CN113445823B - Lock core - Google Patents

Lock core Download PDF

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Publication number
CN113445823B
CN113445823B CN202110888404.9A CN202110888404A CN113445823B CN 113445823 B CN113445823 B CN 113445823B CN 202110888404 A CN202110888404 A CN 202110888404A CN 113445823 B CN113445823 B CN 113445823B
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CN
China
Prior art keywords
lock
locking
blade
unlocking
groove
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Active
Application number
CN202110888404.9A
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Chinese (zh)
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CN113445823A (en
Inventor
顾高明
蒋文平
刘魏
方思聪
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhuhai Unitech Power Technology Co Ltd
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Zhuhai Unitech Power Technology Co Ltd
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Priority to CN202110888404.9A priority Critical patent/CN113445823B/en
Publication of CN113445823A publication Critical patent/CN113445823A/en
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Publication of CN113445823B publication Critical patent/CN113445823B/en
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    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B29/00Cylinder locks and other locks with plate tumblers which are set by pushing the key in
    • E05B29/0046Cylinder locks and other locks with plate tumblers which are set by pushing the key in for use with more than one key, e.g. master-slave key
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B19/00Keys; Accessories therefor
    • E05B19/0011Key decoders
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B29/00Cylinder locks and other locks with plate tumblers which are set by pushing the key in
    • E05B29/0053Cylinder locks and other locks with plate tumblers which are set by pushing the key in with increased picking resistance
    • E05B29/006Cylinder locks and other locks with plate tumblers which are set by pushing the key in with increased picking resistance by movable rotor elements

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  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Lock And Its Accessories (AREA)

Abstract

The present invention provides a lock cylinder, comprising: the lock shell is provided with a locking groove; a lock cylinder; the locking piece is movably arranged between the lock shell and the lock cylinder; an authorization component having an unauthorized state and an authorized state; the locking blade is provided with a stopping position for stopping the locking piece and an avoiding position for avoiding the locking piece; when the lock core is in a locking state, the locking blade is located at the stop position, and/or the authorization assembly is in an unauthorized state, the locking piece is located at a position where the locking piece extends into the locking groove, and the lock core and the lock shell are kept locked; when the lock cylinder is unlocked by using the key system, the key system drives the locking blade to rotate, the locking blade relieves the limit of the locking piece, the authorization component and the key system sense and switch to an authorization state from an unauthorized state, the locking piece can exit from the locking groove, the lock cylinder is switched to an unlocking state from the locking state, and the lock cylinder can rotate relative to the lock shell. The invention solves the problems of poor safety performance and large volume of the lock core in the prior art.

Description

Lock core
Technical Field
The invention relates to a lock system, in particular to a lock cylinder.
Background
Conventional codeable lock cylinders generally require the user to remove the cylinder from the lockset and remove the housing over the cylinder to replace the appropriate pin or blade so that the cylinder can be opened with a new key. This requires the user to have the expertise of a lock and lock cylinder, and so rekeying of the lock cylinder can usually only be done by the locksmith or professional. In addition, the need to use special tools and require the user to access the plug mechanism to interchange pins or blades during the pin or blade replacement process, which can easily lose or damage parts during the replacement process. When the key of some lock cylinders with replaceable keys is replaced, a coding tool needs to be inserted to complete the code changing operation.
Disclosure of Invention
The invention mainly aims to provide a lock cylinder to solve the problems of poor safety performance and large volume of the lock cylinder in the prior art.
In order to achieve the above object, the present invention provides a lock cylinder including: the inner side wall of the lock shell is provided with a locking groove; the lock cylinder can rotate relative to the lock shell; the locking piece is movably arranged between the lock shell and the lock cylinder and can move between positions of stretching into and withdrawing from the locking groove so as to lock or unlock the lock cylinder; the authorization assembly is arranged in the lock liner and limits the locking piece, and the authorization assembly has an unauthorized state and an authorized state so that the locking piece is locked at a position extending into the locking groove or can be switched between a position extending into the locking groove and a position exiting from the locking groove; the locking blade is rotatably arranged in the lock container and penetrates through the locking piece, and the locking blade is provided with a stopping position for stopping the locking piece and an avoiding position for avoiding the locking piece; when the lock core is in a locking state, the locking blade is located at the stopping position, the locking blade stops the locking piece at the position extending into the locking groove, and/or the authorization assembly is located at an unauthorized state, the locking blade and/or the authorization assembly enable at least one part of the locking piece to be located in the locking groove, the locking piece is located at the position extending into the locking groove, and the lock core and the lock shell are locked; when the lock cylinder is unlocked by using the key system, the key system drives the locking blade to rotate, the locking blade relieves the limit of the locking piece, the authorization component and the key system sense and switch to an authorization state from an unauthorized state, the locking piece can exit from the locking groove, the lock cylinder is switched to an unlocking state from the locking state, and the lock cylinder can rotate relative to the lock shell.
Furthermore, at least one part of the authorization assembly radially penetrates through the lock cylinder, and an included angle is formed between the movement path and the movement path of the locking piece.
Further, the authorization component comprises: the authorization marble penetrates through the lock cylinder along the radial direction of the lock cylinder, an included angle is formed between the motion path of the authorization marble and the motion path of the locking piece, and the authorization marble can stop or avoid the motion of the locking piece so as to lock the locking piece at the position extending into the locking groove or enable the locking piece to extend out of the locking groove; the first magnetic steel is connected with the authorization marble and can drive the authorization marble to synchronously move under the action of magnetic force; the two ends of the authorized reset piece are respectively abutted against the authorized marble and the lock cylinder, and the authorized marble provides reset force moving to the stop locking piece.
Furthermore, the locking piece has the bulge that radially extends, and the groove of stepping down has been seted up to the mandate pellet shot from a slingshot, and when the subassembly of authorizing is in unauthorized state, the groove of stepping down and the bulge dislocation of the mandate pellet shot from a slingshot, the play locking groove's of mandate pellet shot from a slingshot backstop locking piece motion to lock the locking piece in the position that stretches into the lock shell, when the subassembly of authorizing is in authorized state, the groove of stepping down of the mandate pellet shot from a slingshot aligns with the bulge, and the bulge can stretch into to the inslot of stepping down to withdraw from the lock shell.
Furthermore, the locking piece and the shutting blade all are provided with a plurality ofly, and all set up in pairs in the both sides of lock courage cross section axial symmetry.
Further, the shutting blade is the arc, and the arc wall that holds the shutting blade is seted up to the lock courage, and the lock courage has the unblock mouth that supplies key system male, and unblock mouth for the terminal surface eccentric settings of lock courage.
