is arranged on lock core, and the inside of main body, institute is arranged in the Zhong Kong mechanism
Keyboard and lubricating structure is stated to be electrically connected with Zhong Kong mechanism;
The energy-saving mechanism include Power Component, clutch component, first support bar, second support bar, third support rod and
Fixed link, the first support bar, second support bar and third support rod are horizontally set on the separate handle of the inner wall of main body
Side, the lower section of first support bar is arranged in the second support bar, and second support bar is arranged in the third support rod
Lower section, the fixed link is vertically arranged, the inner wall of the separate main body of the first support bar, second support bar and third support rod
One end be arranged in fixed link, the Power Component is arranged in first support bar, and one end of the clutch component is arranged
In second support bar, the other end of the clutch component is arranged on third support rod;
The Power Component includes runner, second spring, the second drive rod, limited block, the first sliding shoe, gag lever post, torsion
Turn spring and rotating bar, the inside of first sliding shoe is equipped with through-hole, and the first support bar passes through the first sliding shoe, described
Second drive rod is horizontally disposed, and the top of the first sliding shoe is arranged in one end of second drive rod, and the runner is hinged on
The top of the other end of second drive rod, one end of the runner pass through the outer wall of main body, and the limited block setting is sliding first
The side of the close runner of motion block, the limited block are fixedly connected with first support bar, and the second spring is set in first
On strut, the both ends of the second spring are separately positioned in fixed link and the first sliding shoe, and the rotating bar is hinged on first
The lower section of sliding shoe, the gag lever post are vertically provided at the side of the close runner of the lower section of the first sliding shoe;
The clutch component includes the second sliding shoe, third sliding shoe, telescopic rod, the first spring, third spring, connection
Line, the first drive rod and two contacts, the inside of the second sliding shoe are equipped with through-hole, and it is sliding that the second support bar passes through second
Motion block, the inside of the third sliding shoe are equipped with through-hole, and the third support rod passes through third sliding shoe, and the telescopic rod is vertical
The upper end of setting, the telescopic rod is arranged on the second sliding shoe, and the lower end of the telescopic rod is arranged on third sliding shoe, institute
It states third spring to be set on telescopic rod, the both ends of the third spring are separately positioned on the second sliding shoe and third sliding shoe
On, the side of the close runner of third sliding shoe, another touching in two contacts is arranged in one of contact in two contacts
Point is arranged on third support rod, and the top of the second support bar is equipped with a groove, and the groove setting is in the second sliding
The side of the separate runner of block, first spring are set in second support bar, and the both ends of the third spring are respectively set
In fixed link and the second sliding shoe, one end of first drive rod is connect with slip lid, the other end of first drive rod
It is connect with one end of connecting line, the other end of the connecting line is arranged on the second sliding shoe;
The lubrication assembly includes sleeve, piston, driving assembly, third drive rod and oil pipe, and the sleeve setting is being locked
The top of core, the shape of the vertical cross-section of the sleeve are U-shaped of the opening to side, and the U of sleeve is arranged in the driving component
The inside of sleeve is arranged in shape opening, the piston, and one end of the third drive rod is hinged on piston, and the third passes
The other end of lever is connect with driving assembly, one end connection of the separate driving assembly of one end and sleeve of the oil pipe, described
The other end of oil pipe is connect with lock core.
Preferably, the middle control component includes wireless signal transceiver module in order to improve the intelligence degree of smart lock
And single-chip microcontroller, the wireless signal transceiver module and monolithic mechatronics.
Preferably, the mobile offer power in order to give piston, the driving component includes motor and turntable, the motor
The top of lock core is set, and the motor and turntable are sequentially connected, and the other end of the third drive rod is hinged on the remote of turntable
At position from the turntable center of circle.
Preferably, in order to improve the accuracy to motor control, the motor is servo motor.
Preferably, the inside of the main body is additionally provided with power supply, the power supply in order to realize the control to on/off
Two-stage is electrically connected with two contacts respectively.
