US3895098A - Method and composition for generating nitrogen gas - Google Patents

Method and composition for generating nitrogen gas Download PDF

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Publication number
US3895098A
US3895098A US258271A US25827172A US3895098A US 3895098 A US3895098 A US 3895098A US 258271 A US258271 A US 258271A US 25827172 A US25827172 A US 25827172A US 3895098 A US3895098 A US 3895098A
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US
United States
Prior art keywords
azide
oxide
alkali metal
metal
composition
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
US258271A
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English (en)
Inventor
John F Pietz
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Talley Industries of Arizona Inc
Talley Industries Inc
Original Assignee
Talley Industries of Arizona Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Talley Industries of Arizona Inc filed Critical Talley Industries of Arizona Inc
Priority to US258271A priority Critical patent/US3895098A/en
Priority to JP462873A priority patent/JPS5313596B2/ja
Priority to CA172,583A priority patent/CA982785A/en
Priority to SE7307575A priority patent/SE402907B/xx
Priority to FR7319912A priority patent/FR2186450B1/fr
Priority to IT68604/73A priority patent/IT991611B/it
Priority to DE19732327741 priority patent/DE2327741C3/de
Priority to GB2596473A priority patent/GB1429842A/en
Application granted granted Critical
Publication of US3895098A publication Critical patent/US3895098A/en
Priority to US06/649,573 priority patent/USRE32584E/en
Assigned to CITICORP NORTH AMERICA, INC. reassignment CITICORP NORTH AMERICA, INC. SECURITY INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: TALLEY AUTOMOTIVE PRODUCTS, INC., TALLEY DEFENSE SYSTEMS, INC., TALLEY INDUSTRIES, INC., TALLEY TECHNOLOGY, INC.
Anticipated expiration legal-status Critical
Assigned to TALLEY DEFENSE SYSTEMS, INC. reassignment TALLEY DEFENSE SYSTEMS, INC. RELEASE BY SECURED PARTY (SEE DOCUMENT FOR DETAILS). Assignors: BANK OF NEW YORK, THE
Ceased legal-status Critical Current

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Classifications

    • CCHEMISTRY; METALLURGY
    • C06EXPLOSIVES; MATCHES
    • C06BEXPLOSIVES OR THERMIC COMPOSITIONS; MANUFACTURE THEREOF; USE OF SINGLE SUBSTANCES AS EXPLOSIVES
    • C06B43/00Compositions characterised by explosive or thermic constituents not provided for in groups C06B25/00 - C06B41/00
    • CCHEMISTRY; METALLURGY
    • C06EXPLOSIVES; MATCHES
    • C06DMEANS FOR GENERATING SMOKE OR MIST; GAS-ATTACK COMPOSITIONS; GENERATION OF GAS FOR BLASTING OR PROPULSION (CHEMICAL PART)
    • C06D5/00Generation of pressure gas, e.g. for blasting cartridges, starting cartridges, rockets
    • C06D5/06Generation of pressure gas, e.g. for blasting cartridges, starting cartridges, rockets by reaction of two or more solids