Further, the lock core still includes the locking piece that resets, and the locking resets the both ends respectively with two locking piece butts that set up in pairs to for the locking piece provides the power that resets that stretches into the lock shell.
Further, the shutting blade has been seted up and has been dodged the groove, when the shutting blade is located the backstop position, dodge the groove and stagger with the locking piece, shutting blade backstop locking piece to lock the locking piece in the position that stretches into the lock shell, when key system unblock lock core, the general unblock position extrusion shutting blade of key system moves to dodging the position, dodges the groove and aligns with the locking piece, and the locking piece can stretch into to dodge the inslot and withdraw from the shutting groove, and the lock courage can rotate.
Further, the lock core still includes the shutting piece that resets, and the shutting piece that resets and the shutting blade butt to for the shutting blade provides the reset force to the motion of backstop position.
Further, the lock cylinder still includes: the wireless code sheet is arranged on the end face of the lock liner and can be matched with a key system so as to identify the identity of the lock core; the shaft sleeve is sleeved on the lock liner and controls the movement range of the locking piece; the diameter of the rotary lug is larger than the inner diameter of the lock shell, the rotary lug is connected with one end of the lock core far from the dissociation locking port, and the lock shell is locked on the lock core; and the second magnetic steel is arranged at one end of the lock shell close to the unlocking port and can be matched with an induction part of the key system to detect the locking and unlocking states of the lock cylinder.
By applying the technical scheme of the invention, when the lock core with the structure is used, the authorization assembly and the locking blade are arranged, so that the locking piece can be acted by the authorization assembly and the locking blade together, the lock core can be unlocked only after the authorization assembly and the locking blade are completely unlocked, and the safety of the lock core is effectively improved.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this application, illustrate embodiments of the invention and, together with the description, serve to explain the invention and not to limit the invention. In the drawings:
FIG. 1 shows an exploded view of the lock cylinder of the present invention;
fig. 2 shows a schematic structural view of the coding blade of the lock cylinder in fig. 1;
FIG. 3 is a schematic diagram showing the components within the cylinder core of FIG. 1 with the code blades in a first latched position;
FIG. 4 shows a cross-sectional view of the lock cylinder of FIG. 1 in a first latched position;
FIG. 5 shows a cross-sectional view taken along line A-A of FIG. 4;
FIG. 6 shows a cross-sectional view taken along line B-B of FIG. 4;
FIG. 7 shows a cross-sectional view taken along line C-C of FIG. 4;
FIG. 8 shows a cross-sectional view taken along line D-D of FIG. 4;
FIG. 9 shows a cross-sectional view in the direction E-E of FIG. 4;
FIG. 10 is a schematic diagram showing the components within the cylinder core of FIG. 1 with the code blades in a first unlocked position;
FIG. 11 shows a cross-sectional view of the lock cylinder of FIG. 1 in a first unlocked position;
FIG. 12 shows a cross-sectional view taken along line A-A of FIG. 11;
FIG. 13 shows a cross-sectional view taken along line B-B of FIG. 11;
FIG. 14 shows a cross-sectional view taken along line C-C of FIG. 11;
FIG. 15 shows a cross-sectional view taken along line D-D of FIG. 11;
FIG. 16 shows a cross-sectional view taken along line E-E of FIG. 11;
FIG. 17 is a schematic diagram showing the components within the cylinder core of FIG. 1 with the code blades in a second unlocked position;
FIG. 18 shows a cross-sectional view of the lock cylinder of FIG. 1 in a second unlocked position;
FIG. 19 shows a cross-sectional view taken along line A-A of FIG. 18;
FIG. 20 shows a cross-sectional view taken along line B-B of FIG. 18;
FIG. 21 shows a cross-sectional view taken along line C-C of FIG. 18;
FIG. 22 shows a cross-sectional view taken along line D-D of FIG. 18;
FIG. 23 shows a cross-sectional view in the direction E-E of FIG. 18;
FIG. 24 is a schematic diagram showing the components within the cylinder core of FIG. 1 with the code blades in a second latched position;
FIG. 25 shows a cross-sectional view of the lock cylinder of FIG. 1 in a second latched position;
FIG. 26 shows a cross-sectional view taken along line A-A of FIG. 25;
FIG. 27 shows a cross-sectional view taken along line B-B of FIG. 25;
FIG. 28 shows a cross-sectional view taken along line C-C of FIG. 25;
FIG. 29 shows a cross-sectional view taken along line D-D of FIG. 25;
FIG. 30 shows a cross-sectional view taken along line E-E of FIG. 25;
FIG. 31 is a schematic construction of a first unlocking key of the key system of the present invention;
fig. 32 shows a schematic construction of a high-level second unlocking key of the key system of the invention;
fig. 33 shows a schematic view of the structure of a lower-level second unlocking key of the key system of the present invention.
Wherein the figures include the following reference numerals:
10. a lock case; 11. a housing hole; 12. a locking groove; 20. a lock liner; 21. a stop projection; 30. a locking member; 31. a protruding portion; 32. a projection; 40. locking the blade; 41. an avoidance groove; 50. encoding the blades; 51. a first unlocking slot; 52. a second unlocking slot; 53. a control slot; 54. a mating end; 55. a boss; 60. a control component; 61. a control pin; 62. a control reset member; 63. magnetic beads; 70. a locking reset member; 80. a latching reset member; 90. a coded reset element; 101. authorizing the marble; 102. a yielding groove; 103. a first magnetic steel; 104. an authorized reset; 105. a wireless chip; 110. a shaft sleeve; 120. ear turning; 130. a second magnetic steel; 140. a first unlocking key; 141. a universal unlock bit; 142. a first unlock bit; 143. a third magnetic steel; 150. a second unlocking key; 151. a second unlocked position.
Detailed Description
It should be noted that, in the present application, the embodiments and features of the embodiments may be combined with each other without conflict. The present invention will be described in detail below with reference to the accompanying drawings in conjunction with embodiments.
It is to be noted that, unless otherwise indicated, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs.
In the present invention, unless specified to the contrary, use of the terms of orientation such as "upper, lower, top, bottom" or the like, generally refer to the orientation as shown in the drawings, or to the component itself in a vertical, perpendicular, or gravitational orientation; likewise, for ease of understanding and description, "inner and outer" refer to the inner and outer relative to the profile of the components themselves, but the above directional words are not intended to limit the invention.
The invention provides a lock cylinder and a key system, aiming at solving the problems of poor safety performance and large volume of the lock cylinder in the prior art.
