1. Field of the Invention
The present invention relates to a toy guns and more particularly, to a firing control mechanism for toy gun that allows control of single-shot, 3-shot continuous firings multi-shot continuous firing, or safety lock mode.
2. Description of the Related Art
Regular air-soft guns do not produce an anti-personal force, however they are designed like a real gun, for example, they have an outer appearance like a real gun or produce a feedback vibration. With respect to firing control, an air-soft gun, for example, the design of Taiwan Patent Publication Number 334844 allows selection of the function of single-shot, 3-shot continuous firing, multi-shot continuous firing, or safety lock mode.
The firing control mechanism according to Taiwan Patent Publication Number 334844 comprises a bolt, a hammer, a trigger, a hammer hook, a continuous firing control rod and a switch. The switch is located on one side of the gun body, having an operation lever. Further, a link is provided inside the gun body, having a cut to match the operation of the trigger. The location and width of the cut are determined subject to actual requirements such as the operation of safety lock, single-shot, 3-shot and multi-shot. Further, ratchet wheel and pawl may be added to match the hammer hook and continuous firing control rod.
Further, the hammer and the ratchet wheel are pivotally connected together by an axle. The ratchet wheel is for rotation in one single direction, having on its one side two series of teeth each including two shadow teeth and one deep tooth. By means of forcing the pawl into engagement with the shadow teeth or deep tooth, 3-shot continuous firing control function is achieved. However, this design does not teach the way how to have the ratchet wheel be rotated in one single direction. The invention has been accomplished to prevent reverse rotation of the ratchet wheel, assuring positive firing control.
The present invention has been accomplished under the circumstances in view. It is one object of the present invention to provide a firing control mechanism for air-soft toy gun, which allows selection of single shot, 3-shot continuous firing, multi-shot continuous firing or safety lock mode subject to the action of a continuous firing control rod and a ratchet wheel and effectively prohibits reverse rotation of the ratchet wheel to assuring positive action of the selected mode.
To achieve this and other objects of the present invention, a firing control mechanism for air-soft toy gun in accordance with the present invention comprises a bolt, a hammer, a trigger, a switch, a hammer hook, a continuous firing control rod, the hammer having a hooked portion located on the bottom side thereof for hooking by the hammer hook and an axle, a ratchet wheel mounted on the axle of the hammer for rotation on the axle in one single direction, the ratchet wheel having at least one series of shadow and deep teeth arranged around the periphery thereof at one side, each series of teeth including two shadow teeth and one deep tooth, a pawl provided at one side of the hammer hook for engaging the ratchet wheel, the switch comprising a link that has at least three cuts, the position of the at least three cuts being changed relative to the hammer hook, the pawl and the continuous firing control rod when the switch is rotated, the hammer hook, the pawl and the continuous firing control rod cach having a bearing portion respectively controllable to engage one cut of the link for entering one of single shot firing mode, 3-shot continuous firing mode, multi-shot continuously firing mode and safety lock mode. The ratchet wheel has a plurality of sloping teeth equiangularly arranged around the periphery thereof at an opposite side. The number of the sloping teeth is equal to the total number of the teeth of the at least one series of shadow and deep teeth. The hammer has a stop rod meshed with one sloping tooth of the ratchet wheel. The stop rod of the hammer is shifted into mesh with a next sloping tooth of the ratchet wheel to prohibit reverse rotation of the ratchet wheel when said hammer is returned after a forward rotation subject to a hammering action of said hammer.
Further, the stop rod extends through the hammer, having a rear end supported on a spring member at the hammer.
Further, the hammer has a locating plate affixed to one side thereof and stopped at one side of the spring member against the rear end of the stop rod.
FIG, 1 is an exploded view of a firing control mechanism for air-soft toy gun in accordance with present invention.
FIG, 13 is a schematic drawing of the present invention, showing the status of the firing control mechanism at the third shot during a continuous 3-shot firing operation.
Referring to
The bolt 1 is mounted in the top side of the gun body 200 and movable forwards and backwards.
The hammer 2 is pivotally mounted inside the gun body 200 beneath the bolt 1 (see
The trigger 3 has a holder portion 32 mounted in the gun body 200, and a trigger lever 31 extended from the holder portion 32 and suspending outside the gun body 200 (see
The switch 4 comprises a handle 41 and a link 42. The link 42 has at least three cuts 43 (for example, three cuts as shown in
The hammer hook 5 and the trigger 3 are pivotally mounted together in the gun body 200, having a rear bearing portion 52. Further, a spring member 51 is set between the holder portion 32 of the trigger 3 and the hammer hook 5. By means of inserting the rear bearing portion 52 of the hammer hook 5 into one cut 43 of the switch 4 to release pressure from the associating spring member 51 (see
Further, a pawl 7 is provided at one side of the hammer hook 5. The pawl 7 and the trigger 3 are pivotally mounted together in the gun body 200, having a rear bearing portion 71. Further, a spring member 51 is set between the holder portion 32 of the trigger 3 and the pawl 7. By means of inserting the rear bearing portion 71 of the pawl 7 into one cut 43 of the switch 4 to release pressure from the associating spring member 51 (see
As stated above, the continuous firing control rod 6 has the aforesaid bearing portion 61, top end 62 and bottom end 63. When rotate the switch 4 to the continuous 3-shot position (as shown in
As stated above, by means of rotating the switch 4 to change the position of the cuts 42 and forcing the bearing portions 52, 71 or 61 of the hammer hook 5, pawl 7 or continuous firing control rod 6 in or out of one cut 43 of the switch 4, the air-soft toy gun is controlled to achieve a single shot firing, continuous 3-shot firing, multi-shot firing or safety locking mode. When entering the continuous 3-shot firing mode, the sloping teeth 233 of the ratchet wheel 23, of which the total number is equal to the total number of the shadow teeth 231 and deep teeth 232, is kept in mesh with the stop rod 24 of the hammer 2. The ratchet wheel 23 is rotated following down stroke of the hammer 2. When the hammer 2 is returned after a firing action, the stop rod 24 is shifted into engagement with another sloping tooth 233, preventing reverse rotation of the ratchet wheel 23.
A prototype of firing control mechanism for toy gun has been constructed with the features of
Although a particular embodiment of the invention has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.
Number | Date | Country | Kind |
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098203837 | Mar 2009 | TW | national |