Embodiments are related to apparatus for cooling the barrel of a firearm, and are further related to apparatus for providing a visual indication that a chamber in a firearm does not contain a cartridge.
A firearm with a hot barrel may make aiming less precise and may increase wear of the surface of the bore in the barrel. Cooling a hot barrel may improve the accuracy and service life of a firearm. A hot barrel may be cooled by standing a firearm upright with the action open to draw cool air in through the action and exhaust warm air out the muzzle by convective airflow. Cooling liquid such as water may be directed at the outside of the barrel or through the bore to increase the rate of cooling of the barrel. More than one firearm may be carried so that one may cool while another is being fired, or a hot barrel may be exchanged with a cool barrel.
Examples of apparatus for cooling hot barrels include devices with a fan in an enclosure adapted to fit into a receiver in a firearm for a magazine. Cooling air may flow through the receiver, into the firing chamber, and out the muzzle. However, a fan with an enclosure that fits into a receiver on a particular firearm may not be usable with other firearms.
Other devices direct air from a fan or compressed air source to a cooling case adapted for a close fit in the firing chamber. Cooling devices using compressed air may need air canisters that are difficult to carry, replace, or refill, and the devices may be useless if filled canisters are not available when needed. The size and shape of the cooling case may resemble the case of a cartridge for the firearm to achieve a close fit in the chamber and reduce cooling air leaking out of the breech end of the barrel. It may be difficult to distinguish the case used for cooling from a case for a cartridge of a functional round of ammunition. Mistaking a cartridge with a bullet for a cooling case may cause an unsafe condition when a firearm believed to be set up for barrel cooling actually contains a live round. Or the cooling case may inadvertently be left in the chamber, possibly causing damage to the cooling case or the action should the action be operated. A case sized for the chamber of one firearm may not fit into the chamber of another firearm.
Yet other devices inject liquid water or a fine mist into the barrel to cool the barrel by evaporative cooling. Water remaining in the bore after cooling is complete may need to be removed by swabbing and oiling to prevent corrosion. Water may loosen deposits in the bore which should be removed before firing. Water applied to the exterior of a barrel may become trapped between the barrel and stock, possibly causing corrosion of the barrel or damage to the stock.
Safety rules at a firing range may require that firearms are to be unloaded and show a clear visual indication of an empty chamber after a cease-fire command is given. An empty chamber indicator (ECI) may use a flag or plug inserted into a chamber as a clearly visible signal that the chamber does not contain a cartridge. An ECI preferably has a high-visibility color and is large enough that its presence or absence can easily be determined by a range safety officer and by everyone on the firing line. Range safety rules may prohibit any contact with a firearm after the ECI is put in place until authorization to resume firing is issued. Removing an ECI after a cease-fire command to insert a barrel cooling device may not be permitted by range safety rules. An ECI inserted in a chamber may interfere with cooling the barrel.
An example apparatus embodiment includes an enclosure formed with an internal plenum; an air mover positioned inside the enclosure, the air mover positioned to draw air from outside the enclosure into the plenum; a hollow outflow tube attached to the enclosure, the outflow tube in fluid communication with the plenum, and the outflow tube having an end sized for a close fit into a firing chamber in a firearm.
The example apparatus may optionally include a switch attached to the enclosure; and at least two electrical contacts for at least one electric storage battery. The switch and the at least two electrical contacts are electrically connected with the air mover.
The outflow tube may be removably attached to the enclosure. The outflow tube may include a first segment formed with a first outer diameter and a second segment formed with a second outer diameter. The outflow tube may be formed with a groove to enable the first segment to be removed from the second segment. An end of the outflow tube may be formed with a conical surface. The end of the outflow tube may alternatively be formed with a spherical surface.
The example apparatus may include a collar slidably engaged with an outflow tube. The collar may optionally be formed with a conical surface or may alternatively be formed with a spherical surface.
The enclosure portion of an embodiment preferably remains outside an action of a firearm when the outflow tube is coupled to the firing chamber of the firearm.
An example apparatus embodiment includes a small enclosure holding an air mover, a switch, and a power source such as an electric storage battery. Air drawn into the enclosure by the air mover passes into a plenum and through a hollow outflow tube. An end of the outflow tube opposite the plenum has an outer diameter selected to pass through the action of a firearm and into the firing chamber. The firing chamber, also referred to herein as the chamber, is an aperture at the breech end of the barrel where a cartridge may be inserted for firing. When the air mover is turned on, ambient air is drawn into the enclosure, through the air mover, through the plenum and outflow tube, into the chamber at the breech end of the bore, and out the muzzle of the firearm's barrel.
The end of the outflow tube preferably enters the chamber as a visual indication that the chamber does not contain a cartridge. The enclosure containing the air mover preferably remains outside the action. The enclosure and outflow tube are preferably colored with a bright color easily distinguished from the colors of external parts of a firearm to enhance the visibility of the device to persons in the vicinity of the firearm. An embodiment may therefore simultaneously cool a barrel and serve as an empty chamber indicator (ECI). Some embodiments are provided with modifications to the outflow tube to permit a single device to function as an ECI and cool barrels of differing bore sizes.
An embodiment may be an ECI. An embodiment that is an ECI may comply with safety rules for firing ranges. For example, while in use on a firearm, the outflow tube preferably extends far enough into the firing chamber to confirm that the chamber does not contain a cartridge for the firearm. A portion of the outflow tube and the enclosure are preferably large enough and extend outward from the action far enough to be readily visible to persons in the vicinity of the firearm, for example line staff, referees, and other persons near firing positions at a firing range. Furthermore, the outflow tube and enclosure are preferably colored with a high-visibility color such as yellow or orange. An example of requirements for an ECI may be found in “NRA High Power Rifle Rules”, copyright 2016 by the National Rifle Association of America.
Turning now to the figures,
Electric power for operating the air mover 126 may be supplied from batteries 110 or may alternatively be supplied from a power supply module having a connector suitable for plugging into an alternating current (AC) electrical outlet. The enclosure 104 may optionally include an electrical connector capable of coupling with a corresponding electrical connector on the power supply module. The batteries 110 may be rechargeable and the power supply module may include a charging circuit for recharging the batteries. Alternatively, a charging circuit may be included in the enclosure 104.
In some embodiments, the outflow tube 102 is removably coupled to the enclosure 104. In alternative embodiments, the outflow tube may be integrally formed with the enclosure or formed separately and joined to the enclosure with a fastener, by threading of the outflow tube and enclosure, by bonding with adhesive, or by fusing. The outflow tube may be formed as a hollow cylinder with a longitudinal interior void and an outflow aperture 128, as suggested in the examples of
In some embodiments the outflow tube is rigid. An outflow tube may alternatively be made from a flexible material. The example outflow tube of
An outflow tube may include an end 106 shaped to establish a seal against firing chambers of different sizes. For the example outflow tube 102 of
A collar 124 may optionally slidably engage with the outflow tube as suggested in the examples of
In the example of
Unless expressly stated otherwise herein, ordinary terms have their corresponding ordinary meanings within the respective contexts of their presentations, and ordinary terms of art have their corresponding regular meanings.
Number | Date | Country | |
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62220097 | Sep 2015 | US |