The present invention relates to a lock, especially to a pickproof lock that can be avoided from being opened by a lock picking tool.
A lock is commonly used to protect personal goods or private matters and only a specific key may unlock the lock, so as to avoid the personal goods and the private matters from being stolen.
A conventional lock comprises a hollow housing, a lock shaft and a sleeve mounted in the housing, and multiple pin sets mounted in the lock shaft and the sleeve. The pin sets are separately arranged annularly. Each of the pin sets includes two pins and a resilient element. The two pins and the resilient element are arranged along an axial direction of the housing. When a key is inserted into the lock, the key pushes the pins and compresses the resilient elements. As a gap between the pins of each of the pin sets aligns with a shear plane between the lock shaft and the sleeve, the key can be turned to drive the lock shaft to rotate, such that the conventional lock is unlocked.
By understanding the above-mentioned details of unlocking the conventional lock, a person with bad intentions may insert a round tube into the housing, letting an outer surface of the round tube be damaged by the pins and letting multiple slots with different lengths be formed on the outer surface of the round tube. According to the lengths of the slots, distances that the pin sets should be pushed when unlocking the lock can be speculated. The person with bad intentions can illegally unlock the lock by using the round tube having the slots and steal the personal goods or private matters. Therefore, the conventional lock is unable to avoid the personal goods and the private matters from being stolen.
To overcome the shortcomings, the present invention provides a pickproof lock to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide pickproof lock that has a housing, a lock shaft, a sleeve, multiple axial pin sets, and at least one radial pin set.
The housing has a mounting chamber defined in the housing, a sidewall defined around the mounting chamber, and at least one through hole. Each of the at least one through hole is formed through the sidewall of the housing.
The lock shaft is mounted in the mounting chamber of the housing and has a head portion, a mounting portion axially protruding from a rear end surface of the head portion, an outer recess axially formed in a front end surface of the head portion, an inner recess axially formed in a inner bottom in the outer recess, multiple mounting holes separately arranged annularly along a peripheral side surface of the head portion, at least one side hole, at least one inner side surface, and at least one stop flange. Each of the at least one side hole is formed in the peripheral side surface of the head portion and aligns with a corresponding one of the at least one through hole of the housing. Each of the at least one inner side surface of the lock shaft is defined around a corresponding one of the at least one side hole. Each of the at least one stop flange is formed on a corresponding one of the at least one inner side surface of the lock shaft.
The sleeve is mounted around the mounting portion of the lock shaft, is securely connected with the housing, and has multiple blind holes formed in a front end surface of the sleeve and respectively aligning with the mounting holes of the lock shaft.
The axial pin sets are respectively mounted in the mounting holes of the lock shaft and are respectively mounted in the blind holes of the sleeve. Each of the axial pin sets includes a first pin, an axial resilient element, and a second pin.
The at least one radial pin set is mounted in the at least one side hole of the lock shaft and the at least one through hole of the housing. Each of the at least one radial pin set includes a key pin, a driver pin, a retaining panel, and a radial resilient element.
When unlocking the pickproof lock, the key is able to push the axial pin sets and the at least one radial pin set to unlocking positions, so as to drive the lock shaft to rotate and to unlock the pickproof lock. The complexity of the pickproof lock is increased. People with bad intentions are unable to unlock the pickproof lock with a lock picking tool, such as a round tube. Accordingly, personal goods or private matters can be safely protected by the pickproof lock. Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With further reference to
The housing 10 has a front end, a rear end, a mounting chamber 11, a sidewall 12, and at least one through hole 13. The rear end of the housing 10 is disposed opposite to the front end of the housing 10. The mounting chamber 11 is defined in the housing 10 and is formed through the front end of the housing 10 and the rear end of the housing 10. The sidewall 12 of the housing 10 is defined around the mounting chamber 11. Each of the at least one through hole 13 is formed through the sidewall 12 of the housing 10.
The lock shaft 20 is mounted in the mounting chamber 11 of the housing 10 and has a head portion 21, a mounting portion 22, an outer recess 23, an inner recess 24, multiple mounting holes 25, at least one side hole 26, at least one inner side surface, and at least one stop flange 27.
The head portion 21 has a peripheral side surface, a front end surface, a rear end surface. The front end surface of the head portion 21 faces the front end of the housing 10. The rear end surface of the head portion 21 faces the rear end of the housing 10. The mounting portion 22 axially protrudes from the rear end surface of the head portion 21, protrudes out of the housing 10 from the rear end of the housing 10, and may be attached to a latch. A diameter of the mounting portion 22 is smaller than a diameter of the head portion 21.
The outer recess 23 is axially formed in the front end surface of the head portion 21. An inner bottom is defined in the outer recess 23 and is parallel to the front end surface of the head portion 21 and rear end surface of the head portion 21. The inner recess 24 axially formed in the inner bottom in the outer recess 23 and extends into the mounting portion 22.
