Textile fiber product containing rare earth elements
A rare earth element and textile fiber technology, applied in the field of textile fiber products, can solve the problems of insufficient functionality and small application range
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Embodiment 1
[0024] A textile fiber product containing rare earth elements, including textile fiber products and rare earth elements, the textile fiber product is doped with rare earth element promethium and neodymium cerium alloy, and the combination of the rare earth element promethium and neodymium cerium alloy with the textile fiber product adopts Electrostatic adsorption method. The steps of the electrostatic adsorption method are as follows: a. The neodymium-cerium alloy is melted into an alloy under vacuum conditions and then ball milled; b. The rare earth element promethium, neodymium-cerium alloy powder and oxygen-reducing resin are uniformly mixed to form a mixed solution; c. The textile fiber product and the mixed solution are placed in a static electricity generating container and sprayed by a sprayer; d. After the textile fiber product absorbs the rare earth element, it is solidified in the static electricity generating container, e. The rare earth element is uniformly Penetrates
Embodiment 2
[0032]The steps described in this embodiment are the same as those in Example 1. In Example 2, the materials used in the textile fiber product are natural fibers. The textile fiber product belongs to long fibers and has multiple layers and multiple gaps. Under the electrostatic conditions generated, the surface adsorption force is greatly enhanced, and rare earth elements can be adsorbed by electrostatic action. The rare earth element promethium is an artificial element, which exists in the form of chloride (RECL3), and can emit low-energy B-rays. The radiation range of the rare earth element promethium is below 80MSV, and the rare earth element neodymium and cerium are alloyed rare earth materials. The alloy is in the form of powder, and the average particle diameter of rare earth element neodymium-cerium alloy for short fibers is below 4UM, and the average particle diameter of fine powder for filaments is below 2UM. The neodymium-cerium alloy is based on the atomic ratio of neod
Embodiment 3
[0037] The steps described in this embodiment are the same as those in Example 1. In Example 3, the materials used in the textile fiber product are natural fibers. The textile fiber product belongs to long fibers with multiple layers and multiple gaps. Under the electrostatic conditions generated, the surface adsorption force is greatly enhanced, and rare earth elements can be adsorbed by electrostatic action. The rare earth element promethium is an artificial element, which exists in the form of chloride (RECL3), and can emit low-energy B-rays. The radiation range of the rare earth element promethium is below 100 MSV, and the rare earth elements neodymium and cerium are alloyed rare earth materials. The alloy is in the form of powder, and the average particle diameter of rare earth element neodymium-cerium alloy powder used for short fibers is below 5UM, and the average particle diameter of fine powder used for filaments is below 3UM. 16. The atomic ratio of cerium alloy is 1:4,
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