Preferably, in order to realize the separation between the second sliding shoe and rotating bar, the depth of the fluting is greater than second
The length of sliding shoe and rotating bar intersection.
Preferably, in order to increase the elasticity of connecting line, the making material of the connecting line is rubber.
Preferably, in order to reduce the abrasion between gag lever post and rotating bar, the one of the close rotating bar of the gag lever post
Buffer stopper is additionally provided on side.
Preferably, the third spring is in tensional state in order to pull the second sliding shoe to move down.
Preferably, in order to be moved to the left the second sliding shoe, the radius of the runner be greater than the second sliding shoe with
The distance between fluting.
The invention has the advantages that, by energy-saving mechanism, should make based in the long-endurance smart lock of Internet of Things
When smart lock is in locked state, the electric power loop of smart lock can be disconnected, so that the electric energy for reducing smart lock disappears
Consumption, extends the cruise duration of smart lock, and compared with existing mechanism, the mechanism structure is ingenious, and failure rate is low, practical, no
Only in this way, by lubricating structure, can timing lubricant is added to the inside of lock core, thus reduce inside lock core each device it
Between abrasion, to reduce the probability that smart lock breaks down, compared with existing mechanism, the mechanism structure is simple, reduces
Failure odds reduces the maintenance cost of smart lock.
Detailed description of the invention
Present invention will be further explained below with reference to the attached drawings and examples.
Fig. 1 is the structural schematic diagram of the long-endurance smart lock of the invention based on Internet of Things;
Fig. 2 is the schematic diagram of internal structure of the long-endurance smart lock of the invention based on Internet of Things;
Fig. 3 is the structural schematic diagram of the energy-saving mechanism of the long-endurance smart lock of the invention based on Internet of Things;
Fig. 4 is the portion the A enlarged drawing of Fig. 3;
Fig. 5 is the structural schematic diagram of the lubricating structure of the long-endurance smart lock of the invention based on Internet of Things;
In figure: 1. slip lids, 2. main bodys, 3. keyboards, 4. handles, 5. first drive rods, 6. connecting lines, 7. runners, 8. second
Drive rod, 9. first support bars, 10. second support bars, 11. third support rods, 12. fixed links, 13. first springs, 14. second
Spring, 15. contacts, 16. limited blocks, 17. first sliding shoes, 18. torsionsprings, 19. rotating bars, 20. the second sliding shoes, 21.
Groove, 22. telescopic rods, 23. third springs, 24. third sliding shoes, 25. gag lever posts, 26. lock cores, 27. motors, 28. oil pipes,
29. sleeve, 30. pistons, 31. third drive rods, 32. turntables.
Specific embodiment
In conjunction with the accompanying drawings, the present invention is further explained in detail.These attached drawings are simplified schematic diagram, only with
Illustration illustrates basic structure of the invention, therefore it only shows the composition relevant to the invention.
