Claims
- 1. An apparatus for automatically releasing a breathing mask from a protective head-enclosing helmet to permit the wearer to breathe independently of the mask upon the occurrence of a predetermined event, wherein said mask and helmet include coacting means for releasably securing the mask to the helmet in a position of use against the wearer's face and wherein said apparatus includes explosively-activated means operatively associated with said coacting means and means responsive to the occurrence of the predetermined event for actuating said explosively-activated means, said coacting means separating upon actuation of said explosively-activated means in a manner freeing the mask from the helmet without being forceably propelled away from the helmet by the explosive force of said explosively-activated means, wherein said coacting means includes a bayonet and a bayonet receiver, said bayonet being attached to one of said mask and helmet and said bayonet receiver being attached to the other of said mask and helmet, said bayonet receiver including a plurality of components arranged in assembled relationship so as to define a bayonet-receiving channel adapted to interlock with said bayonet when said bayonet is operatively accepted by said channel, and holding means for holding said receiver components in the aforesaid assembled relationship, said coacting means including cutter means operatively interposed between said explosively-activated means and said holding means for severing said holding means upon activation of said explosively-activated means to thereby separate components of said receiver from one another to enable the escape of said bayonet from said bayonet-receiving channel.
- 2. The apparatus of claim 1 wherein said bayonet receiver is adapted to channel the explosive force of said explosively-activated means so that said bayonet is not directly acted upon by the explosive force generated by said explosively-activated means or the consequent severance of said holding means.
- 3. The apparatus of claim 1 wherein said mask includes a face-contacting cushion of resilient material which is in a compressed condition against the face of the wearer when said mask is in its position of use and separation of the components of said receiver enables the resilient force exerted by said face-contacting cushion to urge said bayonet outwardly away from said bayonet-receiving channel.
- 4. The apparatus of claim 1 wherein said bayonet receiver defines an enclosure for the explosive force generated by said explosively-activated means such that the explosive force is substantially confined within said bayonet receiver enclosure upon activation of said explosively-activated means.
- 5. The improvement of claim 1 wherein said holding means includes a shanked fastener joining said receiver components together and said cutter means severs the shank of said fastener.
- 6. The apparatus of claim 8 wherein said shanked fastener has a threadless, intermediate cylindrically-shaped portion aligned with said cutter means and said cutter means severs the cylindrically-shaped portion of the fastener shank.
- 7. The apparatus of claim 5 wherein one of said receiver components includes an actuator body and said cutter means includes a cutting blade having a cutting edge mounted within said actuator body for movement relative thereto when said explosively-activated means is activated to effect a severance of the fastener shank by said cutting edge.
- 8. The apparatus of claim 6 wherein said cutter means is adapted to sever said intermediate portion of the fastener shank cleanly through a radial plane thereof.
- 9. The improvement of claim 1 wherein said holding means includes a plurality of shanked fasteners joining said receiver components together and said cutter means is adapted to sever every shank of said plurality of fasteners upon actuation of said explosively-activated means.
- 10. The improvement of claim 9 wherein each shanked fastener has a cylindrically-shaped portion aligned with said cutter means and said cutter means severs the cylindrically-shaped portion of every fastener shank.
- 11. The improvement of claim 4 wherein said bayonet receiver includes an actuator body into which the shank of said fastener extends and said cutter means includes a cutting blade mounted within said actuator body for movement relative thereto through the fastener shank to effect a severance thereof when said explosively-activated means is activated.
- 12. An apparatus for automatically releasing a breathing mask from a protective head-enclosing helmet to permit the wearer to breathe independently of the mask upon the occurrence of a predetermined event wherein said mask and helmet include coacting means for releasably securing the mask to the helmet in a position of use against the wearer's face and wherein said apparatus includes explosively-activated means operatively associated with said coacting means and means responsive to the occurrence of the predetermined event for actuating said explosively-activated means, wherein said coacting means includes a bayonet attached to said mask and a bayonet receiver carried by said helmet, said bayonet receiver including components held together in assembled relation, and wherein said explosively-activated means acts upon said bayonet receiver independently of said bayonet in a manner separating components of said receiver so that upon separation thereof, said bayonet separates from said helmet.
