Patent classifications
B29D99/0067
Water-based hydrogel blend coating and method of application to elastomeric articles
A water-based hydrogel polymer coating and a method of application to natural rubber or other elastomeric latex products are provided. The water-based hydrogel polymer is mixed with a blend of at least one elastomeric material to provide a hydrogel polymer blend composition. The water-based hydrogel polymer blend composition is applied in a single application to an elastomeric article, such as gloves, without additional solvents in the polymer blend composition and without a separate acid or chemical priming step. The water-based hydrogel coating herein provides increased lubricity to facilitate improved wet and dry donning of the elastomeric article.
METHOD OF MANUFACTURING LATEX RUBBER ARTICLES
A method of manufacturing a latex rubber article comprises providing a former wherein at least a part of the former comprises a mould surface that forms the shape of the latex rubber article, and applying liquid latex to the mould surface using an applicator that is configured to apply the liquid latex to an applicator area that is smaller than the mould surface. The method further comprises providing relative movement between the applicator and the former to produce a latex coating that covers the mould surface, curing the latex coating on the former to form the latex rubber article, and removing the latex rubber article from the former.
POLYMER MICROWEDGES AND METHODS OF MANUFACTURING SAME
A mold for casting a micro-scale dry adhesive structure includes an upper surface including a first cavity having a first depth, a negative pattern for an array of micro-scale structures defined in a surface of the first cavity, and at least one second cavity having a second depth defined in the cavity outside of the negative pattern for the array of micro-scale structures, the at least one second cavity defining a negative pattern for a standoff of the micro-scale dry adhesive structure.
Biological method for forming grip surface during glove manufacture
Systems and methods for creating a grip surface (104) of a protectant glove (100). The method may comprise dipping a glove mold into a coagulant material (206); dipping the glove mold into a nitrile coating formulation to form an outer surface of the glove (208), wherein a biodegradable material is distributed throughout the nitrile coating formulation; vulcanizing at least the outer surface of the glove to form a protectant outer surface (212); washing at least the outer surface of the glove with an enzyme solution; decomposing, by the enzyme solution, the biodegradable material that is distributed throughout the outer surface of the glove, thereby forming a grip surface of the glove comprising an open-cell structure within the outer surface (216); and drying the glove to form a final glove comprising the grip surface (218).
GLOVE AND METHOD FOR MANUFACTURING GLOVE
An object of the present invention is to provide a glove in which a glove main body and a film are less likely to peel from each other even when a load, especially a torsional load, is applied. A glove according to an aspect of the present invention includes: a glove main body made of fibers; a film which covers at least a part of an outer face of the glove main body and contains a rubber or a resin as a principal component; and an adhesive portion which bonds the glove main body and the film together, wherein the adhesive portion includes: a pressure-sensitive adhesive layer in contact with the film; and an adhesive layer which is in contact with the glove main body and is constituted by a hot-melt adhesive.
WOUND CARE ARTICLES
Single layer and multi-layer anti-microbial wound care masks having a hydrophilic yarn containing silver and wound care articles are disclosed.
Surgical finger, hand and arm barrier coating and covering, method and system
A protective coating solution, liquid, gel, or film and a method of using such a material to provide a sterile covering for fingers, hands, arms or other selected skin surface for use as a glove substitute.
Protective glove
The present disclosure relates to a protective glove, which has different polymer layers arranged in a multi-layered polymer composite material. According to the present disclosure, the protective glove contains polyvinyl alcohol and a protective layer on top of this containing a fluorinated elastomer. The present disclosure also relates to a method for manufacturing a protective glove of this kind. The combination of various polymers and their arrangement in the polymer composite material achieve a powerful protective action against a multitude of chemical compound classes while simultaneously producing advantageous mechanical properties.
Stripping of a dip-moulded glove from a former
Glove stripping apparatuses for fully stripping a partially stripped elastomeric dip-moulded glove from a dip-moulding former comprises a gripper having first and second gripping members movable relative to each other, an abutment, an open space, and an actuation system. Also, production lines for producing elastomeric dip-moulded gloves, methods for fully stripping gloves from dip-moulding formers, and production line processes.
Gloves having reinforcements and impact features
Gloves comprising a polymeric coating or layer, optionally including a fabric liner, and at least one reinforcement, disposed on a part(s) of the polymeric coating or layer and/or ac part(s) of the fabric liner, and methods of making the gloves are disclosed.