CN107630601B - Intelligent electronic lock and suitcase - Google Patents

Intelligent electronic lock and suitcase Download PDF

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Publication number
CN107630601B
CN107630601B CN201610569630.XA CN201610569630A CN107630601B CN 107630601 B CN107630601 B CN 107630601B CN 201610569630 A CN201610569630 A CN 201610569630A CN 107630601 B CN107630601 B CN 107630601B
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China
Prior art keywords
push rod
shell
button
fixing
assembly
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CN201610569630.XA
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CN107630601A (en
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请求不公布姓名
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Kuang Chi Intelligent Photonic Technology Ltd
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Kuang Chi Intelligent Photonic Technology Ltd
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Priority to CN201610569630.XA priority Critical patent/CN107630601B/en
Priority to JP2019502748A priority patent/JP6854338B2/en
Priority to PCT/CN2017/092068 priority patent/WO2018014739A1/en
Priority to EP17830373.1A priority patent/EP3489440B1/en
Priority to KR1020197004465A priority patent/KR102128930B1/en
Priority to US16/319,253 priority patent/US11299915B2/en
Publication of CN107630601A publication Critical patent/CN107630601A/en
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Publication of CN107630601B publication Critical patent/CN107630601B/en
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Abstract

The invention relates to the technical field of intelligent locks, and provides an intelligent electronic lock and a suitcase, wherein the intelligent electronic lock comprises a shell, a lock core assembly and two fixing assemblies, wherein the shell is formed by enclosing a front shell and a rear shell and is provided with a containing cavity, the lock core assembly is arranged in the containing cavity, the two fixing assemblies are respectively and correspondingly positioned at the upper part and the lower part of the back of the rear shell, a buckling structure buckled with one fixing assembly is arranged on the shell, a key assembly buckled with the other fixing assembly is arranged on the shell, the fixing assembly buckled with the key assembly is fixedly connected with the shell, an inductor for receiving a light control signal is arranged on a panel of the front shell, a circuit board assembly for converting the light signal into an electric signal is arranged in the containing cavity, and the other fixing assembly pushes the key assembly to unlock with the key assembly in the front-rear direction when the key assembly is pressed under the control of the circuit board assembly. The invention solves the problems of low safety and complicated setting of the coded lock in the prior art.

