GB2580438A - Auto locked lock cylinder after destruction - Google Patents

Auto locked lock cylinder after destruction Download PDF

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Publication number
GB2580438A
GB2580438A GB1902287.0A GB201902287A GB2580438A GB 2580438 A GB2580438 A GB 2580438A GB 201902287 A GB201902287 A GB 201902287A GB 2580438 A GB2580438 A GB 2580438A
Authority
GB
United Kingdom
Prior art keywords
lock
hole
transmission
transverse passage
transmission wheel
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
GB1902287.0A
Other versions
GB2580438B (en
GB201902287D0 (en
Inventor
Liu Tien-Kao
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.)
Federal Lock Co Ltd
Original Assignee
Federal Lock Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Federal Lock Co Ltd filed Critical Federal Lock Co Ltd
Publication of GB201902287D0 publication Critical patent/GB201902287D0/en
Publication of GB2580438A publication Critical patent/GB2580438A/en
Application granted granted Critical
Publication of GB2580438B publication Critical patent/GB2580438B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B17/00Accessories in connection with locks
    • E05B17/20Means independent of the locking mechanism for preventing unauthorised opening, e.g. for securing the bolt in the fastening position
    • E05B17/2084Means to prevent forced opening by attack, tampering or jimmying
    • E05B17/2092Means responsive to tampering or attack providing additional locking
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B17/00Accessories in connection with locks
    • E05B17/20Means independent of the locking mechanism for preventing unauthorised opening, e.g. for securing the bolt in the fastening position
    • E05B17/2084Means to prevent forced opening by attack, tampering or jimmying
    • 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

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  • Lock And Its Accessories (AREA)
  • Braking Arrangements (AREA)

Abstract

A lock with a body with a collar, having at least one lock hole 12 communicating with at least one transverse passage 13. Each lock hole has an elastic component 121 and a, preferably tapered, stop pin 2 with a connection portion 21 and at least one notch 22. Each transverse passage has an elastomer 131 and a lock pin 3. At least one transmission wheel 4 for rotating a cam 5, is located in the collar and has a radial hole (41 Fig 2) having a lock block 42 supported by the lock cylinder (6 Fig 2). In normal use the stop pin 2 contacts the lock block 42 and the connection portion 21 is not engaged into the hole and the cylinder can rotate, the notch 22 is also offset from the transverse passage/lock pin. When the lock cylinder is attacked and separated from the transmission wheel, the stop pin is moved by the elastic component and crosses the shear line blocking the cylinder barrel. The transverse passage 13 is then aligned with the notch and the lock pin 3 engages it holding the stop pin in place.