A lock cylinder as shown in fig. 1 to 30 comprises a lock case 10, a cylinder core 20, a lock member 30, a code blade 50 and a control assembly 60, wherein the cylinder core 20 is rotatably arranged in the lock case 10; the locking piece 30 is movably arranged between the lock shell 10 and the lock cylinder 20 and can move between positions of extending into and retracting out of the lock shell 10; the coding blade 50 is rotatably arranged in the lock core 20 and is positioned on the moving path of the locking piece 30, the coding blade 50 has a first locking position, a first unlocking position, a second locking position and a second unlocking position in sequence, when the first unlocking key 140 unlocks the lock cylinder, the first unlocking bit 142 of the first unlocking key 140 presses the coding blade 50 to move from the first locking position to the first unlocking position, the first unlocking groove 51 of the coding blade 50 is aligned with the locking member 30, the locking member 30 can extend into the first unlocking groove 51 of the coding blade 50 and exit the lock case 10, when the second unlocking key 150 unlocks the lock cylinder, the second unlocking position 151 of the second unlocking key 150 extrudes the coding blade 50 to move from the first locking position to the second unlocking position through the first unlocking position and the second locking position in sequence, and the locking piece 30 can extend into the second unlocking groove 52 of the coding blade 50 and exit the lock case 10; the control assembly 60 is disposed through the lock cylinder 20 and can block the movement of the encoding blade 50 to the first unlocking position after the encoding blade 50 moves beyond the first unlocking position.
According to the embodiment, the coding blade 50 is arranged, so that the coding blade 50 can move in different ranges according to different unlocking keys, and the matching control assembly 60 can control the movement of the coding blade 50, so that the position of the coding blade 50 cannot be changed reversely and then changed again after being changed, and the lock core coding can be changed. Specifically, as shown in fig. 4 to 9, when the key cylinder is not unlocked, the coding blade 50 is located at the first locking position, and the coding blade 50 acts as an obstacle to the movement of the locking member 30, so that the locking member 30 stops between the lock shell 10 and the cylinder barrel 20, and the lock shell 10 and the cylinder barrel 20 cannot rotate relatively. As shown in fig. 10 to 16, when the lock cylinder is unlocked by using the first unlocking key 140 and the first unlocking key 140 is inserted into the lock cylinder, the first unlocking position 142 of the first unlocking key 140 presses the coding blade 50, so that the coding blade 50 rotates from the first locking position to the first unlocking position, the first unlocking slot 51 on the coding blade 50 rotates to a position aligned with the locking member 30, at this time, the coding blade 50 no longer has a stopping function on the locking member 30, the locking member 30 can exit the lock case 10, and the lock cylinder 20 can rotate; when the reset is completed, the encoder blade 50 is reset to the first latched position, i.e., to the state shown in fig. 4 to 9. As shown in fig. 17 to 23, when the lock cylinder is unlocked by using the second unlocking key 150 and the second unlocking key 150 is inserted into the lock cylinder, the second unlocking position 151 of the second unlocking key 150 presses the coding blade 50 to move a greater distance than the first unlocking position 142 presses the coding blade 50, so that the coding blade 50 will sequentially pass through the first unlocking position and the second unlocking position from the first locking position to the second unlocking position under the pressing of the second unlocking position 151, the control component 60 will not affect the movement of the coding blade 50 until the coding blade 50 rotates to pass through the first unlocking position, and after the coding blade 50 passes through the first unlocking position, the control component 60 will restrict the movement of the coding blade 50, so that the coding blade 50 can only continue to rotate and cannot rotate reversely back to the first unlocking position, and thus, after the lock cylinder is unlocked by the second unlocking key 150, when the first unlocking key 140 is failed, the first unlocking key 140 can not unlock the lock cylinder any more, and therefore, the change of the lock cylinder code is realized, when the coding blade 50 moves to the second unlocking position, the second unlocking groove 52 on the coding blade 50 rotates to the position aligned with the locking piece 30, the coding blade 50 no longer has a stop function on the locking piece 30, the locking piece 30 can exit the lock shell 10, the lock cylinder 20 can rotate, and when the lock cylinder is reset after use, as shown in fig. 24 to 30, the coding blade 50 can only reset to the second locking position and cannot reset to the first locking position due to the effect of the control assembly 60. Through above-mentioned coding blade 50 and control assembly 60, cooperate corresponding unblock key, make the transcoding work of lock core need not the instrument and can accomplish, and also need not open the lock core split, the risk of losing and damaging spare part has been avoided, also need not the professional to operate, user self can simply and swiftly accomplish the transcoding operation, and the transcoding operation of lock core is irreversible, only can use second unblock key 150 to open the lock core behind the transcoding, can prevent that first unblock key 140 from opening the lock core once more, improve the security of lock core.
It should be noted that, in the process of unlocking the second unlocking key 150, although the coding blade 50 may pass through the first unlocking position, when the coding blade 50 passes through the first unlocking position, because the distance that the second unlocking key 150 is inserted into the lock cylinder does not reach the predetermined distance, the general unlocking position 141 does not act on the locking blade 40 or does not completely extrude the locking blade 40 to the avoiding position, the locking blade 40 still has a stopping function on the locking member 30, the locking member 30 still cannot exit the lock case 10, the lock cylinder cannot be unlocked, only when the locking blade 40 and the coding blade 50 both stop the locking member 30, the lock cylinder 20 can rotate, and the lock cylinder can be unlocked.
The locking blades 40 of the present embodiment are provided with a plurality of locking blades which are arranged in pairs on two sides of the axial symmetry of the cross section of the cylinder 20, correspondingly, the unlocking ports are arranged eccentrically relative to the end surface of the cylinder 20, and the universal unlocking positions 141 on the unlocking key are also provided in a plurality, so as to be matched with the locking blades 40 one by one. The coding blade 50 and the locking member 30 of the present embodiment are each provided with two pairs, which are respectively located at two sides of the lock cylinder 20 with axial symmetry in cross section, and the coding blade 50 is far apart from the locking notch compared with the locking blade 40, i.e. the coding blade 50 is located at the inner side of the lock cylinder, thereby improving safety. Of course, the number and the positions of the locking blades 40 and the encoding blades 50 may be adjusted according to the circumstances.
