CN108221279A - Door lock assembly, door panel assemblies and device for clothing processing - Google Patents

Door lock assembly, door panel assemblies and device for clothing processing Download PDF

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Publication number
CN108221279A
CN108221279A CN201711266420.4A CN201711266420A CN108221279A CN 108221279 A CN108221279 A CN 108221279A CN 201711266420 A CN201711266420 A CN 201711266420A CN 108221279 A CN108221279 A CN 108221279A
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CN
China
Prior art keywords
door
lock
lock core
oscillating rod
boss
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201711266420.4A
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Chinese (zh)
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CN108221279B (en
Inventor
张�杰
左猛
邵莹进
周震东
王传俊
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Wuxi Little Swan Electric Co Ltd
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Wuxi Little Swan Co Ltd
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Priority to CN201711266420.4A priority Critical patent/CN108221279B/en
Publication of CN108221279A publication Critical patent/CN108221279A/en
Application granted granted Critical
Publication of CN108221279B publication Critical patent/CN108221279B/en
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Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F37/00Details specific to washing machines covered by groups D06F21/00 - D06F25/00
    • D06F37/26Casings; Tubs
    • D06F37/28Doors; Security means therefor

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Main Body Construction Of Washing Machines And Laundry Dryers (AREA)

Abstract

The present invention proposes a kind of door lock assembly, door panel assemblies and device for clothing processing, wherein, door lock assembly includes:Lock housing;Oscillating rod is flexibly connected with lock housing by limiting the elastic construction of the amplitude of fluctuation of oscillating rod, and oscillating rod includes:Groove, set on the one end of oscillating rod far from lock housing;Lock core is rotatablely connected with lock housing by the first elastic component;Boss is connect with lock core, and in lock core moving process, boss is opposing stationary with lock core, and when boss is moved in groove, door lock assembly is in first state;Limiting section, it is connect with lock core, wherein, when lock core is rotated in a first direction, oscillating rod is swung under the action of limiting section so that boss crosses the side wall of groove, and lock core rotates in the second direction opposite to the first direction under the action of the first elastic component, to realize that door lock assembly is switched to the second state by first state.By technical scheme of the present invention, automatic unlocking or automatic locking can be realized, it is easy to use.