Description

Intelligent electronic lock and suitcase
Technical Field
The invention relates to the technical field of intelligent locks, in particular to an intelligent electronic lock and a suitcase.
Background
The common suitcase lock adopts a coded lock formed by numbers to realize the unlocking function, and the coded lock has the following defects:
1. the safety is low: because the coded lock mostly adopts 3 digits, under the condition that the code is unknown, the code can still be obtained in a multi-test mode, and unlocking is realized;
2. the setting is complicated: because the initial password of the password lock is mostly defaulted to be '000', if the password lock is set to be other numbers, the password lock is easy to forget for a long time, and the shape of the password lock is similar to that of the password lock;
3. the function is single: the common coded lock can only meet the two states of opening and closing because the lock is unlocked by a mechanical mode, and cannot expand other functions.
Disclosure of Invention
The invention aims to provide an intelligent electronic lock and a suitcase, and aims to solve the problems of low safety and complicated arrangement of a coded lock in the prior art.
In order to solve the technical problems, the technical scheme of the invention is as follows: the utility model provides an intelligent electronic lock, includes by preceding shell and backshell enclose and close the casing that forms have hold the chamber, arrange in hold the intracavity lock core subassembly, and two fixed subassembly, two fixed subassemblies are located respectively corresponding upper portion and the lower part department at backshell back, be equipped with on the casing with one of them fixed subassembly lock the buckling structure of lock in the upper and lower direction, be equipped with on the casing with another fixed subassembly is detained the button subassembly of locking in the fore-and-aft direction, with button subassembly detain the locking fixed subassembly with casing fixed connection, be equipped with on the panel of preceding shell and be used for receiving the inductor of light control signal, hold the intracavity and be equipped with be used for with the optical signal that the inductor received is converted into the circuit board subassembly of electric signal, lock core subassembly is in circuit board subassembly control effect down remove so that press when the button subassembly another fixed subassembly is in the fore-and-aft direction promotes the button subassembly is unblock with it.
Optionally, lock core subassembly includes the electro-magnet of vertical setting, locates electro-magnet top or bottom and can be in the electro-magnet promotes down in the vertical push rod of upper and lower direction, set up in the horizontal push rod and the first elastic component of top or bottom of vertical push rod, the one end of horizontal push rod pass through the inclined plane with the top or the bottom of vertical push rod are leaned on, first elastic component is located the other end of horizontal push rod is convenient for horizontal push rod resets.
Optionally, the button subassembly includes the button, is located the button is inboard and can be in the button promotes the impeller that moves down and locate on the impeller and support in hold the second elastic component in the intracavity, be equipped with first pothook on the impeller, the button is inboard inwards to stretch to have interior push rod, be equipped with on the horizontal push rod and keep away the empty slot, during the locking state first pothook on the impeller with one fixed subassembly is detained and is locked, the tip of interior push rod support in the horizontal push rod, during the unblanking horizontal push rod is in under vertical push rod effect moves, during the button is pressed the tip of interior push rod stretches into keep away the empty slot and the button promotes the impeller removes so that first pothook with fixed subassembly breaks away from.
Optionally, the number of the inner push rods is two, the two inner push rods are arranged in parallel on the inner sides of the keys, two jacking columns are further arranged on the inner sides of the keys, the two jacking columns are respectively located on the outer sides of the two inner push rods, and the number of the pushing pieces is two and respectively located on the inner sides of the two jacking columns correspondingly.
Optionally, the surfaces of the two pushing members facing the key are provided with first step-shaped matching surfaces, the surfaces of the two jacking columns facing the pushing members are provided with second step-shaped matching surfaces, and steps of the first matching surfaces are meshed with steps of the second matching surfaces in a staggered manner.
Optionally, with the button subassembly is detained locking fixed subassembly includes the stationary blade, rotate set up in the inboard driving piece of stationary blade and torsional spring, the driving piece keep away from one end of stationary blade is fixed in on the casing, the stationary blade inboard be equipped with can with the second pothook of button subassembly lock.
