US2003215607A1PendingUtilityA1

Scratch resistant thermoplastic article

Priority: May 20, 2002Filed: May 20, 2002Published: Nov 20, 2003
Est. expiryMay 20, 2022(expired)· nominal 20-yr term from priority
Inventors:David Horwitz
Y10T428/259B29C 48/08Y10T428/25B29C 59/002B29C 70/64C08K 3/013B29C 48/022B29K 2995/0072B29C 48/12C08K 7/16B29C 59/04Y10T428/2993Y10T428/24355B29K 2995/0087Y10T428/31855Y10T428/252B29K 2105/16Y10T428/24372
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Claims

Abstract

A process and resulting thermoplastic article is provided suitable for use in constructing furniture. The thermoplastic article contains hardened particulates such as powders of alumina oxide which brings about an improved cut and scratch resistance to the surface of the articles. The hardened particulates may be integrally mixed with the extruded product or applied post-molding to a surface of the shaped article.

Claims

exact text as granted — not AI-modified
That which is claimed is:  
     
         1 . A process of providing a wear resistant coating to a thermoplastic article comprising the steps of: 
 providing a thermoplastic article having a surface temperature heated to a softening temperature;    applying an effective amount of a particulate to a surface of the article, said particulate imparting wear resistant properties to the surface of the thermoplastic article,    mechanically pressing the particulate-containing surface with a pressure of about 150 to about 200 pounds per linear inch; and    allowing said thermoplastic article to cool.    
     
     
         2 . The process according to  claim 1  wherein said step of applying an effective amount of a particulate further comprises supplying said particulate at a concentration of about 1 to about 25 grams per square meter.  
     
     
         3 . The process according to  claim 1  wherein said particulate is selected from the group consisting of silicates, silica oxide, fumed silica, alumina, alumina oxides, ceramics, and combinations thereof.  
     
     
         4 . The process according to  claim 1  wherein said particulate has an average particle diameter of between about 4 to about 10 microns.  
     
     
         5 . The process of forming a thermoplastic extruded sheet having a wear resistant surface comprising the steps of: 
 providing a thermoplastic sheet;    embossing a surface of said thermoplastic sheet, thereby imparting a matte finish to the sheet, the matte finish comprising a series of elevations and depressions;    warming the matte surface to a softening temperature;    applying a plurality of hardened particulates onto the matte surface; and    applying pressure to the matte surface and the particulates, thereby embedding the particulates into the matte surface.    
     
     
         6 . The process according to  claim 5  wherein said step of applying an effective amount of a particulate further comprises supplying said particulate at a concentration of about 1 to about 25 grams per square meter.  
     
     
         7 . The process according to  claim 5  wherein said particulate is selected from the group consisting of silicates, silica oxide, fumed silica, alumina, alumina oxides, ceramics, and combinations thereof.  
     
     
         8 . The process according to  claim 5  wherein said particulates have an average particle diameter of between about 4 to about 10 microns.  
     
     
         9 . The process according to  claim 5  wherein said step of applying pressure further includes applying a pressure of between about 150 to about 200 pounds per linear inch.  
     
     
         10 . A process of providing a thermoplastic extrusion product comprising the steps of: 
 compounding a thermoplastic polymer selected from the group consisting of polyvinyl chloride, styrene-based polymers, olefins, and polyamides;    introducing into said thermoplastic resin in at least one of a compounding step or an extruding step an effective amount of a particulate;    extruding said thermoplastic polymer;    molding said thermoplastic polymer into a desired shape;    wherein said particulate additives increases wear resistance and cut resistance of the thermoplastic article.    
     
     
         11 . The process according to  claim 10  wherein said step of applying an effective amount of a particulate further comprises supplying said particulate at a concentration of about 1 to about 25 grams per square meter.  
     
     
         12 . The process according to  claim 10  wherein said particulate is selected from the group consisting of silicates, silica oxide, fumed silica, alumina, alumina oxides, ceramics, and combinations thereof.  
     
     
         13 . The process according to  claim 10  wherein said particulates have an average particle diameter of between about 4 to about 10 microns.  
     
     
         14 . A thermoplastic article comprising: 
 a molded thermoplastic panel, said panel having an upper surface, a lower surface, and four edges;    a plurality of particulates selected from the group consisting of silicas, silica oxides, fumed silicas, alumina, alumina oxides, ceramics, and combinations thereof, said plurality of particulates positioned within at least a portion of said panel which includes at least one of said upper surface or said lower surface;    wherein, said plurality of particulates improves the wear resistance of said at least one of said upper surface or said lower surface.    
     
     
         15 . The thermoplastic article according to  claim 14  wherein said plurality of particulates is concentrated along a surface region of at least one of said upper surface or said lower surface.  
     
     
         16 . The thermoplastic article according to  claim 14  wherein an upper surface of said panel is embossed, said embossed surface further engaging said plurality of particulates.  
     
     
         17 . The thermoplastic article according to  claim 15  wherein said plurality of particulates are present in a concentration of between about 1 to about 25 grams per square meter of said surface region.  
     
     
         18 . The thermoplastic article according to  claim 16  wherein said embossed surface further defines a concentration of said hardened particulates, said particles present in a concentration of between about 1 to about 25 grams per square meter.  
     
     
         19 . The thermoplastic article according to  claim 14  wherein said plurality of particulates is present in said thermoplastic panel in a concentration of between about 1% to about 10% by weight.

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