The mounting holes 25 separately arranged annularly along the peripheral side surface of the head portion 21. Each of the mounting holes 25 is axially formed through the front end surface of the head portion 21 and the rear end surface of the head portion 21. Each of the at least one side hole 26 is formed in the peripheral side surface of the head portion 21, radially extends in the head portion 21, communicates with the inner recess 24, and aligns with a corresponding one of the at least one through hole 13 of the housing 10.
Each of the at least one inner side surface of the lock shaft 20 is defined around a corresponding one of the at least one side hole 26. Each of the at least one stop flange 27 is formed on a corresponding one of the at least one inner side surface of the lock shaft 20 and is disposed adjacent to the inner recess 24.
The sleeve 30 is cylindrical and is annular in cross-section. The sleeve 30 is mounted around the mounting portion 22 of the lock shaft 20, is disposed in the mounting chamber 11, is securely connected with the housing 10, and has a front end surface and multiple blind holes 31. The front end surface of the sleeve 30 is annular and faces the rear end surface of the head portion 21 of the lock shaft 20. The blind holes 31 are formed in the front end surface of the sleeve 30, are separately arranged annularly, and respectively align with the mounting holes 25 of the lock shaft 20.
The axial pin sets 40 are respectively mounted in the mounting holes 25 of the lock shaft 20 and are respectively mounted in the blind holes 31 of the sleeve 30. Each of the axial pin sets 40 includes a first pin 41, an axial resilient element 43, and a second pin 42. The first pin 41 is mounted in the mounting hole 25 of the lock shaft 20. The axial resilient element 43 is mounted in the blind hole 31 of the sleeve 30. Specifically, the axial resilient element 43 is a compression spring. The second pin 42 is mounted in the blind hole 31 of the sleeve 30 and is disposed between the first pin 41 and the axial resilient element 43. The second pin 42 is pushed by the axial resilient element 43 to protrude to the mounting hole 25 of the lock shaft 20 and abut against the first pin 41.
The at least one radial pin set 50 is mounted in the at least one side hole 26 of the lock shaft 20 and the at least one through hole 13 of the housing 10. Each of the at least one radial pin set 50 includes a key pin 51, a driver pin 52, a retaining panel 53, and a radial resilient element 54.
The key pin 51 is mounted in the side hole 26 of the lock shaft 20 and has a positioning end, an abutting end, a side surface, and an abutting flange 511. The positioning end of the key pin 51 protrudes to the inner recess 24 of the lock shaft 20. The abutting end of the key pin 51 is disposed opposite to the positioning end of the key pin 51. The abutting flange 511 is formed around the side surface of the key pin 51, is disposed between the positioning end and the abutting end of the key pin 51, and abuts the stop flange 27 in the side hole 26 of the lock shaft 20. The driver pin 52 is mounted in the side hole 26 of the lock shaft 20 and the through hole 13 of the housing 10 and abuts the abutting end of the key pin 51.
The retaining panel 53 is mounted in the through hole 13 of the housing 10 and is securely attached to the housing 10. The radial resilient element 54 is mounted in the through hole 13 of the housing 10, is disposed between the driver pin 52 and the retaining panel 53, and has two ends respectively abutting the driver pin 52 and the retaining panel 53 to push the driver pin 52 to protrude to the side hole 26 of the lock shaft 20. Specifically, the radial resilient element 51 is a compression spring.
As shown in
With further reference to
As a gap between the key pin 51 and the driver pin 52 of each of the at least one radial pin set 50 aligns with a shear plane between the head portion 21 of the lock shaft 20 and the sidewall 12 of the housing 10 and a gap between the first pin 41 and the second pin 42 of each of the axial pin sets 40 aligns with a shear plane between the head portion 21 of the lock shaft 20 and the sleeve 30, the key 60 can be turned to drive the lock shaft 20 to rotate and to unlock the pickproof lock 1.
As shown in
Furthermore, with further reference to
The pickproof lock 1, 1A as described has the following advantages. Since the pickproof 1, 1A comprises both the axial pin sets 40 and the at least one radial pin set 50, when unlocking the pickproof lock 1, 1A, the key 60, 60A is able to push the axial pin sets 40 and the at least one radial pin set 50 to unlocking positions, so as to drive the lock shaft 20, 20A and the latch to rotate and to unlock the pickproof lock 1, 1A. Thus, the complexity of the pickproof lock 1, 1A is increased. People with bad intentions are unable to unlock the pickproof lock 1, 1A with a lock picking tool, such as a round tube. Accordingly, personal goods or private matters can be safely protected by the pickproof lock 1, 1A.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
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