1. Fields of the Invention
The present invention relates to a crossbow assembly, and more particularly, to a crossbow assembly that has a stable weight center and is easily assembled.
2. Descriptions of Related Art
The conventional sport archery generally comprises two different types, one of which uses bows and the other one uses crossbows. The bow generally has a riser with two limbs on two ends of the riser. For the bows, the user pulls the string connected between the two limbs to shoot the arrow by the force of the string. For the crossbows, the user simply pulls the trigger to shoot the arrow. Both of the use of the bows and the crossbows require concentration to keep the bows and the crossbows stable so as to shoot the arrows precisely.
The present invention intends to provide a crossbow assembly which eliminates the shortcomings mentioned above.
The present invention relates to a crossbow assembly and comprises a body having an insertion hole defined therein and a retention member protrudes from the insertion hole. A barrel has the first end thereof inserted into the insertion hole and connected with the retention member. The second end of the barrel extends beyond the insertion hole. A recess is defined in the top of the second end of the barrel. An upper portion is connected to the top of the barrel. The first end of the upper portion is inserted into the insertion hole. A lower portion is formed at the underside of the barrel. The recess is located between the upper portion and the lower portion. The thickness of the upper portion is smaller than or equal to a half of that of the lower portion. Two threaded holes are defined in the second end of the upper portion.
A bow unit is connected to the second end of the upper portion and has a riser, two limbs connected to two ends of the riser, and two cam units respectively connected to the two limbs. A slot is defined in the riser and two plates extend from the inside of the slot. The two plates are located at a distance from each other. Each plate has a hole. Two bolts extend through the two holes of the two plates and are threadedly connected to the two threaded holes of the upper portion.
Preferably, the upper portion has a flight groove defined centrally in the top thereof, and the flight groove communicates with the recess.
Preferably, the cam units each have a cam connected to the limb corresponding thereto. A string is wrapped between the two cams on the two limbs. A buss cable is connected between the two cams and passes through the recess and is located between the upper portion and the lower portion. The string extends above the upper portion.
Preferably, wherein two flanges respectively extend from two sides of the slot of the riser and contact the top of the upper portion. Preferably, the body has a main part, a stock and a grip. The insertion hole is defined in the top of the main part. The stock is located at the first end of the main part. The grip extends from the underside of the main part and a trigger is pivotably connected to the grip so as to activate the retention member.
The primary object of the present invention is to provide a crossbow assembly with stable weight center so as to increase the precision of shooting.
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
A barrel 2 has the first end thereof inserted into the insertion hole 11 and is connected with the retention member 12. The second end of the barrel 2 extends beyond the insertion hole 11. A recess 21 is defined in the top of the second end of the barrel 2. An upper portion 211 is connected to the top of the barrel 2. The first end of the upper portion 211 is inserted into the insertion hole 11. A lower portion 212 is formed at the underside of the barrel 2. The recess 21 located between the upper portion 211 and the lower portion 212. It is noted that the thickness of the upper portion 211 is smaller than or equal to a half of that of the lower portion 212. Two threaded holes 213 are defined in the second end of the upper portion 211.
A bow unit 3 is connected to the second end of the upper portion 211 and comprises a riser 31, two limbs connected to two ends of the riser 31, and two cam units 32 respectively connected to the two limbs. A slot 311 is defined in the top side of the riser 31 and two plates 312 extend from the inside of the slot 311. The two plates 312 are located at a distance from each other, and each plate 312 has a hole 313. Two bolts 4 extend through the two holes 313 of the two plates 312 and are threadedly connected to the two threaded holes 213 of the upper portion 21 so as to connect the bow unit 3 to the upper portion 211. The upper portion 211 has a flight groove 214 defined centrally in the top thereof, and the flight groove 214 communicates with the recess 21. The different thickness of the upper portion 211 and the lower portion 212 allows the user to stable hold/support the crossbow assembly and shoot. Thanks to the threaded holes 213 and the bolts 4, the two sides of the flight groove 214 are secured by the bolts 4 such that the gap mentioned in the conventional bow can be reduced, also the noise accompany with the gap is reduced.
The cam units 32 each have a cam 321 connected to the limb corresponding thereto. A string 322 is wrapped between the two cams 321 on the two limbs, and a buss cable 323 is connected between two respective sides of the two cams 321. The buss cable 323 passes through the recess 21 and is located between the upper portion 211 and the lower portion 212. The string 322 extends above the upper portion 211. The arrow is positioned in the flight groove 214 which ensures that the arrow is oriented straight forward to have a precise shooting. The string 322 is pulled toward the retention member 12 and the energy stored to the pulled string 322 is used to shoot the arrow.
The bolts 4 connect the bow unit 3 to the upper portion 211 so that the weight center of the riser 31 is located on the upper portion 211, this can avoid the riser 31 from tilting to affect the shooting. In order to have sufficient strength while the weight is light, the upper portion 211 is made by metal, and the lower portion 212 is made by plastic. The lower portion 212 and the body 1 are integrally formed as a one piece. The material for the upper portion 211 and the plastic portion 212 may be varied according to practical needs. The upper portion 211 is made by metal so that the threaded holes 213 are easily made. The upper portion 211 is located in the recess 311 of the raiser 31 and contacts against the plates 312. The upper portion 211 is then connected to the riser 31 by the two bolts 4 to obtain the crossbow assembly with the desired features.
The user holds the grip 15 and contacts the stock 14 at the front side of the user's shoulder. The other hand holds/supports the lower portion of the main part 13. By pulling the trigger 151, the string 322 is disengaged from the retention member 12 and shoots the arrow out.
There are only few parts needed to assemble the crossbow assembly of the present invention, and the bow unit 3 can be separated from the barrel 2 by removing the two bolts 4. The assembling and dis-assembling are easy and convenient. The present invention makes storage and transportation more efficient.
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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