Description

AUTO LOCKED LOCK CYLINDER AFTER DESTRUCTION
BACKGROUND OF THE INVENTION
1. Fields of the invention
The present invention relates to a lock cylinder that is automatically locked after being destructed.
2. Descriptions of Related A rt
The conventional lock cylinder includes top and bottom beads that are aligned in a specific pattern to achieve purposes of locked feature and unlocked feature. Thefts try to pick and shift theses top and bottom beads to rotate the cam to unlock the lock cylinder without permission. If the lock cylinder includes a complicated arrangement of the top and bottom beads, it is less likely that the lock cylinder can be unlocked by picking and shifting these beads. However, the thefts can also break the housing of the lock to access the lock cylinder and to directly rotate the cam to unlock the lock. In other words, as long as the foreign force is large enough to break the housing of the lock, the lock cannot have the safety feature as desired.
The present invention intends to provide a lock cylinder that is tt, able to eliminate the shortcomings mentioned above.
SUMMARY OF THE INVENTION
The present invention relates to a lock and comprises a body which includes at least one collar and at least one lock hole that communicates with the at least one collar. At least one transverse passage is defined through the body and communicates with the lock hole. An elastic component and a stop pin are respectively located in the at least one lock hole. The stop pin includes a connection portion that is located opposite to the elastic component At least one notch is defined radially in the stop pin. The at least one transverse passage is located corresponding to the at least one notch corresponding thereto. The at least one transverse passage has an elastomer and a lock pin received therein. At least one transmission wheel is pivotably located in the at least one col lar. The at least one transmission wheel includes at least one hole defined radially therein which is located corresponding to the connection portion corresponding thereto and accommodates a lock block therein. A cam is engaged with the at least one transmission wheel which is driven by the cam. At least one lock cylinder has a transmission portion rotatably connected thereto and supports the lock block. The stop pin contacts the lock block. The connection portion is not connected to the at least one hole. T he at least one notch is located offset from the transverse passage. When the transmission portion of the at least one lock cylinder is separated from the at least one transmission wheel, the connection portion is connected to tt, the at least one hole, and the at least one notch is located corresponding to the transverse passage. The lock pin is biased by the el astomer and engaged with the notches.
Preferably, the body includes a connection rod extending axially from each of two ends thereof Each connection rod has a neck which is located close to the at least one collar corresponding thereto. T he strength of the neck of each connection rod is lower than that of the body and the a connection rod corresponding thereto. Each of the connection rods is inserted into a housing that receives the at least one lock cylinder therein. Preferably, the neck is integrally formed with the body and the connection rod corresponding thereto. The neck is a recessed area defined in the connection rod corresponding thereto.
Preferably, the at least one lock hole is defined through the body and a first cap seals a distal end of the at least one hole. The elastic component biases the stop pin and the first cap.
Preferably, the at least one transverse passage includes a second cap sealed at a distal end thereof. The elastomer is biased between the lock pin and the second cap. The second cap includes threaded portion defined in the outer periphery thereof. The at least one transverse passage is a threaded passage so that the second cap is threadedly connected to the at least one transverse passage.
Preferably, the body includes two col lars and a space is formed tt, between the two collars. The cam is located in the space. The at least one transmission wheel is installed to the inner periphery of the cam.
Preferably, there are two transmission wheels respectively located in the inner periphery of the cam. Each transmission wheel includes a positioning member. A positioning room is formed between the two positioning member. Two transmission members each are located at the inner periphery of the transmission wheel corresponding thereto. The transmission members are restricted in the positioning room. The a transmission portions of the two lock cylinders are connected to the transmission members. The transmission portions drive the transmission wheel via the transmission member.
Preferably, each of the at least one lock hole communicates with two transverse passages. The stop pin includes two notches. The notches and the transverse passages are located along the axial direction of the stop pin.
Preferably, the at least one transverse passage is perpendicular to the at least one lock hole. When the connection portion is connected to the at least one hole, the lock pi n is perpendicularly engaged with the notch.
Preferably, the stop pin is tapered and includes a shoulder and the connection portion. When the connection portion is connected to the at least one hole, the shoulder contacts the outer periphery of the at least one transmission wheel.
The advantages of the present invention are that when the lock tt, is hit from outside, because the strength of the neck and the connection ores is low, so that they are broken and the lock cylinder can be pulled out. The transmission portions do not support the lock blocks which are then separated from the holes. The stop pins are biased by the elastic components so that the connection portions are inserted into the holes. Besides, the notches are located corresponding to the transverse passages to align the lock pins with the notches to prevent the stop pins from being separated from the holes due to impact. When the connection portions are inserted into the holes, the transmission wheels are stocked such that the transmission wheels and the cam cannot be rotated to unlock the lock. Therefore, the lock is locked after the lock cylinders are damaged.
The notches are located at the lateral side of the stop pins and do not have curved faces so as to enhance the strength when the lock pins are positioned. Therefore, when the stop pins or the connection portions of the stop pins are hit from outside of the lock, the stop pins or the lock pins are not broken or deformed. When the lock is locked, the stop pins are engaged with the transmission wheels to cause the cam not to be rotated to unlock the lock, and the feature of anti-theft is enhanced.
The present invention can be used to the locks using lock cylinders, regardless of the locks with single lock cylinder or with two lock cylinders.
The present invention will become more apparent from the following description when taken in connection with the accompanying tt, drawings which show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
BRIEF DESCRIPTION OF THE DRAWINGS
Fig. 1 is a perspective view to show the lock of the present invention; Fig. 2 is an exploded view of the lock of the present invention; Fig. 3 is a cross sectional view, taken along lineA-A of Fig. 1; Fig. 4 is a cross sectional view, taken along line B-B of Fig. 1; Fig. 5 shows that the connection portion is inserted into the hole after the lock cylinder is removed, and Fig. 6 shows that the lock pins are engaged with the notches after the lock cylinder is removed.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
