Title of Invention

"A BOLT LOCKING ASSEMBLY FOR LOCKING A BOLT OF A WEAPON SIMULATOR"

Abstract A bolt locking assembly (12) for locking a bolt of a weapon simulator (10) having a bolt (18) affixed to a housing (11) providing recoil to the user, the bolt locking assembly preventing the bolt (18) from returning to its original resting position with respect to the housing (11), the bolt (18) connected to a piston (16) housed in a piston chamber (20), and a gas supply (2) forcing gas into the piston chamber (20) to generate movement and recoil of the piston (16) wherein the bolt locking assembly (12) is characterized by: a lock actuator port (14) in the piston chamber (20); a locking apparatus (17) positioned within the housing (11) proximate the bolt (18); and a lock channel (26) between said lock actuator port (14) and said locking apparatus (17), said lock channel (26) directing gas from the piston chamber (20) to said locking apparatus (17) to actuate said locking apparatus and fix the bolt in place (23) after the weapon simulator has been fired a pre-determined number of times.
Full Text The present invention relates to a bolt locking assembly for locking a bolt of a weapon simulator.
Background Art
[0003] Because of the lethal characteristics inherent in operating guns, proper training in (heir use is imperative Such training often involves the firing of blanks or livs ammunition, .Load noise, spent cartridge- waste, noxious burned powder odors, repetitive reloading, environmental constraints, high cast and overall danger are all substantial detriments to the use of blanks or live ammunition.
[0003] To overcome the above, disadvantages, training devices have evolved for simulating the firing of guns. These devices relate to weaponry having primarily military use. U.S- Pat, No. 4,302, 190 discloses a rifle recoil simulator whereby compressed air passes through orifices in the .rifle barrel to force the barrel upward in a recoil motion. A trigger switch activates an electronic thiner solenoid-an valve system for controlling air passage to the barrel orifices.
[0004] Artillery loading and recoil simulators are described in U.S. Pat. Nos.. 4,194,3 04 and 4,365.959. These are complex mechanisms designed to train entire gunnery crews. They are not directly related to firearm recoil which is the subject of the present Invention,
[005] To improve the realism of the weapons familirization process and to provide a mors "life like" experience, a variety of approaches have been suggested to make the weapons range more realistic For example, same weapons ranges provida paper-targets with threatening images rather -than bull's-eye targets., In attempts to present a
more realistic- scenario to the participant and to provide an interactive and immersive experience, some weapons ranges have replaced such fixed targets with moving or "pop up' targets such as spring-loaded mechanical images or animated video images projected onto a display screen. The pop-up or animated images present moving targets and/or simulated return threats toward which the participant fires- One problem with such an approach is that the bullets damage or destroy (he target For example, the bullets can
pench holes through display screens, evsutually rendering the screens inoperative.


Further, use of live ammunition can be very dangerous, especially in unfamiliar training exercises where the participant's performance limits are tested,
[0006] To address such problems, some training ranges use non-lethal ammumition, such as projectiles propelled by air cartridges in place of conventional bullets. One type of non-lethal ammunition is a Crown Type E air cartridge. In conventional uses of such cartridges, a releasable cap attaches to the cartridge and covers an outlet port. Then, when the outlet port is opened, a highly pressurized gas is released . from the cartridge and propels the releasable cap away from the cartridge at a high velocity. The cap travels through a gun barrel and is emitted from the gun as a non-lethal projectile. To detect the impact locations of the non-lethal projectile, some such ranges use some type of projectile tracking device, such as high-speed imaging equipment. Such ranges can be very expensive due to their complexity and use of specialized equipment.
[0007] Other ranges allow the non-lethal ammunition to penetrate or otherwise mark a target object to indicate impact location. Such ranges have the drawback that the non-lethal ammunition is destructive. Additionally, the impact locations are difficult to track on a "real-time" basis, which makes interactive ranges difficult. Also, while such approaches may improve visual approximations of actual situations as compared to paper targets, such approaches lack a visual or other virtually instantaneous feedback indicating the effectiveness of the participant's fire.
[0008] Another alternative type of weapons range employs a light beam in place of a projectile. In such ranges,- the participant holds a simulated weapon shaped like a conventional weapon that is activated by a switch coupled to a conventionally shaped and positioned trigger, . When the participant pulls the trigger, the simulated weapon emits a light beam that strikes the target, causing an illuminated spot. An optical detector detects the spot and indicates the impact location.
[0009] Such simulated weapons lack a realistic feel because they do not recoil in response to the simulated fire. Moreover, the simulated weapons do not emit shells that can distract the participant and can affect the participant's footing.
[0010] To try to simulate an actual weapon's recoil, a compressed air line can be coupled to the simulated weapon. Then, when the trigger is pulled, an air driven
mechanism applies a pulse of force to the simulated weapon to produce a simulated recoil.