The lock cylinder of the embodiment further comprises a locking blade 40, the locking blade 40 is rotatably arranged in the lock cylinder 20 and penetrates through the locking piece 30, the locking blade 40 has a stopping position and an avoiding position, when the locking blade 40 is located at the stopping position, the locking blade 40 stops the locking piece 30 and locks the locking piece 30 at a position extending into the lock case 10, when the lock cylinder is unlocked by the first unlocking key 140 or the second unlocking key 150, the universal unlocking position 141 of the first unlocking key 140 or the second unlocking key 150 presses the locking blade 40 to move to the avoiding position, the avoiding groove 41 of the locking blade 40 is aligned with the locking piece 30, the locking piece 30 can extend into the avoiding groove 41 and exit out of the lock case 10, and the lock cylinder 20 can rotate. The locking blade 40 and the coding blade 50 jointly play a locking role on the locking piece 30, and the lock core 20 can rotate only when the locking blade 40 and the coding blade 50 both avoid the locking piece 30.
In this embodiment, the lock core 20 is provided with an arc-shaped groove for accommodating the locking blade 40 and the coding blade 50, one side of the arc-shaped groove serves as a stop protrusion 21, and one end of the coding blade 50 serves as a mating end 54, as shown in fig. 2, the first unlocking groove 51 is far away from the mating end 54 compared with the second unlocking groove 52, when the first unlocking key 140 or the second unlocking key 150 is not inserted into the key cylinder, that is, the coding blade 50 is located at the first locking position, the mating end 54 abuts against the stop protrusion 21, and when the first unlocking key 140 or the second unlocking key 150 is inserted into the key cylinder, the first unlocking position 142 or the second unlocking position 151 pushes the coding blade 50 to rotate by extruding the mating end 54, so that the mating end 54 rotates towards a direction far away from the stop protrusion 21. Similarly, the blocking vane 40 may also be provided with a stop in the manner described above for the encoding vane 50.
The control groove 53 with a preset length is formed in the circumferential direction of the coding blade 50, and after the coding blade 50 moves beyond the first unlocking position under the extrusion of the second unlocking key 150, the control component 60 can extend into the control groove 53, so that the control component 60 is matched with the side wall of the control groove 53 in a stopping manner, the coding blade 50 is prevented from moving to the first unlocking position, and the movement range of the coding blade 50 after code change is controlled.
In the present embodiment, the locking blade 40 and the encoding blade 50 are both arc-shaped, the avoiding groove 41 is located on the arc-shaped outer surface of the locking blade 40, the first unlocking groove 51 and the second unlocking groove 52 are located on the arc-shaped outer surface of the encoding blade 50, the side surface of the encoding blade 50 is provided with a convex and arc-shaped boss 55, the control groove 53 is located on the arc-shaped inner surface of the boss 55, and the present embodiment is preferably configured as a square groove. And the projection 55 covers only a portion of the length of the encoded blade 50, such that two encoded blades 50 can be stacked in a staggered fashion, thereby eliminating the need for additional space.
Optionally, in the present embodiment, a plurality of through holes are formed on the locking member 30, and the locking blade 40 is inserted in the through holes, so as to be capable of cooperating with the locking member 30. In the case of the encoding blade 50, if the encoding blade 50 and the locking member 30 are arranged as described above, the control unit 60 may interfere with the locking member 30, and to avoid this, in this embodiment, a small section of the protruding portion 31 is protruded from one end of the locking member 30 in the axial direction of the key cylinder, the protruding portion 31 is located on the outer surface side of the arc of the encoding blade 50, and the inner surface side of the arc is reserved for the control unit 60, so that the control unit 60 does not interfere with the locking member 30, so that both the control unit 60 and the locking member 30 are respectively engaged with the encoding blade 50, when the encoding blade 50 is located at the first locking position or the second locking position, the outer surface of the arc of the encoding blade 50 abuts against the protruding portion 31 to stop the movement of the locking member 30, and when the encoding blade 50 is located at the first unlocking position or the second unlocking position, the first unlocking groove 51 or the second unlocking groove 52 is aligned with the protruding portion 31, the protrusion 31 can be inserted into the first unlocking groove 51 or the second unlocking groove 52, and the locking member 30 can be withdrawn from the lock case 10.
The control assembly 60 of this embodiment includes control pin 61 and control piece 62 that resets, control pin 61 wears to establish in the lock courage 20 along the radial of lock core, and be located the arc inboard of code blade 50, control pin 61 has first backstop portion, first backstop portion can stretch into control groove 53, control piece 62 that resets is the spring, its tip and control pin 61 butt, because this embodiment is provided with two code blades 50, therefore control pin 61 also is provided with two, and then control piece 62 that resets's both ends respectively with two control pins 61 butts, like this, a control piece 62 that resets can provide the restoring force for two control pins 61 simultaneously, can reduce part quantity. When the coding blade 50 moves between the first locking position and the first unlocking position, the control pin 61 and the control groove 53 are dislocated, the control pin 61 abuts against the surface of the coding blade 50 and does not generate a stop for the movement of the coding blade 50, when the coding blade 50 moves beyond the first unlocking position under the action of the second unlocking position 151, the control pin 61 is aligned with the control groove 53, the control pin 61 can extend into and be held in the control groove 53 under the action of the control resetting piece 62, and the control pin 61 abuts against the inner wall of the control groove 53, so that the coding blade 50 cannot move from the second locking position to the first unlocking position. Of course, both ends of the control returning member 62 may be abutted against the control pin 61 and the lock cylinder 20, and in this case, the number of the control returning members 62 may be increased as necessary.
