Patents by Inventor ZHANCHENG GUO

ZHANCHENG GUO 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).

  • Publication number: 20240188338
    Abstract: A flexible display panel includes a pixel definition layer, a partition wall, and a first electrode. The partition wall is disposed on the pixel definition layer and located within the pixel island area. Each pixel island area includes at least one partition wall. The first electrode is disposed on the pixel definition layer. A width of the partition wall continuously decreases or intermittently changes from top to bottom along a thickness direction of the partition wall. The first electrode includes a plurality of patterned islands that are in one-to-one correspondence with the plurality of pixel island areas and are spaced apart by the partition walls.
    Type: Application
    Filed: February 15, 2024
    Publication date: June 6, 2024
    Applicant: KUNSHAN GO-VISIONOX OPTO-ELECTRONICS CO., LTD.
    Inventors: Zhancheng MIAO, Qing BAI, Zhilin GUO
  • Publication number: 20230407437
    Abstract: A method and an equipment for comprehensive utilization of niobite is disclosed. The method includes the following steps: S1. adding and uniformly mixing a coal-based reducing agent to the niobite, and subsequently reducing the mixture in a reduction furnace to obtain the selective reduction product; S2. adding the selective reduction product to a super-gravity reactor where the ambient temperature is controlled to be lower than the temperature at which the niobium oxide is reduced; driven by super-gravity, reverse migrating and collecting the metal iron and the niobium-rich slag at different locations in the reactor; discharging the metallic iron tightly attached to the wall of the reactor through an iron discharging port, and discharging the niobium-rich slag enriched to the inner layer of the reactor through a slag discharging port, so that the separation of the metallic iron and the niobium-rich slag is realized in the super-gravity field.
    Type: Application
    Filed: December 5, 2022
    Publication date: December 21, 2023
    Inventors: Xi LAN, Zhancheng GUO, Jintao GAO, Zengwu WANG, Guoliang FENG, Xiang LI, Rong YUAN
  • Patent number: 10655198
    Abstract: A method and apparatus for step-by-step retrieving valuable metals from waste printed circuit board particles. Many kinds of metals, most existing in form of elementary substance or alloy, are contained in the waste printed circuit boards. Molten metals are separated selectively by supergravity separation at different temperatures to achieve the step-by-step recovery. Tin-based alloys, lead-based alloy, zinc aluminum alloy, crude copper and precious-metal-enriched residues with different metal contents are separated out and collected on the condition of different temperatures (T=200˜300° C., 330˜430° C., 700˜900° C., 1100˜1300° C.) and controlling the gravity coefficient (G=50˜1000) and separation time (t=2˜20 min) etc. Different metals or alloys can be separated quickly and efficiently and the residue concentration of precious metals can be obtained. The process is simple and low cost to provide an efficient way to recovery the enrichment of valuable metals from electronic wastes.
    Type: Grant
    Filed: August 30, 2017
    Date of Patent: May 19, 2020
    Inventors: Zhancheng Guo, Long Meng, Lei Guo, Jintao Gao, Yiwei Zhong, Zhe Wang, Kuiyuan Chen
  • Publication number: 20180187285
    Abstract: A method and apparatus for step-by-step retrieving valuable metals from waste printed circuit board particles. Many kinds of metals, most existing in form of elementary substance or alloy, are contained in the waste printed circuit boards. Molten metals are separated selectively by supergravity separation at different temperatures to achieve the step-by-step recovery. Tin-based alloys, lead-based alloy, zinc aluminum alloy, crude copper and precious-metal-enriched residues with different metal contents are separated out and collected on the condition of different temperatures (T=200˜300° C., 330˜430° C., 700˜900° C., 1100˜1300° C.) and controlling the gravity coefficient (G=50˜1000) and separation time (t=2˜20 min) etc. Different metals or alloys can be separated quickly and efficiently and the residue concentration of precious metals can be obtained. The process is simple and low cost to provide an efficient way to recovery the enrichment of valuable metals from electronic wastes.
    Type: Application
    Filed: August 30, 2017
    Publication date: July 5, 2018
    Inventors: ZHANCHENG GUO, LONG MENG, LEI GUO, JINTAO GAO, YIWEI ZHONG, ZHE WANG, Kuiyuan CHEN