Field of the Invention
The present invention relates to a cartridge loading mechanism of a toy revolver and, more particularly, to the cartridge loading mechanism with the feature of high simulation and capable of improving shooting accuracy.
Description of the Related Art
In a toy revolver, bullets are generally loaded into a magazine of a cylinder, so that the bullets can be shot continuously without the need of reloading the bullet after each shot. The toy revolver has the feature of rotating the cylinder for one graduation after firing a bullet, and the cylinder and the magazine may be flipped open to load bullets. The conventional toy revolver is mainly divided into the following two main types:
1. With reference to
2. With reference to
In view of the aforementioned drawbacks of the conventional toy revolver, the cartridge loading mechanism of a toy revolver is developed to overcome the drawbacks of the prior art.
Therefore, it is a primary objective of the present invention to provide a cartridge loading mechanism of a toy revolver with the feature of high simulation and capable of improving shooting accuracy.
To achieve the aforementioned objective, the present invention provides a cartridge loading mechanism comprises a magazine, a cylinder, a cartridge drum and a driving element. The center of the magazine is supported by a support shaft and fixed, such that the magazine will not rotate and is pivotally coupled to an opening at the middle of a gun body. The magazine has an inner magazine tube axially extended from a position of a barrel corresponsive to the gun body, and an end of the inner magazine tube is coupled to the barrel. The cylinder is sheathed on the magazine, and the cylinder has a cylinder center. The cylinder center and the magazine are pivotally coupled to each other by a pivot member, and the cylinder may rotate with the magazine. The cylinder has a containing slot formed at a position near the trigger, and the inner bottom of the containing slot has a plurality of ports arranged circumferentially by using the cylinder center of the cylinder as the center. One of the ports is configured to be corresponsive to the inner magazine tube. The cartridge drum is embedded into the containing slot of the cylinder and has a through hole is formed at the center, and a plurality of chambers is configured to be corresponsive to the ports of the cylinders respectively and extends into the ports, so that the cartridge drum and the cylinder are linked and rotated together. A toy bullet is loaded into each of the chambers. The driving element is embedded into the through hole and includes a drive seat, a drive shaft, and a plurality of bumps formed on a side of the drive seat and corresponsive to the trigger and arranged circumferentially. The bumps are driven by the trigger, and the driving element rotates a predetermined graduation for being driven each time. An end of the drive shaft is coupled to the cylinder center of the cylinder. When the driving element drives the cylinder and the cartridge drum is rotated altogether, the magazine remains still, so that the inner magazine tube is always aligned precisely and coupled with the barrel. Therefore, the cartridge loading mechanism can be removed to load bullets. When a bullet is fired, the cylinder rotates, so that the degree of simulation is high. When a bullet is fired and the cylinder and the cartridge drum rotate, the magazine and the inner magazine tube always remain still, and the inner magazine tube is aligned precisely with the barrel, so that the shooting accuracy can be improved.
The technical characteristics, contents, advantages and effects of the present invention will be apparent with the detailed description of preferred embodiments accompanied with related drawings as follows.
With reference to
A magazine 20 has a center supported and fixed by a support shaft 21. The magazine is coupled to a pivot shaft 200 which is pivotally coupled to a gun body 2A, and also pivotally coupled into an opening 2B at the middle of the gun body 2A (as shown in
A cylinder 30 is sheathed on the magazine 20 and has a hollow shaft tube 301 disposed at the middle of the interior of the cylinder 30, and the shaft tube 301 is embedded from an end of the magazine 20. The magazine 20 is disposed in the cylinder 30 and outside the shaft tube 301, such that a pivoting relation exists between the cylinder 30 and the magazine 20. When the cylinder 30 is driven to rotate, the magazine 20 is used as an axis of rotation. The cylinder 30 has a containing slot 31 formed near a trigger 60, and the inner bottom of the containing slot 31 has a plurality of ports 32 circumferentially arranged by using a cylinder center 300 of the cylinder 30 as the center and facing a distal opening of the inner magazine tube 22, and the rim is a push-pull rim 320. When the cylinder 30 rotates to a specific point, one of the ports 32 is corresponsive to the inner magazine tube 22. A penetrating hole 34 is formed at the middle of the containing slot 31 (as shown in
A cartridge drum 40 is embedded into the containing slot 31 of the cylinder 30, and a plurality of hollow chambers 400 is configured to be corresponsive to the ports of the cylinder 30 and extended into the ports 32 respectively. The chambers 400 are embedded into the ports 32 respectively, so that the cartridge drum 40 and the cylinder 30 are linked together. A toy bullet is loaded into each of the chambers 400. A through hole 41 is formed at the center of the cartridge drum 40 (as shown in
A driving element 50 is embedded into the through hole 41 and includes a drive seat 51 and a drive shaft 52. The drive seat 51 has a plurality of bumps 53 formed near the trigger 60 and circumferentially arranged, and the bumps 53 are driven the trigger 60 sequentially, so that the driving element 50 rotates in a certain angle. The drive shaft 52 is disposed at an end of the drive seat 51 with the back facing the trigger 60, and a distal portion is passed into the penetrating hole 34. An axial outer wall of the drive shaft 52 has a plurality of pins 54 protruded from positions corresponsive to the key slots 340 respectively. Each pin 54 is embedded into the respective key slot 340, and the key slot 340 and the pin 54 form an interlocking mechanism 70 as shown in
When the driving element 50 is driven by the trigger 60 to rotate, the driving element 50 will drive the cylinder 30 to rotate together. Since the chambers 400 are embedded into the ports 32, the cylinder 30 can be linked and rotated together with the cartridge drum 40. However, when the cylinder 30 rotates, the magazine 20 supported by the support shaft 21 remains still.
In
In summation, the present invention has the following advantages:
1. The cylinder can rotate, and the cartridge loading mechanism can be removed by using the pivot shaft as an axis, so that the degree of simulation is high.
2. When a bullet is fired, the magazine and the inner magazine tube remain still, so that the trajectory will not be deviated during the shooting, and so that the shooting accuracy will be high.
While the invention has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the invention set forth in the claims.
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Number | Date | Country | |
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20170160029 A1 | Jun 2017 | US |