Optionally, the driving piece includes the level be fixed in the inboard pivot of stationary blade and two support arms of relative setting, two the top of support arm is fixed in respectively the both ends of pivot, two the bottom of support arm is fixed in respectively on the casing, the torsional spring cover is located in the pivot, the one end of torsional spring support in the stationary blade is inboard, the other end of torsional spring support in the backshell.
Optionally, two mounting pieces protruding out of the rear shell are arranged in the accommodating cavity, and the two support arms are fixedly connected with the two mounting pieces through fixing pins respectively.
Optionally, the fastening structure is provided with two clamping grooves on the rear shell, and the fixing component fastened with the fastening structure comprises a fixing piece and two protrusions which are arranged on the fixing piece and can be respectively inserted into the two clamping grooves in the up-down direction.
The invention also provides a suitcase, which comprises a suitcase body and a suitcase cover, wherein the intelligent electronic lock is arranged between the suitcase body and the suitcase cover.
According to the intelligent electronic lock, the lock is locked by hand, and the unlocking is realized by utilizing the light control signal, so that the intelligent electronic lock is convenient for a user to use, and the problem that passwords are forgotten due to long-term unused is avoided; meanwhile, the lock core component is arranged in the lock body, so that the lock core component is prevented from being illegally opened by other ways, and the safety is good; the light-operated unlocking mode is novel, and brand new experience is brought to users; the lock core component is controlled by a circuit, so that other functions, such as a GPS positioning function, a weak current reminding function and the like, can be expanded by the circuit, and the service performance of the intelligent electronic lock is further enhanced.
Drawings
FIG. 1 is an exploded view of an intelligent electronic lock provided by an embodiment of the present invention;
FIG. 2 is another angular exploded view of the intelligent electronic lock provided by the embodiment of the invention;
FIG. 3 is a schematic view of the cylinder assembly of an embodiment of the present invention;
FIG. 4 is a schematic diagram of a key assembly according to an embodiment of the present invention;
FIG. 5 is an exploded view of a key assembly according to an embodiment of the present invention;
FIG. 6 is a schematic view of a lower fixture assembly according to an embodiment of the present invention;
FIG. 7 is a schematic view of the structure of the upper fixing assembly according to the embodiment of the present invention;
FIG. 8 is a side cross-sectional view of a housing in an embodiment of the invention;
FIG. 9 is a side cross-sectional view of the smart electronic lock of the present invention in an embodiment;
FIG. 10 is a rear cross-sectional view of the intelligent electronic lock according to the embodiment of the present invention;
FIG. 11 is a side cross-sectional view of an embodiment of the present invention when the intelligent electronic lock is unlocked;
FIG. 12 is a second cross-sectional side view of an embodiment of the present invention when the intelligent electronic lock is unlocked;
FIG. 13 is a rear cross-sectional view of an embodiment of the present invention when the intelligent electronic lock is unlocked;
100-a housing; 110-a receiving cavity; 111-mounting pieces;
120-front shell; 121-a panel; 122-an inductor;
130-backshell; 131-a buckling structure; 132-mounting void;
200-a lock cylinder assembly; 210-an electromagnet; 220-vertical push rod;
230-horizontal push rod; 231-void-avoidance slots; 240-a first elastic member;
250-inclined plane; 300-upper fixture assembly; 310-fixing piece;
320-bulge; 311-mounting holes; 400-lower fixing assembly;
410-fixing sheets; 411-second hook; 412-a mounting portion;
420-driving member; 421-spindle; 422-a support arm;
500-key assembly; 510-pressing a key; 511-an inner pushrod;
512-top column; 513-void; 520-pushing member;
521-connecting part; 522-a clamping part; 523-first hook;
524-first mating face; 525-a second mating surface; 526-a first fixing post;
112-a second fixed column; 530-a second elastic member; 600-fixing pins;
430-torsion spring.
Detailed Description
The present invention will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present invention more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the invention.
It will be understood that when an element is referred to as being "mounted" or "disposed" on another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or intervening elements may also be present.
It should be noted that, in this embodiment, terms of left, right, up, down, etc. are merely relative concepts or references to normal use states of the product, and should not be construed as limiting.