Definitions

  • ABSTRACT A gas generating composition is disclosed wherein the combustible reactants are an alkali metal azide and a metal oxide which upon thermal initiation react to produce alkali metal oxide, metal and pure nitrogen gas which can be used to inflate an impact protection air cushion of an automotive restraint system.
  • This invention relates generally to gas generating compositions and, in particular, to such compositions which are suitable for inflating an air cushion in vehicle restraint systems of the type which utilize such a cushion to protect vehicle occupants upon sudden stopping or deceleration of the vehicle in which they are riding,
  • the air cushion which is commonly formed of an inflatable bag, acts to prevent the secondary collision between the occupants and interior structural components of the vehicle resulting from the primary collision between the vehicle and another object.
  • Another method proposed for inflating the air cushion involves the use of an ignitable propellant system, where the inflating gas is generated by the exothermic reaction of the reactants forming the propellant composition.
  • the bags used in restraint systems of the type described must in order to accomplish their purpose be inflated to a sufficient degree within a very short time span, generally on the order of a few milliseconds. For example, under certain representative conditions only about 60 milliseconds elapse between occurrence of the primary and secondary collisions.
  • the gas itself must meet several rather stringent requirements. The gas must be nontoxic and non-noxious, and its temperature as it is generated must be low enough not to burn the bag or of itself undermine the mechanical strength of the bag. Furthermore, the temperature of the gas must be sufficiently cool so as not to burn the passengers in the vehicle in the event the bag ruptures.
  • the stability and reliability of the propellant composition over the life of the vehicle are highly important.
  • the propellant composition must possess sufficient stability to temperature, humidity and shock so that it is virtually incapable of being set off except upon delibcrate initiation by the actuating sensors employed.
  • compositions containing sodium azide as one of the reactants have been used to generate pure nitrogen.
  • the decomposition of the azide leaves a residue of sodium metal which disadvantageously burns spontaneously upon contact with air presenting an extremely undesirable fire hazard to vehicle occupants.
  • the sodium residue disadvantageously exhibits a propensity to react with moisture to produce hydrogen.
  • Hydrogen quite obviously is a highly undesirable by-product, also because of its high flammability characteristics.
  • various organic compounds have been used in previous azide-containing compositions to react with sodium metal residue. But with all such organic compounds, some carbon monoxide is generated as a side product of the reaction. This also is undesirable for the applications herein discussed because of the toxic properties of carbon monoxide.
  • the present invention provides a novel gas generating composition which, when ignited, generates nitrogen gas without any of the deleterious side-products associated with the reaction of known compositions.
  • a solid gas generating composition which, when thermally initiated, rapidly generates pure nitrogen which can be used for inflating an impact protection air cushion.
  • the solid reactants of the composition include an alkali metal azide and a metal oxide.
  • an excess stoichiometric mixture of sodium azide and copper oxide is used.
  • the decomposition products of the reaction are pure nitrogen gas, liquid copper and sodium oxide.
  • the gas generated is free of noxious and toxic impurities and can be produced at temperatures low enough to preclude damage to the air cushion or to vehicle occupants.
  • the propellant gas generated in accordance with this invention comprises nitrogen gas which is released by the exothermic reaction of an alkali metal azide with the oxide of a metal lower in the electromotive series than the alkali metal of the azide.
  • the reaction is thermally initiated at temperatures between about 600 to 800 Farenheit. Because of the occurrence of spontaneous combustion when alkali metals are exposed to air, the metal of the oxide must not be an alkali metal. Although the exact mechanism is not known, this reaction is believed to proceed in two steps.
  • the first step involves the decomposition of the alkali metal azide to form alkali metal and nitrogen.
  • the second step of the reaction is thought to involve the reaction of the alkali metal formed in the first stage of decomposition with the metal oxide to form alkali metal oxide and metal.
  • M is an alkali metal
  • M is a metal (other than an alkali metal) lower in the electromotive series than M
  • x is the valence of M.
  • alkali metal azides include lithium azide, sodium azide, and potassium azide.
  • suitable metal oxides include copper oxide, iron oxide, stannic oxide, titanium dioxide, lead oxide, chromium oxide and zinc oxide.
