The invention relates to a manufacture method for three-dimensional reinforced warp knitted spaced fabric, and the warp knitted spaced fabric is produced on a modified double tricot raschel
machine wiThe invention relates to a manufacture method for three-dimensional reinforced warp knitted spaced fabric, and the warp knitted spaced fabric is produced on a modified double tricot raschel
machine with full weft
insertion devices. A main body of adopted raw materials is tows of high-performance
fiber such as
fiber glass, carbon
fiber,
aramid fiber, ultra high modulus
polyethylene and the like. Thth full weft
insertion devices. A main body of adopted raw materials is tows of high-performance fiber such as
fiber glass, carbon fiber,
aramid fiber, ultra high modulus
polyethylene and the like. The manufacture method comprises the following steps: introducing high-performance fiber inserted weft yarns on the whole width of the
machine in the X-axis direction through two weft
insertion devicese manufacture method comprises the following steps: introducing high-performance fiber inserted weft yarns on the whole width of the machine in the X-axis direction through two weft insertion devicesarranged on the front and the back of the machine; introducing high-performance fiber inserted warp yarns in the Y direction through guide bars; binding and fixing the inserted warp yarns and the insearranged on the front and the back of the machine; introducing high-performance fiber inserted warp yarns in the Y direction through guide bars; binding and fixing the inserted warp yarns and the inserted weft yarns through chain stitch or tricot stitch of common or high strength
synthetic fiber filament yarns; adopting the high-performance fiber on upper and lower
surface layer connecting yarns,rted weft yarns through chain stitch or tricot stitch of common or high strength
synthetic fiber filament yarns; adopting the high-performance fiber on upper and lower
surface layer connecting yarns,ensuring the distance of 5 to 6 cm between the two surface
layers, and providing reinforcing fiber in the Z-axis direction; and designing raw materials, densities, arrangement
modes and interlayer thiensuring the distance of 5 to 6 cm between the two surface
layers, and providing reinforcing fiber in the Z-axis direction; and designing raw materials, densities, arrangement
modes and interlayer thickness of the inserted warp and weft yarns of the surface
layers and interlayer connecting yarns according to the requirements to form three-dimensional mesh structures with different mesh sizes and sckness of the inserted warp and weft yarns of the surface layers and interlayer connecting yarns according to the requirements to form three-dimensional mesh structures with different mesh sizes and specifications. The manufacture method is characterized in that the high-performance fiber is extended and arranged in three-dimensional directions so as to overcome the defects and disadvantages of thpecifications. The manufacture method is characterized in that the high-performance fiber is extended and arranged in three-dimensional directions so as to overcome the defects and disadvantages of the prior spaced fabric taken as a reinforced material, and the manufacture method provides an ideal three-dimensional reinforced fabric for production of composite boards with good tensile, bending, she prior spaced fabric taken as a reinforced material, and the manufacture method provides an ideal three-dimensional reinforced fabric for production of composite boards with good tensile, bending, shearing and compression properties and
shock resistance.earing and compression properties and
shock resistance.