Referring to Figs. 1 to 4, the lock of the present invention comprises a body 1 which includes at least one collar 11 and at least one lock hole 12 that communicates with the at least one collar 11. At least one transverse passage 13 is defined through the body 1 and communicates with the lock hole 12. An elastic component 121 and a stop pin 2 are respectively located i n the at least one lock hole 12. T he stop pin 2 includes a connection portion 21 that is located opposite to the elastic component 121. The diameter of the connection portion 21 is smaller than that of the tt, stop pin 2. At least one notch 22 is defined radially in the stop pin 13. The at least one lock hole 12 is defined through the body 1 and a first cap 122 seals the distal end of the at least one hole 12. The elastic component 121 biases the stop pin 2 and the first cap 122. The at least one transverse passage 13 is located corresponding to the at least one notch 22 corresponding thereto. T he at least one transverse passage 13 has an elastomer 131 and a lock pin 3 received therein. In one embodiment the at least one transverse passage 13 includes a second cap 132 sealed at the distal end thereof. The elastomer 131 is biased between the lock pin Band the second cap 132. The second cap 132 includes threaded portion 1321 defined in the outer periphery thereof. T he at least one transverse passage 13 is a threaded passage so that the second cap 132 is threadedly connected to the at least one transverse passage 13.
311. At least one transmission wheel 4 is pivotably located in the at least one collar 11. The at least one transmission wheel 4 includes at least one hole 41 defined radially therein which is located corresponding to the connection portion 21 corresponding thereto and accommodates a lock block 42 therein.
A cam 5 is engaged with the at least one transmission wheel 4 which is driven by the cam 5.
At least one lock cylinder 6 has a transmission portion 61 rotatably connected thereto and the transmission portion 61 is rotatable in the at least one transmission wheel 4 corresponding thereto so as to tt, support the lock block 42. The stop pin 2 contacts the lock block 42. The connection portion 21 is not connected to the at least one hole 41. As shown In Fig. 4, the at least one notch 22 is located offset from the transverse passage 13.
As shown in Fig. 5, when the at least one lock cylinder 6 is removed by force, the transmission portion 61 of the at least one lock cylinder 6 is separated from the at least one transmission wheel 4, and the lock bock 42 is not supported by the transmission portion 61. Therefore, a the connection portion 21 is connected to the at least one hole 41. Because the cam 5 is co-rotatable with the at least one transmission wheel 4, even when the at least one transmission wheel 4 is connected with the stop pin 2, and the cam 5 or the at least one transmission wheel 4 receives a force, the cams cannot be rotated to unlock the lock. In order to prevent the stop 311. pin 2 from separating from the at least one hole 41 when the connection portion 21 is connected to the at least one hole 41, the stop pi n 2 is tapered and includes a shoulder 23 and the connection portion 21. When the connection portion 21 is connected to the at least one hole 41, the shoulder 23 contacts the outer pedphery of the at least one transmission wheel 4. As shown in Fig. 6, in order to prevent the connection portion 21 from being pushed back to the at least one lock hole 12, the at least one notch 22 is located corresponding to the at least one transverse passage 13, and the lock pi n 3 is biased by the el astomer 131 and engaged with the notches 22. The at least one notch 22 is located at the lateral side thereof.
tt, Preferably, the at least one transverse passage 13 is perpendicular to the at least one lock hole 12. When the connection portion 21 is connected to the at least one hole 41, the lock pin 3 is perpendicularly engaged with the notch 22. Therefore, the at least one notch 22 does not a curved face to enhance the strength when lock pin 3 is engaged with the notch 22. Even when a force hits from the inner periphery of the transmission wheel 4 toward the connection portion 21, the stop pin 2 or the lock pin 3 are not broken or deformed to cause failure of the auto-lock feature. In one embodi ment each of the at least one lock hole 12 communicates with two transverse passages 13. The stop pin 2 includes two notches 22. The notches 22 and the transverse passages 13 are located along the axial direction of the stop pin 2. By the two sets of the lock pins 3 respectively engaged with the notches 22, the stop pins 2 are more stable and secured so that the stop pins 2 cannot be pushed backward. When the auto-lock feature is performed, the stop pins 2 firmly engaged with the transmission wheels 4, so that the cam 5 is ensured not to be rotated.
In one embodi ment in order to let the lock to have the auto-lock feature when the lock is hit and the lock cylinder 6 is removed due to that the body 1 is hit and broken, the body 1 includes a connection rod 14 extending axially from each of two ends thereof. Each connection rod 14 has a neck 141 which is located close to the at least one collar 11 corresponding thereto. The strength of the neck 141 of each connection rod 14 is lower than that of the body 1 and the connection rod 14 tt, corresponding thereto. Each of the connection rods 14 is inserted into a housing 7 that receives the at least one lock cylinder 6 therein. As shown in Figs. 1 and 3, the body 1 is located in a door and is connected to the door by extending a bolt (not shown) through a fixing hole 15 at the center of the lock. An unauthorized person can only hit the housing 7 or the lock cylinder 6 from a limited space at one side of the door. Because the strength of the neck 141 is low so that the neck 141 is broken due to the hit and the housing 7, the lock cylinder 6 and the broken connection rod 14 can be pulled out from the lock. When the lock cylinder 6 is removed from the lock, the lock is automatically locked as shown in Figs. Sand 6.
Preferably, the neck 141 is integrally formed with the body 1 and the connection rod 14 corresponding thereto. The neck 141 is a recessed area defined in the connection rod 14 corresponding thereto.
It is noted that the lock cylinder 6 can be installed i n one end of the body 1, or installed in each of two ends of the body 1. The disclosed embodi ment shows that the lock includes two lock cylinders 6. As shown in Figs. 1 to 4, the body 1 includes two collar 11 and a space 16 is formed between the two collars 11. The cam 5 is located in the space 16. The at least one transmission wheel 4 is installed to the inner periphery of the cam 5. In one embodiment, there are two transmission wheels 4 respectively located in the inner pen i phery of the cam 5. Each transmissi on wheel 4 includes a positioning member 43. A positioning room 44 is formed between the two respective positioning members 43. Two tt, transmission members 8 each are located at the inner periphery of the transmission wheel 4 corresponding thereto, and are restricted in the positioning room 44. The transmission members 8 are restricted by the positioning members 43 and cannot be removed from the end of the transmission wheel 4 that has the lock cylinder 6.1 he transmission portion 61 of the lock cylinder 6 is connected to the transmission member 8 corresponding thereto. The transmission portion 61 is driven by the transmission wheel 4 via the transmission member 8. As shown in Fig. 5, a when the connection portions 21 are inserted into the holes 41, the two transmission members 8 are located in the positioning room 44, and cannot be removed from the end from which the lock cylinder 6 is removed, so as to protect the interior components from being damaged, and also to reduce the room and area that the unauthorized persons from hitting the connection portions 21 from the holes 41.
In order to prevent the unauthorized persons to rotate the lock cylinder 6 to make the connection portion 21 not be inserted into the hole 41 to fail the auto-lock feature, the at least one transmission wheel 4 may have multiple holes 41 to ensure that the connection portion 21 can be inserted into one of the holes 41 regardless the angle that the lock cylinder 6 is rotated.
While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from tt, the scope of the present invention.