Such a system has the drawback that the air line acts as a tether, limiting the participant's mobility and affecting aim. The system also lacks the ejected shells of actual or non-lethal ammunition.
[0011] The prior art attempts, including those described in U.S. Pat. Nos. 5,947,738 5,559,085, 4,480,999, and 4,678,437, to simulate recoil have limitations and drawbacks as discussed above in addition to being tethered to a console, lack of proper feel and balance, and related problems, all of which are solved by the present invention.
[0012] More particularly, in order to simulate a locked, out-of-ammunition situation, the weapon simulators have utilized a dedicated slide/bolt lock valve to control the slide or bolt lock mechanism. That is, during a normal firing cycle, only the recoil valve is energized to actuate the recoil cycle. However, during the final tiring cycle, both the recoil valve and slide/bolt lock valves are actuated, such that the slide/bolt lock valve will lock the bolt of the weapon simulator to temporarily prevent further operation of the weapon simulator.
Disclosure of the Invention
The present invention is a bolt locking assembly for a weapon simulator. The weapon simulator includes a. bolt affixed to a firearm housing providing recoil to the user. The bolt is connected to a piston housed in a piston chamber inside the housing. A gas supply provides a compressed gas or fluid into the piston chamber to generate movement and recoil of the piston. After the weapon simulator has been fired a predetermined number of times, the bolt locking assembly will block operation of the bolt and piston.
The bolt locking assembly includes a lock actuator port engaging the piston chamber, a locking apparatus positioned within the housing proximate the bolt, and a lock channel between said lock actuator port and said locking arm, wherein the lock channel directs gas to said locking apparatus to actuate said locking apparatus and fix the bolt in place.
Brief Description Of Drawings
[0013] Figure 1 is a partial sectional side view of the. weapon simulator haying a bolt locking assembly of the present invention; and

[0014] Figure 2 is a block diagram of the distribution of a gas or liquid from a gas supply to the bolt locking assembly of the present invention.
Description of the Best Mode
[0015] Referring to Figures 1 and 2, the present invention of a bolt locking assembly 12 for a firearm or weapon simulator 10 is illustrated. As shown, the weapon simulator 10 incorporates a regulated gas supply 2 with a pilot valve 4 and recoil valve 6 to cycle the weapon simulator 10 and actuate a slide or bolt 18 of the weapon simulator 10 upon the firing of the weapon simulator 10 by a user. The action of the bolt 18 is sufficient to generate substantial recoil for the user to imitate the actual use of a conventional firearm. Specifically, the weapon simulator 10 includes a piston 16 that is housed within a piston chamber 20, with the piston 16 being connected through the housing 11 to the bolt 18 of the weapon simulator 10. When fired, the gas supply 2 will provide a gas flow within the piston chamber' 20 to create a forceful movement of the piston 16 within the piston chamber 20. This movement of the piston 16 will simultaneously generate movement of the bolt 18 to create recoil.
[0016] The bolt locking assembly 12 of the present invention is used in conjunction with the weapon simulator 10 to provide a simple means for locking the bolt 18 using the gas supply 2 directed to creating recoil in the weapon simulator 10. That is, the weapon simulator 10 includes the bolt locking assembly 12 that is controlled by the same pilot valve 4 and gas supply 2 that controls the recoil operation of the bolt 18 of the weapon simulator 10. As a result, the need for a separate slide/bolt lock valve as required in other weapon simulator designs described above is eliminated, thus further reducing the number of components needed for realistic operation of the weapon simulator 10.
[0017] The bolt locking assembly 12 includes a lock actuator port 14 that is connected to a locking apparatus via a lock channel 26. The locking apparatus preferably includes a locking arm 17 that is pivotally mounted within the housing 11 on a pivot pin 22 and means for actuating the locking arm 17. The actuating means of the present invention include an actuating arm 25, an actuating plate 24, and a plate chamber 28, although it is foreseen that other actuating designs may be incorporated. Continuing to view Figure 1, the actuating arm 25 is connected to the locking arm 17, with the actuating plate 24- attached to the opposite end of the locking arm 17. The actuating plate. 24 is

