Composite long-fiber non-woven fabric using eccentric sheath/core composite fibers at one or both surfaces
A long-fiber non-woven, composite fiber technology, applied in the direction of conjugated synthetic polymer rayon, application, non-woven fabric, etc., can solve the problem of inappropriate sheet formation, no elongation, and increased bonding temperature and other problems, to achieve the effects of excellent processing suitability, increased bonding volume, and increased bonding frequency
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Embodiment 1
[0095] Polypropylene (hereinafter also referred to as PP) resin with an MFR of 55 g / 10 minutes (measured at a temperature of 230°C and a load of 2.16 kg according to JIS-K7210) is used as a high melting point component, and an MI of 26 g / 10 minutes (measured according to JIS-K7210 - K7210, measured at a temperature of 190°C and a load of 2.16 kg) of high-density polyethylene (hereinafter also referred to as HDPE) resin as a low melting point component, the ratio of high melting point component to low melting point component is 67 / 33 by spunbonding The fibers were extruded at a spinning temperature of 230° C. and caught on a moving collection surface to produce an eccentric sheath-core long-fiber nonwoven web with an average monofilament fineness of 2.9 dtex.
[0096] Next, for the obtained web, the fibers were bonded to each other by hot air with a hot air temperature of 140° C. and a hot air velocity of 1.0 m / sec to obtain a weight per unit area of 25 g / m. 2 and a composite...
Embodiment 2
[0098] A composite filament nonwoven fabric was obtained in the same manner as in Example 1 except that the ratio of the high melting point component and the low melting point component was 75 / 25.
Embodiment 3
[0100] A composite filament nonwoven fabric was obtained in the same manner as in Example 1 except that the ratio of the high melting point component and the low melting point component was 80 / 20.
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