Magnetic coding free pin type lock cylinder structure
09790712 ยท 2017-10-17
Assignee
Inventors
Cpc classification
International classification
Abstract
A magnetic coding free pin type lock cylinder structure includes: a lock cylinder housing (101), a lock knob (104) disposed within the lock cylinder housing (101), a lock cylinder front end cover (102) and a lock cylinder rear end cover (103). Pin vertically moving grooves (114) and pin horizontally rotary grooves (113) are provided on an inner wall of the lock cylinder housing (101). An unlocking hole (116) for a magnetic coding key (115) is provided on the lock knob (104). A plurality of pin vertical sliding grooves (112) is provided on an outer wall of the lock knob (104). Free pins are provided in at least one of the plurality of pin vertical sliding grooves (112), and the free pins are big pins (107) or small pins (108).
Claims
1. A magnetic coding free pin type lock cylinder structure, comprising: a lock cylinder housing; a lock knob rotationally disposed within the lock cylinder housing; a lock cylinder front end cover and a lock cylinder rear end cover respectively located at two ends of the lock cylinder housing, wherein, at least one pin vertically moving groove and at least one pin horizontally rotary groove are provided on an inner wall of the lock cylinder housing, an unlocking hole for a magnetic coding key is provided axially at an end of the lock knob, opposite to the lock cylinder front end cover, a plurality of pin vertical sliding grooves are provided on an outer wall of the lock knob, free pins are provided in at least one of the plurality of pin vertical sliding grooves, and the free pins are big pins or/and small pins; wherein pin moving cavities are formed by the pin vertical sliding grooves and the corresponding pin vertically moving grooves, and each pin moving cavity intersects with the pin horizontally rotary grooves; wherein a depth of the pin vertically moving grooves is the same as a depth of the pin horizontally rotary grooves, and a sum of the depth of the pin vertically moving grooves and a depth of the pin vertical sliding grooves is not less than a dimension of the big pins, to ensure that the big pins are freely movable, the depth of the pin vertically moving grooves and the depth of the pin horizontally rotary grooves are less than a dimension of the small pins and the depth of the pin vertical sliding grooves is more than or equal to the dimension of the small pins; when the lock cylinder is in a locking state, at least one big pin is located within the pin moving cavities separate from the pin horizontally rotary grooves, or at least one small pin is not entirely located within the pin vertical sliding grooves, when the lock cylinder is in an unlocking state, the big pins are located within the pin moving cavities intersecting with the pin horizontally rotary grooves and the small pins are entirely located within the pin vertical sliding grooves.
2. The magnetic coding free pin type lock cylinder structure of claim 1, wherein a dustproof device is provided within the unlocking hole, the dustproof device includes a spring and a dustproof end cover, an end of the spring is located at a bottom of the unlocking hole and connected to the lock knob, and an other end of the spring is connected to the dustproof end cover, in the locking state, the dustproof end cover is pushed to an opening of the unlocking hole by the spring.
3. The magnetic coding free pin type lock cylinder structure of claim 1, wherein the lock knob is located along an axis of the lock cylinder housing, and the lock cylinder front end cover and the lock cylinder rear end cover are respectively located at two ends of the lock cylinder housing and envelop the lock knob.
4. The magnetic coding free pin type lack cylinder structure of claim 1, wherein an O type sealing ring and a sealing gasket are provided successively from outside to inside, along an outer circumference of the lock knob, and the O type sealing ring and the sealing gasket are located between the lock cylinder front end cover and the lock cylinder housing, and in a gap between the lock cylinder rear end cover and the lock cylinder housing.
5. The magnetic coding free pin type lock cylinder structure of claim 1, wherein the unlocking hole is a cylindrical hole, and a groove engaged with the magnetic coding key is provided on a side wall of an opening of the unlocking hole.
6. The magnetic coding free pin type lock cylinder structure of claim 1, wherein the free pins are spherical or cylindrical.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
DETAILED DESCRIPTION OF THE INVENTION
(12) As shown in
(13) One pin moving cavity is taken as an example, to be described in detail as follows:
(14)
(15)
(16)
(17)
(18)
(19) Additionally, in this embodiment of the invention, the depth of the pin vertically moving grooves 114 is the same as the depth of the pin horizontally rotary groove 113 to ensure that the free pins are movable. The sum of the depth of the pin vertically moving grooves 114 and the depth of the pin vertical sliding grooves 112 is not less than the dimension of the big pins 107, to ensure that the big pins 107 are freely movable. The depth of the pin vertically moving grooves 114 and the depth of the pin horizontally rotary grooves 113 are less than the dimension of the small pins 108 and the depth of the pin vertical sliding grooves 112 is not less than the dimension of the small pins 108, to ensure that the small pins 108 would not affect the rotation of the lock knob 104 in the normal unlocking state.
(20) To improve the waterproof and dustproof effects of the technical solution of the invention, a dustproof device is provided within the unlocking hole 116. The dustproof device includes a spring 109 and a dustproof end cover 110. An end of the spring 109 is located at the bottom of the unlocking hole 116 and connected to the lock knob 104. The other end of the spring 109 is connected to the dustproof end cover 110. In the locking state, the dustproof end cover 110 is pushed to tire opening of the unlocking hole 116 by the spring 109 In addition, an O type sealing, ring 105 and a sealing gasket 106 are provided successively from outside to inside, along the outer circwnference of the lock knob 104. The O type sealing ring 105 and the sealing gasket 106 are located between the lock cylinder front end cover 102 and the lock cylinder housing 101, and in the gap between the lock cylinder rear end cover 103 and the lock cylinder housing 101.
(21) The principle of the unlocking is provided as follows: alter a correct magnetic coding key 115 is inserted into the unlocking hole 116, the free pins all move to the unlocking position due to the magnetic attraction of the magnetic coding key 115. At this point, the lock knob 104 and the lock cylinder housing 101 can be relatively rotated, and thus the lock cylinder can be unlocked.
(22) The above embodiment is on illustrative, and not intended to limit the invention. All equivalent changes and modifications according to the invention should be covered by the scope of the claims.