As shown in Figure 1, a kind of long-endurance smart lock based on Internet of Things, including slip lid 1, main body 2, keyboard 3, lock
The top of the side of main body 2 is arranged in core 26 and handle 4, the keyboard 3, and the close keyboard 3 of main body 2 is arranged in the slip lid 1
Side, the inside of main body 2 is arranged in the lock core 26, and the handle 4 is arranged in the side of close keyboard 3 of main body 2
Portion, the handle 4 are connect with lock core 26, further include energy-saving mechanism, lubricating structure and Zhong Kong mechanism, and the energy-saving mechanism setting exists
The inside of main body 2, the lubricating structure are arranged on lock core 26, and the inside of main body 2, the keyboard is arranged in the Zhong Kong mechanism
3 and lubricating structure be electrically connected with Zhong Kong mechanism;
As in Figure 2-4, the energy-saving mechanism includes Power Component, clutch component, first support bar 9, second support bar
10, third support rod 11 and fixed link 12, the first support bar 9, second support bar 10 and the equal level of third support rod 11 are set
It sets in the side of the separate handle 4 of the inner wall of main body 2, the lower section of first support bar 9 is arranged in the second support bar 10, described
The lower section of second support bar 10 is arranged in third support rod 11, and the fixed link 12 is vertically arranged, the first support bar 9,
One end of the close handle 4 of two support rods 10 and third support rod 11 is arranged in fixed link 12, the Power Component setting
In first support bar 9, one end of the clutch component is arranged in second support bar 10, and the other end of the clutch component is set
It sets on third support rod 11;
Wherein, after people lock smart lock, under the action of doorframe, propulsion power component is along first support bar
9 move right, later under the action of Power Component, push clutch component along second support bar 10 and third support rod 11 to
It moves right, so that electric power loop be made to disconnect, reduces the power consumption of smart lock, when people need to unlock, people are pushed away
Dynamic slip lid 1 moves up, so that clutch component is driven by slip lid 1, to make electric power loop close under the action of clutch component
It closes, to be powered by power supply to smart lock, to allow people to unlock smart lock by keyboard 3, to extend intelligence
The cruise duration of lock;
As in Figure 2-4, the Power Component includes runner 7, second spring 14, the second drive rod 8, limited block 16,
One sliding shoe 17, gag lever post 25, torsionspring 18 and rotating bar 19, the inside of first sliding shoe 17 is equipped with through-hole, described
First support bar 9 passes through the first sliding shoe 17, and second drive rod 8 is horizontally disposed, one end setting of second drive rod 8
In the top of the first sliding shoe 17, the runner 7 is hinged on the top of the other end of the second drive rod 8, one end of the runner 7
Across the outer wall of main body 2, the side of the close runner 7 of the first sliding shoe 17, the limited block 16 is arranged in the limited block 16
It is fixedly connected with first support bar 9, the second spring 14 is set in first support bar 9, the both ends of the second spring 14
It is separately positioned in fixed link 12 and the first sliding shoe 17, the rotating bar 19 is hinged on the lower section of the first sliding shoe 17, described
Gag lever post 25 is vertically provided at the side of the close runner 7 of the lower section of the first sliding shoe 17;
The clutch component includes the second sliding shoe 20, third sliding shoe 24, telescopic rod 22, the first spring 13, third bullet
Spring 23, connecting line 6, the first drive rod 5 and two contacts 15, the inside of the second sliding shoe 20 are equipped with through-hole, and described second
Support rod 10 passes through the second sliding shoe 20, and the inside of the third sliding shoe 24 is equipped with through-hole, and the third support rod 11 passes through
Third sliding shoe 24, the telescopic rod 22 is vertically arranged, and the upper end of the telescopic rod 22 is arranged on the second sliding shoe 20, described
The lower end of telescopic rod 22 is arranged on third sliding shoe 24, and the third spring 23 is set on telescopic rod 22, the third bullet
The both ends of spring 23 are separately positioned on the second sliding shoe 20 and third sliding shoe 24, and one of contact 15 is set in two contacts 15
Another contact 15 in the side of the close runner 7 of third sliding shoe 24, two contacts 15 is set to be arranged in third support rod 11
On, the top of the second support bar 10 is equipped with a groove 21, and the groove 21 is arranged in the separate of the second sliding shoe 20 and turns
The side of wheel 7, first spring 13 are set in second support bar 10, and the both ends of the third spring 23 are separately positioned on solid
In fixed pole 12 and the second sliding shoe 20, one end of first drive rod 5 is connect with slip lid 1, first drive rod 5 it is another
