Milton J Hayes Deceased21 Saint James Pl, Brooklyn, NY 11205

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21 Saint James Pl, Brooklyn, NY 11205 (718) 789-5423

New York, NY

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J. Milt Hayes

Jun 11, 2009 ... John Milton Hayes (1884 - 1940), better known as J. Milton Hayes, was an English actor and poet, best known for his 1911 dramatic monologue ...

Us Patents

Non-Crystalline Acetal Copolymer Elastomers

US Patent:
5041505, Aug 20, 1991
Filed:
Sep 13, 1989
Appl. No.:
7/406641
Inventors:
George L. Collins - Maplewood NJ
William M. Pleban - Stanhope NJ
Milton J. Hayes - Irvington NJ
Assignee:
Hoechst Celanese Corp. - Somerville NJ
International Classification:
C08G 6516
C08L 5902
US Classification:
525398
Abstract:
Copolymers of 1,3-dioxolane and 1,3-dioxepane in the form of non-crystalline high molecular weight elastomers having low glass transition temperatures (Tg) are disclosed. Such copolymers are formed by polymerizing from about 40 to about 60 mol percent of 1,3-dioxolane and correspondingly from about 60 to about 40 mol percent of 1,3-dioxepane under substantially anhydrous conditions in the presence of a cationic polymerization catalyst, e. g. , a strong Bronsted acid such as trifluoromethanesulfonic acid. Blends of such non-crystalline copolymers with crystalline oxymethylene polymers are also disclosed.

Crosslinked Elastomeric Acetal Polymers

US Patent:
5412042, May 2, 1995
Filed:
Jul 25, 1991
Appl. No.:
7/735974
Inventors:
George L. Collins - Maplewood NJ
William M. Pleban - Stanhope NJ
Milton J. Hayes - Irvington NJ
Assignee:
Hoechst Celanese Corp. - Somerville NJ
International Classification:
C08L 5902
US Classification:
525403
Abstract:
A crosslinked elastomeric acetal polymer is synthesized from 1,3-dioxolane, 1,3-dioxepane, and a polyfunctional crosslinking compound having two or more functional groups that react under conditions of cationic polymerization, such as 1,4-divinyloxybutane or poly(butadiene oxide). The polymers are elastomeric and non-crystalline at temperatures well below room temperature. They can be blended with crystalline acetal polymers to produce blends that have improved impact properties.

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