The present invention is related to an easily disassembled structure of an auxiliary lock, particularly to the internal lock body of an auxiliary lock having a structure that can be easily assembled and disassembled.
The internal lock body of the conventional auxiliary locks generally comprises an inner housing having two spaced through holes and a hole located therebetween; a shaft to be inserted into the hole of the inner housing and having two opposing ends, wherein one end has a circumferential groove for engaging with C-ring and the other has a transverse hole; a cover having a hole aligned with the hole in the inner housing so as to allow the shaft to pass through; a knob having an axle portion with an axial hole for fitting over one end of the shaft, wherein the axle portion has a transverse hole aligned with the transverse hole of the shaft so as to allow a pin to be inserted therein and therefore secure the shaft and the knob together.
With the lock structure as described above, since a C-ring is used to secure one end of the shaft to the inner housing, tools will be needed in assembling the locks in workshops. The assembling procedures would be very time-consuming. Furthermore, if any defect is found in a component of the locks and the component needs to be replaced during the assembling procedure, it will be found that disassembling the locks is very difficult. In addition, when installing a lock onto a door, the pin should be unfastened from the transverse hole of the knob first before the knob and the shaft can be separated. After the cover is unfastened and the inner housing is aligned with the outer housing, and two screws pass through the holes of the inner housing and thus secure the inner housing and the outer housing together, the cover is mounted, the knob is fit over the shaft, and the pin is inserted into the transverse hole after the knob is aligned with the shaft so that the knob and the shaft can be secured together. Such assembling job is complicated and difficult for ordinary users without skilled technique.
The primary objective of the present invention is to provide an easily disassembled auxiliary lock so that the interior of the lock body has the advantageous features of being easily assembled and easily disassembled.
The secondary objective of the present invention is to provide an easily disassembled auxiliary lock so that the interior of the lock body can be easily manufactured and assembled.
The easily disassembled auxiliary lock of the present invention comprises a housing having a hole and a protrusion radially and inwardly provided on the periphery of the hole; a shaft with a various cross-sectional area being inserted into the hole of the housing; a longitudinal groove formed on the exterior of the shaft; a circumferential groove formed on the exterior of the shaft and in communication with the longitudinal groove providing engagement with the protrusion on the housing; an axial hole formed in the axial direction of the shaft; a cover having a hole aligned with the hole of the housing for allowing the shaft to pass through; a knob having an axle portion; an axial hole formed in an axial direction in the knob for allowing the shaft to be inserted therein; a threaded hole formed in a transverse direction in the axle portion of the knob; and a fastening screw capable of threading into the threaded hole, and securing the shaft and the knob together.
As shown in
Two posts 18, 19 having through holes 20, 21, respectively, are provided near the inner ring 13 and each axially extend from the base surface 14 in spaced manner. A circular surface is formed around the base surface 14 of the housing 1, and the circumferential surface of the circular surface forms a positioning portion 22.
A shaft 3 having a body with different cross-section is inserted into the hole 11 of the housing 1. The shaft 3 has an axial hole 31 formed axially along the shaft 3 for allowing the shaft (not shown) of the external lock body to be inserted therein. The shaft 3 has a first section 32 and a second section 33, and a circumferential groove 34 is formed between the first section 32 and the second section 33. The second section has a longitudinal groove 35 in communication with the circumferential groove 34. A third section 36 is formed between the first section 32 and the circumferential groove 34. There are a first surface 37 and a second surface 38 adjacent to the first section. The first surface 37 and the second surface 38 are substantially perpendicular. In an embodiment, two spaced and parallel first surfaces 37 and two spaced and parallel second surfaces 38 can be provided. The second section 33 has multiple planes 39.
A cover 4 substantially in the shape of a disk has a base 41. A hole corresponding to the hole 11 of the housing 1 is provided on the base 41. The base 41 forms a circumstantial sidewall which further forms an engaging portion 43 protruding out from the base 41 and is adapted to engage with the recess 22 on the housing 1.
A knob 5 has an axle portion 51 extending axially. An axial hole 52 is formed inwardly from the end face of the axle portion 51. Four spaced grooves 53 (only two of them shown in
A threaded hole 54 is formed transversely on the axle portion 51 and is in communication with the axial hole 52.
A fastening screw 6, during assembly, is threaded into the threaded hole 54 of the axle portion 51 and engages with the circumferential groove 34 of the shaft 3 so that the shaft 3 and the axle portion 5 are fastened together.
A washer 7 having resilience is fitted over the shaft 3 during assembly and is positioned between the cover 4 and the knob 5 so as to reduce the friction therebetween.
Two screws 8, 9 are inserted into the through holes 20, 21 of the housing 1, respectively, so as to fasten the housing 1 and the external lock body (not shown) together.
When assembling the lock, the longitudinal groove 35 of the shaft 3 is aligned with the protrusion 12 of the housing 1, and the second section 33 of the shaft 3 is inserted into the hole 11 of the housing 1 so that the circumferential groove 34 of the shaft 3 can be aligned with the protrusion 12 of the housing 1. Then, the shaft 3 is rotated 180 degrees relative to the housing 1 so that the circumferential groove 34 of the shaft 3 can be engaged with the protrusion 12 of the housing 1. The positioning member 2 in the housing 1 can exactly contact the first surface 37 of the shaft 3 so that the shaft 3 is fixed in position. Then the two screws 8, 9 are inserted into the through holes 20, 21 of the housing 1, respectively, and are fastened with the external lock body (not shown).
Subsequently, the cover 4 is assembled with the second section 33 of the shaft inserted through the hole 42 so that the engaging portion 43 is engaged with the recess 22 of the housing 1. The washer 7 is then fitted over the second section 33 of the shaft 3, and the second section 33 of the shaft 3 is inserted into the axial hole 52 of the axle portion 51 of the knob 5 so that the planes 39 of the shaft 3 are engaged with the grooves 53 of the knob 5. The screw 6 is threaded into the threaded hole 54 of the knob 5 to secure the shaft 3 in the axial hole 52 so that the internal lock body of the auxiliary lock is assembled. In case the internal lock body of the auxiliary lock is to be disassembled, the above assembling procedures are reversed.
Therefore, when either the lock is to be assembled or disassembled, only a screwdriver is needed to carry out the procedures without any special tools (like a tool for dismounting a C-ring).
Number | Date | Country | Kind |
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92200997 U | Jan 2003 | TW | national |
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Number | Date | Country | |
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20040145192 A1 | Jul 2004 | US |