Description

Door lock assembly, door panel assemblies and device for clothing processing
Technical field
The present invention relates to air-conditioning technical field, in particular to a kind of door lock assembly, a kind of door panel assemblies and a kind of clothing Object processing unit.
Background technology
For roller washing machine in laundry processes, door can be automatic locking, and after washing clothes, door can be unlocked according to program setting, But relevant structure is only convenient for unlocked state by releasing process by lock-out state, door is in closed state, needs to use Whether family manually pulls out door, and for can not promptly and accurately unlocked by the position judgment door of door.
Invention content
The present invention is directed at least solve one of technical problem present in the prior art or the relevant technologies.
In view of this, it is an object of the present invention to provide a kind of door lock assemblies.
It is another object of the present invention to provide a kind of door panel assemblies.
A further object of the present invention is to provide a kind of device for clothing processing.
The technical solution of first aspect present invention provides a kind of door lock assembly, including:Lock housing;Oscillating rod leads to lock housing The elastic construction flexible connection of the amplitude of fluctuation of limitation oscillating rod is crossed, oscillating rod includes:Groove, set on oscillating rod far from lock housing One end;Lock core is rotatablely connected with lock housing by the first elastic component;Boss is connect with lock core, in lock core moving process, boss Opposing stationary with lock core, when boss is moved in groove, door lock assembly is in first state;Limiting section is connect with lock core, In, when lock core is rotated in a first direction, oscillating rod is swung under the action of limiting section so that boss crosses the side wall of groove, and Lock core rotates in the second direction opposite to the first direction under the action of the first elastic component, to realize door lock assembly by the first shape State is switched to the second state.
In the technical scheme, when boss is moved in groove, lock core and boss pass through in the first elastic component and oscillating rod It realizes static, it will be understood that the first elastic component is to the direction of the active force of lock core and oscillating rod to the direction of the active force of boss On the contrary, so as to make lock core and boss remains stationary together, lock core is made to be constantly in first state;Until lock core revolves along the first direction When turning, oscillating rod is swung under the action of limiting section, and elastic construction limits the amplitude of fluctuation of oscillating rod, makes oscillating rod swing process It neutralizing limiting section and keeps contact, boss is rotated together with lock core at this time, and the relative position of boss and oscillating rod changes, until Boss crosses the side wall of groove, and oscillating rod changes the direction of the active force of the first elastic component at this time, and lock core is in the first elastic component Under the action of rotate in the second direction opposite to the first direction, lock core to the second direction of rotation rotate during, realize Door lock assembly is switched to the second state by first state;When door lock assembly needs are switched to first state from the second state, rotation Rotation cores select direction of rotation to rotate to first, until boss reaches the top of recess sidewall, oscillating rod is in the effect of elastic construction Lower to be swung to close to the direction of lock core, the first elastic component makes lock core and boss be rotated along the second direction of rotation, enters boss recessed Slot realizes that door lock assembly has the second state to be switched to first state at this time.Wherein, when first state is unlocked state, i.e., the When two-state is lock-out state, lock core realizes certainly during being rotated under the action of the first elastic component along the second direction of rotation Dynamic locking, reduces the operating quantity during locking, makes user's use more convenient;When first state is lock-out state, i.e., When second state is unlocked state, lock core realizes during being rotated under the action of the first elastic component along the second direction of rotation Automatic unlocking reduces the operating quantity in releasing process, makes user's use more convenient.
What deserves to be explained is boss can be fixedly connected with lock core, can also be rotatablely connected with lock core, when boss and lock core When being fixedly connected, boss can bear larger power, and the reliability that boss is connect with lock core is higher, when boss and lock core rotation connect When connecing, boss can be convenient for reduce the frictional force between oscillating rod in lock core rotary course along oscillating rod surface pivots, make lock Core rotation is more smooth.Limiting section can be fixedly connected with lock core, can also be rotatablely connected with lock core, when limiting section and lock core are consolidated When connecting surely, limiting section can bear larger power, and the reliability that limiting section is connect with lock core is higher, when limiting section and lock core turn During dynamic connection, limiting section can be convenient for reduce the friction between oscillating rod in lock core rotary course along oscillating rod surface pivots Power makes lock core rotation more smooth.
Wherein it is preferred to when door lock assembly is in first state and the second state, oscillating rod is respectively positioned on initial position, And corresponding to initial position, there is no torque in elastic construction, so as to reduce the loss of elastic construction, increase elastic construction can By property and service life.
In the above-mentioned technical solutions, it is preferable that oscillating rod further includes:Limiting slot, set on oscillating rod close to one end of lock core, When lock core rotates in a second direction, boss moves in limiting slot.
In the technical scheme, boss enters after crossing the side wall of groove in limiting slot, so as to swing oscillating rod It is sequentially connected, the amplitude of fluctuation of oscillating rod can preferably be limited by realizing with rotary locking cylinder always in journey, limited The amplitude of fluctuation of slot and elastic construction collective effect limitation oscillating rod, reducing causes to collide lock housing because oscillating rod amplitude of fluctuation is excessive Noise or the excessive possibility that elastic construction is caused to fail of oscillating rod amplitude of fluctuation are generated, increases the reliable of door lock assembly work Property.
In the above-mentioned technical solutions, it is preferable that limiting section is the first hole;Oscillating rod further includes:Protrusion, door lock assembly are in During first state, protrusion is located in the first hole.
In the technical scheme, when door lock assembly is in first state, the protrusion of oscillating rod is located in the first hole, limitation The swing of oscillating rod when door lock assembly is in first state reduces the oscillating rod when door lock assembly is in first state and generates rolling Dynamic possibility so as to reduce because oscillating rod shaking causes lock core to generate the possibility of rotation, is in so as to increase door lock assembly Reliability during first state.
