U.S. patents available from 1976 to present.
U.S. patent applications available from 2005 to present.

Enhanced energetic composites

Patent 6197135 Issued on March 6, 2001. Estimated Expiration Date: Icon_subject March 6, 2018. Estimated Expiration Date is calculated based on simple USPTO term provisions. It does not account for terminal disclaimers, term adjustments, failure to pay maintenance fees, or other factors which might affect the term of a patent.

Patent References

3167525

3637444

3907619

Stabilizers for functionally terminated butadiene polymers
Patent #: 3932353
Issued on: 01/13/1976
Inventor: Mastrolia ,   et al.

Explosive composition containing a hydroxyalkyl acrylate copolymer binder
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Issued on: 09/27/1977
Inventor: Goldhagen ,   et al.

Process for the production of propellant charge powders, especially nitroguanidine powders
Patent #: 4051207
Issued on: 09/27/1977
Inventor: Brachert ,   et al.

Active binder propellants incorporating burning rate catalysts
Patent #: 4139404
Issued on: 02/13/1979
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Stabilizers for solid propellant binders
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Issued on: 04/07/1981
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Cure rate inhibitors for ferrocene-containing propellants
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Process for preparing progressive burning propellant granules
Patent #: 4354884
Issued on: 10/19/1982
Inventor: Williams

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Inventors

Assignee

Application

No. 841471 filed on 02/18/1986

US Classes:

149/19.2, Including organometallic or organo (silicon/boron) compound149/19.1, Organic material contains polysaccharide resin or synthetic resin149/19.4, Polyurethane149/19.9, Polymerized conjugated diene149/19.91Polymerized ethylenically unsaturated compound

Examiners

Primary: Miller, Edward A.

Attorney, Agent or Firm

International Class

C06B 045/10

Abstract

The instant invention relates to the use of certain selected neoalkoxy organo-titanates and organo-zirconates in energetic compositions to improve their processability, physical properties, and combustion properties. The organo-titanates and organo-zirconates of the instant invention, when added to the energetic systems' matrix in advance of the introduction of particulate or other solid energetic components, improve the dispersion of the latter while reducing the energy required to achieve formulation uniformity. This enhances the processability, the physical properties, the burn characteristics and the safety and handling characteristics of the formulated composites.

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