slidably mounted within a plate chamber 28 that is connected via lock channel 26 to a lock . actuator port 14. The lock actuator port 14 is farther opens to the piston chamber 20.
[0018] In operation, the user engages a switch 30, such as a conventional firearm trigger, to prompt the firing of the weapon simulator 10, A recoil valve 6 allows a compressed gas or fluid to flow inside the piston chamber 20 to force the bolt 18 toward the user of the weapon simulator 10, thereby generating recoil by the weapon simulator 10. In such cases, the piston 16 will generally travel in the piston chamber 20 to position A.
[0019] A sensor, controller or other related component will monitor the number of times the weapon simulator 10 is fired. Once the weapon simulator 10 has been fired a predetermined number of times, the bolt locking assembly 12 will be set in operation. In particular, the recoil valve 6 will remain open for a preset amount of time, such that the compressed gas or fluid from the gas supply 2 will force the piston 16 to travel in the piston chamber 20 to position B, past the bolt lock actuator port 14, Once the piston 16 is beyond the lock actuator port 14, the gas applying a force on the piston 16 will flow from the piston chamber 20 through the lock actuator port 14 and lock channel 26 into the plate chamber 28. Furthermore, the compressed gas will apply pressure to the actuating plate 24, thereby concomitantly driving the actuator arm 25. The actuator arm 25 will thereby pivot the locking arm 17 about the pivot pin 22 such the locking arm 17 will be proximate a shoulder 23 of the bolt 18. As the recoil valve 6 closes, the bolt 18 will be drawn back to the original resting position, and the shoulder 23 will engage the locking arm 17. Once the shoulder 23 of the bolt 18 engages the locking arm 17, the bolt 18 will be locked in place, wherein the locking arm 17 will prevent the bolt 18 from returning to its original resting position with respect to the housing 11.
[0020] The bolt 18 will remain in the locked position until the user takes action to unlock the bolt 18. While the bolt 18 is loked, the firearm simulator 10 will be inoperable, as with an actual firearm. However, once the user either resets the bolt 18 or takes some additional action, the weapon simulator 10 will be operable once again.
[0021] Thus, although there have been described particular embodiments of the present invention of a new and useful LOCKING ASSEMBLY FOR FIREARM

SIMULATORS, it is not intended that such references be construed as limitations upon the scope of this invention except as set forth in the following claims.










We Claim:
1. A bolt locking assembly (12) for locking a bolt of a weapon simulator (10) having a bolt (18)
affixed to a housing (11) providing recoil to the user, the bolt locking assembly preventing the
bolt (18) from returning to its original resting position with respect to the housing (11), the
bolt (18) connected to a piston (16) housed in a piston chamber (20), and a gas supply (2)
forcing gas into the piston chamber (20) to generate movement and recoil of the piston (16)
wherein the bolt locking assembly (12) is characterized by:
a lock actuator port (14) in the piston chamber (20);
a locking apparatus (17) positioned within the housing (11) proximate the bolt (18); and
a lock channel (26) between said lock actuator port (14) and said locking apparatus (17), said
lock channel (26) directing gas from the piston chamber (20) to said locking apparatus (17) to
actuate said locking apparatus and fix the bolt in place (23) after the weapon simulator has
been fired a pre-determined number of times.
2. The bolt locking assembly (12) as claimed in claim 1, wherein said locking apparatus
comprises:
a locking arm (17): and
actuating means for moving said locking arm (17), said actuating means connected to said
locking arm (17).
3. The bolt locking assembly (12) as claimed in claim 2, wherein said actuating means
comprises:
an actuating arm (25) connected to said locking arm (17);
an actuating plate (24) attached to said actuating arm (25): and
a plate chamber housing said actuating plate (24), said plate chamber (28) joined with said
lock channel (26) to receive said compressed gas to move said actuating plate (24).
4. A method of automatically locking a bolt (18) affixed to a housing (11) of a weapon simulator
by a bolt locking assembly as claimed in claim 1, the bolt providing recoil to the user after the
operation of the weapon simulator (10), the locking preventing the bolt from returning into its
original resting position with respect to the housing, the bolt being connected to a piston (16) housed in a piston chamber (20), and the weapon simulator having a gas supply (2) forcing gas into the piston chamber (20) to generate movement and recoil of the piston (16), said method comprising:
a) monitoring the number of times the weapon has been fired;
b) after the weapon has been fired a pre-determined number of times displacing the piston
(16) connected to the bolt (18) to open a lock actuator port (14) in the piston chamber (20);
c) distributing a fluid from the piston chamber (20) through said lock actuator port (14) into a
lock channel (26) between said lock actuator port (14) and a locking apparatus positioned
within the housing proximate the bolt;
d) engaging the locking apparatus with said fluid thereby;
e) actuating said locking apparatus to engage the bolt (18), said step comprising distributing
said fluid into a plate chamber (28); displacing an actuating plate (24) positioned in said
plate chamber (28); moving an actuating arm (25) attached to said actuating plate (24);
pushing a locking arm (17) into connection with the bolt (18) with said actuating arm (25);
pivoting said locking arm (17) about a pivot pin; and
f) obstructing movement of the bolt (18) with said locking apparatus.