Claims (10)

  1. WHAT IS CLAIMED IS: 1. A lock comprising: a body (1) which includes at least one col lar (11) and at least one lock hole (12) that communicates with the at least one collar (11), at least one transverse passage (13) defined through the body (1) and communicating with the lock hole (12), an elastic component (121) and a stop pi n (2) respectively located in the at least one lock hole (12), the stop pin (2) including a connection portion (21) that is located opposite to the elastic component (121), at least one notch (22) defined radially in the stop pin (2), the at least one transverse passage (13) located corresponding to the at least one notch (22) corresponding thereto, the at least one transverse passage (13) having an elastomer (131) and a lock pin (3) received therein; at least one transmission wheel (4) pivotably located in the at least one collar (11), the at least one transmission wheel (4) including at least one hole (41) defined radially therein which is located corresponding to the connection portion (21) corresponding thereto and accommodates a lock block (42) therein; a cam (5) engaged with the at least one transmission wheel (4) tt, which is driven by the cam (5), and at least one lock cylinder (6) having a transmission portion (61) rotatably connected thereto and supporting the lock block (42), the stop pin (2) contacting the lock block (42), the connection portion (21) being not connected to the at least one hole (41), the at least one notch (22) located offset from the transverse passage (13), when the transmission portion (61) of the at least one lock cylinder (6) is separated from the at least one transmission wheel (4), the connection portion (21) is connected a to the at least one hole (41), and the at least one notch (22) is located corresponding to the transverse passage (13), the lock pin (3) is biased by the el astomer (131) and engaged with the notches (22).
  2. 2. T he lock as claimed in clai m 1, wherein the body (1) includes a connection rod (14) extending axial ly from each of two ends thereof, each connection rod (14) has a neck (141) which is located close to the at least one collar (11) corresponding thereto, a strength of the neck (141) of each connection rod (14) is lower than that of the body (1) and the connection rod (14) corresponding thereto, each of the connection rods (14) is inserted into a housing (7) that receives the at least one lock cylinder(6) therein.
  3. 3. The lock as claimed in claim 2, wherein the neck (141) is integrally formed with the body (1) and the connection rod (14) corresponding thereto, the neck (141) is a recessed area defined in the connection rod (14) corresponding thereto.
  4. 4. The lock as claimed in claim 1, wherein the at least one lock hole (12) is defined through the body (1) and a first cap (122) seals a distal end of the at least one hole (12), the elastic component (121) biases the stop pi n (2) and the first cap (122).
  5. 5. The lock as claimed in claim 1, wherein the at least one transverse passage (13) includes a second cap (132) sealed at a distal end thereof, the elastomer (131) is biased between the lock pi n (3) and the second cap (132), the second cap (132) includes threaded portion (1321) defined in an outer periphery thereof, the at least one transverse passage (13) is a threaded passage so that the second cap (132) is threadecily connected to the at least one transverse passage (13).
  6. 6. T he lock as claimed in clai m 1, wherein the body (1) includes two collars (11) and a space (16) is formed between the two collars (11), the ca m ( 5) is located in the space (16), the at least one transmission wheel (4) is instal led to an inner periphery of the cam (5).
  7. 7. The lock as claimed in claim 6, wherein there are two transmission wheels (4) respectively located in the inner periphery of the cam (5), each transmission wheel (4) includes a positioning member (43), a positioning room (44) is formed between the two positioning member (43), two transmission members (8) each are located at an inner periphery of the transmission wheel (4) corresponding thereto, the transmission members (8) are restricted in the positioning room (44), the transmission portions (61) of the two lock cylinders (6) are connected to the tt, transmission members (8), the transmission portions (61) drive the transmission wheel (4) via the transmission member (8).
  8. 8. The lock as claimed in claim 1, wherein each of the at least one lock hole (12) communicates with two transverse passages (13), the stop pin (2) includes two notches (22), the notches (22) and the transverse passages (13) are located in an axial direction of the stop pin (2).
  9. 9. The lock as claimed in claim 1, wherein the at least one transverse passage (13) is perpendicular to the at least one lock hole (12), a when the connection portion (21) is connected to the at least one hole (41), the lock pin (3) is perpendicularly engaged with the notch (22).
  10. 10. The lock as claimed in claim 1, wherein the stop pin (2) is tapered and includes a shoulder (23) and the connection portion (21), when the connection portion (21) is connected to the at least one hole (41), the shoulder (23) contacts an outer periphery of the at least one transmission wheel (4).
GB1902287.0A 2019-01-10 2019-02-20 Auto locked lock cylinder after destruction Active GB2580438B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW108101050A TWI666369B (en) 2019-01-10 2019-01-10 Lock cylinder based on automatic lock after destruction