End is connect with one end of connecting line 6, and the other end of the connecting line 6 is arranged on the second sliding shoe 20;
Wherein, sliding by runner 7 and the second drive rod 8 driving first under the action of doorframe after smart lock is locked
Motion block 17 moves right along first support bar 9, while compressing second spring 14 by the first sliding shoe 17 and fixed link 12,
It rotate counterclockwise rotating bar 19 in a vertical state can only, thus in the work of the first sliding shoe 17
Under, the second sliding shoe 20 is driven to move right along second support bar 10 by rotating bar 19, while in the second sliding shoe 20
With the first spring 13 is compressed under the action of fixed link 12, when the second sliding shoe 20 moves right, driven by telescopic rod 22
Dynamic third sliding shoe 24 moves right along third support rod 11, so that two contacts 15 be made to separate, disconnects electric power loop, from
And the consumption of electric energy is reduced, when the second sliding shoe 20 is moved to the top of groove 21, in the effect of third spring 23
Under, so that the second sliding shoe 20 is moved to the inside of groove 21, so that rotating bar 19 be made to separate with the second sliding shoe 20, rotates later
Bar 19 continues to move right to the right of the second sliding shoe 20, under the action of groove 21, move the second sliding shoe 20 can not,
To make two contacts 15 be in an off state always, when people need to be unlocked by keyboard 3, people can be by cunning
1 upward sliding of lid thus under the action of connecting line 6, pulls the to drive the first drive rod 5 to move up by slip lid 1
Two sliding shoes 20 are moved upwards up to the outside of groove 21, to drive 20 edge of the second sliding shoe under the action of the first spring 13
Second support bar 10 be moved to the left, later under the action of telescopic rod 22, pass through the second sliding shoe 20 drive third sliding shoe
24 are moved to the left along third support rod 11, so that two contacts 15 be made to be closed, so that electric power loop be made to be closed, make power supply can be with
It powers to keyboard 3, to allow people that door is opened, after door is opened, doorframe disappears to the active force of runner 7, thus
Under the action of second spring 14, the first sliding shoe 17 of driving is moved to the left along first support bar 9, to pass through the first sliding
Block 17 drives rotating bar 19 to be moved to the left, and when rotating bar 19 is contacted with the second sliding shoe 20, rotating bar 19 turns counterclockwise
It is dynamic, so that the left side for alloing rotating bar 19 to be moved to the second sliding shoe 20 makes to rotate later under the action of torsionspring 18
Bar 19 restores vertical state, at the same the first sliding shoe 17 and limited block 16 against;
As shown in figure 5, the lubrication assembly includes sleeve 29, piston 30, driving assembly, third drive rod 31 and oil pipe
28, the top of lock core 26 is arranged in the sleeve 29, and the shape of the vertical cross-section of the sleeve 29 is U-shaped of the opening to side,
The driving component is arranged at the U-shaped opening of sleeve 29, and the inside of sleeve 29, the third transmission is arranged in the piston 30
One end of bar 31 is hinged on piston 30, and the other end of the third drive rod 31 is connect with driving assembly, the oil pipe 28
One end is connect with one end of the separate driving assembly of sleeve 29, and the other end of the oil pipe 28 is connect with lock core 26;
Wherein, under the control of single-chip microcontroller, timing drives driving assembly operation, to lead under the action of driving assembly
Crossing third drive rod 31 drives piston 30 to be moved to the left along sleeve 29, so that people passes through piston 30 for the lubrication inside sleeve 29
The inside of lock core 26 is squeezed into agent from oil pipe 28, to realize the lubrication to lock core 26, reduces the abrasion of lock core 26.
Preferably, the middle control component includes wireless signal transceiver module in order to improve the intelligence degree of smart lock
And single-chip microcontroller, the wireless signal transceiver module and monolithic mechatronics, smart lock is enable by wireless signal transceiver module
It establishes and communicates with mobile device, to allow people by mobile device remote control smart lock, to improve smart lock
Intelligence degree.
As shown in figure 5, the driving component includes motor 27 and turntable 32, the upper of lock core 26 is arranged in the motor 27
Side, the motor 27 are sequentially connected with turntable 32, and the other end of the third drive rod 31 is hinged on the separate turntable of turntable 32
At the position in 32 centers of circle;
Wherein, under the control of single-chip microcontroller, turntable 32 is driven to rotate by motor 27, to drive third by turntable 32
One end of drive rod 31 is moved to the left, to drive piston 30 to be moved to the left by third drive rod 31.