Documents:

951-delnp-2006-Abstract-(24-12-2009).pdf

951-DELNP-2006-Abstract-(26-04-2012).pdf

951-delnp-2006-abstract.pdf

951-delnp-2006-Claims-(24-12-2009).pdf

951-DELNP-2006-Claims-(26-04-2012).pdf

951-delnp-2006-claims.pdf

951-DELNP-2006-Correspondence Others-(26-04-2012).pdf

951-DELNP-2006-Correspondence-Others-(03-06-2009).pdf

951-DELNP-2006-Correspondence-Others-(29-05-2008).pdf

951-delnp-2006-correspondence-others.pdf

951-delnp-2006-Description (Complete)-(24-12-2009).pdf

951-DELNP-2006-Description (Complete)-(26-04-2012).pdf

951-delnp-2006-description (complete).pdf

951-delnp-2006-Drawings-(24-12-2009).pdf

951-delnp-2006-drawings.pdf

951-DELNP-2006-Form-1-(04-08-2006).pdf

951-delnp-2006-Form-1-(24-12-2009).pdf

951-DELNP-2006-Form-1-(26-04-2012).pdf

951-delnp-2006-form-1.pdf

951-DELNP-2006-Form-18-(04-08-2006).pdf

951-delnp-2006-Form-2-(24-12-2009).pdf

951-DELNP-2006-Form-2-(26-04-2012).pdf

951-delnp-2006-form-2.pdf

951-delnp-2006-Form-3-(24-12-2009).pdf

951-delnp-2006-form-3.pdf

951-delnp-2006-form-5.pdf

951-delnp-2006-form-6-(03-06-2009).pdf

951-DELNP-2006-GPA-(03-06-2009).pdf

951-DELNP-2006-GPA-(26-04-2012).pdf

951-delnp-2006-gpa.pdf

951-DELNP-2006-Others-Documents-(03-06-2009).pdf

951-delnp-2006-pct-210.pdf

951-delnp-2006-pct-220.pdf

951-delnp-2006-Petition-137-(24-12-2009).pdf

951-DELNP-2006-Petition-137-(26-04-2012).pdf

951-delnp-2006-Reply From Secrecy Direction-(15-02-2012).pdf

abstract.jpg


Patent Number 255241
Indian Patent Application Number 951/DELNP/2006
PG Journal Number 06/2013
Publication Date 08-Feb-2013
Grant Date 06-Feb-2013
Date of Filing 23-Feb-2006
Name of Patentee FATS, INC.
Applicant Address 7340 McGINNIS FERRY FOAD, SUWANEE, GA 30024, USA
Inventors:
# Inventor's Name Inventor's Address
1 PAUL HEATH FLEMING 5707 MANUEL PLACE, SUGARHILL, GA 30518, USA
2 HENRY MARTIN WILSON JR. 2070 SKYLAR LEIGH DRIVE, BUFORD, GA 30518, USA
PCT International Classification Number F41A 33/00
PCT International Application Number PCT/US2003/025118
PCT International Filing date 2003-08-11
PCT Conventions:
# PCT Application Number Date of Convention Priority Country
1 PCT/US03/025118 2003-08-11 U.S.A.