Engineered Plank and its Manufacturing Method
A plank is described and a method for manufacturing the plank. The plank can be produced by mixing polyvinyl chloride powder, coarse whiting and light calcium compound powder, stabilizer, polyethylene wax, internal lubricant, plasticizer, and impact modifier together, and stirring this mixture. The mixture is then extruded through an extruder compound to form a plastic composite base material. A surface layer is then tiled onto the plastic composite base material using thermal compression, without the use of intermediate adhesive materials.
1 . An engineered plank for use in flooring comprising:
a surface layer; and
a composite base material layer comprising an extruded plastic composite core layer, wherein the surface layer is adhered to the composite base material layer by thermal compression applied to the surface layer and to the composite base material layer while the plastic composite core layer is being extruded, wherein the plastic composite core layer is produced from a mixture of polyvinyl chloride powder, coarse whiting powder, stabilizer, polyethylene wax, internal lubricant, plasticizer, and impact modifier.
2 . The engineered plank of claim 1 , wherein the surface layer is constructed using one or more of ceramic, tile, glass, rubber, plastic, paper, leather, metal materials, stone, cloth, carpet, and cork.
3 . (canceled)
4 . The engineered plank of claim 1 , wherein the composite base material layer is produced by compounding and extruding a layer of plastic substrate.
5 . The engineered plank of claim 1 , wherein the composite base material layer is produced by compounding and extruding two or more layers of plastic substrate.
6 . A method of producing an engineered plank for use in flooring, the method comprising:
mixing polyvinyl chloride powder, coarse whiting powder, stabilizer, polyethylene wax, internal lubricant, plasticizer, and impact modifier in predetermined proportions, to form a mixture;
extruding the mixture to form a plastic composite base material layer; and
thermally compressing the plastic composite base material layer with a surface layer, using a calender, the plastic composite base material being compressed by a a continuous-press process using thermal compression without using intermediate adhesive materials.
7 . The method of claim 6 , wherein the mixture is mixed using both hot mixing and cold mixing.
8 . The method of claim 7 , wherein hot mixing comprises controlling a temperature of the mixture to be between 110° C. and 120° C.
9 . The method of claim 6 , wherein thermally compressing the surface layer includes fusing the surface layer to the plastic composite base material at a temperature between 150° C. and 200° C.
10 . The method of claim 6 , wherein the surface layer is thermally compressed on the plastic composite base material using the calender.
11 . The method of claim 7 , wherein the hot mixing comprises stirring the mixture at a temperature controlled to be between 110° C. and 120° C., the method further comprising cooling the mixture, and wherein the cold mixing comprises stirring at a temperature between 40° C. and 45° C.
12 . The method of claim 6 , wherein extruding comprises feeding the mixture into an extruder via a feed port, and the method further comprising:
compressing the surface layer and the plastic composite base material, wherein the calender is a three-roller calender with a roller of the three-roller calender using a concave-convex patterned mold at a temperature of around 150° C.
13 . The method of claim 6 , wherein extruding comprises feeding the mixture into an extruder via a feed port, and the method further comprising:
compressing the surface layer and the plastic composite base material, wherein the calender is a calender with more than three rollers.