Preferably, in order to improve the accuracy controlled motor 27, the motor 27 is servo motor.
Preferably, in order to realize the control to on/off, the inside of the main body 2 is additionally provided with power supply, the power supply
Two-stage be electrically connected respectively with two contacts 15, can control the on-off of electric power loop by the on-off of two contacts 15, thus
Reduce the power consumption of smart lock.
Preferably, in order to realize the separation between the second sliding shoe 20 and rotating bar 19, the depth of the fluting 21 is big
In the length of the second sliding shoe 20 and 19 intersection of rotating bar, when the depth of fluting 21 is greater than the second sliding shoe 20 and rotating bar
When the length of 19 intersections, the distance that the second sliding shoe 20 moves down is greater than the second sliding shoe 20 and 19 weight of rotating bar
The length for closing part, to realize the separation between the second sliding shoe 20 and rotating bar 19.
Preferably, the making material of the connecting line 6 is rubber, since rubber has in order to increase the elasticity of connecting line 6
There is preferable elasticity, to increase the elasticity of connecting line 6, so that the distance for increase the second sliding shoe 20 rises less than slip lid 1
Apart from when, by the stretching of connecting line 6, reduce the influence to 1 moving distance of slip lid.
Preferably, in order to reduce the abrasion between gag lever post 25 and rotating bar 19, the close rotation of the gag lever post 25
It is additionally provided with buffer stopper on the side of bar 19, the interaction force between gag lever post 25 and rotating bar 19 is reduced by buffer stopper,
To reduce the abrasion between gag lever post 25 and rotating bar 19.
Preferably, in order to pull the second sliding shoe 20 to move down, the third spring 23 is in tensional state, when
When three springs 23 are in tensional state, third spring 23 generates a pulling force to the second sliding shoe 20, to pull second
Sliding shoe 20 is mobile to the inside of groove 21.
Preferably, the radius of the runner 7 is greater than the second sliding shoe in order to be moved to the left the second sliding shoe 20
The distance between 20 and fluting 21 lead to when the radius of runner 7 is greater than the distance between the second sliding shoe 20 and fluting 21
Crossing runner 7 can drive rotating bar to be moved to the right of the second sliding shoe 20, be moved to the left to reduce the second sliding shoe 20
During, influence of the rotating bar 19 to the second sliding shoe 20.
After people lock smart lock, under the action of doorframe, propulsion power component along first support bar 9 to the right
It is mobile, later under the action of Power Component, clutch component is pushed to move right along second support bar 10 and third support rod 11
It is dynamic, so that electric power loop be made to disconnect, reduce the power consumption of smart lock, when people need to unlock, people, which push, to be slided
Lid 1 moves up, so that clutch component is driven by slip lid 1, so that electric power loop is closed under the action of clutch component,
To be powered by power supply to smart lock, to allow people to unlock smart lock by keyboard 3, to extend smart lock
In cruise duration, under the control of single-chip microcontroller, timing drives driving assembly operation, thus under the action of driving assembly, by the
Three drive rods 31 driving piston 30 be moved to the left along sleeve 29, thus people by piston 30 by the lubricant inside sleeve 29 from
Oil pipe 28 squeezes into the inside of lock core 26, to realize the lubrication to lock core 26, reduces the abrasion of lock core 26.
Compared with prior art, by energy-saving mechanism, intelligence should be made based in the long-endurance smart lock of Internet of Things
When lock is in locked state, the electric power loop of smart lock can be disconnected, to reduce the power consumption of smart lock, be prolonged
In the cruise duration for having grown smart lock, compared with existing mechanism, the mechanism structure is ingenious, and failure rate is low, practical, not only such as
This, by lubricating structure, can timing lubricant is added to the inside of lock core 26, thus reduce the 26 each device in inside of lock core it
Between abrasion, to reduce the probability that smart lock breaks down, compared with existing mechanism, the mechanism structure is simple, reduces
Failure odds reduces the maintenance cost of smart lock.
