WORK GLOVES Russian patent published in 2012 - IPC A41D19/15 

Abstract RU 2450784 C1

FIELD: personal use articles.

SUBSTANCE: invention relates to a personal protective equipment of workers to prevent injuries of hands. Work gloves containing palmar and the back sides with a fingerstall, interconnected to form an open cavity, and a vibration damping pad, which is the outer surface of the palmar side of the glove, the back side of the glove is made of three layers: the outer, made of solid shielding material, such as technical fabrics, the elastic middle knitted layer, for example, of elastic synthetic fibers, and an inner layer made of natural fabrics such as cotton, and the palmar side consists of the vibration damping pad which is the outer surface of the palmar side of the glove and comprising interconnected segments knitted from the elastic synthetic fibers in an amount of at least six, which are located on the outer surface of the palmar side of the glove and the fingerstall. And the inner layer of the palmar side of the glove is made of natural fabrics such as cotton. And at the bend segments a cotton layer is reinforced, and between the outer surface of the palmar side of the glove with a fingerstall and the inner layer there are two intermediate vibration damping layers: a layer of dispersed elastic damping material, in which grit can be used, for example, of the following materials: rubber, cork, plastic foam, nylon, foam polymers and also grit of solid vibration damping materials, such as plastic compounds such as "Agat", "Antivibrit", "Shvim" with size fractions of grit of 1.5÷2.5 mm, and the size of cells knitted of elastic synthetic fibers of segments 3 is 10÷15% smaller than the size of fractions of grit of vibration damping material, and a layer of solid damping material, in which foam rubber can be used, is needle-punched material such as "Vybrosyl" on the basis of a silica or alumina-borosilicate fiber, non-woven vibration damping material.

EFFECT: increased degree of protection against vibration and mechanical stress.

2 dwg

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RU 2 450 784 C1

Authors

Kochetov Oleg Savel'Evich

Stareeva Marija Olegovna

Dates

2012-05-20Published

2011-02-03Filed