  • the amount of metal oxide in the mixture must be sufficient to react with substantially all of the alkali metal of the azide.
  • the mixture contain a slight stoichiometric excess (a few percent) of the metal oxide.
  • a mixture containing a stoichiometric excess of the metal oxide is one in which the amount of metal oxide exceeds the amount which represents the theoretical stoichiometric amount.
  • EXAMPLE 1 A mixture comprising 70.9% by weight of sodium azide and 29.l% by weight of iron oxide.
  • Fe O EXAMPLE 2 A mixture containing 63.3% by weight of sodium azide together with 36.7% by weight of stannic oxide.
  • EXAMPLE 3 A mixture comprising 765% of sodium azide together with 23.5% by weight of titanium dioxide.
  • EXAMPLE 4 A mixture comprising 62.0% of sodium azide together with 38.0% by weight of copper oxide.
  • EXAMPLE 5 A mixture comprising 55.2% of lithium azide together with 44.8% by weight of copper oxide.
  • EXAMPLE 6 A mixture comprising 67.1% of potassium azide together with 32.9% by weight of copper oxide.
  • EXAMPLE 7 A mixture comprising 64.8% of Lithium azide together with 35.2% by weight of iron oxide.
  • Fe O EXAMPLE 8 A mixture comprising 75.3% of potassium azide together with 24.7% by weight of iron oxide.
  • Fe O Particularly preferred is the mixture set forth in Example 4 above. This mixture was prepared by taking sodium azide in granular form and reducing the size of the granular particles by grinding in a hammer mill to a particle size of less than 50 microns. The ground azide and untreated copper oxide in commercially available powdered form were blended in a twin shell V-blender in the proper proportions until a heterogeneous mixture was obtained.
  • This mixture exhibits a life of about 30 years and high stability to shock, temperature and humidity.
  • the composition is stable in these respects in that it can be stored for long periods of time without noticeable deterioration, it can be stored at temperatures up to about 240F. for several days and it can withstand relative humidity up to about 80% for at least 30 days.
  • the composition of the preferred embodiment will not detonate as a result of static electricity nor will it detonate upon initiation by a No. 8 blasting cap through a tetryl booster acting on I quart of the propellant composition.
  • the composition is extremely stable and can be initiated only at an ignition temperature above 600F.
  • the most significant aspect of the reaction of this mixture is the rapid generation of pure, non-toxic nitrogen gas without any of the harmful side-products formed upon decomposition of heretofore known azide compositions and at a temperature not harmful to human beings.
  • 1 10 grams of the preferred mixture ignited at a temperature of 796F. produced enough pure nitrogen to fully inflate an air cushion having a volume of 2.6 cubic feet in less than 25 milliseconds.
  • 250 grams of this mixture ignited at the same temperature produced enough gas to fully inflate an air cushion having a volume of 6.0 cubic feet in less than 25 milliseconds.
  • any size air cushion can be inflated in the requisite time period by employing a sufficient amount of propellant, the ratio between amount of propellant and air cushion volume remaining roughly constant.
  • a solid composition for generating nitrogen gas substantially free of noxious and toxic impurities comprising essentially a mixture of alkali metal azide and at least a stoichiometric amount of a metal oxide selected from the group consisting of iron, titanium and copper oxides and mixtures thereof, said metal oxide being capable of reacting exothermically with the alkali metal azide and wherein the metal of the oxide is lower in the electromotive series than the alkali metal of the azide and is a metal other than the alkali.
  • composition according to claim 1 wherein:
  • the alkali metal azide is sodium azide.
  • composition according to claim 2 wherein:
  • the alkali metal azide is sodium azide forming about 62 parts per hundred by weight of the total composition
  • the metal oxide is copper oxide forming the remainder of the composition.
  • composition according to claim 2 wherein:
  • the alkali metal azide is sodium azide forming about 70.9 parts per hundred by weight of the total composition
  • the metal oxide is iron oxide forming the remainder of the composition.
  • composition according to claim 2 wherein:
  • the alkali metal azide is sodium azide forming about 76.5 parts per hundred by weight of the total composition
  • the metal oxide is titanium dioxide forming the remainder of the composition.
  • a method for rapidly generating pure nitrogen gas comprising:
  • a providing a homogeneous mixture comprising essentially solid granular alkali metal azide and at least a stoichiometric amount of a metal oxide in solid granular form selected from the group consisting of iron, titanium, and copper oxides and mixtures thereof, said metal oxide being capable of reacting exothermically with the alkali metal azide, the metal of the oxide being lower in the electromotive series than the alkali metal of the azide and the metal of the oxide being other than an alkali metal; and