Referring to fig. 1 and 2, the present invention provides an intelligent electronic lock, which includes a housing 100 having a receiving cavity 110, a cylinder assembly 200 disposed in the receiving cavity 110, and two fixing assemblies. The housing 100 is enclosed by a front housing 120 and a rear housing 130. The two fixing components are respectively located at the upper and lower parts of the back of the rear housing 130. For convenience of description, in this embodiment, the two fixing members are respectively named as an upper fixing member 300 and a lower fixing member 400. The upper portion of the rear housing 130 is correspondingly provided with a fastening structure 131 fastened with the upper fixing assembly 300 in the up-down direction, the lower portion of the rear housing 130 is correspondingly provided with a key assembly 500 fastened with the lower fixing assembly 400 in the front-rear direction, and the lower fixing assembly 400 is fixedly connected with the housing 100. The panel 121 of the front case 120 is provided with a sensor 122 for receiving a light control signal, a circuit board assembly (not shown) for converting the light signal received by the sensor 122 into an electrical signal is provided in the receiving chamber 110, and the key cylinder assembly 200 moves under the control of the circuit board assembly so that when the key assembly 500 is pressed, the lower fixing assembly 400 pushes the key assembly 500 in the front-rear direction, so that the locking state between the lower fixing assembly 400 and the key assembly 500 is released. In this embodiment, the accommodating cavity 110 is located in the front case 120, the opening is towards the rear, the rear case 130 is in a plate structure, and the plate structure of the rear case 130 does not completely seal the opening of the accommodating cavity 110, and in combination with fig. 8, the lower portion of the rear case 130 has a mounting void 132 for mounting the key assembly 500, and the key assembly 500 is pressed upwards to unlock. When the intelligent electronic lock is applied to other box-type structures such as a suitcase, the upper fixing assembly 300 and the lower fixing assembly 400 are respectively fixed on the suitcase cover and the suitcase body, and meanwhile, the lower fixing assembly 400 is fixedly connected with the shell 100. The upper fixing assembly 300 on the case cover is used for being primarily buckled with the buckling structure 131 of the case 100, and the lower fixing assembly 400 and the key assembly 500 on the case body are used for locking the case 100 and the case body, so that the buckling structure 131 of the upper fixing assembly 300 on the case cover and the case body 100 cannot be separated, and finally, the case cover and the case body are firmly locked; after the lower fixing assembly 400 and the key assembly 500 are unlocked, the fastening structure 131 and the upper fixing assembly 300 are separated from each other to be locked, and then the lower fixing assembly 400 and the key assembly 500 can be easily opened, i.e. the fastening structure 131 of the upper fixing assembly 300 and the housing 100 is opened, so that the case cover and the case body are in an opened state without constraint.
Preferably, the sensor 122 of the present invention receives the light signal from the flashlight of the mobile phone, and the flashlight of the mobile phone emits the light signal with the unlocking signal by flashing light under the control of the mobile phone APP software.
Of course, in the present embodiment, the engaging structure 131 and the engaging structure of the upper fixing assembly 300 may be disposed at the lower portion of the housing 100, and the engaging structure of the key assembly 500 and the lower fixing assembly 400 may be disposed at the upper portion of the housing 100, and after the positions are interchanged, the key assembly 500 is pushed downward to unlock.
The intelligent electronic lock in the embodiment is locked freely and manually, and is unlocked by utilizing the mobile phone APP light control, so that the intelligent electronic lock is convenient for a user to use, and the problem that passwords are forgotten due to long-term unused is avoided; meanwhile, the lock cylinder assembly 200 is arranged in the lock body, so that the lock cylinder assembly is prevented from being illegally opened by other ways, and the safety is good; the light-operated unlocking mode is novel, and brand new experience is brought to users; meanwhile, the lock core assembly 200 adopts circuit control, so that other functions such as a GPS positioning function, a weak current reminding function and the like can be expanded by utilizing the circuit, and the service performance of the intelligent electronic lock is further enhanced.
In this embodiment, the intelligent electronic lock is mainly composed of a lock cylinder assembly 200, a key assembly 500, an upper fixing assembly 300 and a lower fixing assembly 400, and the above components are described in detail below.