In this embodiment, the control pin 61 further includes a second stopping portion, the control assembly 60 further includes a magnetic bead 63, the second stopping portion is located at an end of the control pin 61 away from the control reset member 62, the control pin 61 of this embodiment extends along the axial direction of the lock cylinder to have a length, a portion of the length is aligned with the encoding blade 50, the portion of the length can extend into the control slot 53 as the first stopping portion, the other portion extends out of the coverage range of the encoding blade 50, the main function of the length is to cooperate with the magnetic bead 63, the magnetic bead 63 is located between the lock case 10 and the second stopping portion, and the magnetic force is absorbed on the second stopping portion, the lock case 10 is provided with a receiving hole 11, and when the lock cylinder 20 is not rotated, the receiving hole 11 is circumferentially staggered from the magnetic bead 63 by a predetermined angle. As shown in fig. 13, when the lock cylinder is unlocked using the first unlocking key 140, since the first unlocking bit 142 can only push the coding blade 50 to the first unlocking position, the first stop can only abut on the coding blade 50 surface without being aligned with the control slot 53; as shown in fig. 14, since the control pin 61 cannot move, even if the cylinder 20 is rotated so that the magnetic bead 63 is aligned with the receiving hole 11, the magnetic bead 63 can be attracted to the second stopper and cannot enter the receiving hole 11. When the second unlocking key 150 is used for unlocking the lock cylinder, when the second unlocking key 150 is inserted into the lock cylinder but is not rotated, the second unlocking position 151 already pushes the coding blade 50 to the second unlocking position, at this time, the first stopping portion is already aligned with the control slot 53, the first stopping portion can extend into the control slot 53, but because the magnetic bead 63 is dislocated with the accommodating hole 11, the magnetic bead 63 cannot extend into the accommodating hole 11 but abuts against the lock shell 10 or a shaft sleeve 110 and other components between the lock shell 10 and the lock liner 20, due to the abutting of the magnetic bead 63, the whole control pin 61 cannot move radially, the first stopping portion cannot extend into the control slot 53, and if the second unlocking key 150 is pulled out at this time, the coding blade 50 can move back to the first locking position, that is, the lock cylinder code changing operation is not actually realized; in the process that the second unlocking key 150 drives the lock cylinder 20 to rotate to the predetermined angle, the matching state of the above components basically remains unchanged until the lock cylinder 20 rotates to the predetermined angle, as shown in fig. 20, the accommodating hole 11 is aligned with the magnetic bead 63, and since the first stopping portion is always aligned with the control groove 53, the whole control pin 61 can move radially under the action of the control resetting member 62, the magnetic bead 63 enters the accommodating hole 11, and the first stopping portion extends into the control groove 53; when the second unlocking key 150 is unlocked and then reset, the lock case 10 presses the magnetic bead 63, and since the accommodating hole 11 is a through hole, the magnetic bead 63 is separated from the second stopping portion under the pressing of the lock case 10 and exits the accommodating hole 11, and is separated from the lock cylinder. According to the arrangement mode, the lock cylinder can be subjected to code changing operation only after the lock cylinder is unlocked by the second unlocking key 150 and is rotated by a certain angle when the code changing operation is carried out, and malicious code changing operation is prevented from being carried out under the condition that the lock cylinder is not unlocked. Of course, the magnetic bead 63 may not be provided, and in the case where the magnetic bead 63 is not provided, the encoding operation is completed only when the second unlocking key 150 is inserted into the key cylinder, and the cylinder core 20 does not need to be rotated.
In this embodiment, the lock cylinder further includes a locking reset member 70, a locking reset member 80 and a coding reset member 90, which are all springs, and two ends of the locking reset member 70 are respectively abutted to the two locking members 30 arranged in pairs and provide a reset force for the locking members 30 to extend into the lock case 10; the locking reset piece 80 is bent into an arc shape, and two ends of the locking reset piece are respectively abutted with the two locking blades 40 which are arranged in pairs, and provide reset force for the locking blades 40 to move to the stop positions; the coding reset piece 90 is also bent to form an arc shape, two ends of the coding reset piece are respectively abutted to the two coding blades 50 which are arranged in pairs, and the coding blades 50 are driven to move to reset to the first locking position after the first unlocking key 140 is pulled out, and the coding blades 50 are driven to move to reset to the second locking position after the second unlocking key 150 is pulled out. In addition, the avoidance groove 41, the first unlocking groove 51 and the second unlocking groove 52 are rectangular grooves, and the locking groove 12 of the lock case 10 and the end of the locking member 30 extending into the locking groove 12 are both V-shaped, so that when the cylinder core 20 is rotated, the side wall of the locking groove 12 presses the locking member 30, and the locking member 30 can exit from the locking groove 12.
In this embodiment, the lock cylinder further includes an authorization assembly, the authorization assembly includes an authorization pin 101, the authorization pin 101 penetrates through the lock cylinder 20 along a radial direction of the lock cylinder 20, and an included angle is formed between a movement path of the authorization pin 101 and a movement path of the locking member 30, in this embodiment, it is preferable that the movement path of the authorization pin 101 is perpendicular to the movement path of the locking member 30, in other words, the locking member 30 and the authorization pin 101 are arranged along a circumferential direction of the lock cylinder at an interval of 90 degrees, the locking member 30 has a radially extending protrusion 32, the authorization pin 101 has an abdicating groove 102, when the authorization assembly is in an unauthorized state, the abdicating groove 102 of the authorization pin 101 is dislocated from the protrusion 32, the protrusion 32 abuts against an outer surface of the authorization pin 101, so that the authorization pin 101 stops movement of the locking member 30 exiting from the lock case 10, the locking member 30 is locked at a position extending into the lock case 10, when the authorization assembly is in an authorized state, the abdicating groove 102 of the authorization pin 101 is aligned with the protrusion 32, and after the locking blade 40 and the coding blade 50 are unlocked, the protrusion 32 can extend into the abdicating groove 102 and exit the lock case 10, thereby unlocking the lock cylinder.
In this embodiment, the authorization assembly further includes a first magnetic steel 103, an authorization reset piece 104, and a wireless code piece 105, the first magnetic steel 103 is connected to the authorization pin 101, and the two move synchronously, when the lock cylinder is unlocked by the first unlocking key 140 or the second unlocking key 150, the third magnetic steel 143 in the first unlocking key 140 or the second unlocking key 150 and the first magnetic steel 103 attract each other, so as to drive the authorization pin 101 to move, and realize switching of the position of the authorization pin 101; the authorization resetting piece 104 is a spring, is sleeved outside the authorization marble 101, has two ends respectively abutted against the authorization marble 101 and the lock cylinder 20, and provides a resetting force for the authorization marble 101 to move to a position where the abdicating groove 102 and the convex part 32 are staggered, so as to realize automatic resetting of the authorization assembly; the wireless code chip 105 is arranged on the end face of the lock cylinder 20, where the unlocking opening is formed, the specific shape of the wireless code chip 105 can be set according to the shape that the end face can accommodate, so that the wireless code chip 105 is embedded in the lock cylinder 20, and the wireless code chip 105 can be matched with a sensing piece in the first unlocking key 140 or the second unlocking key 150 to identify the lock cylinder.
