Puncture resistant material
A method for making puncture resistant material is made by aggressively twisting high modulus continuous filament polypropylene yarns and weaving the twisted yarns into a tight weave. Batting materials are placed adjacent the woven layer (which may comprise one or more individual woven layers) to form a stack and the stack is needlepunched to form a consolidated material. The material is heat treated and calendared and the finished product may be used in applications where puncture resistance is required, such as in a shoe insole material.
1. A method of making a puncture-resistant fabric, comprising:
twisting high modulus polypropylene filament yarns;
weaving said continuous filament yarns to form a tightly woven layer;
placing a batting material of thermoplastic fibers adjacent said woven layer;
needlepunching said batting material in a perpendicular direction into the woven layer to form a consolidated material;
heating said consolidated material above the glass transition temperature of said thermoplastic fibers, partially melting without completely melting the thermoplastic batting fibers, thermally shrinking the fibers and increasing the density of the consolidated material;
calendaring the consolidated material formed in the heating step to form a puncture-resistant fabric.
2. The method of claim 1 , further comprising the step of cutting the puncture resistant fabric to form an insole profile to form a puncture-resistant shoe insole.
3. The method of claim 1 , wherein the twisting step comprises aggressively twisting the high strength polypropylene fibers at about 1-5 turns per inch to increase the denier of the continuous filament yarns.
4. The method of claim 1 , wherein the weaving step produces a plain weave having greater than about 90% cover factor.
5. The method of claim 1 , comprising the step of stacking 1 to 20 individual woven layers to form said woven layer.
6. The method of claim 5 , comprising calendaring the heat-treated consolidated material to a thickness of about 0.05 to about 0.35 inches.
7. The method of claim 5 , wherein said batting material fibers and said high strength polypropylene fibers are the same polypropylene polymer starting material.
8. The method of claim 1 , wherein the batting fibers comprise 1 to 10 oz/yd of polypropylene and nylon batting fibers placed on opposite sides of the woven layer and needlepunched in a perpendicular direction into the interstices of the woven layer to form said consolidated material.
9. The method of claim 1 , wherein said heating step is conducted at a temperature to cause partial melting of the consolidated material and increase the density of the material by about 5 to 20% compared to the material prior to heat treatment.