Referring to fig. 3, the key cylinder assembly 200 is disposed in the accommodating chamber 110, and is mainly used for opening and closing the electronic lock. The lock cylinder assembly 200 includes an electromagnet 210 vertically disposed, a vertical push rod 220 disposed at the bottom of the electromagnet 210, a horizontal push rod 230 disposed at the bottom of the vertical push rod 220, and a first elastic member 240, wherein one end of the horizontal push rod 230 is abutted to the bottom end of the vertical push rod 220 through an inclined surface 250, and the first elastic member 240 is disposed at the other end of the horizontal push rod 230 so as to reset the horizontal push rod 230. When the electromagnet 210 is powered on, the electromagnet 210 moves downwards, a downward pushing force is applied to the vertical push rod 220, and when the vertical push rod 220 moves downwards due to the fact that the inclined surface 250 is abutted between the vertical push rod 220 and the horizontal push rod 230, the inclined surface 250 is utilized to push the horizontal push rod 230 to move in the horizontal direction and compress the first elastic piece 240; when the electromagnet 210 is powered off, the pushing force of the electromagnet 210 to the vertical push rod 220 is eliminated, the first elastic member 240 resets to push the horizontal push rod 230 to move horizontally, and the inclined surface 250 is used to push the vertical push rod 220 to move upwards again.
The key assembly 500 is located below the horizontal push rod 230. Referring to fig. 4 and 5, the key assembly 500 includes a key 510, a pushing member 520 disposed inside the key 510 and movable under the pushing of the key 510, and a second elastic member 530 disposed on the pushing member 520. The inner sides of the keys 510 are protruded and extended into two inner push rods 511 in parallel, a jacking column 512 is further arranged on the outer sides of the two inner push rods 511 respectively, two pushing pieces 520 are correspondingly arranged, and the two pushing pieces 520 are correspondingly arranged on the inner sides of the two jacking columns 512.
The pushing member 520 includes a connecting portion 521 and a locking portion 522, wherein the connecting portion 521 is aligned with the top post 512, and the locking portion 522 is located between the top post 512 and the inner push rod 511. Because there is a gap 513 between the top post 512 and the inner push rod 511, the clamping portion 522 is located at the gap 513, and referring to fig. 9, the clamping portion 522 of each pushing member 520 protrudes downward toward the edge of the lower fixing assembly 400 to form a first hook 523, and the clamping structure in the lower fixing assembly 400 extends into the gap 513 and is clamped with the first hook 523. The surface of the connecting portion 521 facing the key 510 has a first mating surface 524 with a step shape, the surface of the two top posts 512 facing the pushing member 520 has a second mating surface 525 with a step shape, and the steps of the first mating surface 524 are engaged with the steps of the second mating surface 525 in a staggered manner. In this embodiment, since the key 510 and the pushing member 520 are two independent components, the arrangement of the stepped mating surface structure can ensure that the key 510 can accurately push the pushing member 520 during movement. The surface of the connecting portion 521, which is far away from the key 510, is provided with a first fixing column 526, the second elastic member 530 is a spring, one end of the spring is sleeved on the first fixing column 526, and, in combination with fig. 11, the other end of the spring abuts against the second fixing column 112 in the accommodating cavity 110.
Referring to fig. 2 and 6, in the present embodiment, the lower fixing assembly 400 fastened to the key assembly 500 includes a fixing piece 410, a driving member 420 rotatably disposed on the inner side of the fixing piece 410, and a torsion spring 430. The inner bottom of the fixing piece 410 protrudes inwards to form two second hooks 411 which can be clamped with the two first hooks 523, two mounting parts 412 are oppositely arranged at the inner top of the fixing piece 410, and the driving piece 420 comprises a rotating shaft 421 and two supporting arms 422 which are oppositely arranged. The rotating shaft 421 is horizontally disposed, and both ends of the rotating shaft 421 are respectively fixed to the two mounting portions 412. The two support arms 422 are disposed obliquely, the top ends of the two support arms 422 are respectively fixed at two ends of the rotating shaft 421, and the bottom ends of the two support arms 422 are respectively fixed on the housing 100. Specifically, the accommodating chamber 110 has two mounting pieces 111 protruding outside the rear case 130 therein, and bottom ends of the two support arms 422 are fixedly connected to the two mounting pieces 111 by fixing pins 600, respectively. The torsion spring 430 is sleeved on the rotating shaft 421, one end of the torsion spring 430 abuts against the inner side of the fixing piece 410, and the other end of the torsion spring 430 abuts against the rear housing 130.
Referring to fig. 1, 2 and 7, the fastening structure 131 on the rear housing 130 includes two slots with openings facing downward, and the upper fixing assembly 300 includes a fixing member 310 and two protrusions 320 disposed on the fixing member 310, where the two protrusions 320 protrude upward. Of course, after the positions of the fastening structure 131 and the key assembly 500 are interchanged, i.e. when the fastening structure 131 is disposed at the bottom of the rear housing 130, the opening direction of the slot is correspondingly adjusted to be upward, and the directions of the two protrusions 320 on the fixing member 310 are correspondingly adjusted to be downward. The fixing piece 310 is provided with a mounting hole 311, and when the intelligent electronic lock is applied to the suitcase, the fixing piece 310 is fixed on the suitcase cover through a screw penetrating through the mounting hole 311.
