The disclosure relates to target systems.
For recreational shooting, marksmen improve and test their accuracy by shooting at targets. For example, a marksman may shoot a plurality of targets in an arrangement, requiring the marksman to adjust their aim to hit every target. In most target systems, the marksman must manually reset the targets in the arrangement in order to shoot them again. This can be time consuming as well as dangerous if other marksmen are using target systems arranged nearby.
Electronic target systems exist which allow the marksman to reset the targets from a distance. However, these systems can be complicated, expensive, and require a power source. This can limit the the shooting environment to a location with a power source.
The present disclosure provides a mechanical target system, which can allow a user to reset the targets from a distance. The target system may include a frame, a target rotatably connected to the frame, a reset rotatably connected to the frame, a locking system configured to hold the target in a locked position, and an unlocking system configured to release the target from the locked position. The target system may be configured such that contacting the target moves the target from an unlocked position to the locked position, and contacting the reset moves the target from the locked position to the unlocked position.
The present disclosure provides a method of using the mechanical target system. The method may include contacting the target to move the target from an unlocked position to a locked position, and contacting the reset to move the target from the locked position to the unlocked position.
For a fuller understanding of the nature and objects of the disclosure, reference should be made to the following detailed description taken in conjunction with the accompanying drawings, in which:
The mechanical system 100 may include a target 20. The target 20 may be rotatably connected to the frame 10. For example, the target 20 may be rotatably connected to the cross member 12. The target 20 may include a target shaft 21. The target shaft 21 may allow the target 20 to be rotatably connected to the frame 10. The frame 10 may include a pair of target supports 13. The target shaft 21 may rotate within apertures within the pair of target supports 13. The pair of target supports 13 may be connected to the frame 10. For example, the pair of target supports 13 may be connected to the cross member 12, via a welded connection.
The target 20 may comprise a target face 22. The target face 22 may be the area at which a marksman shoots. The target face 22 may be a variety of shapes. In the specific embodiment shown in
The target 20 may further comprise a target arm 23. The target arm 23 may be substantially rectangular in shape. For example, the target arm 23 may be 4 inches long. The target face 22 may be connected to the target arm 23. The target face 22 and the target arm 23 may be formed integrally as one component, or be removably attachable to one another. The target arm 23 may be connected to the target shaft 21. For example, the target arm 23 may be welded to the target shaft 21. In other embodiments, the targer arm 23 may be removably attachable to the target shaft 21.
The target system 100 may further include a reset 30. The reset 30 may be rotatably connected to the frame 10. For example, the reset 30 may be rotatably connected to the cross member 12. The reset 30 may include a reset shaft 31. The reset shaft 31 may allow the reset 30 to be rotatably connected to the frame 10. The frame 10 may include a pair of reset supports 14. The reset shaft 31 may rotate within apertures within the pair of reset supports 14. The pair of reset supports 14 may be connected to the frame 10. For example, the pair of reset supports 14 may be connected to the cross member 12. For example, the pair of reset supports 14 may be welded to the cross member 12. In other embodiments, the reset supports 14 may be may be removably attachable to the the cross member 12.
The reset 30 may comprise a reset face 32. The reset face 32 may be the area at which a marksman shoots. The reset face 32 may be a variety of shapes. In the specific embodiment shown in
The reset 30 may further comprise a reset arm 33. The reset arm 33 may be substantially rectangular in shape. For example, the reset arm 33 may be 8 inches or 10 inches long. The reset face 32 may be connected to the reset arm 33. The reset face 32 and the reset arm 33 may be formed integrally as one component. The reset arm 33 may be connected to the reset shaft 31. For example, the reset arm 33 may be welded to the reset shaft 31.
The reset 30 may be identifiable from the target 20. For example, the reset face 22 may be a different shape than the target face 32, or the reset 32 face may be higher or lower than the target face 22 relative to the ground.
The target 20 may be configured to have an unlocked position P1 and a locked position P2. The unlocked position P1 may include when the target 20 is facing the marksman. The locked position P2 may include when the target 20 is not facing the marksman. A target 20 may be considered to be facing the marksman if the target face 22 is perpendicular to the shot when marksman is aiming at the target system 100. The target 20 may be normally in the unlocked position P1. For example, the weight of the target 20 may cause the target 20 to naturally be facing the marksman. As discussed in further detail below, the target system 100 of the present disclosure may be configured such that when a target 20 is shot in the unlocked position P1, the target moves to the locked position P2.
The target system 100 may further include a locking system 40. The locking system 40 may be configured to hold the target 20 in the locked position P2. As shown in
In use, the target 20 can be rotated from the unlocked position of P1 by the force of the target 20 being hit (e.g. by a bullet). This can cause the target pin 43 to move along the periphery of the target cam 41. When the target 20 rotates beyond the point at which the target cam 41 has the largest radius (e.g. at 90°), the target pin 43 can drop to the periphery of the target cam 41 (e.g. the smallest radius of the cam). This drop can cause the blocking face 42 of the target cam 41 to contact the target pin 43, thereby stopping the target 20 from rotating to return to the unlocked position P1. At this point, the target 20 may be in the the locked position P2.
