The present invention relates to a sliding door latch assembly which includes two hooks and a safety device which controls the two hooks to be received in the sliding door if the sliding door is in open position.
A conventional patio sliding door generally includes a latch assembly connected to the lock face of the stile and includes a hook which is operated by a control member so that the hook can be pivoted to hook on part on a fixed door. The single-hook structure of the conventional latch assembly is easily to be opened by force and cannot exclude forced entry. Besides, the hook can be extended out from the slot defined in the lock face of the sliding door without any limitation so that the hook can be in lock position while the sliding door is in open position. This is to say, if the sliding door is slid to close while the hook is extended, the hook and/or the whole latch assembly can be damaged.
The present invention intends to provide a sliding door latch assembly that has a safety member which is movably located on the lock face of the sliding door and only if the safety member is pushed when the door is in close position, the hooks can be pivoted.
In accordance with one aspect of the present invention, there is provided a latch assembly connected to a lock face of a sliding door and the latch assembly comprises a trim plate with two slots and a first hole. A safety member is movably received in the box connected to the trim plate and a spring is connected between the safety member and a rear plate of the box. The safety member includes a contact pin extending through the first hole and an engaging pin connected to a link assembly. Two hooks are pivotably connected to a side plate of the box and located corresponding to the two slots. Two activation plates are movably received in the box and each activation plate has an end pivotably connected to respective one of the hooks. One of the activation plates has a recess defined in an edge thereof and the engaging pin of the safety member is removably engaged with the recess. A driving device is located between the two activation plates so as to drive the two activation plates simultaneously. Two rotation gears are rotatably connected to the side plate of the box and each of which includes teeth which are engaged with notches defined in one of the activation plates. The other end of the link assembly is connected to one of the two rotation gears.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings which show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
Referring to
Two activation plates 4 and 4′ are movably received in the box 10 and each activation plate 4/4′ has a slot 41/41′ at one end thereof and each hook 6 has a boss 61 on a side thereof so that the boss 61 are movably engaged with the slot 41/41′ of the two activation plates 4, 4′. The activation plates 4′ has a recess 42′ defined in an edge thereof and the engaging pin 21 of the safety member 2 extends through a slot 701 defined through the first link 70 of the link assembly 7 and is removably engaged with the recess 42′ so as to prevent the activation plate 4′ from moving. The link assembly 7 includes a pivotable link 71 pivotably connected to a hole 1021 in the side plate 102 of the box 10 by a pin 91, and the first link 70 and a second link 72 are pivotably connected to two ends of the pivotable link 71. The other end of each activation plate 4/4′ has a toothed surface 40/40′, the two toothed surfaces 40, 40′ being located to face each other. A driving device 5 is located between the two activation plates 4, 4′ and includes two pinions 5 which are connected to two holes 1022 in the side plate 102 and engaged with the two toothed surfaces 40, 40′. Each of the two activation plates 4, 4′ has a tongue 43 on a side thereof and the two tongues 43 are movably engaged with two respective slots 1023, 150 defined in the two side plates 102, 15.
Two rotation gears 3, 3′ are rotatably connected to two holes 1020 in the side plate 102 of the box 10 and each of which includes teeth 30/30′ which are engaged with notches 400 defined in the activation plate 4 on the opposite side of the toothed surface 40. The second link 72 of the link assembly 7 is connected to one of the two rotation gears 3, 3′.
When the sliding door 100 is in its open position, the two engaging pin 21 is engaged with the recess 42′ of the activation plate 4′ so that the two rotation gears 3, 3′ cannot be rotated and the two hooks 6 are received in the box 10 as shown in
When the sliding door 100 is slid to its close position and the lock face 100′ contacts the fixed door 200, the contact pin 20 is pushed into the box 10 and the engaging pin 21 is removed from the recess 42′ of the activation plate 4′ as shown in
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 the scope of the present invention.
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Number | Date | Country | |
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20040245784 A1 | Dec 2004 | US |