The present invention relates to a trigger assembly, and, more particularly, to a trigger assembly with two safety units.
A conventional trigger assembly is shown in
However, the conventional trigger assembly does not have two safety units, so that when the arrow is in position, the safety plate A3 and the activation plate A1 are moved backward. The pivotably member A4 is lowered because of the force from the spring A5. If the user unintentionally pulls the trigger A6, the arrow may touch the rear end of the pivotable member A4 and generates a huge noise which may scare the user.
The present invention intends to provide a trigger assembly which improves the shortcomings of the conventional trigger assembly.
The present invention relates to a trigger assembly and comprises a body having a presser and a trigger pin located at the lower side of the body. A trigger is pivotably connected to the body by the trigger pin and has a contact portion formed on the top of one side thereof. A pin contacts the contact portion, and a trigger spring is mounted to the pin. A free end of the trigger spring contacts the body which has a pivot located close to the trigger pin. A hook is mounted to the pivot and has a resilient member connected thereto. A cap is securely connected to one side of the body. The body has a chamber, and a path communicates with the chamber. A first positioning unit is located in the path, and a safety member is located in the chamber. The safety member has two slots defined in the underside thereof. The first positioning unit contacts the slots. A guide rod protrudes front the top of the safety member. An activation member is located on the top of the safety member and has a guide groove and a positioning hole. The guide rod is located in the guide groove. A second positioning unit is located in the body and contacts the positioning hole. A pivotal member is pivotably connected to the body and located close to the hook. The pivotal member has an end contacting a push portion on the top of the activation member. A protrusion extends from the top of the pivotal member, and a spring is mounted to the protrusion. A free end of the spring contacts the inside of the body.
Preferably, the resilient member is a spring.
Preferably, the first and second positioning units are a bead and a spring respectively.
Preferably, the second positioning unit has a bolt connected to the top thereof.
Preferably, the body has a gauge on the top thereof.
Preferably, the body has an adjustment button on the side thereof.
Preferably, the pivotal member has a lever connected thereto.
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
The body 10 has a chamber 101, and a path 102 communicates with the chamber 101. A first positioning unit 20 is located in the path 102, and a safety member 30 is located in the chamber 101. The safety member 30 has two slots 31 defined in the underside thereof, and the first positioning unit 20 contacts the slots 31. A guide rod 32 protrudes from the top of the safety member 30. An activation member 40 is located on the top of the safety member 30 and has a guide groove 41 and a positioning hole 42. The guide rod 32 is located in the guide groove 41. TheA second positioning, unit 50 has a bolt 60 connected to a top thereof. AThe second positioning unit 50 is located in the body 10 and contacts the positioning hole 42. A pivotal member 70 is pivotably connected to the body 10 and located close to the hook 17. The pivotal member 70 has an end normally contactingforming a push portion 71contacting on the top of the activation member 40. A protrusion 72 extends from the top of the pivotal member 70, and a spring 73 is mounted to the protrusion 72. A free end of the spring 73 contacts the inside of the body 10.
In this embodiment, the resilient member 171 is a spring, and the first and second positioning units 20, 50 are a bead and a spring respectively.
The body 10 has a gauge 80 on the top thereof, and an adjustment button 90 is located on one side of the body 10. The pivotal member 70 has a lever 74 connected thereto.
When not in operational status, the second positioning unit 50 is positioned to the positioning hole 42, and the first positioning unit 20 is positioned to the slot 31 of the safety member 30. When the safety member 30 is moved back and locked as shown by the arrowhead in
While we have shown and described the embodiment in accordance with the present invention has been shown and described, 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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6802304 | Chang | Oct 2004 | B1 |
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20090064978 | Matasic | Mar 2009 | A1 |
Number | Date | Country | |
---|---|---|---|
Parent | 13356659 | Jan 2012 | US |
Child | 14837155 | US |