Referring to fig. 8, the sensor 122 disposed on the panel 121 of the front case 120 is a sensing lens, and can receive light emitted from the mobile phone APP.
Referring to fig. 9, in the locking process, first, the housing 100 is pressed down to make two clamping grooves on the rear housing 130 and two protrusions 320 in the upper fixing assembly 300 buckled to achieve preliminary buckling of the housing 100 and the case cover, then the lower portion of the housing 100 is pressed inward, so that the second clamping hook 411 in the lower fixing assembly 400 corresponding to the lower portion of the housing 100 moves forward under pressure to extend into the gap 513 in the key 510 to abut against the pushing member 520 along the matching surface of the second clamping hook 411 and the first clamping hook 523, so that the second elastic member 530 is compressed, and the second clamping hook 411 slides into the inner side of the first clamping hook 523 and is clamped with the first clamping hook 523 in a reverse direction, the second elastic member 530 rebounds to abut against the pushing member 520 downward to ensure that the first clamping hook 523 and the second clamping hook 411 are firmly clamped, and at this time, the two ends of the torsion spring 430 of the lower fixing assembly 400 abut against the inner side of the fixing piece 410 and the rear housing 130 respectively. At this time, the intelligent electronic lock is completely locked, referring to fig. 10, in this process, the horizontal push rod 230 and the first elastic member 240 of the lock cylinder assembly 200 are not kept in the original position by the external force, and the horizontal push rod 230 is provided with the empty avoiding groove 231, and in the locked state, the empty avoiding groove 231 is dislocated from the end of the inner push rod 511 of the key 510, and the end of the inner push rod 511 abuts against the horizontal push rod 230, so that the electronic lock cannot be opened.
Referring to fig. 11 and 12, when unlocking, the light emitted by the mobile APP is transmitted to the sensor 122, the light is converted into an electrical signal by the circuit board assembly, the electromagnet 210 of the lock core assembly 200 receives the electrical signal and then moves downward to push the vertical push rod 220 to move downward, meanwhile, in conjunction with fig. 13, the horizontal push rod 230 moves horizontally under the pushing action of the vertical push rod 220 and compresses the first elastic member 240, when the empty avoidance slot 231 on the horizontal push rod 230 moves to correspond to the position of the inner push rod 511, the horizontal push rod 230 stops moving, at this time, the key 510 pushes the push member 520 and the second elastic member 530 upward, the inner push rod 511 in the key 510 extends inward into the empty avoidance slot 231, so that the key 510 is guaranteed to have enough displacement to push the push member 520, when the first hook 523 of the push member 520 is separated from the second hook 411 of the lower fixing assembly 400, the housing 100 is pushed forward under the pushing action of the elastic force of the torsion spring 430, and finally, the housing 100 is moved upward again, so that the upper fixing assembly 300 is separated from the upper fixing assembly 300, and the housing 100 are separated from the upper fixing assembly 300, and the unlocking assembly is completely realized.
The invention also provides a suitcase, which comprises a suitcase body and a suitcase cover, wherein the intelligent electronic lock is arranged between the suitcase body and the suitcase cover. As described above, during installation, the upper fixing assembly 300 of the intelligent electronic lock is fixed to the edge of the case cover, the lower fixing assembly 400 is fixed to the edge of the case, and the case 100 and the internal components are fixedly connected to the lower fixing assembly 400. Due to the arrangement of the intelligent electronic lock, a user can conveniently and rapidly unlock by utilizing the mobile phone APP, so that the problem that passwords are forgotten due to long-term unused is avoided; meanwhile, the lock cylinder assembly 200 is arranged in the lock body, so that the lock cylinder assembly is prevented from being illegally opened by other ways, and the safety is good; the light-operated unlocking mode is novel, and brand new experience is brought to users; meanwhile, the lock cylinder assembly 200 adopts circuit control, so that other functions such as a GPS positioning function, a weak current reminding function and the like can be loaded by utilizing the circuit to further improve the functions of the suitcase.
The foregoing description of the preferred embodiments of the invention is not intended to be limiting, but rather is intended to cover all modifications, equivalents, and alternatives falling within the spirit and principles of the invention.