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  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Engineering & Computer Science (AREA)
  • Combustion & Propulsion (AREA)
  • Air Bags (AREA)
  • Vibration Prevention Devices (AREA)
  • Emergency Lowering Means (AREA)
US258271A 1972-05-31 1972-05-31 Method and composition for generating nitrogen gas Ceased US3895098A (en)

Priority Applications (9)

Application Number Priority Date Filing Date Title
US258271A US3895098A (en) 1972-05-31 1972-05-31 Method and composition for generating nitrogen gas
JP462873A JPS5313596B2 (enrdf_load_stackoverflow) 1972-05-31 1973-01-05
SE7307575A SE402907B (sv) 1972-05-31 1973-05-29 Fast gasutvecklingskomposition till anvendning for mycket snabb utveckling av kvevgas
CA172,583A CA982785A (en) 1972-05-31 1973-05-29 Nitrogen gas generating composition
IT68604/73A IT991611B (it) 1972-05-31 1973-05-30 Procedimento e composizione per generare un gas particolarmente per il gonfiaggio dei cuscini di sicurezza per veicoli
DE19732327741 DE2327741C3 (de) 1972-05-31 1973-05-30 Festes Mittel zur Gaserzeugung
FR7319912A FR2186450B1 (enrdf_load_stackoverflow) 1972-05-31 1973-05-30
GB2596473A GB1429842A (en) 1972-05-31 1973-05-31 Method and composition for gas generation
US06/649,573 USRE32584E (en) 1972-05-31 1984-09-12 Method and composition for generating nitrogen gas

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US258271A US3895098A (en) 1972-05-31 1972-05-31 Method and composition for generating nitrogen gas

Related Child Applications (1)

Application Number Title Priority Date Filing Date
US06/649,573 Reissue USRE32584E (en) 1972-05-31 1984-09-12 Method and composition for generating nitrogen gas

Publications (1)

Publication Number Publication Date
US3895098A true US3895098A (en) 1975-07-15

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US258271A Ceased US3895098A (en) 1972-05-31 1972-05-31 Method and composition for generating nitrogen gas

Country Status (7)

Country Link
US (1) US3895098A (enrdf_load_stackoverflow)
JP (1) JPS5313596B2 (enrdf_load_stackoverflow)
CA (1) CA982785A (enrdf_load_stackoverflow)
FR (1) FR2186450B1 (enrdf_load_stackoverflow)
GB (1) GB1429842A (enrdf_load_stackoverflow)
IT (1) IT991611B (enrdf_load_stackoverflow)
SE (1) SE402907B (enrdf_load_stackoverflow)

