1. Fields of the invention
The present invention relates to an arrow feeding device for crossbows, and more particularly, to an arrow feeding device that positions every arrow at desired position.
2. Descriptions of Related Art
The tools used in archery are bows and arrows, and bows are divided into gun-shaped crossbows and half-moon bows. The common archery is to load the arrow, and then to aim and shoot. After each shoot, the user picks another arrow from the arrow bag, and proceed the above steps again. It is difficult for beginners to draw and to aim. Usually, it is easy to lose the sight when aiming again after shooting. Therefore, a feeding device is developed that multiple arrows can be placed into the device so that the user can shoot the arrows without doing the steps completely again. However, the arrows in the feeding device are loaded randomly, therefore, not every arrow is loaded at desired position. The arrows that are not positioned properly cannot precisely reach the target.
The present invention intends to provide an arrow feeding device that include ribs to precisely position the arrows so as to eliminate the shortcomings mentioned above.
The present invention relates to an arrow feeding device for crossbows, and the feeding device positions the arrow in the feeding part so as to provide stable arrows feeding features to improve continuously shooting. The arrow feeding device of the present invention comprises a feeding part having a front end and a rear end. The front end of the feeding part is located corresponding to the head of an arrow, and the rear end of the feeding part is located corresponding to the tail of an arrow. A path is defined through the feeding part and communicates with the top end and the bottom end of the feeding part. The path is defined by two sidewalls and each sidewall of the path includes a rib extending therefrom. The two ribs are located close to the rear end of the feeding part. The arrow includes two grooves defined in the tail thereof. The two ribs of the path of the feeding part are received in the two grooves of the arrow so as to restrict shifting of the arrow in the path.
The present invention provides a second embodiment of the arrow feeding device for crossbows, and comprises a feeing part that has a front end, a rear end, a top end and a bottom end. The front end is located opposite to the rear end. The top end is located opposite to the bottom end. A path is defined through the feeding part and communicates with the top end and the bottom end of the feeding part. The path is defined by two sidewalls and each sidewall of the path includes a rib extending therefrom. The two ribs are located close to the rear end of the feeding part. The two ribs of the path of the feeding part position the arrow in the path and restrict shifting of the arrow in the path.
The present invention provides a third embodiment, wherein the arrow feeding device is connected to a crossbow, and the crossbow includes a slot in the top portion thereof. The arrow feeding device comprises a feeding part having a front end and a rear end. The front end of the feeding part is located corresponding to the head of an arrow. The rear end of the feeding part is located corresponding to the tail of the arrow. A path is defined through the feeding part and communicates with a top end and a bottom end of the feeding part. The path communicates with the slot of the crossbow. The path is defined by two sidewalls and each sidewall of the path includes a rib extending therefrom. The two ribs are located close to the rear end of the feeding part. The arrow includes two grooves defined in the tail thereof. The two ribs of the path of the feeding part are received in the two grooves of the arrow so as to restrict shifting of the arrow in the path. The arrow drops into the slot via the path.
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
As shown in
As shown in
Each sidewall of the path 20 includes a ridge 204 extending therefrom. The two ridges 204 are located corresponding to each other. Each ridge 204 includes an end face that contacts the arrow 30 in the path 20. The number of the ridges 204 can be multiple so as to form multiple sections in the path 20 to ensure that the arrows 30 are positioned without shifting laterally in the path 20. Therefore, the arrows 30 are not tilt in the path 20 as shown in
Each rib 201 is a semi-circular and elongate rib which extends from the top opening 202 to the bottom opening 203 of the path 20. Each groove 303 of the arrow 30 is shaped to accommodate the rib 201 therein so that when loading the arrows 30, the arrows 30 are smoothly loaded in the path 20 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.