In order to facilitate the installation of each component in the cylinder core 20, the arc-shaped grooves for accommodating the locking blade 40 and the encoding blade 50 are all communicated with the outside, and in order to avoid the locking blade 40, the encoding blade 50, the locking reset member 80, the encoding reset member 90 and other components are separated from the cylinder core 20, therefore, the shell of the cylinder core 20 is provided with a thin shaft sleeve 110, and the shaft sleeve 110 shields the components, so that the movement range of the components is controlled, the stability of the whole lock cylinder is ensured, and the assembled cylinder core 20 is also conveniently installed in the lock shell 10. The rotary lug 120 is arranged at one end of the lock core 20 far from the break-off lock port, the diameter of the rotary lug 120 is larger than the inner diameter of the lock shell 10, after the lock core 20 is arranged on the lock shell 10 in a penetrating mode, the rotary lug 120 is connected with the lock core 20 through a bolt and other parts in a locking mode, and then the lock core 20 can be reliably connected with the lock shell 10. In addition, a second magnetic steel 130 is further disposed on one end of the lock case 10 near the unlocking opening, and the second magnetic steel 130 can cooperate with a sensing element on the first unlocking key 140 or the second unlocking key 150 to detect the locking/unlocking state of the lock cylinder.
The present embodiment also provides a key system for unlocking the lock cylinder, as shown in fig. 31 and 32, the key system includes a first unlocking key 140 and a second unlocking key 150, the first unlocking key 140 has a common unlocking position 141 cooperating with the locking blade 40 of the lock cylinder, and a first unlocking position 142 cooperating with the coding blade 50 of the lock cylinder, when the first unlocking key 140 unlocks the lock cylinder, the common unlocking position 141 presses the locking blade 40 to move to the avoiding position, and simultaneously the first unlocking position 142 presses the coding blade 50 to move from the first locking position to the first unlocking position; the second unlocking key 150 has a common unlocking position 141 which is the same as the first unlocking key 140, and a second unlocking position 151 which is matched with the coding blade 50, along the width direction of the second unlocking key 150, the distance between the first unlocking position 142 of the first unlocking key 140 and the edge on the same side thereof is greater than the distance between the second unlocking position 151 of the corresponding position of the second unlocking key 150 and the edge on the same side thereof, when the second unlocking key 150 unlocks the lock cylinder, the common unlocking position 141 presses the locking blade 40 to move to the avoiding position, and simultaneously the second unlocking position 151 presses the coding blade 50 to move from the first locking position to the second unlocking position through the first unlocking position and the second locking position in sequence. Since the key cylinder of the present embodiment is provided with a plurality of pairs of the locking blades 40, the common unlocking bits 141 are also provided in plurality and respectively correspond to the locking blades 40, and similarly, since the encoding blades 50 are provided in two, the first unlocking bit 142 and the second unlocking bit 151 are provided in two and respectively correspond to the encoding blades 50. The unlocking of the locking blade 40 by the first unlocking key 140 and the second unlocking key 150 is the same, and the difference is that the first unlocking bit 142 and the second unlocking bit 151 push the coding blade 50 at different distances, which is caused by the different specific positions of the first unlocking bit 142 and the second unlocking bit 151.
It should be noted that the unlocking positions corresponding to the positions are unlocking positions that push the same locking blade 40 to move when the first unlocking key 140 and the second unlocking key 150 are inserted into the lock cylinder, respectively.
The unlocking teeth are arranged on the first unlocking key 140 and the second unlocking key 150 of the embodiment, the specific positions of the side walls of the unlocking teeth are used as a universal unlocking position 141, a first unlocking position 142 or a second unlocking position 151, and as the locking blades 40 and the coding blades 50 in the lock cylinder are arranged in pairs, the two opposite sides of the unlocking teeth are provided with the universal unlocking position 141, the first unlocking position 142 or the second unlocking position 151, so that the first unlocking position and the second unlocking position are matched with the locking blades 40 and the coding blades 50 in pairs. Moreover, due to the arrangement of the unlocking teeth, the distance between the unlocking position and the edge on the same side is the depth of the unlocking teeth, the depth of the side wall of the unlocking teeth on the first unlocking key 140 serving as the first unlocking position 142 is greater than the depth of the side wall of the unlocking teeth on the second unlocking key 150 serving as the second unlocking position 151, that is, the depth of the unlocking teeth at the position indicated by the reference numeral 142 in fig. 31 is greater than the depth of the unlocking teeth at the position indicated by the reference numeral 151 in fig. 32, so that the distance that the first unlocking position 142 pushes the coding blade 50 to move can be less than the distance that the second unlocking position 151 pushes the coding blade 50 to move. Of course, other structures besides the unlocking teeth, such as unlocking slots, may be provided to drive the locking blade 40 and the encoding blade 50 to move.
In the second unlocking key 150 shown in fig. 32, all the first unlocking positions 142 on the first unlocking key 140 are replaced by the second unlocking positions 151, and the second unlocking key 150 is not provided with the first unlocking positions 142, so that when the second unlocking key 150 is used for unlocking, the second unlocking key 150 can change the codes of all the coding blades 50. In addition to this arrangement, part of the first unlocking bit 142 on the first unlocking key 140 may be replaced by the second unlocking bit 151, for example, as shown in fig. 33, one first unlocking bit 142 in fig. 31 is replaced by the second unlocking bit 151, and the other first unlocking bit 142 is not changed, so that when the second unlocking key 150 is used for unlocking, the second unlocking key 150 only changes the code of part of the coded blade 50, and the code of part of the coded blade 50 is not changed.
According to the above-described partial replacement and total replacement, the second unlocking keys may be classified into a plurality of classes according to the number of the replacement first unlocking positions 142, in which a lower class is used as a small number of the second unlocking keys, and a higher class is used as a large number of the second unlocking keys, (hereinafter, the keys are all the second unlocking keys), and when the keys of a certain class are used for transcoding, the keys of the class lower than or equal to the key class cannot be transcoded, and the keys of the class higher than the key class can be transcoded. Taking the lock core and the key of the embodiment as an example, the first-level key replaces the second unlocking position 151 with one first unlocking position 142, the second-level key replaces the second unlocking position 151 with the other first unlocking position 142, and the second-level key replaces the second unlocking position 151 with two first unlocking positions 142; when the first-level key of the second number is used for code conversion, the first-level key of the first number cannot be used for code conversion continuously, and the second-level key can be used for code conversion continuously; after using the second grade key to carry out the transcoding, a one-level key and No. two one-level keys all can't continue to carry out the transcoding, like this, the lock core can carry out the transcoding in proper order as required to along with the increase that the coding blade 50 set up quantity, the number of times that can change the transcoding in proper order also can greatly increased.
In this embodiment, the first unlocking key 140 or the second unlocking key 150 further has a third magnetic steel 143 and a sensing element, when the first unlocking key 140 or the second unlocking key 150 is inserted into the lock cylinder, the third magnetic steel 143 can attract the first magnetic steel 103 in the lock cylinder and drive the authorization assembly of the lock cylinder to switch to an authorization state, and the sensing element is a reed switch or a hall element and can detect the state of the second magnetic steel 130 on the lock cylinder, so as to determine the unlocking state of the lock cylinder.