In the above-mentioned technical solutions, it is preferable that elastic construction includes:Pedestal is fixedly connected with lock housing;Second elastic component, It is fixedly connected with the one end of pedestal far from lock housing;Spring pocket, the both sides of spring pocket one end respectively with oscillating rod and the second elastic component It is fixedly connected, the other end is socketed on outside part of base.
In the technical scheme, one end of the second elastic component is fixedly connected by pedestal with lock housing, and the other end passes through second Spring pocket is fixedly connected with oscillating rod, therefore, the bullet that elastic construction is generated by the second elastic component in oscillating rod swing process Power limits the amplitude of fluctuation of oscillating rod, it will be understood that lock core is not being influenced normally under the premise of rotation, it can be by adjusting the The coefficient of elasticity of two elastic components adjusts restriction effect of the elastic construction to oscillating rod amplitude of fluctuation.Second spring covers one end simultaneously It is socketed on outside part of base, so as to which the second elastic component be separated with external environment, reduces the possibility that the second elastic component generates corrosion Property, so as to increase the reliability of the second elastic component, the possibility of oscillating rod failure is reduced, and then improve the reliable of door lock assembly work Property.
Wherein it is preferred to when door lock assembly is in first state and the second state, oscillating rod is respectively positioned on initial position, And correspond to initial position, torque is not present in the second elastic component.
In the above-mentioned technical solutions, it is preferable that further include:Driving device is fixedly connected with lock housing and is driven company with lock core It connects, driving device is used to that lock core to be driven to be rotated in a first direction.
In the technical scheme, when door lock assembly is switched to the second state by first state, driving device driving lock core It is rotated in a first direction, so as to which boss be made to cross groove, lock core is able to rotate in a second direction under the action of the first elastic component, Realize that door lock assembly is switched to the second state by first state.
In the above-mentioned technical solutions, it is preferable that driving device is hot-wire coil.
In the technical scheme, hot-wire coil forms magnetic field after being powered, so as to make lock core edge under the action of magnetic force First direction of rotation rotates, and then door lock assembly is made to complete to be switched to the second state, hot-wire coil occupied space by first state Small, without noise, reliability is high, and, convenient for simplifying the structure of door lock assembly, subtracts without excessive connection structure between lock core The volume of few door lock assembly.
In the above-mentioned technical solutions, it is preferable that further include:Signal receiver, for receiving door open command;Microcontroller, It is electrically connected with driving device and signal receiver, microcontroller controls driving device in response to corresponding to the signal of door open command Driving lock core is rotated in a first direction.
In the technical scheme, microcontroller and signal receiver and driving device electrical connection, are needing to fill door lock It puts when being switched to the second state by first state, signal receiver receives door open command, and transmits to correspond to microcontroller and open The signal of door instruction, microcontroller receive and respond to the signal corresponding to door open command, control driving device driving lock core edge First direction rotates, so that door lock assembly is switched to the second state by first state.
In the above-mentioned technical solutions, it is preferable that oscillating rod, lock core, boss and limiting section are set on inside lock housing.
In the technical scheme, oscillating rod, lock core, boss and limiting section are set on inside lock housing, it will be understood that lock housing will Oscillating rod, lock core, boss and limiting section and the external world separate, and on the one hand the extraneous dust of reduction or water, which enter, makes swing inside lock housing The possibility of corrosion occurs for bar, lock core, boss and limiting section, increases the reliability of oscillating rod, lock core, boss and limiting section, carries On the other hand it is dry because occurring with other structures to reduce oscillating rod, lock core, boss and limiting section for the service life of high door lock assembly It relates to and the possibility of cisco unity malfunction.
The technical solution of second aspect of the present invention provides a kind of door panel assemblies, includes the door of any of the above-described technical solution Locking device, door panel assemblies further include:Doorframe is fixedly connected with the lock housing of door lock assembly;Door-plate is rotatablely connected with doorframe;Gate stop, It is fixedly connected with door-plate, gate stop includes:Second hole, set on side of the gate stop far from door-plate, wherein, on the lock core edge of door lock assembly When preset direction rotates, the latch hook of lock core enters in the second hole to realize the locking of door-plate and doorframe.
In the technical scheme, when lock core is rotated according to preset direction, lock hook is rotated together with lock core, so as to make lock hook into And in the second hole, lock core is realized with gate stop and is locked at this time, i.e. door lock assembly is realized with door-plate and locked, due to door lock assembly and doorframe It is fixedly connected, therefore, door-plate is realized with doorframe and locked;Similarly, when needing unlock, lock core is according to the side opposite with preset direction To rotation, and then lock hook is made to be produced from the second hole, lock core is made to be realized with gate stop and is unlocked, i.e., door-plate is realized with doorframe and unlocked.
It is also pointed out that when, lock core can by the cooperation with the first elastic component during doorframe and door unlock by door Hook pops up, i.e., by door automatic spring, can either make user will not door pull out, reduce user's operation amount, and user can be convenient for Judge whether door unlocks, increase the convenience that user uses.
In the above-mentioned technical solutions, it is preferable that lock housing includes the opening through lock housing, wherein, it is open to wear gate stop Cross lock housing.
In the technical scheme, lock housing includes the opening through lock housing, so that gate stop is by being open and lock housing opposite side Lock core realizes cooperation.
