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246results about "Light/infra-red/X-rays fibre treatment" patented technology

Method for preparing polyacid/macromolecule hybrid nanofiber membrane by using electrospinning method

The invention relates to a method for preparing a polyacid/macromolecule hybrid nanofiber membrane by using an electrospinning method. The method comprises the following steps: (1) adding an organic macromolecule compound into N,N-dimethylformamide; stirring until the organic macromolecule compound is dissolved completely; then adding WCl6 or MoCl5, and stirring until WCl6 or MoCl5 is dissolved completely to obtain a spinning solution; (2) carrying out electrostatic spinning on the spinning solution to obtain a nanofiber membrane precursor; and (3) carrying out heat treatment on the nanofiber membrane precursor at the temperature of 40-100 DEG C, and then radiating the nanofiber membrane precursor under ultraviolet light to obtain the final product. The sizes of polyacid particles in the prepared hybrid nanofiber membrane are stable, obvious agglomeration is avoided, the polyacid particles are uniformly distributed on the surfaces of fibers, therefore, the color changing speed of the fibers under radiation of the ultraviolet light and the speed of reduction of precious metal and heavy metal ions into metal element are greatly increased, and the effect of removing heavy metal ions in sewage by using the hybrid nanofiber membrane can be achieved to a maximum extent.
Owner:SHANDONG UNIV

Aramid fiber (AF) surface modification method, product and preparation method of product

The invention discloses a method for modifying the surface of an aramid fiber, a product thereof and a preparation method of the product. The present invention uses ultraviolet light as the radiation source to irradiate aramid fibers in the air to improve the surface properties of aramid fibers, thereby increasing the interface bonding strength between aramid fibers and natural rubber, and maximizing the use of aramid fibers. Reinforcement effect; radiation modification can stimulate the activity of functional groups on the surface of aramid fibers, and these active functional groups can physically cross-link or chemically react with the natural rubber matrix, thereby increasing interfacial adhesion; and radiation modification can also affect the aramid fibers The surface is etched to increase the roughness of the surface of the aramid fiber, thereby increasing the surface area of ​​the fiber, enhancing the mechanical interlocking of the aramid fiber and natural rubber, and increasing the interface bonding strength between the two. The invention has the advantages of safety, high efficiency, little pollution, low energy consumption, simple equipment and suitable for industrial production, etc., and has good development prospects in the modification of aramid fibers. The preparation method of the invention has simple process and easy operation, and is very suitable for industrial production.
Owner:GUIZHOU UNIV

Crosslinking type aromatic polyimide material and preparation method thereof

The invention relates to a crosslinking type aromatic polyimide material containing methyl and having a main chain containing carbonyl and a preparation method thereof, which belongs to the technical field of synthesis of high molecular materials. A preparation process comprises the following steps: introducing a structure similar to diphenylketone and methyl into a polyimide molecular chain; synthesizing cross-linkable polyimide which contains the methyl and has the main chain containing the carbonyl and carrying out cross-linking treatment; specifically, taking a dianhydride monomer and a diamine monomer with the equal molar ratio as raw materials and synthesizing polyamic acid; carrying out spinning (or film preparation), imidization and cross-linking processes; finally, obtaining the crosslinking type aromatic polyimide material. The crosslinking type aromatic polyimide material prepared by the preparation method has high molecular weight and good mechanical properties and has excellent heat stability and mechanical properties, good solubility, good film-forming property and good spinnability, relatively low water absorption rate and special optical properties; a final shape of the product can be fiber and also can be thin film and the product has a wide application field.
Owner:BEIJING UNIV OF CHEM TECH
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