The mechanical target system 100 of the present disclosure may give the marksman a visual indication that the target 20 has been hit by moving the target 20 from the unlocked position P1 to the locked position P2.
The mechanical target system 100 may further include an unlocking system 50. The unlocking system 50 may be configured to release the target 20 from the locked position P2 and move the target 20 to the unlocked position P1. As shown in
The unlocking system 50 may include a release cam 54. The release cam 54 may have a half circle shape. The flat side of the release cam 54 may define a receiving face 55. The release pin 53 may be configured to contact the receiving face 55. When the release pin 53 is lifted by the reset cam 51, for example when the reset 30 is rotated due to contact with the transmitting face 52, the release cam 54 may also rotate due to contact with the receiving face 55.
The release cam 54 may be connected to a release shaft 56. For example, the release cam 54 may be welded to the release shaft 56. The release shaft 56 may extend parallel to and the length of the cross member 12. The release shaft 56 may be rotatably connected to the frame 10. The frame 10 may include two release supports 17. The release shaft 56 may rotate within apertures within the pair of release supports 17. The release supports 17 may be connected to the frame 10. For example, the release supports 17 may be connected to the cross member 12, via a welded connection. The frame 10 may further include more than two release supports 17. For example, the frame 10 may include a release support 17 for each target 20 in the mechanical target system 100. The release support 17 may include a release pin collar 16a. The release pin collar may be connected to the release support 17, via a welded connection. The release pin 53 may slide within the release pin collar 16a.
As shown in
The mechanical target system 100 of the present disclosure may allow a marksman to hit the reset 30 to move the target 20 from the locked position P2 to the unlocked position P1.
As shown in
As shown in
The mechanical target system 100 of the present disclosure can further include a tension system 70. The tension system 70 may provide a bias against the rotation of the release shaft 56. The tension system 70 may thereby reduce the possibility of accidentally moving other targets 20 from the locked position P2 to the unlocked position P1, for example, by a target 20 being hit. For example, the target pin 43 may hit the projection 59 of the target release cam 57, which can cause rotation of the release shaft 56 and rotate the other target release cams 57. If this were to occur, the other target pins 43 would be unintentionally lifted to move all targets to the unlocked position P1, instead of remaining in the locked position P2. Therefore, the tension system 70 can provide a bias against the rotation of the target release cam 57 when the projection 59 is hit by the target pin.
The tension system 70 may comprise a first tension sleeve 71 connected to the frame 10. For example, the first tension sleeve 71 may be connected to the cross member 12. For example, the first tension sleeve 71 may be welded to the cross member 12. The tension system 70 may further comprise a tension pin 72. The tension pin 72 may be slidably held within the first tension sleeve 71. The tension system 71 may further comprise a second tension sleeve 73. The second tension sleeve 73 may be arranged coaxial with the first tension sleeve 71 and tension pin 72. The tension system 71 may further comprise a tension spring 74. The tension spring 74 may be arranged coaxial with the first tension sleeve 71, tension pin 72, and second tension sleeve 73. The tension pin 72 may be slidably held within the tension spring 74. The tension spring 74 may be arranged such that a lower end rests on an upper end of the first tension sleeve 71 and an upper end rests on a lower end of the second tension sleeve 73. The tension pin 72 may be held fixed relative to the second tension sleeve by a retaining pin 75. The release cam 54 may further include a pressing face 76. The pressing face may be in contact with the tension pin 72. When the release cam 54 is rotated, it can push the tension pin 72 via the pressing face, against the bias of the tension spring 74. The bias will increase the force required to rotate the release shaft 56. Therefore, if the target pin 43 hits the projection 59 of the target release cam 57, the force may not be enough to rotate the release shaft 56 to move the targets 20 from the locked position P2 to the unlocked position P1 accidentally.
The mechanical target system 100 may include a plurality of targets 20. In the specific embodiment shown in
The mechanical target system 100 of the present disclosure may further define a method 200 of utilizing the system 100. The method 200, shown in
Contacting 210 the target to move the target from an unlocked position to a locked position. A marksman may contact the target with a bullet shot by a gun at the target. By contacting the target, the target shaft and target cam may rotate. The target pin resting on the target cam may move along the periphery of the target cam during rotation until it drops to contact the blocking face. The target pin will stop the target cam from rotating due to the contact with the blocking face, and the target will remain in a locked position.
Contacting 220 the reset to move the target from the locked position to the unlocked position. A marksman may contact the reset with a bullet shot by a gun at the reset. By contacting the reset, the reset shaft and reset cam may rotate. The reset pin resting on the transmitting face of the reset cam may lift when the reset cam is caused to rotate. The reset pin may contact the receiving face of the release cam, which may cause the release cam, release shaft, and target release cam to rotate. The lifting face of the target release cam may contact the target pin and lift the target pin from contact with the blocking face when the target release cam is rotated, and the target will move to the unlocked position.
Although the present disclosure has been described with respect to one or more particular embodiments, it will be understood that other embodiments of the present disclosure may be made without departing from the spirit and scope of the present disclosure.
This application claims priority to U.S. Provisional Application No. 62/443,033, filed on Jan. 6, 2017, now pending, the disclosure of which is incorporated herein by reference.
Number | Date | Country | |
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62443033 | Jan 2017 | US |