Wherein it is preferred to oscillating rod, lock core, boss and limiting section are set on inside lock housing, at this time by opening inside lock housing Mouthful be in communication with the outside, and in door-plate and doorframe lock timing, gate stop is set in opening, at this time inside lock housing with extraneous connection compared with It is few, reduce dust or water enters inside lock housing the possibility for making oscillating rod, lock core, boss and limiting section that corrosion occur, increase Oscillating rod, lock core, boss and limiting section reliability, improve the service life of door lock assembly.
The technical solution of third aspect present invention provides a kind of device for clothing processing, including any of the above-described technical solution Door lock assembly.
In the technical scheme, by using the door lock assembly of any of the above-described technical solution, pass through lock core, boss, bullet Property structure, the first elastic portion, limiting section and oscillating rod cooperation, realize automatic unlocking or automatic locking, increase clothing processing dress Put the convenience during use.
The additional aspect and advantage of the present invention will become practice apparent or by the present invention in following description section Recognize.
Description of the drawings
Fig. 1 shows the front view of the door lock assembly of the embodiment of the present invention 1;
Fig. 2 shows front views when being in the lock state of the door lock assembly of the embodiment of the present invention 1;
Fig. 3 show the door lock assembly of the embodiment of the present invention 1 it is in the unlocked state when front view;
Fig. 4 shows the front view of the oscillating rod of the door lock assembly of the embodiment of the present invention 1;
Fig. 5 shows the front view of the door panel assemblies of the embodiment of the present invention 12;
Fig. 6 shows the front view of the door panel assemblies of the embodiment of the present invention 12;
Fig. 7 shows the vertical view of the device for clothing processing of the embodiment of the present invention 15.
Wherein, the correspondence in Fig. 1 to Fig. 7 between reference numeral and component names is:
10 door lock assemblies, 102 lock housings, 1022 openings, 104 oscillating rods, 1042 grooves, 1044 limiting slots, 106 elasticity knots Structure, 1062 pedestals, 1,064 second elastic components, 1066 spring pockets, 108 lock cores, 1082 latch hooks, 110 first elastic components, 112 boss, 114 limiting sections, 116 driving devices, 20 door panel assemblies, 202 door-plates, 204 gate stops, 2,042 second holes.
Specific embodiment
It is below in conjunction with the accompanying drawings and specific real in order to be more clearly understood that the above objects, features and advantages of the present invention Mode is applied the present invention is further described in detail.It should be noted that in the absence of conflict, the implementation of the application Feature in example and embodiment can be combined with each other.
Many details are elaborated in the following description to facilitate a thorough understanding of the present invention, still, the present invention may be used also To be implemented using other different from other modes described here, therefore, protection scope of the present invention is not by described below Specific embodiment limitation.
Referring to Fig. 1 to Fig. 7 descriptions according to some embodiments of the present invention.
Embodiment 1:
The present embodiment proposes a kind of door lock assembly 10, including:Lock housing 102;Oscillating rod 104 passes through limitation with lock housing 102 The elastic construction 106 of the amplitude of fluctuation of oscillating rod 104 is flexibly connected, and oscillating rod 104 includes:Groove 1042, set on oscillating rod 104 One end far from lock housing 102;Lock core 108 is rotatablely connected with lock housing 102 by the first elastic component 110;Boss 112, with lock core 108 are fixedly connected, and when boss 112 is moved in groove 1042, door lock assembly 10 is in first state;Limiting section 114, with lock Core 108 is fixedly connected, wherein, when lock core 108 is rotated in a first direction, oscillating rod 104 is swung under the action of limiting section 114 So that boss 112 crosses the side wall of groove 1042, and lock core 108 edge and first direction phase under the action of the first elastic component 110 Anti- second direction rotation, to realize that door lock assembly 10 is switched to the second state by first state.
Wherein, in the present embodiment, first state is unlocked state, and the second state is lock-out state, and the first elastic component 110 is Torsional spring.
Fig. 1 shows the front view of the door lock assembly 10 of the present embodiment, and Fig. 2 shows the door lock assemblies 10 of the present embodiment Front view when being in the lock state, Fig. 3 show the door lock assembly 10 of the present embodiment it is in the unlocked state when front view, Fig. 4 shows the front view of the oscillating rod 104 of the door lock assembly 10 of the present embodiment.
As shown in Figures 1 to 4, in the present embodiment, when boss 112 is moved in groove 1042, lock core 108 and boss 112 It is static by being realized in torsional spring and oscillating rod 104, it will be understood that torsional spring is to the direction of the active force of lock core 108 and oscillating rod 104 Direction to the active force of boss 112 makes lock core 108 always on the contrary, so as to make lock core 108 and boss 112 remains stationary together It is in the lock state;Until when lock core 108 is rotated in a first direction, oscillating rod 104 is swung under the action of limiting section 114, bullet Property structure 106 limit the amplitude of fluctuation of oscillating rod 104, make in 104 swing process of oscillating rod and limiting section 114 keep contact, this When boss 112 rotated together with lock core 108, the relative position of boss 112 and oscillating rod 104 changes, until boss 112 gets over The side wall of groove 1042 is crossed, oscillating rod 104 changes the direction of the active force of torsional spring at this time, and lock core 108 is under the action of torsional spring It rotates in the second direction opposite to the first direction, lock core 108 realizes door lock dress during being rotated to the second direction of rotation It puts 10 and unlocked state is switched to by lock-out state;When door lock assembly 10 needs to be switched to lock-out state from unlocked state, rotation Lock core 108 selects direction of rotation to rotate to first, until boss 112 reaches the top of 1042 side wall of groove, oscillating rod 104 is in elasticity It is swung under the action of structure 106 to close to the direction of lock core 108, torsional spring makes lock core 108 and boss 112 be revolved along the second direction of rotation Turn, boss 112 is made to enter groove 1042, realize that door lock assembly 10 has unlocked state to be switched to lock-out state at this time.Lock core 108 exists Automatic unlocking is realized during being rotated under the action of torsional spring along the second direction of rotation reduces operating quantity in releasing process, Make user's use more convenient.
Wherein, when boss 112 and limiting section 114 are fixedly connected with lock core 108, boss 112 and limiting section 114 can be held By larger power, the reliability that boss 112 and limiting section 114 are connect with lock core 108 is higher.
Embodiment 2:
On the basis of embodiment 1, first state is lock-out state, and the second state is unlocked state.