Cited By (46)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3996079A (en) * 1973-12-17 1976-12-07 Canadian Industries, Ltd. Metal oxide/azide gas generating compositions
US4062708A (en) * 1974-11-29 1977-12-13 Eaton Corporation Azide gas generating composition
US4109578A (en) * 1975-06-30 1978-08-29 Eaton Corporation Fluid generator
US4203787A (en) * 1978-12-18 1980-05-20 Thiokol Corporation Pelletizable, rapid and cool burning solid nitrogen gas generant
US4296084A (en) * 1979-10-29 1981-10-20 Thiokol Corporation Method of and apparatus for gas generation
US4376002A (en) * 1980-06-20 1983-03-08 C-I-L Inc. Multi-ingredient gas generators
DE3316529A1 (de) * 1982-10-16 1984-11-08 Erno Raumfahrttechnik Gmbh, 2800 Bremen Stoffgemisch zur gaserzeugung
US4533416A (en) * 1979-11-07 1985-08-06 Rockcor, Inc. Pelletizable propellant
US4547235A (en) * 1984-06-14 1985-10-15 Morton Thiokol, Inc. Gas generant for air bag inflators
US4696705A (en) * 1986-12-24 1987-09-29 Trw Automotive Products, Inc. Gas generating material
US4698107A (en) * 1986-12-24 1987-10-06 Trw Automotive Products, Inc. Gas generating material
US4734141A (en) * 1987-03-27 1988-03-29 Hercules Incorporated Crash bag propellant compositions for generating high quality nitrogen gas
US4758287A (en) * 1987-06-15 1988-07-19 Talley Industries, Inc. Porous propellant grain and method of making same
US4806180A (en) * 1987-12-10 1989-02-21 Trw Vehicle Safety Systems Inc. Gas generating material
DE3923179A1 (de) * 1988-07-25 1990-02-01 Hercules Inc Treibmittelzusammensetzung fuer eine pralltasche und verfahren zum entwickeln von stickstoffgas
US4929290A (en) * 1988-07-25 1990-05-29 Hercules Incorporated Crash bag propellant composition and method for generating nitrogen gas
US4999063A (en) * 1990-06-07 1991-03-12 Trw Vehicle Safety Systems Inc. Process for manufacturing a gas generating material
US5019220A (en) * 1990-08-06 1991-05-28 Morton International, Inc. Process for making an enhanced thermal and ignition stability azide gas generant
DE4141907A1 (de) * 1990-12-18 1992-07-02 Trw Inc Aufblasvorrichtungsgehaeuse
US5131679A (en) * 1990-12-18 1992-07-21 Trw Inc. Initiator assembly for air bag inflator
US5223184A (en) * 1990-08-06 1993-06-29 Morton International, Inc. Enhanced thermal and ignition stability azide gas generant
DE4218531C1 (enrdf_load_stackoverflow) * 1991-10-11 1993-07-15 Bayern-Chemie Gesellschaft Fuer Flugchemische Antriebe Mbh, 8261 Aschau, De
DE4318883A1 (de) * 1992-06-05 1993-12-09 Trw Inc Mehrfachgeschichtete Gaserzeugungsscheibe zur Verwendung in Gasgeneratoren
US5269560A (en) * 1990-12-18 1993-12-14 Twr Inc. Initiator assembly for air bag inflator
US5286054A (en) * 1989-12-04 1994-02-15 Talley Automotive Products, Inc. Aspirating/venting motor vehicle passenger airbag module
US5345873A (en) * 1992-08-24 1994-09-13 Morton International, Inc. Gas bag inflator containing inhibited generant
US5401340A (en) * 1993-08-10 1995-03-28 Thiokol Corporation Borohydride fuels in gas generant compositions
US5429691A (en) * 1993-08-10 1995-07-04 Thiokol Corporation Thermite compositions for use as gas generants comprising basic metal carbonates and/or basic metal nitrates
US5439537A (en) * 1993-08-10 1995-08-08 Thiokol Corporation Thermite compositions for use as gas generants
EP0659715A3 (en) * 1993-12-10 1995-09-27 Morton Int Inc Gas generating compositions.
US5462306A (en) * 1993-01-21 1995-10-31 Trw Inc. Gas generator for vehicle occupant restraint
US5472647A (en) * 1993-08-02 1995-12-05 Thiokol Corporation Method for preparing anhydrous tetrazole gas generant compositions
EP0699645A1 (en) 1994-08-17 1996-03-06 Imperial Chemical Industries Plc Process for the production of exothermically reacting compositions
US5500059A (en) * 1993-08-02 1996-03-19 Thiokol Corporation Anhydrous 5-aminotetrazole gas generant compositions and methods of preparation
EP0708003A1 (en) 1994-10-17 1996-04-24 Trw Inc. Auto ignition package for an air bag inflator
US5592812A (en) * 1994-01-19 1997-01-14 Thiokol Corporation Metal complexes for use as gas generants
US5682013A (en) * 1992-08-24 1997-10-28 Morton International, Inc. Gas generant body having pressed-on burn inhibitor layer
US5725699A (en) * 1994-01-19 1998-03-10 Thiokol Corporation Metal complexes for use as gas generants
US6053110A (en) * 1998-01-16 2000-04-25 Autoliv Asp, Inc. Airbag generant wafer design with I-beam construction
US6073963A (en) * 1998-03-19 2000-06-13 Oea, Inc. Initiator with injection molded insert member
RU2189340C2 (ru) * 2000-03-28 2002-09-20 ГУП Всероссийский научно-исследовательский институт углеводородного сырья Способ хранения сероводород- и/или меркаптансодержащей нефти, нефтепродуктов и газоконденсата в резервуаре под атмосферой инертного газа
RU2243959C1 (ru) * 2003-05-27 2005-01-10 Российская Федерация, от имени которой выступает государственный заказчик - Министерство Российской Федерации по атомной энергии, Федеральное государственное унитарное предприятие " федеральный ядерный центр - Всероссийский научно-исследовательский институт экспериментальной физики" Пиротехнический состав для получения азота
US6969435B1 (en) 1994-01-19 2005-11-29 Alliant Techsystems Inc. Metal complexes for use as gas generants
US20100084060A1 (en) * 1994-01-19 2010-04-08 Alliant Techsystems Inc. Metal complexes for use as gas generants
RU2484075C2 (ru) * 2011-04-21 2013-06-10 Открытое акционерное общество "Федеральный научно-производственный центр "Научно-исследовательский институт прикладной химии" Способ изготовления пиротехнических зарядов
WO2020060440A1 (ru) 2018-09-21 2020-03-26 Естиконде Инвестмент Лимитед Азотогенерирующий состав для пожаротушения и способ его получения