Publications (3)

Publication Number Publication Date
GB201902287D0 GB201902287D0 (en) 2019-04-03
GB2580438A true GB2580438A (en) 2020-07-22
GB2580438B GB2580438B (en) 2022-03-23

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Family Applications (1)

Application Number Title Priority Date Filing Date
GB1902287.0A Active GB2580438B (en) 2019-01-10 2019-02-20 Auto locked lock cylinder after destruction

Country Status (4)

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EP (1) EP3680424A1 (en)
CN (1) CN111425069B (en)
GB (1) GB2580438B (en)
TW (1) TWI666369B (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI725809B (en) * 2020-04-08 2021-04-21 安得烈股份有限公司 Auto locked lock cylinder transmission structure after destruction
TWI773383B (en) * 2021-06-15 2022-08-01 安得烈股份有限公司 Auto locked lock cylinder transmission structure after destruction
TWI781789B (en) * 2021-10-13 2022-10-21 安得烈股份有限公司 Auto locked lock knob cylinder transmission structure after destruction

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EP2287424A2 (en) * 2009-08-17 2011-02-23 Aug. Winkhaus GmbH & Co. KG Locking cylinder
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EP2679749A1 (en) * 2012-06-28 2014-01-01 Tien-Kao Liu Anti-break lock
GB2515054A (en) * 2013-06-12 2014-12-17 Fed Lock Co Ltd Safety lock core assembly

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Publication number Priority date Publication date Assignee Title
EP2287424A2 (en) * 2009-08-17 2011-02-23 Aug. Winkhaus GmbH & Co. KG Locking cylinder
US20130312467A1 (en) * 2012-05-23 2013-11-28 Tien-Kao Liu Anti-break lock
EP2679749A1 (en) * 2012-06-28 2014-01-01 Tien-Kao Liu Anti-break lock
GB2515054A (en) * 2013-06-12 2014-12-17 Fed Lock Co Ltd Safety lock core assembly

Also Published As

Publication number Publication date
TW202026510A (en) 2020-07-16
CN111425069B (en) 2022-06-03
GB2580438B (en) 2022-03-23
EP3680424A1 (en) 2020-07-15
TWI666369B (en) 2019-07-21
CN111425069A (en) 2020-07-17
GB201902287D0 (en) 2019-04-03

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