In the present embodiment, first state is unlocked state, and the second state is lock-out state, and lock core 108 is in the first elastic component Under the action of 110 along the second direction of rotation rotate during realize it is automatic locking, reduce locking during operating quantity, Make user's use more convenient.
Embodiment 3:
On the basis of embodiment 1, boss 112 is rotatablely connected with lock core 108, and limiting section 114 connects with the rotation of lock core 108 It connects.
In the present embodiment, when boss 112 and limiting section 114 are rotatablely connected with lock core 108, boss 112 and limit can be convenient for The frictional force between oscillating rod 104 in 108 rotary course of lock core is reduced, makes lock along 104 surface pivots of oscillating rod in position portion 114 Core 108 rotates more smooth.
Embodiment 4:
On the basis of embodiment 1, when door lock assembly 10 is in first state and the second state, 104 equal position of oscillating rod In initial position, and correspond to initial position, torque is not present in elastic construction 106.
In the present embodiment, when door lock assembly 10 is in first state and the second state, oscillating rod 104 is respectively positioned on start bit It puts, and corresponds to initial position, there is no torques in elastic construction 106, so as to reduce the loss of elastic construction 106, increase bullet The reliability and service life of property structure 106.
Embodiment 5:
On the basis of embodiment 1 to 4, oscillating rod 104 further includes:Limiting slot 1044, set on oscillating rod 104 close to lock core 108 one end, when lock core 108 rotates in a second direction, boss 112 moves in limiting slot 1044.
In the present embodiment, boss 112 enters after crossing the side wall of groove 1042 in limiting slot 1044, so as to make oscillating rod 104 are sequentially connected in swing process with rotary locking cylinder 108 by realizing always, can to the amplitude of fluctuation of oscillating rod 104 into The amplitude of fluctuation of the preferable limitation of row, limiting slot 1044 and 106 collective effect of elastic construction limitation oscillating rod 104, is reduced because of pendulum 104 amplitude of fluctuation of lever is excessive to lead to collide that lock housing 102 generates noise or 104 amplitude of fluctuation of oscillating rod is excessive leads to elastic construction The possibility of 106 failures increases the reliability that door lock assembly 10 works.
Embodiment 6:
On the basis of embodiment 5, limiting section 114 is the first hole;Oscillating rod 104 further includes:Protrusion, at door lock assembly 10 When first state, protrusion is located in the first hole.
In the present embodiment, when door lock assembly 10 is in first state, the protrusion of oscillating rod 104 is located in the first hole, limit The swing of oscillating rod 104 when door lock assembly 10 is in first state has been made, has reduced and is put when door lock assembly 10 is in first state Lever 104 generates the possibility shaken, so as to reduce because oscillating rod 104 shakes the possibility that lock core 108 is caused to generate rotation, from And increase reliability when door lock assembly 10 is in first state.
Embodiment 7:
On the basis of embodiment 6, elastic construction 106 includes:Pedestal 1062 is fixedly connected with lock housing 102;Second elasticity Part 1064 is fixedly connected with the one end of pedestal 1062 far from lock housing 102;Spring pocket 1066, the both sides point of 1066 one end of spring pocket It is not fixedly connected with 104 and second elastic component 1064 of oscillating rod, the other end is socketed on outside part of base 1062.
The second elastic component 1064 is spring in the present embodiment.
In the present embodiment, one end of spring is fixedly connected by pedestal 1062 with lock housing 102, and the other end passes through second spring Set 1066 is fixedly connected with oscillating rod 104, and therefore, elastic construction 106 is generated by spring in 104 swing process of oscillating rod Elastic force limits the amplitude of fluctuation of oscillating rod 104, it will be understood that is not influencing lock core 108 normally under the premise of rotation, Ke Yitong The coefficient of elasticity of adjustment spring is crossed to adjust restriction effect of the elastic construction 106 to 104 amplitude of fluctuation of oscillating rod.Second bullet simultaneously Spring covers 1066 one end and is socketed on outside part of base 1062, so as to which spring and external environment be separated, reduces spring and generates corrosion Possibility so as to increase the reliability of spring, reduces the possibility that oscillating rod 104 fails, and then improves what door lock assembly 10 worked Reliability.
Embodiment 8:
On the basis of embodiment 7, further include:Driving device 116 is fixedly connected with lock housing 102 and is driven with lock core 108 Connection, driving device 116 are used to that lock core 108 to be driven to be rotated in a first direction.
Wherein, driving device 116 is motor, and motor is connect with cam by belt.
In the present embodiment, when door lock assembly 10 is switched to the second state by first state, motor is driven by belt to be locked Core 108 is rotated in a first direction, and so as to which boss 112 be made to cross groove 1042, subsequent motor is out of service, and lock core 108 is able to It is rotated in a second direction under the action of first elastic component 110, realizes that door lock assembly 10 is switched to the second state by first state.
Embodiment 9:
On the basis of embodiment 8, driving device 116 is hot-wire coil.
In the present embodiment, hot-wire coil forms magnetic field after being powered, so as to make lock core 108 under the action of magnetic force along the One direction of rotation rotates, and then door lock assembly 10 is made to complete to be switched to the second state, hot-wire coil occupied space by first state Small, without noise, reliability is high, and without excessive connection structure between lock core 108, convenient for simplifying the knot of door lock assembly 10 Structure reduces the volume of door lock assembly 10.
Embodiment 10:
On the basis of embodiment 9, further include:Signal receiver, for receiving door open command;Microcontroller, with driving Device 116 and signal receiver electrical connection, microcontroller control driving device 116 in response to corresponding to the signal of door open command Driving lock core 108 is rotated in a first direction.
Wherein, microcontroller is microcontroller.
In the present embodiment, microcontroller and signal receiver and driving device 116 are electrically connected, and are needing to make door lock assembly 10 When being switched to the second state by first state, signal receiver receives door open command, and transmits to correspond to open the door to microcontroller and refer to The signal of order, microcontroller receive and respond to the signal corresponding to door open command, and control driving device 116 drives 108 edge of lock core First direction rotates, so that door lock assembly 10 is switched to the second state by first state.
Embodiment 11:
On the basis of embodiment 10, oscillating rod 104, lock core 108, boss 112 and limiting section 114 are set on lock housing 102 It is internal.