Taking the above-mentioned ideal embodiment according to the present invention as inspiration, through the above description, relevant staff is complete
Various changes and amendments can be carried out without departing from the scope of the technological thought of the present invention' entirely.The technology of this invention
Property range is not limited to the contents of the specification, it is necessary to which the technical scope thereof is determined according to the scope of the claim.
Claims (10)
1. a kind of long-endurance smart lock based on Internet of Things, including slip lid (1), main body (2), keyboard (3), lock core (26)
With handle (4), in the top of the side of main body (2), the slip lid (1) is arranged in the close of main body (2) for keyboard (3) setting
The side of keyboard (3), in the inside of main body (2), the handle (4) is arranged in the close of main body (2) for lock core (26) setting
The middle part of the side of keyboard (3), the handle (4) connect with lock core (26), which is characterized in that further include energy-saving mechanism, lubrication
Mechanism and Zhong Kong mechanism, in the inside of main body (2), the lubricating structure is arranged on lock core (26) for the energy-saving mechanism setting,
The Zhong Kong mechanism is arranged in the inside of main body (2), and the keyboard (3) and lubricating structure are electrically connected with Zhong Kong mechanism;
The energy-saving mechanism includes Power Component, clutch component, first support bar (9), second support bar (10), third support rod
(11) it is horizontally set on fixed link (12), the first support bar (9), second support bar (10) and third support rod (11)
The side of the separate handle (4) of the inner wall of main body (2), the second support bar (10) are arranged in the lower section of first support bar (9),
The third support rod (11) is arranged in the lower section of second support bar (10), and the fixed link (12) is vertically arranged, and described first
One end of the close handle (4) of support rod (9), second support bar (10) and third support rod (11) is arranged at fixed link (12)
On, the Power Component is arranged on first support bar (9), and one end of the clutch component is arranged in second support bar (10)
On, the other end of the clutch component is arranged on third support rod (11);
The Power Component includes runner (7), second spring (14), the second drive rod (8), limited block (16), the first sliding shoe
(17), the inside of gag lever post (25), torsionspring (18) and rotating bar (19), first sliding shoe (17) is equipped with through-hole, institute
First support bar (9) are stated across the first sliding shoe (17), second drive rod (8) is horizontally disposed, second drive rod (8)
One end be arranged in the top of the first sliding shoe (17), the runner (7) is hinged on the upper of the other end of the second drive rod (8)
Side, one end of the runner (7) pass through the outer wall of main body (2), and leaning in the first sliding shoe (17) is arranged in the limited block (16)
The side of nearly runner (7), the limited block (16) are fixedly connected with first support bar (9), and the second spring (14) is set in
In first support bar (9), the both ends of the second spring (14) are separately positioned in fixed link (12) and the first sliding shoe (17),
The rotating bar (19) is hinged on the lower section of the first sliding shoe (17), and the gag lever post (25) is vertically provided at the first sliding shoe
(17) side of the close runner (7) of lower section;
The clutch component includes the second sliding shoe (20), third sliding shoe (24), telescopic rod (22), the first spring (13),
Three springs (23), connecting line (6), the first drive rod (5) and two contacts (15), the inside of the second sliding shoe (20) are equipped with
Through-hole, the second support bar (10) pass through the second sliding shoe (20), and the inside of the third sliding shoe (24) is equipped with through-hole, institute
Third support rod (11) are stated across third sliding shoe (24), the telescopic rod (22) is vertically arranged, the telescopic rod (22) it is upper
End is arranged on the second sliding shoe (20), and the lower end of the telescopic rod (22) is arranged on third sliding shoe (24), the third
Spring (23) is set on telescopic rod (22), and the both ends of the third spring (23) are separately positioned on the second sliding shoe (20) and
On three sliding shoes (24), close runner of one of contact (15) setting in third sliding shoe (24) in two contacts (15)
