Patent classifications
D02G3/328
YARN, YARN FORMING PROCESS, PROTECTIVE TEXTILE, KNITTING METHOD AND EQUIPMENT
The present disclosure provides a knitting apparatus, including: a frame; a primary yarn guide mounted on the frame; a primary yarn control rod connected to the primary yarn guide; a secondary yarn guide mounted on the frame; a secondary yarn control rod connected to the secondary yarn guide; a needle plate provided at lower ends of the primary yarn guide and the secondary yarn guide; a control cam separately drives the primary yarn control rod to control the primary yarn guide to move, and drives the secondary yarn control rod to control the secondary yarn guide to move; a tension spring connected to the control cam; and an electromagnet. A magnetic force of the electromagnet drives the tension spring to extend and retract, and further drives the control cam to rotate up and down.
CORE-FREE THERMOPLASTIC POLYURETHANE YARN WITH ADDED NANOSILICA
The present invention provides a resin for thermoplastic polyurethane (TPU) yarn using nanosilica and a method for manufacturing the same. Nanosilica having a particle size of 100 nm or less is added as a thickening agent for improving productivity and glossiness of TPU yarns, such as mono-filament TPU yarns having a denier count of 50 to 350 or multi-filament TPU yarns having a denier count of 50 or less. No TPU coating is needed for applying to the surface of polyester or nylon yarns, thereby securing desired workability and properties and realizing continuous drawing of TPU yarns without thread breakage. The content of nanosilica at least from 0.1 or 0.3 to 7 phr, or a non-zero content of 7 phr or less in TPU resin is optimal for productivity of mono- or multi-filament yarns. The content of nanosilica from 0.5 to 1.5 phr is optimum for both productivity and cost reduction.
WET-ACTIVATED COOLING FABRIC
Disclosed herein is a knitted multi-layer fabric construction that provides the ability to cool skin to below a current temperature whether wetted or dry. The knit uses four separate yarns which collectively work together to produce enhanced cooling. Knits can include warp knit, seamless, hosiery, flat bed, spacer, and double knits. Various finishing methods may also be employed to enhance the cooling power of the fabric.
CORE YARN COMPRISING CORE THREAD WITH VARIANT DRAWING, AND FABRIC THAT IS OBTAINED FROM THIS CORE YARN
A core yarn including at least one core part. The at least one core part includes at least one elastane thread having a plurality of areas with different densities and/or, the at least one core part includes at least one filament thread having a plurality of areas with different densities and are made of regenerated or synthetic materials.
Thermal Insulating Material And Method
An insulating material and a method using that material for preventing perioperative hypothermia in hospital patients. Hospital blankets, hospital gowns and thermal wraps are made with the insulating material, which comprises in one embodiment an inner layer and an outer layer of a nonwoven material and a middle layer of a polymer laminate material. The nonwoven material is a bicomponent coextruded spunbond nonwoven polypropylene and polyethylene textile and the polymer laminate material comprises polyethylene and metallised polyethylene terephthalate. The nonwoven material is arranged with an elastic such that the insulating material can change between a first configuration wherein the elastic is stretched such that the primary material lies adjacent to it, and a second configuration wherein the elastic is relaxed such that the primary material is bowed with respect to it, forming at least one cavity for entrapping air.
Cotton-based elasticised yarns to make environment-friendly elasticised fabrics
A method for making an elastic core yarn includes covering an elastic core having a fiber of natural rubber with metric count 200-1000 dtex with a cotton-based covering yarn. The elastic core and the covering yarn are conveyed such that the covering yarn laterally attains a proximity of the elastic core in a wrapping space. The covering yarn is helically wrapped about the elastic core. The conveying speed, and therefore the winding/unwinding speed, is selected such that the elastic core is stretched to a stretching ratio of at least two, and the covering yarn becomes twisted with a final twist direction opposite to its initial twist direction, and forms T coils per length unit of the elastic fiber set between a minimum value T0 and a maximum value T1. An elasticized yarn is thereby obtained, and a fabric, in particular a denim type fabric, is manufactured from this yarn.
Production of high cotton number or low denier core spun yarn for weaving of reactive fabric and enhanced bedding
A method includes drawing a roving thread from a roving bobbin through a roving guide, an aft drafting roller, and a mid drafting roller to a front drafting roller, and drawing a spandex core from a spandex bobbin using a guide roller. The method also includes associating the roving thread and the spandex core by drawing the roving thread and the spandex core in an approximately parallel fashion through the front drafting roller, and drawing the associated roving thread and the spandex core through a lappet hook and an anti-ballooning guide. Further, the method includes winding the drawn associated roving thread and the spandex core on a ring-frame bobbin including a ring traveler attached to a rotatable ring. The circular motion of the ring traveler around the ring-frame bobbin causes the drawn associated roving thread to twist around the drawn associated spandex core, forming a core spun yarn.
Wet-activated cooling fabric
Disclosed herein is a knitted multi-layer fabric construction that provides the ability to cool skin to below a current temperature whether wetted or dry. The knit uses four separate yarns which collectively work together to produce enhanced cooling. Knits can include warp knit, seamless, hosiery, flat bed, spacer, and double knits. Various finishing methods may also be employed to enhance the cooling power of the fabric.
METHODS AND COMPOSITIONS FOR COOLING YARNS AND FABRICS, AND ARTICLES COMPRISING SAME
In one aspect, the disclosure relates to composite yarns having a structure comprising a core component and sheath layer, wherein each of the core component and the sheath layer independently comprise a polymer and a disclosed cooling composition. In various further aspects, the present disclosure pertains to double covered yarns comprising an elastic core comprising an elastic core; a first yarn in contact with the elastic core, and wherein the first yarn comprises a disclosed yarn comprising a core component and a sheath layer; and a second yarn in contact with the first yarn, and wherein the second yarn comprises a yarn comprising a cellulosic fiber. In still further aspects, the present disclosure pertains to a fabric, such as a denim fabric. This abstract is intended as a scanning tool for purposes of searching in the particular art and is not intended to be limiting of the present disclosure.
ELASTIC YARN, KNITTED TEXTILE MATERIAL AND SOCK MADE WITH THE ELASTIC YARN
An elastic yarn is provided comprising at least one elastic filament and at least one further filament, which form a core of the yarn. As different regions of a garment, e.g. socks, need to have different properties in view of recovery, comfort and robustness, and as it is important that the respective articles are easy to produce in the elastic yarn, the elastic filament has a draft between 0.2 and 15.0, and the further filament has a draft of between 0.2 and 5.0.