The field of the present device and method relates to a lock for the trigger of a firearm, and more particularly, to a trigger lock that encloses the trigger guard opening to make the trigger inaccessible.
Trigger locks that are generally disclosed in the art are used to cover the trigger guard of a firearm to prevent access to the trigger when in the locked configuration. Many of these devices have members that insert through the trigger guard opening to connect to a locking device on one or both sides of the trigger guard, such as a keyed lock, a combination lock, or the like. Trigger locking devices may be shaped to fill the area within the trigger guard opening to prevent trigger movement. However, these devices often use custom locking devices that are neither readily available nor easily replaced. What is needed is a trigger locking device that is compatible with multiple locks that are commonly available, that prevents access to the trigger when locked, permits ready access to the firearm by the owner, and prevents transport of the firearm outside a designated area by unauthorized users.
The present trigger lock is an entirely new and creative design, offering significant advantages over the prior art. The trigger lock is for use with a variety of firearms with a trigger and a trigger guard surrounding the trigger that creates an opening through which a user accesses and actuates the trigger. The firearm design includes a body or a frame, where the frame is generally of a thicker dimension than the trigger guard. Thus, to transition from the thicker frame to the thinner trigger guard, a transition step is machined or otherwise formed into a standard firearm, where the step can be a sloped region with a vertical wall, inclined wall or other appropriate means to transition between areas of varying thickness. An area of increased thickness may also be created by components attached to or extending from the frame of the firearm, rather than the firearm frame itself, such as the grips and the like.
The trigger lock has a shield member with a U-shaped channel formed by the combination of a first flange or plate and a second flange or plate spaced apart from the first flange, and a web connecting the first and second flanges. The U-shaped channel can be varied in shaped to create two spaced apart flanges, such as square-bottomed āUā and other variations. The first flange has a first aperture formed through it; and the second flange has a second aperture formed through it. The trigger lock further comprises a plug that has a base portion and a shaft extending from the end of the base portion, with a lock attachment portion located on or within the shaft. The shaft is preferably, but not necessarily, sized to slip through the second aperture, but is preferably not be substantially smaller than the second aperture, to prevent undue play and so that an attached lock cannot be pulled through the second aperture. The lock attachment portion is configured to connect with a lock when in a secured and locked arrangement. Further, the shaft may be machined or molded as a single unit with the base portion or may be threaded into the base portion.
The shield member is configured to be fitted over the trigger guard of the firearm, with the trigger guard inserted between the first flange and the second flange to cover the opening of the trigger guard. The plug is designed to be inserted through the first aperture, passing through the opening in the trigger guard between the trigger guard and the trigger, and through the second aperture. The plug may be situated forward or behind the trigger, depending on how the trigger is disposed within the trigger guard, e.g., the trigger may be towards the back of the trigger guard or in the middle of the trigger guard opening. Generally, the base portion of the plug is disposed between the trigger and the trigger guard within the opening. The base portion may also be disposed between the trigger and the frame of the firearm, if the trigger guard is merged into the frame of the firearm forward or back of the trigger. Once the shield member and the plug are fitted to the trigger guard as described, a lock is secured to the lock attachment portion. When the lock is attached, the lock body size can be chosen such that it cannot fit through the second aperture, to prevent de-insertion of the plug. The shield member is configured to block access to the trigger to prevent user actuation of the trigger. Further, the shield member and plug are configured to prevent substantial movement of the shield member relative to the firearm frame.
In an alternate embodiment, the lock attachment portion is configured to receive a rotating tee locking member. The lock attachment portion here would be a slotted keyway with an undercut shelf formed distally from a keyway opening. The tee or T-shaped locking member is inserted into the slotted keyway, where the tee locking member is rotated into engagement with the undercut shelf to prevent removal of the tee locking member. Other similar locking members that can fit through the slotted keyway and rotate into engagement with the undercut shelf may be used, such as an L-shaped locking member.
In an alternate embodiment, the lock attachment portion is configured to receive a shaft retainer locking member. The lock attachment portion here would be an annular groove cut about the circumference of the shaft, such that a ferrule or raised annular portion is formed near the end of the shaft. The shaft retainer locking member has a clamshell mechanism that is open when unlocked and clamps together when locked. The shaft, which protrudes from the second aperture, is inserted within the shaft retainer locking member and the clamshell mechanism engages the annular groove to capture the ferrule to prevent removal of the shaft retainer locking member.