The specific unlocking process of the lock cylinder of the embodiment is as follows:
as shown in fig. 4 to 9, when the key cylinder is not unlocked, one part of the locking member 30 is located in the cylinder 20, and the other part of the locking member extends into the lock case 10 to stop between the lock case 10 and the cylinder 20, so that the lock case 10 and the cylinder 20 cannot rotate relatively, while the locking blade 40 is located at the stop position, the avoidance groove 41 on the locking blade 40 and the locking member 30 are dislocated, the locking member 30 is stopped by the surface of the locking blade 40 and cannot exit the lock case 10, and the coding blade 50 is located at the first locking position, the coding blade 50 also blocks the movement of the locking member 30, which together with the locking blade 40 locks the locking member 30, and the avoidance groove 102 of the authorized pin 101 and the protrusion 32 are dislocated, so that the authorized assembly is in an unauthorized state.
As shown in fig. 10 to 16, when the lock cylinder is unlocked by using the first unlocking key 140, the first unlocking key 140 is inserted into the lock cylinder, and the first unlocking key 140 authenticates the identity of the lock cylinder, after the authentication is passed, the third magnetic steel 143 attracts the first magnetic steel 103 in the lock cylinder to move and drive the authorized pin 101 to move to the abdicating groove 102 and align with the protrusion 32, the authorized component is switched to the authorized state, and the general unlocking position 141 of the first unlocking key 140 presses the locking blade 40, so that the locking blade 40 rotates in the lock cylinder 20, the abdicating groove 41 on the locking blade 40 rotates to the position aligned with the locking member 30, at this time, the locking blade 40 is located at the abdicating position, the locking blade 40 no longer stops the locking member 30, and at the same time, the first unlocking position 142 of the first unlocking key 140 presses the coding blade 50, and since the depth of the first unlocking position 142 is larger, the pressing coding blade 50 rotates from the first locking position to the first unlocking position, the first unlocking groove 51 on the coding blade 50 rotates to a position aligned with the locking piece 30, and at this time, the locking blade 40 and the coding blade 50 do not stop the locking piece 30 any more, so that when the lock core 20 is driven to rotate by rotating the first unlocking key 140, the locking piece 30 can extend into the avoiding groove 41 and the first unlocking groove 51 under the extrusion of the lock case 10, so as to exit the lock case 10, the locking piece 30 is not clamped between the lock case 10 and the lock core 20, and the lock core 20 can rotate; when the lock is reset after use, the locking member 30 is reset to the position of extending into the lock case 10 by the locking reset member 70, the locking blade 40 is reset to the stop position by the locking reset member 80, and the encoder blade 50 is reset to the first locking position by the encoding reset member 90, that is, to the state shown in fig. 4 to 9. During the unlocking of the first unlocking key 140, the control pin 61 abuts against the outer surface of the code blade 50 without protruding into the control groove 53, and therefore, the movement of the code blade 50 is not affected.
As shown in fig. 17 to 23, when the lock cylinder is unlocked by using the second unlocking key 150, the second unlocking key 150 is inserted into the lock cylinder, and the second unlocking key 150 authenticates the identity of the lock cylinder, and after the authentication is passed, it will also drive the authorization assembly to switch to the authorization state, and the common unlocking bit 141 on the second unlocking key 150 will also press the locking blade 40 to the avoidance position, the process of the two parts is the same as that of the first unlocking key 140, and different from that of the first unlocking key 140, because the depth of the second unlocking bit 151 on the second unlocking key 150 is small, the distance that it presses the coding blade 50 to move is greater than that the first unlocking bit 142 presses the coding blade 50, therefore the coding blade 50 will move to the second unlocking position from the first locking position to the second locking position in sequence by the pressing of the second unlocking bit 151, before the coding blade 50 rotates to pass through the first unlocking position, the control component 60 is always dislocated with the control groove 53 on the coding blade 50, so that the control component 60 does not affect the movement of the coding blade 50, after the coding blade 50 passes through the first unlocking position, the control pin 61 is aligned with the control groove 53 on the coding blade 50, the control pin 61 extends into the control groove 53 under the action of the control resetting piece 62, at the moment, due to the stopping of the control component 60 and the side wall of the control groove 53, the coding blade 50 can only continuously rotate but cannot reversely rotate back to the first unlocking position, so that after the second unlocking key 150 unlocks the lock cylinder, the first unlocking key 140 fails, the first unlocking key 140 can not unlock the lock cylinder any more, the lock cylinder coding is changed, and because the control groove 53 is provided with a certain length, the coding blade 50 can still move between the second unlocking position and the second unlocking position, when the coding blade 50 moves to the second unlocking position, the second unlocking groove 52 on the coding blade 50 rotates to a position aligned with the locking member 30, the locking member 30 and the coding blade 50 do not stop the locking member 30 any more, so when the lock core 20 is driven to rotate by rotating the second unlocking key 150, the locking member 30 will extend into the avoiding groove 41 and the second unlocking groove 52 under the extrusion of the lock shell 10, thereby exiting the lock shell 10, the locking member 30 is no longer clamped between the lock shell 10 and the lock core 20, the lock core 20 can rotate, when the lock core is reset after use, as shown in fig. 24 to fig. 30, the locking member 30 is reset to a position extending into the lock shell 10 under the action of the locking reset member 70, the locking blade 40 is reset to a stopping position under the action of the locking reset member 80, the coding blade 50 can only be reset to the second locking position due to the action of the control assembly 60 and the control groove 53, but cannot be reset to the first latched position.
It should be noted that, a plurality in the above embodiments means at least two.
From the above description, it can be seen that the above-described embodiments of the present invention achieve the following technical effects:
1. the problems of poor safety performance and large volume of the lock cylinder in the prior art are solved;
2. the code conversion work of the lock cylinder can be finished without tools and professional personnel, and the user can simply and quickly finish the code conversion operation;
3. the lock cylinder does not need to be disassembled and opened, so that the risk of losing and damaging parts is avoided;
4. the code changing operation of the lock cylinder is irreversible, and the lock cylinder can be opened only by using a second unlocking key after code changing, so that the lock cylinder can be prevented from being opened again by using a first unlocking key, and the safety of the lock cylinder is improved;
5. the code changing operation can be performed only after the lock cylinder is unlocked by using the second unlocking key and is rotated by a certain angle, so that the code changing operation is prevented from being performed maliciously under the condition that the lock cylinder is not unlocked;
6. the magnetic bead has magnetism, can prevent that the magnetic bead accident from falling into in the accommodation hole and making the code inefficacy in first unblock key unblock process.
