Patents by Inventor Qingkun Chu

Qingkun Chu 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: 12091731
    Abstract: Disclosed is a biomedical ? titanium alloy and a preparation method thereof. Its composition includes: Mo: 9.20-13.50%; Fe: 1.00-3.20%; Zr: 3.50-8.20%; Ta: 0-1.00%; the balance is Ti. The ? titanium alloy is suitable for the laser additive manufacturing technology, and the prepared parts have a dense equiaxed grain structure with ultra-low grain size and a small number of columnar grain structures, which produces a fine-grain strengthening effect, and greatly improve the hardness and tribocorrosion performance of the alloy material. Also provided is a method for preparing a non-toxic, low-elasticity, and tribocorrosion resistant biomedical ? titanium alloy material. A powder prepared from the above alloy components is subjected to a laser additive manufacturing technology to prepare a corresponding ? titanium alloy with high-hardness, good tribocorrosion resistance and extremely low cytotoxicity.
    Type: Grant
    Filed: July 26, 2022
    Date of Patent: September 17, 2024
    Assignee: Institute of New Materials, Guangdong Academy of Sciences
    Inventors: Xingchen Yan, Cheng Chang, Qingkun Chu, Changguang Deng, Min Liu
  • Publication number: 20230023628
    Abstract: Disclosed is a biomedical ? titanium alloy and a preparation method thereof. Its composition includes: Mo: 9.20-13.50%; Fe: 1.00-3.20%; Zr: 3.50-8.20%; Ta: 0-1.00%; the balance is Ti. The ? titanium alloy is suitable for the laser additive manufacturing technology, and the prepared parts have a dense equiaxed grain structure with ultra-low grain size and a small number of columnar grain structures, which produces a fine-grain strengthening effect, and greatly improve the hardness and tribocorrosion performance of the alloy material. Also provided is a method for preparing a non-toxic, low-elasticity, and tribocorrosion resistant biomedical ? titanium alloy material. A powder prepared from the above alloy components is subjected to a laser additive manufacturing technology to prepare a corresponding ? titanium alloy with high-hardness, good tribocorrosion resistance and extremely low cytotoxicity.
    Type: Application
    Filed: July 26, 2022
    Publication date: January 26, 2023
    Inventors: Xingchen Yan, Cheng Chang, Qingkun Chu, Changguang Deng, Min Liu