In an alternate embodiment, the lock attachment portion is configured to receive the shackle of a shackle locking member. The lock attachment portion here would be a through hole formed through the shaft and intersecting the axis of the shaft, where the through hole preferably is drilled through and normal to the cylindrical axis of the shaft. The free end of the shackle, such as from a padlock, is inserted into the through hole and received by the body of the shackle locking member to close and lock the shackle to prevent removal of the shaft retainer locking member. The first and second aperture may be aligned and appropriately sized to receive a shackle of a lock, with the shackle inserted through the apertures when the shield member is engaged over the trigger guard, where the shackle passes through the opening to prevent movement or removal of the trigger lock. The first and second apertures may be arranged to position the shackle immediately next to the trigger guard within the trigger guard opening.
In another alternate embodiment, the lock attachment portion is configured to receive a lock that is tethered to an immovable object by a lanyard, made from a plastic-coated metal cable or the like. In this way, the firearm cannot be moved by an unauthorized user beyond the length of the lanyard when locked. In yet another alternate embodiment, the first aperture in the first flange has a counterbore formed on the outside wall, where the plug base has a corresponding shoulder formed distally from the end and configured to be inserted within the counterbore. Alternately, at least one peripheral edge of either or both the first and second flanges is complimentarily contoured to the transition step leading from firearm body to the trigger guard, such that a peripheral edge contour closely fits a transition step contour to prevent substantial movement of the shield member relative to the trigger guard. The top peripheral edge can be complementarily contoured to a first transition step contour and a back peripheral edge can be complementarily contoured to a second transition step contour to prevent substantial movement of the shield member relative to the trigger guard in at least two directions. In yet another alternate embodiment, the base of the plug is complementarily shaped to closely fit an area bounded by and between the trigger and the trigger guard or the trigger and the frame of the firearm, such that the plug prevents substantial movement of the shield member relative to the trigger guard in at least one direction.
An alternate embodiment of the trigger lock includes a bolt in place of the plug. The bolt is configured to be inserted through the first aperture, through the opening in the firearm trigger guard, with the end of the bolt extending out of the second aperture. The bolt is shaped to prevent the bolt from being pushed through the second aperture and has a lock attachment portion formed on the end of the bolt.
In another alternate embodiment, the shield member has a peripheral contour that is complementarily shaped to match the transitional step contour, such that when the trigger guard is inserted within U-shaped channel of the shield member, the peripheral contour closely fits the transitional step contour, to prevent substantial movement of the shield member relative to the trigger guard.
The detailed descriptions set forth below in connection with the appended drawings are intended as a description of embodiments, and is not intended to represent the only forms in which the present trigger lock may be constructed and/or utilized. The descriptions set forth the structure and the sequence of steps for constructing and operating the trigger lock in connection with the illustrated embodiments. It is to be understood, however, that the same or equivalent structures and steps may be accomplished by different embodiments that are also intended to be encompassed within the spirit and scope of the invention.
Looking first at
The shield member (22) is shown in front perspective, with the web (28) towards the viewer in
In order to receive the bolt or plug (44, 60, or 74), a first aperture (30) is drilled through the first plate (24) at a preferred angle that is normal to the plane of the first plate (24). A counterbore (32) may be drilled to receive a shoulder portion (58, 72, or 80) of the plug (44, 60, or 74), as will be discussed below. A second aperture (34) is drilled through the second plate (26), again, normal to the plane of the plate (26). Although, the first aperture (30) and the second aperture (34) are shown as being concentric, they may be drilled on eccentric axes. Further, the first aperture (30) and the second aperture (34) are shown as round holes, but may be milled in oblong, poly-sided, or other shape required by the profile shape of the plug (44, 60, or 74).
The shield member (22) has a top peripheral edge contour (36) and a back peripheral edge contour (38) that are shown as being a curved or splined peripheral edge. This design is specific and customized to fit the shape and ledges of the transition step contour (212) to prevent movement of the shield member (22) in the upward and/or rearward directions. These curves may vary from linear to curvilinear to closely match the shape of the firearm body or frame (202) in the immediate vicinity surrounding and near the trigger guard (206). The shield member (22) may be machined or molded from any appropriately tough material, such as polycarbonate or aluminum.
