Nonwoven carrier material comprising a first part and a second part
A nonwoven carrier material including at least a first part and a second part whereby the first and the second part including at least two layers of thermoplastic fibers. The first part and the second part are connected with each other in a connecting area to form the nonwoven carrier material whiteout thickness and weight variations in the connecting area. Further, a method for connecting a first and a second part of a nonwoven carrier material to form a connected nonwoven carrier material.
1. A nonwoven carrier material, comprising at least a first part having a thickness and a second part having a thickness,
wherein the first part and the second part each comprise at least a first and a second thermoplastic fiber layer that are each comprised of fibers,
wherein the fibers in the first and the second thermoplastic fiber layers of the first part and/or the second part are filaments,
wherein the first part and the second part are connected with each other via a connecting area to form the nonwoven carrier material,
wherein the first part and the second part form together a form-fit connection in the connecting area,
wherein the nonwoven carrier material is obtained by a method comprising removing part of the thickness of the first part and part of the thickness of second part to form the first thermoplastic fiber layer and the second thermoplastic fiber layer in such a way that the first part and the second part together form the form-fit connection in the connecting area, and
wherein the nonwoven carrier material is free of impregnant prior to forming the form-fit connection in the connecting area.
2. The nonwoven carrier material according to claim 1 , wherein the length of the first thermoplastic fiber layer of the first part differs by at least 0.5 cm from the length of the second thermoplastic fiber layer of the first part and the length of the first thermoplastic fiber layer of the second part differs by at least 0.5 cm from the length of the second thermoplastic fiber layer of the second part, whereby the sum of the length of the first thermoplastic fiber layer of the first part and the length of the first thermoplastic fiber layer of the second part is equal to the sum of the length of the second thermoplastic fiber layer of the first part and the length of the second thermoplastic fiber layer of the second part.
3. The nonwoven carrier material according to claim 1 , wherein the thickness variation of the nonwoven carrier material measured perpendicular (arrow Y) to the main extension area (arrow X) of the nonwoven carrier material is less than approximately 0.15 mm.
4. The nonwoven carrier material according to claim 1 , wherein the average weight of the connecting area differs by at most 20 wt. % from the average weight of the nonwoven carrier material excluding the connecting area.
5. The nonwoven carrier material according to claim 1 , wherein a scrim is arranged between the at least first and second thermoplastic fiber layers of the first part and second part.
6. The nonwoven carrier material according to claim 5 , wherein the scrim is made of glass fibers or high modulus fibers of at least 5 GPa.
7. The nonwoven carrier material according to claim 1 , wherein the filaments in the first and the second thermoplastic fiber layers of the first part and/or the second part comprise two types of mono-component filaments or comprise bi-component filaments.
8. The nonwoven carrier material according to claim 7 , wherein the filaments are two types of mono-component filaments that are composed of polymers of different chemical construction having different melting points.
9. The nonwoven carrier material according to claim 7 , wherein the filaments are bi-component filaments that are composed of two polymers of different chemical construction having different melting points.
10. The nonwoven carrier material according to claim 1 , wherein the connecting area extends perpendicularly or in an angle to the main extension direction (arrow X) of the nonwoven carrier material.
11. The nonwoven carrier material according to claim 1 , wherein the nonwoven carrier material is impregnated with impregnant following formation of the form-fit connection.
12. The nonwoven carrier material according to claim 11 , wherein the impregnant comprises bitumen or polyvinyl chloride plastisol.
13. A method for forming the nonwoven carrier material according to claim 1 , comprising removing part of the thickness of the first part and part of the thickness of second part to form the first thermoplastic fiber layer and the second thermoplastic fiber layer in such a way that the first part and the second part form together a form-fit connection in the connecting area.
14. The method according to claim 13 wherein the length of the first thermoplastic fiber layer of the first part differs by at least 0.5 cm from the length of the second thermoplastic fiber layer of the first part and the length of the first thermoplastic fiber layer of the second part differs by at least 0.5 cm from the length of the second thermoplastic fiber layer of the second part, whereby the sum of the length of the first thermoplastic fiber layer of the first part and the length of the first thermoplastic fiber layer of the second part is equal to the sum of the length of the second thermoplastic fiber layer of the first part and the length of the second thermoplastic fiber layer of the second part, whereby the first part and the second part are thereafter connected in a connecting area to form a connected nonwoven carrier material.
15. The method according to claim 13 , wherein a permanent connection of the first part and the second part in the connecting area is formed by a consolidation technique.
16. The method according to claim 15 , wherein the permanent connection of the first part and the second part in the connecting area is formed by a consolidation technique selected from the group consisting of calendaring, mechanical needling, hydroentanglement, ultrasonic bonding, thermal bonding, and any combination thereof.
17. The method according to claim 15 , wherein the permanent connection of the first part and the second part in the connecting area is formed by a consolidation technique including thermal bonding by hot air.
18. The method according to claim 13 , wherein the connecting area extends perpendicular or in an angle to the main extension direction of the nonwoven carrier material.
19. The method according to claim 13 , wherein the removing includes separating the first thermoplastic fiber layer from the second thermoplastic fiber layer in the first part and the second part using a splitting device.