Perforated nonslip non-adhesive surface covering
A surface covering that is a multilayered composite material. The multilayer composite material includes a top facing layer of polymeric film and a bottom layer of unsupported foam.
1. A surface covering consisting of:
a multilayered composite material, wherein the multilayered composite material further includes a plurality of vertical perforated lines and a plurality of horizontal perforated lines, the vertical and horizontal perforated lines forming a grid, the structure of said multilayered composite material facilitating the convenient hand tearing of said surface covering through said grid;
and further wherein the multilayer composite material further comprises (1) a top facing layer of polymeric film, wherein the top facing layer comprises single or multiple layers of a thermoplastic film and (2) a non-slip, non-adhesive bottom layer of unsupported polyvinyl chloride foam, wherein said top facing layer reinforces the dimensional stability of the unsupported foam and further still has sufficient tensile and tear strength to inhibit failure of said surface covering during tearing and the unsupported polyvinyl chloride foam is configured to tear, along with the polymeric film, along the vertical and horizontal perforated lines.
2. The surface covering according to claim 1 , wherein the top facing layer comprises a single layer of polyvinyl chloride film.
3. The surface covering according to claim 2 , wherein the single layer of polyvinyl chloride film has a thickness of about 0.075 mm to 0.1775 mm.
4. The surface covering according to claim 1 , further comprising an embossed pattern on the top facing layer of polymeric film.
5. The surface covering according to claim 1 , wherein the non-slip, non-adhesive bottom layer of unsupported polyvinyl chloride foam has a thickness of about 1.275 mm to 1.675 mm.
6. The surface cover according to claim 1 , wherein the non-slip, non-adhesive bottom layer of unsupported polyvinyl chloride foam is configured with a fine pattern of micro-embossed indentations for weakening a tear strength of the unsupported foam.
7. The surface covering according to claim 1 , wherein the non-slip, non-adhesive bottom layer of unsupported polyvinyl chloride foam has a smooth continuous surface.
8. The surface covering according to claim 1 , wherein the surface covering is a shelf liner, a drawer liner and/or a storage container liner.
9. The surface covering according to claim 1 , wherein the polymeric film has a tensile strength in the range of 175-290 kg/cm 2 in the machine direction and 140-270 kg/cm 2 in the transverse direction, a tensile modulus in the range of 130-225 kg/cm 2 in the machine direction and 115-200 kg/cm2 in the transverse direction, and a tear resistance in the range of 50-90 kg/cm 2 in each of the machine and transverse directions.
10. A surface covering comprising:
a multilayered composite material, wherein the multilayered composite material further includes a plurality of vertical perforated lines and a plurality of horizontal perforated lines, the vertical and horizontal perforated lines forming a grid, the structure of said multilayered composite material facilitating the convenient hand tearing of said surface covering through said grid;
and further wherein the multilayer composite material further comprises (1) a top facing layer of paper and (2) a non-slip, non-adhesive bottom layer of unsupported polyvinyl chloride foam, wherein said top facing layer reinforces the dimensional stability of the unsupported foam and further still has sufficient tensile and tear strength to inhibit failure of said surface covering during tearing, wherein at least one the plurality of vertical perforated lines and the plurality of horizontal perforated lines is formed at an angle other than 90 degrees relative to a bottom surface of the bottom layer of unsupported foam.
11. The surface covering according to claim 10 wherein the top facing layer of paper is adhered to the non-slip, non-adhesive bottom layer of unsupported polyvinyl chloride foam with an interposing layer of adhesive.
12. The surface covering according to claim 10 , wherein the polymeric film has a tensile strength in the range of 175-290 kg/cm 2 in the machine direction and 140-270 kg/cm 2 in the transverse direction, a tensile modulus in the range of 130-225 kg/cm 2 in the machine direction and 115-200 kg/cm 2 in the transverse direction, and a tear resistance in the range of 50-90 kg/cm 2 in each of the machine and transverse directions.
13. A surface covering consisting of:
a multilayered composite material, wherein the multilayered composite material further includes a plurality of vertical perforated lines and a plurality of horizontal perforated lines, the vertical and horizontal perforated lines forming a grid, the structure of said multilayered composite material facilitating the convenient hand tearing of said surface covering through said grid;
and further wherein the multilayer composite material further comprises (1) a top facing layer of polymeric film, wherein the top facing layer comprises single or multiple layers of a thermoplastic film and (2) a non-slip, non-adhesive bottom layer of unsupported foam, wherein said top facing layer reinforces the dimensional stability of the unsupported polyvinyl chloride foam and further still has sufficient tensile and tear strength to inhibit failure of said surface covering during tearing and further comprising an adhesive layer in-between the top facing layer of polymeric film and the non-slip, non-adhesive bottom layer of unsupported foam; and
an embossed pattern on the top facing layer of polymeric film, wherein the embossed pattern is formed so as to obscure the grid of the vertical and horizontal perforated lines;
wherein a bottom surface of the bottom layer of unsupported polyvinyl chloride foam is configured with a fine pattern of micro-embossed indentations for weakening a tear strength of the unsupported foam due to the vertical and horizontal perforated lines intersecting the indentations.
14. The surface covering according to claim 13 , wherein the polymeric film has a tensile strength in the range of 175-290 kg/cm 2 in the machine direction and 140-270 kg/cm 2 in the transverse direction, a tensile modulus in the range of 130-225 kg/cm 2 in the machine direction and 115-200 kg/cm 2 in the transverse direction, and a tear resistance in the range of 50-90 kg/cm 2 in each of the machine and transverse directions.