(7) side, another contact (15) is arranged on third support rod (11) in two contacts (15), the second support bar
(10) top is equipped with a groove (21), the groove (21) setting the second sliding shoe (20) separate runner (7) one
Side, first spring (13) are set on second support bar (10), and the both ends of the third spring (23) are separately positioned on solid
In fixed pole (12) and the second sliding shoe (20), one end of first drive rod (5) is connect with slip lid (1), first transmission
The other end of bar (5) is connect with one end of connecting line (6), and the other end of the connecting line (6) is arranged in the second sliding shoe (20)
On;
The lubrication assembly includes sleeve (29), piston (30), driving assembly, third drive rod (31) and oil pipe (28), described
Sleeve (29) is arranged in the top of lock core (26), and the shape of the vertical cross-section of the sleeve (29) is U-shaped of the opening to side, institute
It states driving assembly to be arranged at the U-shaped opening of sleeve (29), the piston (30) is arranged in the inside of sleeve (29), the third
One end of drive rod (31) is hinged on piston (30), and the other end of the third drive rod (31) is connect with driving assembly, institute
The one end for stating oil pipe (28) is connect with one end of the separate driving assembly of sleeve (29), the other end and lock core of the oil pipe (28)
(26) it connects.
2. the long-endurance smart lock based on Internet of Things as described in claim 1, which is characterized in that the middle control component
Including wireless signal transceiver module and single-chip microcontroller, the wireless signal transceiver module and monolithic mechatronics.
3. the long-endurance smart lock based on Internet of Things as described in claim 1, which is characterized in that the driving component
Including motor (27) and turntable (32), the motor (27) is arranged in the top of lock core (26), the motor (27) and turntable
(32) it is sequentially connected, the other end of the third drive rod (31) is hinged on the position in separate turntable (32) center of circle of turntable (32)
Place.
4. the long-endurance smart lock based on Internet of Things as claimed in claim 3, which is characterized in that the motor (27)
For servo motor.
5. the long-endurance smart lock based on Internet of Things as described in claim 1, which is characterized in that the main body (2)
Inside be additionally provided with power supply, the two-stage of the power supply is electrically connected with two contacts (15) respectively.
6. the long-endurance smart lock based on Internet of Things as described in claim 1, which is characterized in that the fluting (21)
Depth be greater than the second sliding shoe (20) and rotating bar (19) intersection length.
7. the long-endurance smart lock based on Internet of Things as described in claim 1, which is characterized in that the connecting line
(6) making material is rubber.
8. the long-endurance smart lock based on Internet of Things as described in claim 1, which is characterized in that the gag lever post
(25) buffer stopper is additionally provided on the side of close rotating bar (19).
9. the long-endurance smart lock based on Internet of Things as described in claim 1, which is characterized in that the third spring
(23) it is in tensional state.
10. the long-endurance smart lock based on Internet of Things as described in claim 1, which is characterized in that the runner (7)
Radius be greater than the second sliding shoe (20) and fluting the distance between (21).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
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| CN201810855492.0A CN108986284B (en) | 2018-07-31 | 2018-07-31 | Long-endurance intelligent lock based on Internet of things |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201810855492.0A CN108986284B (en) | 2018-07-31 | 2018-07-31 | Long-endurance intelligent lock based on Internet of things |
Publications (2)
| Publication Number | Publication Date |
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| CN108986284A true CN108986284A (en) | 2018-12-11 |
| CN108986284B CN108986284B (en) | 2020-11-27 |
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| CN201810855492.0A Active CN108986284B (en) | 2018-07-31 | 2018-07-31 | Long-endurance intelligent lock based on Internet of things |
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| Publication number | Publication date |
|---|---|
| CN108986284B (en) | 2020-11-27 |
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