Patents by Inventor Minxiang PAN

Minxiang PAN has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11977133
    Abstract: A device for measuring magnetism of a permanent magnet material at a high temperature includes a laser device, a power controller, a light beam controller, a temperature controller, a magnetism measurement unit, temperature sensors, and electromagnet pole heads. The electromagnet pole heads are divided into an upper piece and a lower piece for clamping upper and lower surfaces of a sample. Heat absorbing sheets are respectively fixed on front and rear surfaces of the sample. Temperatures of the heat absorbing sheets are measured by the temperature sensors. The sample is heated by laser, and the temperature controller is used to adjust a ratio of light beams of the power controller and the light beam controller irradiating the heat absorbing sheets on the front and rear surfaces of the sample, thus adjusting the temperatures of the heat absorbing sheets. The magnetism of the sample is measured using the magnetism measurement unit.
    Type: Grant
    Filed: April 16, 2021
    Date of Patent: May 7, 2024
    Assignee: CHINA JILIANG UNIVERSITY
    Inventors: Qiong Wu, Hangfu Yang, Hongliang Ge, Nengjun Yu, Minxiang Pan, Xiani Huang, Zisheng Wang
  • Patent number: 11862370
    Abstract: The present invention discloses a high-resistivity sintered samarium-cobalt magnet and a preparation method thereof. According to the present invention, considering the specialty of sintered samarium-cobalt magnetic powder, fluoride or oxide is firstly prepared into nano-powder using high-energy ball milling, and the samarium-cobalt magnetic powder is prepared separately by rolling ball milling or high-speed jet milling, and then a certain electric field is applied in a fluoride suspension to drive the fluoride nano-powder to evenly cover a surface of the samarium-cobalt magnetic powder. The present invention breaks through the technical bottleneck that fluoride/oxide can improve the resistivity of a samarium-cobalt magnet but result in deterioration of the magnetic properties.
    Type: Grant
    Filed: April 19, 2022
    Date of Patent: January 2, 2024
    Assignee: China Jiliang University
    Inventors: Nengjun Yu, Jianghui Sun, Hangfu Yang, Minxiang Pan, Qiong Wu, Hongliang Ge
  • Publication number: 20230273274
    Abstract: A device for measuring magnetism of a permanent magnet material at a high temperature includes a laser device, a power controller, a light beam controller, a temperature controller, a magnetism measurement unit, temperature sensors, and electromagnet pole heads. The electromagnet pole heads are divided into an upper piece and a lower piece for clamping upper and lower surfaces of a sample. Heat absorbing sheets are respectively fixed on front and rear surfaces of the sample. Temperatures of the heat absorbing sheets are measured by the temperature sensors. The sample is heated by laser, and the temperature controller is used to adjust a ratio of light beams of the power controller and the light beam controller irradiating the heat absorbing sheets on the front and rear surfaces of the sample, thus adjusting the temperatures of the heat absorbing sheets. The magnetism of the sample is measured using the magnetism measurement unit.
    Type: Application
    Filed: April 16, 2021
    Publication date: August 31, 2023
    Applicant: CHINA JILIANG UNIVERSITY
    Inventors: Qiong WU, Hangfu YANG, Hongliang GE, Nengjun YU, Minxiang PAN, Xiani HUANG, Zisheng WANG
  • Publication number: 20220375662
    Abstract: The present invention discloses a high-resistivity sintered samarium-cobalt magnet and a preparation method thereof. According to the present invention, considering the specialty of sintered samarium-cobalt magnetic powder, fluoride or oxide is firstly prepared into nano-powder using high-energy ball milling, and the samarium-cobalt magnetic powder is prepared separately by rolling ball milling or high-speed jet milling, and then a certain electric field is applied in a fluoride suspension to drive the fluoride nano-powder to evenly cover a surface of the samarium-cobalt magnetic powder. The present invention breaks through the technical bottleneck that fluoride/oxide can improve the resistivity of a samarium-cobalt magnet but result in deterioration of the magnetic properties.
    Type: Application
    Filed: April 19, 2022
    Publication date: November 24, 2022
    Inventors: Nengjun Yu, Jianghui Sun, Hangfu Yang, Minxiang Pan, Qiong Wu, Hongliang Ge
  • Publication number: 20220344096
    Abstract: The present invention discloses a method for preparing high-performance anisotropic rare-earth-free permanent magnets, comprising the steps of: forming alloy ingots by melting according to a nominal composition of MnxBi100-x, (45?×?55); then coarsely crushing the alloy ingots and passing the crushed material through a 100-mesh sieve to obtain coarse powder; putting an appropriate amount of MnxBi100-x alloy coarse powder obtained into a ball-milling tank together with non-magnetic steel balls, with a ratio of ball to powder of 10:1; adding an appropriate amount of ethanol as solvent, and then adding a non-ionic surfactant polyvinylpyrrolidone (PVP) accounting for 5-15% of the power mass to assist in low-energy ball milling; washing the slurry obtained in anhydrous ethyl alcohol, and orientating and curing the washed magnetic powder in a magnetic field after adding binder to obtain high-performance anisotropic Mn—Bi alloy magnets finally.
    Type: Application
    Filed: November 30, 2021
    Publication date: October 27, 2022
    Applicant: China Jiliang University
    Inventors: Qiong WU, Yuanhao TU, Minxiang PAN, Hongliang GE