It is to be understood that the above-described embodiments are only a few, but not all, embodiments of the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
It is noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments according to the present application. As used herein, the singular is intended to include the plural unless the context clearly dictates otherwise, and it should be further understood that the terms "comprises" and/or "comprising," when used in this specification, specify the presence of features, steps, operations, devices, components, and/or combinations thereof.
It should be noted that the terms "first," "second," and the like in the description and claims of this application and in the drawings described above are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It is to be understood that the data so used is interchangeable under appropriate circumstances such that the embodiments of the application described herein are capable of operation in sequences other than those illustrated or described herein.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. A lock cylinder, comprising:
the lock comprises a lock shell (10), wherein the inner side wall of the lock shell (10) is provided with a locking groove (12);
a lock cylinder (20), wherein the lock cylinder (20) can rotate relative to the lock shell (10);
the locking piece (30) is movably arranged between the lock shell (10) and the lock core (20) and can move between positions extending into and out of the locking groove (12) to lock or unlock the lock core (20);
the authorization component is arranged inside the lock liner (20) and limits the locking piece (30), and the authorization component has an unauthorized state and an authorized state, so that the locking piece (30) is locked at a position extending into the locking groove (12) or can be switched between positions extending into and out of the locking groove (12);
the locking blade (40) is rotatably arranged in the lock liner (20) and penetrates through the locking piece (30), and the locking blade (40) has a stopping position for stopping the locking piece (30) and an avoiding position for avoiding the locking piece (30);
when the lock cylinder is in a locking state, the locking blade (40) is located at the stop position, the locking blade (40) stops the locking piece (30) at a position extending into the locking groove (12), and/or the authorization component is in the unauthorized state, the locking blade (40) and/or the authorization component enables at least one part of the locking piece (30) to be located in the locking groove (12), the locking piece (30) is located at a position extending into the locking groove (12), and the lock liner (20) and the lock shell (10) are kept locked;
When a key system is used for unlocking the lock cylinder, the key system drives the locking blade (40) to rotate, the locking blade (40) releases the limit of the locking piece (30), the authorization assembly and the key system sense and are switched to the authorization state from the unauthorized state, the locking piece (30) can exit the locking groove (12), the lock cylinder is switched to the unlocking state from the locking state, and the lock liner (20) can rotate relative to the lock shell (10).
2. The lock cylinder according to claim 1, characterized in that at least a portion of said authorization assembly is radially inserted into said cylinder (20) with an angle between the path of movement and the path of movement of said locking member (30).
3. The lock cylinder of claim 1, wherein the authorization assembly comprises:
the authorization pin (101) penetrates through the lock liner (20) along the radial direction of the lock liner (20), an included angle is formed between the motion path of the authorization pin (101) and the motion path of the locking piece (30), and the authorization pin (101) can stop or avoid the motion of the locking piece (30) so as to lock the locking piece (30) at a position extending into the locking groove (12) or enable the locking piece (30) to extend out of the locking groove (12);
The first magnetic steel (103), the first magnetic steel (103) is connected with the authorization marbles (101), and the first magnetic steel (103) can drive the authorization marbles (101) to move synchronously under the action of magnetic force;
the two ends of the authorized resetting piece (104) are respectively abutted against the authorized marble (101) and the lock cylinder (20), and the authorized resetting piece (104) provides resetting force for moving the authorized marble (101) to stop the locking piece (30).
4. A lock plug according to claim 3, wherein the locking member (30) has a radially extending projection (32), the enabling pin (101) is provided with a relief slot (102), the relief slot (102) of the enabling pin (101) is misaligned with the projection (32) when the enabling assembly is in the unauthorised state, the enabling pin (101) stops movement of the locking member (30) out of the locking slot (12) to lock the locking member (30) in a position in which it extends into the lock housing (10), the relief slot (102) of the enabling pin (101) is aligned with the projection (32) when the enabling assembly is in the authorised state, the projection (32) being able to extend into the relief slot (102) and out of the lock housing (10).
5. Lock cylinder according to claim 1, characterized in that the blocking element (30) and the blocking blade (40) are each provided in plurality and in pairs on either side of the cylinder core (20) in cross-section.
6. The lock core according to claim 5, characterized in that the locking blade (40) is arc-shaped, the lock core (20) is provided with an arc-shaped groove for accommodating the locking blade (40), the lock core (20) is provided with an unlocking port for inserting the key system, and the unlocking port is eccentrically arranged relative to the end surface of the lock core (20).
7. The lock cylinder according to claim 5, characterized in that, the lock cylinder further comprises a locking reset piece (70), and two ends of the locking reset piece (70) are respectively abutted with the two locking pieces (30) which are arranged in pair, and provide reset force for the locking pieces (30) to extend into the lock shell (10).
8. The lock core according to claim 1, characterized in that the locking blade (40) is provided with an avoiding groove (41), when the locking blade (40) is located at the stopping position, the avoiding groove (41) is staggered with the lock member (30), the locking blade (40) stops the lock member (30) and locks the lock member (30) at a position extending into the lock case (10), when the key system unlocks the lock core, the general unlocking position (141) of the key system extrudes the locking blade (40) to move to the avoiding position, the avoiding groove (41) is aligned with the lock member (30), the lock member (30) can extend into the avoiding groove (41) and exit from the locking groove (12), and the lock core (20) can rotate.
9. The latch core of claim 1 further comprising a latch reset (80), said latch reset (80) abutting said latch blade (40) and providing a reset force to said latch blade (40) moving toward said stop position.
10. The lock cylinder according to claim 1, further comprising:
the wireless code chip (105) is arranged on the end face of the lock liner (20) and can be matched with the key system to identify the lock cylinder;
the shaft sleeve (110), the said shaft sleeve (110) is fitted over the said lock bladder (20), and control the range of motion of the said lock piece (30);
the diameter of the rotary lug (120) is larger than the inner diameter of the lock shell (10), the rotary lug (120) is connected with one end, far away from the lock opening, of the lock core (20), and the lock shell (10) is locked on the lock core (20);
the lock comprises a lock shell (10), a second magnetic steel (130), wherein the second magnetic steel (130) is arranged at one end, close to an unlocking port, of the lock shell (10), and can be matched with an induction part of a key system to detect the locking and unlocking state of the lock cylinder.
CN202110888404.9A 2020-05-13 2020-05-13 Lock core Active CN113445823B (en)

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