In the present embodiment, oscillating rod 104, lock core 108, boss 112 and limiting section 114 are set on inside lock housing 102, can be with Understand, lock housing 102 separates oscillating rod 104, lock core 108, boss 112 with limiting section 114 with the external world, on the one hand reduces the external world Dust or water enter the possibility for making oscillating rod 104, lock core 108, boss 112 that corrosion occur with limiting section 114 inside lock housing 102 Property, increase the reliability of oscillating rod 104, lock core 108, boss 112 and limiting section 114, improve the service life of door lock assembly 10, On the other hand reducing oscillating rod 104, lock core 108, boss 112 and limiting section 114 cannot when being interfered with other structures The possibility of normal work.
Embodiment 12:
The present embodiment proposes a kind of 202 component 20 of door-plate, the door lock assembly 10 including any of the above-described embodiment, door-plate 202 components 20 further include:Doorframe is fixedly connected with the lock housing 102 of door lock assembly 10;Door-plate 202 is rotatablely connected with doorframe;Door Hook 204 is fixedly connected with door-plate 202, and gate stop 204 includes:Second hole 2042, set on side of the gate stop 204 far from door-plate 202, Wherein, when the lock core 108 of door lock assembly 10 is rotated along preset direction, the latch hook 1082 of lock core 108 enters in the second hole 2042 To realize the locking of door-plate 202 and doorframe.
Fig. 5 shows the front view of 202 component 20 of door-plate of the present embodiment, and Fig. 6 shows 202 groups of the door-plate of the present embodiment The front view of part 20.
As shown in Figure 5 and Figure 6, in the present embodiment, when lock core 108 is rotated according to preset direction, lock hook and lock core 108 are together Rotation, so as to make in lock hook and then the second hole 2042, lock core 108 is realized with gate stop 204 and is locked at this time, i.e. door lock assembly 10 and door Plate 202 realizes locking, since door lock assembly 10 is fixedly connected with doorframe, door-plate 202 is realized with doorframe and is locked;Similarly, exist When needing unlock, lock core 108 is rotated according to the direction opposite with preset direction, and then lock hook is made to be produced from the second hole 2042, Lock core 108 and gate stop 204 is realized to unlock, i.e., door-plate 202 is realized with doorframe and is unlocked, with rear lock core 108 by with the first elasticity The cooperation of part 110 pops up gate stop 204 during doorframe and door unlock, i.e., by door automatic spring, can either make user not Will door pull out, reduce user's operation amount, and can judge whether door unlocks convenient for user, the convenience that increase user uses.
Embodiment 13:
On the basis of embodiment 12, lock housing 102 includes the opening 1022 through lock housing 102, wherein, opening 1022 is used for Gate stop 204 is made to pass through lock housing 102.
In the present embodiment, lock housing 102 include through lock housing 102 opening 1022 so that gate stop 204 by opening 1022 with The lock core 108 of 102 opposite side of lock housing realizes cooperation.
Embodiment 14:
On the basis of embodiment 13, oscillating rod 104, lock core 108, boss 112 and limiting section 114 are set on lock housing 102 It is internal.
In the present embodiment, oscillating rod 104, lock core 108, boss 112 are set on inside lock housing 102 with limiting section 114, at this time It is in communication with the outside inside lock housing 102 by opening 1022, and in door-plate 202 and doorframe lock timing, gate stop 204 is set on opening 1022 In, the inside of lock housing 102 and the connection in the external world are less at this time, reduce dust or water enter inside lock housing 102 make oscillating rod 104, The possibility of corrosion occurs with limiting section 114 for lock core 108, boss 112, increases oscillating rod 104, lock core 108, boss 112 and limit The reliability in position portion 114 improves the service life of door lock assembly 10.
Embodiment 15:
A kind of device for clothing processing is present embodiments provided, the door lock assembly 10 including any of the above-described embodiment.
Fig. 7 shows the vertical view of the device for clothing processing of the present embodiment.
As shown in fig. 7, in the present embodiment, by using the door lock assembly 10 of any of the above-described embodiment, pass through lock core 108th, the cooperation of boss 112, elastic construction 106, the first elastic portion, limiting section 114 and oscillating rod 104, realize automatic unlocking or It is automatic locking, increase the convenience during device for clothing processing use.
Technical scheme of the present invention is described in detail above in association with attached drawing, by technical scheme of the present invention, by lock core, Automatic unlocking or automatic locking is realized in the cooperation of boss, elastic construction, the first elastic portion, limiting section and oscillating rod, increases door lock Convenience during device use.
In the present invention, term " first ", " second ", " third " are only used for the purpose described, and it is not intended that instruction Or imply relative importance;Term " multiple " then refers to two or more, unless otherwise restricted clearly.Term " installation ", The terms such as " connected ", " connection ", " fixation " should all be interpreted broadly, for example, " connection " can be fixedly connected or can Dismantling connection is integrally connected;" connected " can be directly connected, and can also be indirectly connected by intermediary.For this For the those of ordinary skill in field, the concrete meaning of above-mentioned term in the present invention can be understood as the case may be.
In description of the invention, it is to be understood that the instructions such as term " on ", " under ", "left", "right", "front", "rear" Orientation or position relationship are based on orientation shown in the drawings or position relationship, are for only for ease of the description present invention and simplification is retouched It states rather than indicates or imply signified device or unit must have specific direction, with specific azimuth configuration and operation, It is thus impossible to it is interpreted as limitation of the present invention.
In the description of this specification, the description of term " one embodiment ", " some embodiments ", " specific embodiment " etc. Mean to combine at least one reality that the particular features, structures, materials, or characteristics that the embodiment or example describe are contained in the present invention It applies in example or example.In the present specification, schematic expression of the above terms are not necessarily referring to identical embodiment or reality Example.Moreover, description particular features, structures, materials, or characteristics can in any one or more embodiments or example with Suitable mode combines.
It these are only the preferred embodiment of the present invention, be not intended to restrict the invention, for those skilled in the art For member, the invention may be variously modified and varied.Any modification for all within the spirits and principles of the present invention, being made, Equivalent replacement, improvement etc., should all be included in the protection scope of the present invention.