Turning now to
The first aperture (30) and the second aperture (34) are positioned to align with the area (208) bounded between the trigger (204) and the inside of the trigger guard (206) when the shield member (24) is installed over the trigger guard (206), this is so the inserted plug (60) can transverse and pass through area (208). Although the plug (60) is shown with a cylindrical base (68), the shape may be modified to closely fit the shape created by the bounds of area (208), so that the base (68) is prevented from substantially moving within the area (208), thus similarly restricting movement of the shield member (22). Alternatively, the base (68) of the plug (60) may have a profile that is smaller than area (208), yet being positioned forward to place the base (68) in close proximity of the trigger guard (206), thus closely capturing the front portion (207) of the trigger (206) between the base (68) and the web (28) to prevent substantial movement of the shield member (22).
Several design variations of the present plug are seen in
Yet another alternate embodiment of the plug is shown in
The locking member is shown as being T-shaped, but may be L-shaped or other appropriately shaped member. The base (68) has an annular shoulder (72) at a first end and a shaft (62) at the opposite end. Milled parallel to the cylindrical axis of the shaft (62), a slotted keyway or T-bar slot (64) is formed through the shaft end (63). An undercut shelf (66) is formed at a depth, by drilling a hole from the end of the plug (60) opposite from the T-bar slot, then plugging the hole with insert (61) which is threaded, glued, brazed, or fastened within the plug (60) to make the insert (61) immovable. The T-bar slot (64) is configured to receive the T-bar lock (70) of the lock (214). Once the T-bar lock (70) is fully inserted within the T-bar slot (64), the T-bar lock (70) is rotated 90 degrees, so that the T portion rotates underneath the undercut shelf (66). The undercut shelf (66) captures the T portion beneath the shelf to prevent the T-bar lock (70) from being removed. To remove the T-bar lock (70), a key is inserted into the lock (214) to rotate the T portion out of engagement with the undercut shelf (66). The internal details of the undercut shelf (66) and the T-bar slot (64) are shown with hidden lines in both
In yet another alternate embodiment, plug (44) is shown with base (46) having an annular shoulder (58) at one end and a shaft (50) at the other end. The shaft (50) has an annular groove (54) formed slightly away from the shaft end (52), leaving a ferrule (56) at the shaft end (52). This plug (44) design is configured to connect with a shaft retainer locking member lock with an internal clamshell gripping means that pinches down on the shaft within the annular groove (54), to capture the ferrule (56) within the jaws of the clamshell gripper. This type of lock is sold by KENSINGTON and is known as the CLICKSAFE lock, which is also disclosed in U.S. Pat. Nos. 7,730,751, 7,963,132, 7,997,106, 8,001,812, 8,042,366, 8,230,707, U.S. App. Nos. 2012/0125057 and 2011/0072863, and U.S. Des. Pat. Nos. D651,889, D660,682, and D661,975. The shaft (50) can be machined or molded as part of the base (46) from a single material; or the shaft may be machined separately and threaded, pressed, brazed, or the like within the base (46).
To lock a firearm (200) with the present trigger lock (20), a preferred method of locking would include removing the ammunition magazine or clip, inspecting the chamber to insure no round is present, drawing back or cocking the hammer (201), sliding the shield member (22) over the trigger guard (206), inserting the plug (60) through the apertures of the shield member (22), attaching a lock (214) to the shaft (62) of the plug (60), locking the lock (214) so that the lock head (215) prevents de-insertion of the plug (60). The plug (82) shown in
The present trigger lock (20) uses common locking means to secure the firearm (200) to a chosen location and prevents unauthorized actuation of the trigger. Since many firearms (200) will maintain the hammer (201) in the cocked position until the trigger (204) is actuated, the trigger lock (20) cannot be defeated by manually cocking and releasing the trigger to fire the weapon. Not until the trigger lock (20) is removed, may the hammer (201) be released and readied for firing. The adaptation of the interchangeable plug design to the MICROSAVER and CLICKSAFE lock products, or padlocks permits the purchase of locks from the local electronic or office supply store. A further advantage is the ability to tether the firearm (200) to the frame of a bed or other similar appliance or furniture piece, so that the firearm (200) is readily accessible in an emergency, yet securely and safely stored. Yet another advantage of the present trigger lock (20) is the ability to purchase multiple common computer locks, such that the owner can easily transport the firearm (200) from one location to the next, where each location has a similarly keyed lock tethered to an immovable object (222) so that the firearm (200) can be secured at each location.
While particular forms of the present trigger lock have been illustrated and described, it will also be apparent to those skilled in the art that various modifications can be made without departing from the spirit and scope of the design. Accordingly, it is not intended that the invention be limited except by the claims.
This application claims the priority date of provisional application No. 61/533,246 filed on Sep. 11, 2011.
Number | Date | Country | |
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61533246 | Sep 2011 | US |