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JPS51306B2 (enrdf_load_stackoverflow) * 1972-02-21 1976-01-07
EP0012626B1 (en) * 1978-12-18 1984-04-04 Thiokol Corporation Method of and apparatus for gas generation
DE3169729D1 (en) * 1981-03-16 1985-05-09 Rockwell International Corp High yield nitrogen gas generators

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US3066479A (en) * 1959-07-14 1962-12-04 Engelhard Ind Inc Stabilized azide fuel and combustion process
US3741585A (en) * 1971-06-29 1973-06-26 Thiokol Chemical Corp Low temperature nitrogen gas generating composition

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US2981616A (en) * 1956-10-01 1961-04-25 North American Aviation Inc Gas generator grain

Patent Citations (2)

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Publication number Priority date Publication date Assignee Title
US3066479A (en) * 1959-07-14 1962-12-04 Engelhard Ind Inc Stabilized azide fuel and combustion process
US3741585A (en) * 1971-06-29 1973-06-26 Thiokol Chemical Corp Low temperature nitrogen gas generating composition

Cited By (58)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3996079A (en) * 1973-12-17 1976-12-07 Canadian Industries, Ltd. Metal oxide/azide gas generating compositions
US4062708A (en) * 1974-11-29 1977-12-13 Eaton Corporation Azide gas generating composition
US4109578A (en) * 1975-06-30 1978-08-29 Eaton Corporation Fluid generator
US4203787A (en) * 1978-12-18 1980-05-20 Thiokol Corporation Pelletizable, rapid and cool burning solid nitrogen gas generant
EP0012628A1 (en) * 1978-12-18 1980-06-25 Thiokol Corporation Pelletizable, rapid and cool burning solid nitrogen gas generant suitable for automotive crash bag inflators and method for generation of nitrogen gas
US4296084A (en) * 1979-10-29 1981-10-20 Thiokol Corporation Method of and apparatus for gas generation
US4533416A (en) * 1979-11-07 1985-08-06 Rockcor, Inc. Pelletizable propellant
US4376002A (en) * 1980-06-20 1983-03-08 C-I-L Inc. Multi-ingredient gas generators
DE3316529A1 (de) * 1982-10-16 1984-11-08 Erno Raumfahrttechnik Gmbh, 2800 Bremen Stoffgemisch zur gaserzeugung
US4547235A (en) * 1984-06-14 1985-10-15 Morton Thiokol, Inc. Gas generant for air bag inflators
US4696705A (en) * 1986-12-24 1987-09-29 Trw Automotive Products, Inc. Gas generating material
US4698107A (en) * 1986-12-24 1987-10-06 Trw Automotive Products, Inc. Gas generating material
DE3744750C2 (enrdf_load_stackoverflow) * 1986-12-24 1990-10-25 Trw Vehicle Safety Systems Inc. (N.D.Ges.D. Staates Delaware), Lyndhurst, Ohio, Us
US4734141A (en) * 1987-03-27 1988-03-29 Hercules Incorporated Crash bag propellant compositions for generating high quality nitrogen gas
US4758287A (en) * 1987-06-15 1988-07-19 Talley Industries, Inc. Porous propellant grain and method of making same
US4806180A (en) * 1987-12-10 1989-02-21 Trw Vehicle Safety Systems Inc. Gas generating material
US4929290A (en) * 1988-07-25 1990-05-29 Hercules Incorporated Crash bag propellant composition and method for generating nitrogen gas
DE3923179A1 (de) * 1988-07-25 1990-02-01 Hercules Inc Treibmittelzusammensetzung fuer eine pralltasche und verfahren zum entwickeln von stickstoffgas