- 13. The apparatus of claim 12 wherein said coacting means substantially confine the explosive force of said explosively-activated means in a manner precluding the forcible propulsion of said coacting means from the helmet.
- 14. The apparatus of claim 13 wherein said coacting means define an enclosure for the explosive force so that the explosive force is substantially confined within said enclosure.
- 15. The improvement of claim 12 wherein said receiver components include an actuator body, a plate, a pair of jaw members sandwiched between said actuator body and said plate so as to define with said plate and actuator body a bayonet receiving channel, and holding means for holding said body, jaw members and plate together in assembled relationship, said bayonet-receiving channel adapted to releasably hold said bayonet when said bayonet is inserted within said channel, said explosively-activated means acting upon said bayonet receiver so as to sever said holding means when said explosively-activated means is activated and to thereby destroy the bayonet-holding capacity of said channel.
- 16. The improvement of claim 15 wherein said holding means is in the form of at least one shanked fastener joining the receiver components together and the severance of said holding means severs the shank of said fastener.
- 17. The improvement of claim 15 wherein said coacting means includes cutter means in the form of a cutting blade, said actuator body defines an elongated cavity within which said cutting blade is mounted for sliding movement relative thereto between one cavity end and the other cavity end, and said cutting blade is adapted to be forcibly driven by the explosive force of said explosively-activated means between said cavity ends and arranged relative to said holding means so that as said cutting blade is driven between said cavity ends as aforesaid, said holding means is completely severed by said cutting blade.
- 18. Apparatus as defined in claim 17 wherein said bayonet receiver is attached to the outer surface of the helmet when the bayonet is operatively received by said bayonet receiving channel so that said bore and said elongated cavity of said actuator body are oriented generally tangentially of said helmet so that the inertial shock of said explosive charge is channeled generally tangentially of the helmet.
- 19. The improvement of claim 17 wherein said actuator body defines a bore being in communication with said elongated cavity and said explosively-activated means includes an explosive charge supported within said bore and adapted to be detonated upon activation of said explosively-activated means, said cutting blade being arranged relative to said bore so that when said explosive charge is detonated, said cutting blade is forcibly driven between said cavity ends by the inertial shock generated by said charge.
- 20. The improvement of claim 19 wherein the longitudinal axes of said bore and said elongated cavity are oriented generally parallel to one another so that as said cutting blade is forcibly driven between said cavity ends, said cutting blade moves axially of said bore.
- 21. The improvement of claim 20 wherein said actuator body is arranged relative to the helmet when the mask and helmet are operatively secured so that said longitudinal axes are oriented generally tangentially of the helmet and so that a substantial portion of the inertial shock generated by the explosive charge is channeled generally tangentially of the helmet.
- 22. The improvement of claim 15, wherein said body falls from said receiver under its own weight upon severance of said holding means, thereby exposing said bayonet and enabling it to move outwardly from said channel.
- 23. Apparatus for automatically releasing a breathing mask from a protective head-enclosing helmet to permit the wearer to breathe independently of the mask upon the occurrence of a predetermined event comprising:
- means defining a bayonet attached to one of the mask and helmet;
- means defining a bayonet receiver attached to the other of the mask and helmet and including components defining a bayonet-receiving channel for accepting said bayonet in interlocking relation with said receiver, said bayonet receiver further including means for holding said receiver components in assembled relationship;
- explosively-activated means operatively associated with said bayonet receiver;
- means responsive to the occurrence of the predetermined event for activating said explosively-activated means; and
- cutter means interposed between said explosively-activated means and said holding means for severing the latter in response to the activation of said explosively-activated means whereby said receiver components separate and said bayonet thereupon separates from said receiver.
- 24. Apparatus as defined in claim 23 wherein said bayonet receiver includes an actuator body within which is defined an elongated cavity and which is held in assembled relationship with the remainder of said receiver components by means of a shanked fastener extending generally transversely of and through said elongated cavity, said cutter means includes means further defining blade means positioned within said elongated cavity for sliding movement relative thereto between the cavity ends and adapted to be forcibly driven relative to and along the length of said cavity when said explosively-activated means is activated; said blade means defining a cutting edge positioned in condition for cutting the shank of said fastener so that as the blade means is driven from one end of the cavity to the other cavity end, said cutting edge is driven through the fastener shank to effect a complete severance thereof.