Claims (11)

1. a kind of door lock assembly, which is characterized in that including:
Lock housing;
Oscillating rod is flexibly connected, the swing with the lock housing by limiting the elastic construction of the amplitude of fluctuation of the oscillating rod Bar includes:
Groove, set on the one end of the oscillating rod far from the lock housing;
Lock core is rotatablely connected with the lock housing by the first elastic component;
Boss is connect with the lock core, and in the lock core moving process, the boss and the lock core are opposing stationary, in institute When stating boss and being moved in the groove, the door lock assembly is in first state;
Limiting section is connect with the lock core,
Wherein, when the lock core is rotated in a first direction, the oscillating rod is swung under the action of the limiting section so that institute State the side wall that boss crosses the groove, and the lock core edge and first direction phase under the action of first elastic component Anti- second direction rotation, to realize that the door lock assembly is switched to the second state by the first state.
2. door lock assembly according to claim 1, which is characterized in that the oscillating rod further includes:
Limiting slot, set on the oscillating rod close to one end of the lock core, the lock core along the second direction rotate when, it is described Boss moves in the limiting slot.
3. door lock assembly according to claim 1, which is characterized in that the limiting section is the first hole;
The oscillating rod further includes:
Protrusion, when the door lock assembly is in the first state, the protrusion is located in first hole.
4. door lock assembly according to claim 1, which is characterized in that the elastic construction includes:
Pedestal is fixedly connected with the lock housing;
Second elastic component is fixedly connected with the one end of the pedestal far from the lock housing;
Spring pocket, the both sides of described spring pocket one end are fixedly connected respectively with the oscillating rod and second elastic component, another End cap is connected to outside the pedestal of part.
5. door lock assembly according to claim 1, which is characterized in that further include:
Driving device is fixedly connected with the lock housing and is sequentially connected with the lock core, and the driving device is described for driving Lock core is rotated along the first direction.
6. door lock assembly according to claim 5, which is characterized in that the driving device is hot-wire coil.
7. the door lock assembly according to any one of claim 5, which is characterized in that further include:
Signal receiver, for receiving door open command;
Microcontroller is electrically connected with the driving device and the signal receiver, and the microcontroller is in response to corresponding to The signal of the door open command controls the driving device that the lock core is driven to be rotated along the first direction.
8. door lock assembly according to any one of claim 1 to 7, which is characterized in that the oscillating rod, the lock core, The boss is set on inside the lock housing with the limiting section.
9. a kind of door panel assemblies, which is characterized in that including door lock assembly described in any item of the claim 1 to 8, the door-plate Component further includes:
Doorframe is fixedly connected with the lock housing of the door lock assembly;
Door-plate is rotatablely connected with the doorframe;
Gate stop is fixedly connected with the door-plate, and the gate stop includes:
Second hole, set on side of the gate stop far from the door-plate,
Wherein, when the lock core of the door lock assembly is rotated along preset direction, the latch hook of the lock core enters in second hole To realize the locking of the door-plate and the doorframe.
10. door panel assemblies according to claim 9, which is characterized in that lock housing includes the opening through the lock housing,
Wherein, it is described to be open that the gate stop is made to pass through the lock housing.
11. a kind of device for clothing processing, which is characterized in that including door lock assembly described in any item of the claim 1 to 8.
CN201711266420.4A 2017-12-05 2017-12-05 Door lock device, door panel assembly and clothes treatment device Active CN108221279B (en)

