The patent badge is an abbreviated version of the USPTO patent document. The patent badge does contain a link to the full patent document.

The patent badge is an abbreviated version of the USPTO patent document. The patent badge covers the following: Patent number, Date patent was issued, Date patent was filed, Title of the patent, Applicant, Inventor, Assignee, Attorney firm, Primary examiner, Assistant examiner, CPCs, and Abstract. The patent badge does contain a link to the full patent document (in Adobe Acrobat format, aka pdf). To download or print any patent click here.

Date of Patent:
Jul. 07, 2015

Filed:

Feb. 22, 2011
Applicants:

Cheol Park, Yorktown, VA (US);

Dennis C. Working, Norfolk, VA (US);

Emilie J. Siochi, Newport News, VA (US);

Joycelyn S. Harrison, Arlington, VA (US);

Inventors:

Cheol Park, Yorktown, VA (US);

Dennis C. Working, Norfolk, VA (US);

Emilie J. Siochi, Newport News, VA (US);

Joycelyn S. Harrison, Arlington, VA (US);

Attorneys:
Primary Examiner:
Assistant Examiner:
Int. Cl.
CPC ...
C08L 89/00 (2006.01); C08L 79/08 (2006.01); C08G 73/10 (2006.01); C08K 3/04 (2006.01); B82Y 30/00 (2011.01); C08K 7/24 (2006.01);
U.S. Cl.
CPC ...
C08K 7/24 (2013.01); B82Y 30/00 (2013.01); C08K 2201/011 (2013.01);
Abstract

Conventional toughening agents are typically rubbery materials or small molecular weight molecules, which mostly sacrifice the intrinsic properties of a matrix such as modulus, strength, and thermal stability as side effects. On the other hand, high modulus inclusions tend to reinforce elastic modulus very efficiently, but not the strength very well. For example, mechanical reinforcement with inorganic inclusions often degrades the composite toughness, encountering a frequent catastrophic brittle failure triggered by minute chips and cracks. Thus, toughening generally conflicts with mechanical reinforcement. Carbon nanotubes have been used as efficient reinforcing agents in various applications due to their combination of extraordinary mechanical, electrical, and thermal properties. Moreover, nanotubes can elongate more than 20% without yielding or breaking, and absorb significant amounts of energy during deformation, which enables them to also be an efficient toughening agent, as well as excellent reinforcing inclusion. Accordingly, an improved toughening method is provided by incorporating nanotubular inclusions into a host matrix, such as thermoset and thermoplastic polymers or ceramics without detrimental effects on the matrix's intrinsic physical properties.


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