Phase-stabilized ammonium nitrate

6872265
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Inventors

Hamilton, Brian K.

Application #

354278

Filed

Jan-30-2003

Published

Mar-29-2005

Current US Class

149/109.6
149/46

International Classes

D03D 023//00; C06B 031//28

Field of Search

149/46 149/109.6

Assignee

Autoliv ASP, Inc. (Ogden, UT)

Examiners

Felton; Aileen

Attorney, Agent or Firm

Brown; Sally J.

US Patent References

4001377   Method for produci...
4486396   Stabilized ammoni...
4552736   Potassium fluoride...
4925600   Process for the pro...
5053086   Gas generant com...
5063036   Process for produci...
5071630   Phase-stabilization...
5098683   Potassium fluoride...
5125684   Extrudable gas ge...
5139588   Composition for co...
5271778   Chlorine-free solid...
5292387   Phase-stabilized a...
5460668   Nonazide gas gene...
5472647   Method for prepari...
5516377   Gas generating co...
5518054   Processing aids for...
5529647   Gas generant com...
5531941   Process for prepari...
5542998   Gas-generating mi...
5542999   Gas-generating mi...
5545272   Thermally stable g...
5583315   Ammonium nitrate...
5589661   Solid propellant ba...
5592812   Metal complexes fo...
5596168   Solid propellant ba...
5608183   Gas generant com...
5641938   Thermally stable g...
5663524   Gas generating mi...
5677510   Gas generating mi...
5682014   Bitetrazoleamine g...
5725699   Metal complexes fo...
5726382   Eutectic mixtures of...
5735118   Using metal compl...
5747730   Pyrotechnic metho...
5780768   Gas generating co...
5783773   Low-residue azide-f...
5847315   Solid solution vehic...
5850053   Eutectic mixtures of...
5866842   Low temperature a...
5962808   Gas generant com...
6059906   Methods for prepar...
6077372   Ignition enhanced...
6083331   Burn rate-enhance...
6103030   Burn rate-enhance...
6132480   Gas forming igniter...
6132538   High gas yield gen...
6165296   Gas generant ignit...
6224697   Gas generant man...
6315930   Method for making...
6372191   Phase stabilized a...
6508995   Process for produci...
 

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Abstract
Ammonium nitrate is phase-stabilized by a synergistic phase stabilization additive combination of at least cupric oxide and potassium nitrate. Specifically, phase-stabilized ammonium nitrate contains between about 94.0 and about 96.0 wt. % ammonium nitrate and between about 4 and 6 wt. % of a synergistic phase stabilization additive combination of at least cupric oxide and potassium nitrate, wherein the cupric oxide is present in a relative amount of no more than about 2.0 wt. %. In some cases, additional stability is imparted by the inclusion of zinc oxide such as in a relative amount of no more than about 1.5 wt. %.
 
Claims
What is claimed is:

1. In a method of phase-stabilizing ammonium nitrate, the improvement comprising adding a phase stabilization additive combination of at least CuO and KNO.sub.3 to ammonium nitrate to form a phase stabilized ammonium nitrate composition containing between about 94 and about 96 wt. % ammonium nitrate and between about 4 and 6 wt. % of the phase stabilization additive combination, wherein the CuO is present in a relative amount of no more than about 2.0 wt. %, the weight percentages being calculated with the total of the ammonium nitrate and the phase stabilization additive combination equaling 100 wt. %.

2. The method of claim 1 wherein the phase stabilization additive combination additionally comprises ZnO.



Description
BACKGROUND OF THE INVENTION

This invention relates generally to ammonium nitrate and, more particularly, to the phase stabilization of ammonium nitrate such as to facilitate the incorporation and use of such phase-stabilized ammonium nitrate in gas generant materials such as used in the inflation of automotive inflatable restraint airbag cushions and the like.

Gas generating materials are useful in a variety of different contexts. One significant use for such compositions is in the operation of automotive occupant safety restraints. For example, it is well known to protect a vehicle occupant using a cushion or bag, e.g., an "airbag cushion," that is inflated or expanded with gas when a vehicle encounters sudden deceleration, such as in the event of a collision. In such systems, the airbag cushion is normally housed in an uninflated and folded condition to minimize space requirements. Such systems typically also include one or more crash sensors mounted on or to the frame or body of the vehicle to detect sudden decelerations of the vehicle and to electronically trigger activation of the system. Upon actuation of the system, the cushion begins to be inflated in a matter of no more than a few milliseconds with gas produced or supplied by a device commonly referred to as an "inflator." In practice, such an airbag cushion is typically desirably deployed into a location within the vehicle between the occupant and certain parts of the vehicle interior, such as a door, steering wheel, instrument panel or the like, to prevent or avoid the occupant from forcibly striking such part(s) of the vehicle interior.
 
  A pelletized propellant particularly suitable for crash restraint device inflation apparatus comprising an alkali metal azide, an oxidizing agent, and...  A composition comprising phosphorus and a minor amount of at least one radical inhibitor selected from 4-(p-n-trophenyl-azo)-1-naphthol and mono and fused...