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Application Number Priority Date Filing Date Title
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Cited By (2)

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Publication number Priority date Publication date Assignee Title
CN110541288A (en) * 2019-10-16 2019-12-06 宁波国达科技有限公司 Safety lock of barrel cover of drying machine
WO2022250289A1 (en) * 2021-05-27 2022-12-01 삼성전자주식회사 Washing machine and control method therefor

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CN201261993Y (en) * 2008-08-15 2009-06-24 顾惠星 Door lock of ice house
CN201420183Y (en) * 2008-10-22 2010-03-10 金羚电器有限公司 Washing machine cover gate lock and washing machine utilizing same
CN103161363A (en) * 2012-12-24 2013-06-19 刘晓颖 Door lock mechanism
CN104862924A (en) * 2014-02-26 2015-08-26 海尔集团公司 Washing machine door lock device and control method
CN107245845A (en) * 2017-08-10 2017-10-13 温州天健电器有限公司 A kind of door lock of washing machine

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Publication number Priority date Publication date Assignee Title
DE2838175C2 (en) * 1978-09-01 1986-04-03 Bauknecht Hausgeräte GmbH, 7000 Stuttgart Closure for a dishwasher
CN201261993Y (en) * 2008-08-15 2009-06-24 顾惠星 Door lock of ice house
CN201420183Y (en) * 2008-10-22 2010-03-10 金羚电器有限公司 Washing machine cover gate lock and washing machine utilizing same
CN103161363A (en) * 2012-12-24 2013-06-19 刘晓颖 Door lock mechanism
CN104862924A (en) * 2014-02-26 2015-08-26 海尔集团公司 Washing machine door lock device and control method
CN107245845A (en) * 2017-08-10 2017-10-13 温州天健电器有限公司 A kind of door lock of washing machine

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110541288A (en) * 2019-10-16 2019-12-06 宁波国达科技有限公司 Safety lock of barrel cover of drying machine
CN110541288B (en) * 2019-10-16 2024-03-08 宁波国达科技有限公司 Barrel cover safety lock of spin dryer
WO2022250289A1 (en) * 2021-05-27 2022-12-01 삼성전자주식회사 Washing machine and control method therefor

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