Claims (8)

1. The utility model provides an intelligent electronic lock, includes by preceding shell and backshell enclose and close the casing that forms that has the chamber of holding, arranges in hold the intracavity lock core subassembly to and two fixed subassembly, its characterized in that: the two fixing components are respectively and correspondingly positioned at the upper part and the lower part of the back shell, a buckling structure buckled with one fixing component in the up-down direction is arranged on the shell, a key component buckled with the other fixing component in the front-back direction is arranged on the shell, the fixing component buckled with the key component is fixedly connected with the shell, an inductor for receiving light control signals is arranged on a panel of the front shell, a circuit board component for converting the light signals received by the inductor into electric signals is arranged in the accommodating cavity, the other fixing component pushes the key component to unlock with the key component in the front-back direction when the key component is pushed under the control of the circuit board component, the button subassembly includes the button, is located the button is inboard and be in the button promotes the impeller that removes down, the button with the impeller is two independent parts, the button inboard still is equipped with two lifters, two the impeller orientation the surface of button has the first mating surface that is the step form, two the lifters orientation the surface of impeller has the second mating surface that is the step form, the step of first mating surface with the crisscross interlock of step on the second mating surface, the buckling structure is for being equipped with two draw-in grooves on the backshell, with the fixed subassembly of buckling structure lock includes the mounting and locates on the mounting and insert respectively in two on the upper and lower direction two protruding in the draw-in groove.
2. The intelligent electronic lock of claim 1, wherein: the lock core assembly comprises an electromagnet which is vertically arranged, a vertical push rod which is arranged at the top or the bottom of the electromagnet and can move in the vertical direction under the pushing of the electromagnet, a horizontal push rod which is arranged at the top or the bottom of the vertical push rod, and a first elastic piece, wherein one end of the horizontal push rod is attached to the top end or the bottom end of the vertical push rod through an inclined plane, and the first elastic piece is arranged at the other end of the horizontal push rod so as to be convenient for the horizontal push rod to reset.
3. The intelligent electronic lock of claim 2, wherein: the button subassembly is still including locating on the impeller and support in hold the intracavity second elastic component, be equipped with first pothook on the impeller, the button inboard inwards protrudes to stretch there is interior push rod, be equipped with on the horizontal push rod and keep away the empty slot, during the locking state first pothook on the impeller with one fixed subassembly is detained and is locked, interior push rod's tip support in the horizontal push rod, during the unblanking horizontal push rod is in vertical push rod removes under the effect, the button is pressed the tip of interior push rod stretches into keep away the empty slot in just the button promotes the impeller removes so that first pothook with fixed subassembly breaks away from.
4. The intelligent electronic lock of claim 3, wherein: the two inner push rods are arranged in parallel on the inner sides of the keys, the two jacking columns are respectively arranged on the outer sides of the two inner push rods, and the two pushing pieces are respectively and correspondingly arranged on the inner sides of the two jacking columns.
5. The intelligent electronic lock according to any one of claims 1 to 4, wherein: the fixing component locked with the button component comprises a fixing piece, a driving piece and a torsion spring, wherein the driving piece and the torsion spring are rotatably arranged on the inner side of the fixing piece, one end, away from the fixing piece, of the driving piece is fixed on the shell, and a second clamping hook used for being buckled with the button component is arranged on the inner side of the fixing piece.
6. The intelligent electronic lock of claim 5, wherein: the driving piece comprises a rotating shaft horizontally fixed on the inner side of the fixing piece and two supporting arms oppositely arranged, wherein the top ends of the two supporting arms are respectively fixed on the two ends of the rotating shaft, the bottom ends of the two supporting arms are respectively fixed on the shell, the torsion spring is sleeved on the rotating shaft, one end of the torsion spring is propped against the inner side of the fixing piece, and the other end of the torsion spring is propped against the rear shell.
7. The intelligent electronic lock of claim 5, wherein: the accommodating cavity is internally provided with two mounting pieces protruding out of the outer side of the rear shell, and the two supporting arms are fixedly connected with the two mounting pieces through fixing pins respectively.
8. The utility model provides a suitcase, includes box and case lid, its characterized in that: an intelligent electronic lock as claimed in any one of claims 1 to 7 is arranged between the box body and the box cover.
CN201610569630.XA 2016-07-19 2016-07-19 Intelligent electronic lock and suitcase Active CN107630601B (en)

Priority Applications (6)

Application Number Priority Date Filing Date Title
CN201610569630.XA CN107630601B (en) 2016-07-19 2016-07-19 Intelligent electronic lock and suitcase
JP2019502748A JP6854338B2 (en) 2016-07-19 2017-07-06 Smart electronic lock and suitcase
PCT/CN2017/092068 WO2018014739A1 (en) 2016-07-19 2017-07-06 Smart electronic lock and suitcase
EP17830373.1A EP3489440B1 (en) 2016-07-19 2017-07-06 Smart electronic lock and suitcase
KR1020197004465A KR102128930B1 (en) 2016-07-19 2017-07-06 Intelligent electronic lock and suitcase
US16/319,253 US11299915B2 (en) 2016-07-19 2017-07-06 Smart electronic lock and suitcase

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610569630.XA CN107630601B (en) 2016-07-19 2016-07-19 Intelligent electronic lock and suitcase

Publications (2)

Publication Number Publication Date
CN107630601A CN107630601A (en) 2018-01-26
CN107630601B true CN107630601B (en) 2024-01-26

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CN201610569630.XA Active CN107630601B (en) 2016-07-19 2016-07-19 Intelligent electronic lock and suitcase

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CN (1) CN107630601B (en)

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