- 25. Apparatus as defined in claim 24 wherein the explosive force of said explosively-activated means is substantially confined within said actuator body.
- 26. Apparatus as defined in claim 24 wherein said blade means is arranged in such a relationship with said fastener shank so that said fastener shank is cleanly severed through a radial plane thereof by the cutting edge of the blade means as the blade means is driven from one end of the cavity to the other cavity end.
- 27. Apparatus as defined in claim 24 wherein said bayonet receiver includes a plate and jaw members held in assembled relationship with said actuator body so that said jaw members are sandwiched between said plate and said actuator body, said holding means includes at least one shanked fastener for holding said actuator body in assembled relationship with said plate and jaw members and each fastener extends generally transversely of and through said elongated cavity, said blade means includes means defining cutting edges positioned in condition for severing the shank of each fastener so that as the blade means is driven from one cavity end to the other cavity end, said cutting edges are driven through so as to completely sever each fastener shank and said actuator body is permitted to separate from said jaw members and plate in a manner permitting said bayonet to separate from said bayonet-receiving channel.
- 28. The improvement of claim 24, wherein there are a plurality of such fasteners spaced longitudinally of said cavity, said cutter having longitudinally spaced blade means associated with said fasteners and being recessed between said longitudinally spaced blade means to accomodate helmet attaching means without binding said cutter means.
- 29. Apparatus as defined in claim 27 wherein said actuator body defines a bore oriented therein so that its longitudinal axis is generally parallel to the longitudinal axis of said elongated cavity and which communicates at one end with said elongated cavity, said explosively-activated means includes an explosive charge mounted within said bore and said blade means includes a head portion positioned adjacent the cavity-end of said bore for receiving the inertial shock of the explosive charge when detonated so that said blade means is forcibly driven axially of the bore upon actuation of said explosively-activated means from one end of the elongated cavity to the other cavity end.
- 30. The improvement of claim 29, together with a ram carried by said head portion, said ram having a head positioned to receive said inertial shock and a shank, together with means in said body defining a guide opening receiving said ram shank.
- 31. An apparatus for automatically releasing a breathing mask from a protective head-enclosing helmet to permit the wearer to breathe independently of the mask upon the occurrence of a predetermined event, wherein said mask and helmet include coacting means for releasably securing the mask to the helmet in a position of use against the wearer's face and wherein said apparatus includes explosively-activated means operatively associated with said coacting means and means responsive to the occurrence of the predetermined event for actuating said explosively-activated means, said coacting means separating upon actuation of said explosively-activated means in a manner freeing the mask from the helmet without being forceably propelled away from the helmet by the explosive force of said explosively-activated means, wherein said coacting means includes a bayonet and a bayonet receiver, said bayonet being attached to one of said mask and helmet and said bayonet receiver being attached to the other of said mask and helmet, said bayonet receiver including a plurality of components arranged in assembled relationship so as to define a bayonet-receiving channel for interlocking said receiver and said bayonet together when said bayonet is operatively accepted by said channel, and holding means for holding said receiver components in the aforesaid assembled relationship, said explosively-activated means adapted to sever said holding means and thereby destroy the component-holding capacity of said holding means when said explosively-activated means is activated to enable the receiver components to separate from one another and thereby permit the mask to separate from the helmet.
- 32. The improvement of claim 31 wherein said holding means includes a shanked fastener joining said receiver components together, and said coacting means includes cutter means interposed between the explosively-activated means and the shank of said fastener for receiving the explosive force of said explosively-activated means and for severing the fastener shank in response to the received explosive force.
Parent Case Info
This is a continuation-in-part of copending application serial number 922,075 filed on Oct. 20, 1986 now U.S. Pat. No. 4,803,980.
US Referenced Citations (12)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2414339 |
Sep 1979 |
FRX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
922075 |
Oct 1986 |
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