Patent classifications
A44B18/0049
Molded Surface Fastener
In a molded surface fastener in which an engaging element includes at least two engaging pawl portions protruded outward, a plurality of the engaging elements is disposed in a line along a machine direction to form an element row, a plurality of the element rows is arranged side by side in a cross direction, each of the engaging elements has, as the engaging pawl portions, at least a pair of symmetrical engaging pawl portions which are disposed each other at symmetrical positions in the cross direction and are respectively protruded in the cross direction sides, and a plurality of the engaging elements is arranged in a staggered pattern. Thereby, the molded surface fastener can appropriately and stably exert desired performance such as peel strength with respect to more types of non-woven fabrics.
Molded surface fastener
In this molded surface fastener, plural engaging elements having a stem portion and an engaging head portion formed integrally on the stem portion are standing on the base portion, at least one pawl portion having a pawl width dimension narrower than a width dimension at a boundary between the stem portion and the engaging head portion is protruded on an outer peripheral edge part of the engaging head portion, and a back surface of pawl of the pawl portion is formed at different angles with respect to a back surface of head portion of the engaging head portion. Such a molded surface fastener of the present invention has a substantial engaging force with respect to a female surface fastener and can make a texture of its surface comfortable.
MOLDING RESIN TO FORM CONTINUOUS STRUCTURES
A molding apparatus includes a movable molding surface with molding cavities, a pressure shoe with a stationary outer surface that defines in cooperation with the molding surface a pressure zone, and a resin source configured to introduce molten resin into the pressure zone to be forced into the molding cavities by pressure in the pressure zone. The molding surface is movable with respect to the pressure shoe to introduce molding cavities to the pressure zone to be filled with resin while the outer surface of the pressure shoe and the molding surface define in between an entrance gap of decreasing width upstream of the pressure zone. The outer surface of the pressure shoe is spaced from the molding surface in the pressure zone to define a minimum gap at which the outer surface of the pressure shoe has a slope parallel to the molding surface. The pressure shoe is adapted to be held in a flexed condition against resin in the pressure zone while forcing resin into the cavities, with the outer surface of the pressure shoe curved upstream of the pressure zone.
Fastening tape with reinforced hooks
A fastening tape includes a base, at least one hook, and at least one rib. The at least one hook includes a stem and an engagement portion extending from an upper end of the stem in a longitudinal direction. The stem includes a leading edge and a trailing edge in the longitudinal direction, and a center of the at least one hook is between the leading edge and the trailing edge. The at least one rib is laterally adjacent to the at least one hook, and a center of the at least one rib is offset from the center of the at least one hook in the longitudinal direction towards the leading edge of the stem.
Retaining device including reinforced retaining elements
A retaining device includes a base (51) extending in a longitudinal direction and presenting a top face (511) and a bottom face (512); and a plurality of retaining elements extending from the top face (511) of the base (51), each of the retaining elements being formed by a stem (52) surmounted by a head (53), the stem (52) having a bottom end (521) connected to the base (51), and a top end (522) opposite from the bottom end (521), the head (53) surmounting the top end (522) of the stem (52), and having a bottom face facing towards the base and a top face opposite from the bottom face.
Precursor Web For Reclosable Fastener Hooks And Methods Of Making
The present disclosure relates to a web (10, 40) having precursors (18) for a mechanical fastener (48). The web (10, 40) having precursors (18) comprises a backing (30) and a plurality of precursors (18) arranged on the backing (30). The precursors (18) have a width (20, 22, 52, 58) at the proximal end (16, 50) which is larger than the height (24, 26) of the precursors (18). The thickness (32) of the backing (30) is 10-100 μm.
WATERPROOF BOOT TO PANT CONNECTION
An article includes a first garment, a second garment, and a waterproof fastener system configured to join the first garment to the second. The waterproof fastener includes: a first annular gasket, coupled to the first garment, the first annular gasket including a flexible substrate and a continuous groove radially oriented on the first garment such that an engagement direction thereof is oriented perpendicular to a longitudinal direction of the first garment, and a second annular gasket coupled to the second garment, the second annular gasket including a second flexible substrate and a continuous rib radially oriented on the second garment such that an engagement direction thereof is oriented perpendicular to a longitudinal direction of the second garment. The continuous groove is configured to receive the continuous rib to form a waterproof interference fit.
Method of making a laminate with a stretched thermoplastic layer
The method of making a laminate (100) includes stretching a thermoplastic layer (102) so that it plastically deforms, relaxing the plastically deformed thermoplastic layer (102) to reduce its tensile strain, and subsequently laminating the thermoplastic layer (102) to a substrate (104) to make the laminate (100). The stretching, relaxing, and laminating are completed in-line. The thermoplastic layer has a first surface and a second surface opposite the first surface, with the first surface of the thermoplastic layer bearing a plurality of male fastening elements. The second surface of the thermoplastic layer (100) is laminated to the substrate (104).
Molding Apparatus and Manufacturing Method for Molded Surface Fastener
Provided is a molding apparatus used for manufacturing a molded surface fastener wherein a die wheel driving rotationally has a concentric double cylinder structure provided with an outer side cylindrical body that has provided therethrough a plurality of penetrating holes, and an inner side cylindrical body that has formed, in the outer peripheral surface thereof, a plurality of grooved portions, the grooved portions located in the inner side cylindrical body include a use grooved portion that intersects with the penetrating hole of the outer side cylindrical body and a non-use grooved portion that is covered by the inner peripheral surface of the outer side cylindrical body. By using this molding apparatus obtained is a molded surface fastener in which a plurality of types of engaging elements having different shapes in a plan view are arranged cyclically in a reference direction.
Molding resin to form continuous structures
A molding apparatus includes a movable molding surface with molding cavities, a pressure shoe with a stationary outer surface that defines in cooperation with the molding surface a pressure zone, and a resin source configured to introduce molten resin into the pressure zone to be forced into the molding cavities by pressure in the pressure zone. The molding surface is movable with respect to the pressure shoe to introduce molding cavities to the pressure zone to be filled with resin while the outer surface of the pressure shoe and the molding surface define in between an entrance gap of decreasing width upstream of the pressure zone. The outer surface of the pressure shoe is spaced from the molding surface in the pressure zone to define a minimum gap at which the outer surface of the pressure shoe has a slope parallel to the molding surface. The pressure shoe is adapted to be held in a flexed condition against resin in the pressure zone while forcing resin into the cavities, with the outer surface of the pressure shoe curved upstream of the pressure zone.