Patents
Literature
Patsnap Copilot is an intelligent assistant for R&D personnel, combined with Patent DNA, to facilitate innovative research.
Patsnap Copilot

276results about How to "High fiber strength" patented technology

Preparation method of graphene based reinforced and flame-retarded recycled polyester staple fiber

The invention provides a preparation method of a graphene based reinforced and flame-retarded recycled polyester staple fiber. The method comprises the following steps: preparing graphene master batch; preparing phosphate based halogen-free flame retardant master batch; weighing the graphene master batch and the phosphate based halogen-free flame retardant master batch, mixing with a recycled polyester raw material, drying, feeding molten dried raw materials into an impurity removal stirrer under the action of a screw extruder by a melt pump for carrying out homogenization impurity-removal treatment, feeding a homogenized and impurity-removal polyester melt into a secondary filter by the melt pump, enabling a filtered melt to pass through a mixed melt on a pipeline to enter a spinning manifold, carrying out drafting processing on a spun fiber to obtain the reinforced and flame-retarded recycled polyester fiber, cutting off bundles and packaging. The reinforced and flame-retarded recycled polyester chip has the good spinning forming property, the fiber quality is high, the using amount of a fire retardant can be effectively reduced under the synergistic effect of grapheme and the phosphate based flame retardant, the cost is reduced, the reinforcement effect can be achieved and the mechanical property of the fiber is effectively improved.
Owner:NANJING UNIV OF AERONAUTICS & ASTRONAUTICS

Method for preparing graphene functionalized alginate fibers

The invention discloses a method for preparing graphene functionalized alginate fibers. The method comprises the following steps: firstly adding a defined amount of graphene to a sodium alginate solution to obtain a graphene/alginate spinning solution; or aminating the defined amount of graphene and then ensuring the aminated graphene to covalently bind with sodium alginate through a chemical reaction to obtain a graphene-alginate spinning solution; then ensuring the graphene/alginate spinning solution or the graphene-alginate spinning solution to respectively undergo a coagulation bath to obtain graphene/alginate as-spun fibers or graphene-alginate as-spun fibers; and then drawing, setting and oiling the graphene/alginate as-spun fibers or graphene-alginate as-spun fibers after ensuring the graphene/alginate as-spun fibers or graphene-alginate as-spun fibers to undergo a preheating bath and a drawing bath respectively to obtain graphene/alginate functionalized fibers or graphene-alginate functionalized fibers which are called graphene functionalized alginate fibers. The prepared graphene functionalized alginate fibers integrate the excellent performances of the graphene and the sodium alginate and have the excellent performances such as high tensile strength, good biocompatibility, antistatic performance, light weight, high elasticity, antibacterial performance and the like.
Owner:QINGDAO UNIV

Method for manufacturing art paper with high content of mechanical pulp and art paper manufactured therefrom

The invention discloses a method for manufacturing art paper with high content of mechanical pulp and the art paper manufactured therefrom, the art paper comprises base paper made from paper pulp, the base paper contains 50%-60% of the mechanical pulp. The manufacturing method comprises the steps: pretreating the refined paper pulp by adding pretreating auxiliary agent with the concentration of sizing agent controlled between 1.5% and 6%, the addition amount of the pretreating auxiliary agent being 0.1-10% in relation to absolute dry pulp, the preteating time being 20-60 minutes and the pretreating time being 30-70 DEG C, resulting in the pretreating sizing agent, mixing the preteating sizing agent with untreated sizing agent, and applying the mixture to the manufacturing of the art paper directly, wherein the content of the mechanical pulp is 50%-60%. The manufacturing method is simple, safe and reliable. The manufacturing method can dramatically promote the content of the mechanical pulp in the art paper and economize on the consumption of wood in the process of papermaking. Meanwhile, the increased content of the mechanical pulp is favorable for lowering the production cost of papermaking industry.
Owner:GOLD EAST PAPER JIANGSU

Ultra-high molecular weight polyethylene (UHMPE) and nano-inorganic substance composite material and manufacturing method of high-performance fiber thereof

The invention discloses an ultra-high molecular weight polyethylene (UHMPE) and nano-inorganic substance composite material and a manufacturing method of high-performance fiber thereof, belonging to the field of a composite material.The manufacturing method of the composite material comprises the following steps: preparing UHMPE and a nano-inorganic substance, such as attapulgite, a carbon nanotube, sepiolite, wollastonite, montmorillonite and the like into gel solution; in the case of light transmittance close to zero under certain concentration, heating the gel solution for dissolving; and vacuumizing, defoaming, spinning with different spinneret boards containing various spinneret angles as well as feed length and discharge length, carrying out air-quenching, carrying out aqueous-phase curing, performing multi-segment temperature change extension and the like to finally obtain the composite material for the ultra-high strength fiber the light transmittance of which is close to zero. The obtained composite material can increase the strength and modulus of UHMPE fiber and solve the defects of the UHMPE fiber, such as high crimp, high creep, light transmittance and the like.
Owner:叶正涛 +1

Preparation technology of far-infrared cotton fiber

The invention discloses a preparation technology of far-infrared cotton fiber. The preparation technology comprises the steps of preparing raw materials, treating the raw materials, preparing a far-infrared mixed solution, carrying out coating treatment and spinning. The preparation technology is simple in method; the far-infrared coating mixed solution is prepared by mixing far-infrared ceramic powder with a resin bonding agent, a cross-linking agent, a dispersing agent and the like; the treated raw material fiber is coated with the far-infrared coating mixed solution, and the far-infrared coating mixed solution is firmly combined with the raw material fiber, so that the far-infrared fiber is good in effect. An ultraviolet light absorber is also added to the far-infrared coating mixed solution and is dipped into the cotton fiber, so that the finished product fiber has an ultraviolet resistant function. The cotton fiber is refined by alkaline biological enzyme, and alkali treatment is replaced, so that the preparation technology is low in damage to fiber and is beneficial to maintaining fiber strength; apocynum venetum fiber and activated carbon fiber are added into the raw material fiber for use, so that the finished product fiber also has a good antibacterial effect.
Owner:浙江世纪晨星纤维科技有限公司
Who we serve
  • R&D Engineer
  • R&D Manager
  • IP Professional
Why Eureka
  • Industry Leading Data Capabilities
  • Powerful AI technology
  • Patent DNA Extraction
Social media
Try Eureka
PatSnap group products