Rigid panel for making a floor covering
The disclosure relates to a multilayer panel for producing a floor covering, comprising a wear layer bonded to a back layer, said back layer being made up of at least a thermoplastic material, a plasticizer and fillers, the wear layer comprising a surface layer made up at least of PVC, said surface layer having a Shore D hardness greater than or equal to 60 and a Young's modulus greater than or equal to 1000 MPa.
1. A rigid multilayer panel for making a floor covering comprising, a wear layer bonded to a back layer, wherein the back layer comprises a face configured to be in contact with a floor and being free of glue, wherein the multilayer panel has edges, and the edges of the multilayer panel have male-female assembly means configured to connect several multilayer panels to one another,
wherein the back layer comprises a first back layer made from plasticized and filled flexible PVC, and a balancing layer arranged in an upper part of the back layer, the balancing layer is made up at least of PVC obtained from a composition comprising a proportion of liquid plasticizer of less than 15% by weight of the balancing layer, the balancing layer is bonded to the wear layer, and the balancing layer has a Shore D hardness greater than or equal to 50 and a Young's modulus greater than or equal to 500 MPa,
wherein the wear layer comprises a surface layer derived from at least polyvinyl chloride (PVC), the surface layer having:
a Shore D hardness greater than or equal to 60,
a Young's modulus greater than or equal to 1000 MPa, and
a glass transition temperature (Tg) between 60° C. and 80° C.
2. The panel according to claim 1 , wherein the surface layer has a Shore D hardness greater than or equal to 70.
3. The panel according to claim 1 , wherein the surface layer has a Young's modulus greater than or equal to 1500 MPa.
4. The panel according to claim 1 , wherein the surface layer is transparent.
5. The panel according to claim 1 , wherein the surface layer comprises impact absorbers.
6. The panel according to claim 5 , wherein the impact absorbers are present in an amount of less than 25%, by weight of the surface layer.
7. The panel according to claim 5 , wherein the impact absorbers are present in an amount of between 2.5% and 15%, by weight of the surface layer.
8. The panel according to claim 5 , wherein the impact absorbers are elastomeric polymeric particles.
9. The panel according to claim 5 , wherein the impact absorbers are polymeric plasticizers.
10. The panel according to claim 1 , wherein the surface layer has a glass transition temperature (Tg) between 70° C. and 80° C.
11. The panel according to claim 1 , wherein a composition of the surface layer comprises at least one liquid plasticizer present in an amount of less than 10%, by weight of the surface layer.
12. The panel according to claim 11 , wherein the liquid plasticizer is present in an amount of less than or equal to 5% by weight of the surface layer.
13. The panel according to claim 1 , wherein the surface layer has a thickness of between 0.1 and 3 mm.
14. The panel according to claim 1 , wherein the surface layer has a thickness of between 0.3 and 2.5 mm.
15. The panel according to claim 1 , wherein the surface layer has a thickness of between 5 and 30% of the total thickness of the panel.
16. The panel according to claim 1 , wherein the wear layer comprises a decorative film, the decorative film being in contact with the balancing layer.
17. The panel according to claim 1 , wherein the composition of the balancing layer has a glass transition temperature (Tg) between 60° C. and 80° C.
18. The panel according to claim 1 , having an indentation value less than or equal to 0.20 mm, between two static residual indentation measurements done according to standard NF EN 433, and having a resistance to perforation of the panel until a maximum stress equal to 7 N/mm 2 applied on the panel by a truncated steel nail with a 3 mm diameter.
19. A rigid multilayer panel for making a floor covering comprising, a wear layer bonded to a back layer, wherein the back layer comprises a face configured to be in contact with a floor and being free of glue, wherein the multilayer panel has edges, and the edges of the multilayer panel have male-female assembly means configured to connect several multilayer panels to one another,
wherein the back layer comprises a first back layer made from plasticized and filled flexible PVC, and a balancing layer arranged in an upper part of the back layer, the balancing layer is made up at least of PVC obtained from a composition comprising a proportion of liquid plasticizer of less than 15% by weight of the balancing layer, the balancing layer is bonded to the wear layer, and the balancing layer has a Shore D hardness greater than or equal to 50 and a Young's modulus greater than or equal to 500 MPa,
wherein the wear layer comprises a surface layer derived from at least polyvinyl chloride (PVC), the surface layer having:
a Shore D hardness greater than or equal to 60,
a Young's modulus greater than or equal to 1000 MPa,
a glass transition temperature (Tg) between 60° C. and 80° C.,
a liquid plasticizer present in an amount of less than 10%, by weight of the surface layer.
20. A rigid multilayer panel for making a floor covering comprising, a wear layer bonded to a back layer, wherein the back layer comprises a face configured to be in contact with a floor and being free of glue, wherein the multilayer panel has edges, and the edges of the multilayer panel have male-female assembly means configured to connect several multilayer panels to one another,
wherein the back layer comprises a first back layer made from plasticized and filled flexible PVC, and a balancing layer arranged in an upper part of the back layer, the balancing layer is made up at least of PVC obtained from a composition comprising a proportion of liquid plasticizer of less than 15% by weight of the balancing layer, the balancing layer is bonded to the wear layer, and the balancing layer has a Shore D hardness greater than or equal to 50 and a Young's modulus greater than or equal to 500 MPa,
wherein the wear layer comprises a surface layer derived from at least polyvinyl chloride (PVC), the surface layer having:
a Shore D hardness greater than or equal to 60,
a Young's modulus greater than or equal to 1000 MPa,
a glass transition temperature (Tg) between 60° C. and 80° C.,
a liquid plasticizer present in an amount from 1% to 10%, by weight of the surface layer.