Enhancing the strength, moisture resistance of wood, timber,...

Stock material or miscellaneous articles – All metal or with adjacent metals – Having metal particles

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C427S554000, C427S553000, C427S542000, C427S397800, C427S439000, C427S440000, C428S537100

Reissue Patent

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10803199

ABSTRACT:
Materials variously treated with sodium silicate were studied until enough information was obtained to find a way to solve the problems that have prevented sodium silicate from being the used as a fire retardant. These problems are: 1) water solubility (miscible with water), which results in extensive leaching when exposed to water, 2) cracking, chipping and peeling of treated surfaces, and 3) surface granulation. During flame tests it was discovered that sodium silicate formed a foam-like material, and this material was found to have become water insoluble, yet its elemental composition had remained virtually identical to that of the unmodified sodium silicate. This investigator proposes that under the influence of heat and dehydration, sodium silicate undergoes a polymerization process resulting in particles sizes too large to dissolve in water, and then developed a mechanism to explain how the process could occur. The temperature and moisture conditions in treated samples were then manipulated to cause the polymerization process to occur while protecting the wood from damage. Thus samples were prepared that were both water insoluble, and possessed effective fire retardant properties. These samples also proved to be stronger than untreated wood, thus providing an improved product that was fire retardant and moisture resistant. Since aqueous sodium silicate can be combined with other inorganic fire retardants, this technique is a potential method for making any inorganic fire retardants moisture resistant. This represents a potential breakthrough in fire retardants that has been sought for approximately 100 years. In addition, sodium silicate treated samples were made moisture resistant by the application of a micro-thin layer of silicon monoxide to the surface of samples. This technique, also never tried before, represents a second method for providing moisture resistant, fire retardant substances.