DE3923179C2 (de) * 1988-07-25 1998-08-13 Hercules Inc Gasbildende Treibmittelzusammensetzung und deren Verwendung in aufblasbaren Fahrzeug-Pralltaschen
US4920743A (en) * 1988-07-25 1990-05-01 Hercules Incorporated Crash bag propellant composition and method for generating nitrogen gas
US5286054A (en) * 1989-12-04 1994-02-15 Talley Automotive Products, Inc. Aspirating/venting motor vehicle passenger airbag module
US4999063A (en) * 1990-06-07 1991-03-12 Trw Vehicle Safety Systems Inc. Process for manufacturing a gas generating material
US5019220A (en) * 1990-08-06 1991-05-28 Morton International, Inc. Process for making an enhanced thermal and ignition stability azide gas generant
US5223184A (en) * 1990-08-06 1993-06-29 Morton International, Inc. Enhanced thermal and ignition stability azide gas generant
US5437229A (en) * 1990-08-06 1995-08-01 Morton International, Inc. Enhanced thermal and ignition stability azide gas generant intermediates
US5131679A (en) * 1990-12-18 1992-07-21 Trw Inc. Initiator assembly for air bag inflator
US5269560A (en) * 1990-12-18 1993-12-14 Twr Inc. Initiator assembly for air bag inflator
DE4141907C3 (de) * 1990-12-18 2001-02-15 Trw Inc Aufblasvorrichtungsgehäuse
DE4141907A1 (de) * 1990-12-18 1992-07-02 Trw Inc Aufblasvorrichtungsgehaeuse
DE4218531C1 (enrdf_load_stackoverflow) * 1991-10-11 1993-07-15 Bayern-Chemie Gesellschaft Fuer Flugchemische Antriebe Mbh, 8261 Aschau, De
DE4318883A1 (de) * 1992-06-05 1993-12-09 Trw Inc Mehrfachgeschichtete Gaserzeugungsscheibe zur Verwendung in Gasgeneratoren
US5345873A (en) * 1992-08-24 1994-09-13 Morton International, Inc. Gas bag inflator containing inhibited generant
US5682013A (en) * 1992-08-24 1997-10-28 Morton International, Inc. Gas generant body having pressed-on burn inhibitor layer
US5462306A (en) * 1993-01-21 1995-10-31 Trw Inc. Gas generator for vehicle occupant restraint
US5682014A (en) * 1993-08-02 1997-10-28 Thiokol Corporation Bitetrazoleamine gas generant compositions
US5472647A (en) * 1993-08-02 1995-12-05 Thiokol Corporation Method for preparing anhydrous tetrazole gas generant compositions
US5500059A (en) * 1993-08-02 1996-03-19 Thiokol Corporation Anhydrous 5-aminotetrazole gas generant compositions and methods of preparation
US5501823A (en) * 1993-08-02 1996-03-26 Thiokol Corporation Preparation of anhydrous tetrazole gas generant compositions
US5401340A (en) * 1993-08-10 1995-03-28 Thiokol Corporation Borohydride fuels in gas generant compositions
US5429691A (en) * 1993-08-10 1995-07-04 Thiokol Corporation Thermite compositions for use as gas generants comprising basic metal carbonates and/or basic metal nitrates
US5439537A (en) * 1993-08-10 1995-08-08 Thiokol Corporation Thermite compositions for use as gas generants
EP0659715A3 (en) * 1993-12-10 1995-09-27 Morton Int Inc Gas generating compositions.
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FR2186450B1 (enrdf_load_stackoverflow) 1977-07-29
SE402907B (sv) 1978-07-24
IT991611B (it) 1975-08-30
CA982785A (en) 1976-02-03
JPS5313596B2 (enrdf_load_stackoverflow) 1978-05-11
FR2186450A1 (enrdf_load_stackoverflow) 1974-01-11
DE2327741B2 (de) 1975-11-20
JPS4930287A (enrdf_load_stackoverflow) 1974-03-18
GB1429842A (en) 1976-03-31
DE2327741A1 (de) 1973-12-20

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