REFERENCES:
patent: 51702 (1865-12-01), Devlan
patent: 63618 (1867-04-01), Devlan
patent: 74225 (1868-02-01), Hildreth
patent: 74587 (1868-02-01), Pelletier
patent: 80086 (1868-07-01), Oertly
patent: 109002 (1870-11-01), Godfrey
patent: 293785 (1884-02-01), Ravenscroft
patent: 539928 (1895-05-01), Wheeler
patent: 620446 (1899-02-01), Grunzweig
patent: 627008 (1899-06-01), Olney
patent: 629600 (1899-07-01), Paltz
patent: 1111021 (1914-09-01), Hoss
patent: 1125445 (1915-01-01), Beadle
patent: 1168831 (1916-01-01), Skalla
patent: 1499791 (1924-07-01), Shipley
patent: 1524676 (1925-02-01), Stowell
patent: 1532908 (1925-04-01), Lowe
patent: 1564706 (1925-12-01), Oelhafen
patent: 1819364 (1931-08-01), Firth
patent: 2041120 (1936-05-01), Ellis
patent: 2340728 (1944-02-01), Baker
patent: 2438339 (1948-03-01), Jacobs
patent: 2647069 (1953-07-01), Stericker
patent: 3093501 (1963-06-01), Clayton
patent: 3306765 (1967-02-01), DuFresne et al.
patent: 3656975 (1972-04-01), Phelps, Jr. et al.
patent: 3663249 (1972-05-01), Rao
patent: 3663355 (1972-05-01), Shimizu et al.
patent: 3667978 (1972-06-01), Vassilevsky
patent: 3968276 (1976-07-01), Allen
patent: 3974318 (1976-08-01), Lilla
patent: 4003866 (1977-01-01), Paturle
patent: 4017980 (1977-04-01), Kleinguenther
patent: 4062991 (1977-12-01), Kyte et al.
patent: 4212189 (1980-07-01), Fuchs et al.
patent: 4443520 (1984-04-01), Braithwaite, Jr.
patent: 4542146 (1985-09-01), Van Gestel et al.
patent: 4577976 (1986-03-01), Hayashi et al.
patent: 4642268 (1987-02-01), St.-Michel
patent: 4746555 (1988-05-01), Luckanuck
patent: 4992307 (1991-02-01), Ikeda
patent: 5035951 (1991-07-01), Dimanshteyn
patent: 5080935 (1992-01-01), Kelso, Jr. et al.
patent: 5110637 (1992-05-01), Ando et al.
patent: 5205874 (1993-04-01), Crews, IV et al.
patent: 5236499 (1993-08-01), Chervenak et al.
patent: 5389309 (1995-02-01), Lopez
patent: 5431996 (1995-07-01), Giesemann
patent: 5478598 (1995-12-01), Shiozawa
patent: 5672390 (1997-09-01), Crews, IV et al.
patent: 5707752 (1998-01-01), Misra et al.
patent: 6040057 (2000-03-01), Slimak et al.
patent: 6146766 (2000-11-01), Slimak et al.
patent: 6235349 (2001-05-01), Grantham et al.
patent: 6303234 (2001-10-01), Slimak
patent: 6586109 (2003-07-01), Ray
patent: 6821631 (2004-11-01), Grantham et al.
patent: 6827984 (2004-12-01), Slimak et al.
patent: 2001/0023026 (2001-09-01), Grantham et al.
patent: 2002/0110644 (2002-08-01), Kelsoe
patent: 2003/0059545 (2003-03-01), Kelsoe
patent: 2005/0042377 (2005-02-01), Slimak et al.
patent: 2006/0163769 (2006-07-01), Thole et al.
patent: 2007/0059454 (2007-03-01), Slimak
U.S. Publication No. 2002/0110696A1, published Aug. 15, 2002.
ASTM, 1995, Standard Test Method for Evaluating the Effects of Fire-Retardant Treatments and Elevated Temperatures on Strength Properties of Fire-Retardant Treated Lumber, Designation D 5664-95, ASTM, Philadelphia, PA, 599-602, no month.
ASTM, 1992, Standard Test Method for Laboratory Evaluation of Wood and other Cellulosic materials for Resistence of Termites, Designation D 3345-74, ASTM, Philadelphia PA, 430-732, no month.
ASTM, 1993. Standard Index of and Descriptions of Textile Heat and Flammability Test Methods and Performance Specifications, Designation D4723-90, ASTM, Philadelphia PA, 480-485, no month.
ASTM, 1993. Standard Methods for Flammability of Treated Paper and Paperboard, Designation D777-93, ASTM, Philadelphia, PA, 78-80.
ASTM, 1993. Standard Terminology of Fire Standards, Designation E 176-93a, ASTM, Philadelphia PA, 484-487.
ASTM, 1994. Standard Test Method for Evaluating the Flexural Properties of Fire-Retardant Treated Soft Plywood Exposed to Elevated Temperatures, Designation D 5516-94, ASTM, Philadelphia PA, 559-563.
Avento, J., Touval, I., 1985, Flame retardants, an overview, inKirk-Othmer Concise Encyclopedia of Chemical Technology, John Wiley & Sons, New York, pp. 485-490.
Brown, R., 1980, Pyrolytic methods in organic chemmisstry; application of flow and flash vacuum pyrolytic techniques. Academic Press, New York.
Chatham, H., 1996. Untitled facsimile transmission. BOC Coating Technology, Concord, CA.
Demetrakakes, P., 1993. What'd next for MAP/CAP, susceptors and ‘glassy’ film? Packaging, A Cahners Publication. 38:10, pp. 24-26.
Famighetti, R., ed. 1996. The world almanac and book of facts. K-111 Reference Corporation, Mahwah, New Jersey.
Lyons, J., 1970. The chemistry and uses of fire retardants, John Wiley & Sons, Inc. New York.
Reisch, M., 1992. Paints and coating sales top $11 billion. C&E News, Oct. 1992. pp. 36-76.
Saxena, K. et al, 1993. Thermodynamic data on oxides and silicates. Springer-Verlag, Berlin.

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