Patents by Inventor Yongmei MA

Yongmei MA 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: 11898285
    Abstract: A modified polypropylene spunbond non-woven fabric and a preparation method of the modified polypropylene spunbond non-woven fabric are provided. The modified polypropylene spunbond non-woven fabric contains a modified nanocomposite material including an organic compound, the organic compound including one of tea polyphenol, naringin, and emodin. The organic compound is in a weight percentage range of approximately 0.1%-5% based on a total weight of the modified polypropylene spunbond non-woven fabric.
    Type: Grant
    Filed: April 15, 2021
    Date of Patent: February 13, 2024
    Assignee: BESTEE MATERIAL (TSINGTAO) CO., LTD.
    Inventors: Xiaohua Huang, Qiang Cai, Shichao Wang, Weihua Mu, Jie Liu, Yongmei Ma, Yu Liu, Li Zhen
  • Patent number: 11472929
    Abstract: This invention relates to a high molecular weight nylon powder composition for 3D printing, its preparation method and use. The composition comprises: 100 parts by weight of high-viscosity nylon powder, 1-5 parts by weight of a flow agent, and 0.1-1 parts by weight of an antioxidant; the high-viscosity nylon powder is one or more selected from nylon 6, nylon 66, nylon 11, nylon 12, nylon 612 and nylon 610; or the powder composition is obtained via polymerization reaction of the raw materials comprising the following components, based on the weight parts of lactam monomers or amide monomers: 100 parts by weight of lactam monomers or amide monomers, 0.005-1 parts by weight of a catalyst, and 0.1-1 parts by weight of an antioxidant.
    Type: Grant
    Filed: April 24, 2015
    Date of Patent: October 18, 2022
    Assignee: INSTITUTE OF CHEMISTRY, CHINESE ACADEMY OF SCIENCES
    Inventors: Yongmei Ma, Kun Zheng, Jingnan Zhang, Xinyu Cao, Fusong Wang, Xuechun Lin, Wenhua Sun, Jian Xu, Jinyong Dong, Chuncheng Li, Wenxin Fu
  • Patent number: 11299569
    Abstract: The present invention provides a composition for 3D printing, a process for preparing the same and an article thereof. By the solidifying method of UV irradiation, 3D printing is implemented. During said implementation, there is no need of high temperature heating, thus energy consumption is reduced, and there is no need for special solvent, thus harm to the environment is reduced. Meanwhile, the present invention uses micro-nano powder as the main material and polymer resin as adhesive, and at the same time, adds irradiation sensitizer. After electron beam irradiation, the polymer resin forms three-dimensional crosslinked network, thereby the strength, heat resistance and chemical resistance are improved after resin adhesion.
    Type: Grant
    Filed: April 24, 2015
    Date of Patent: April 12, 2022
    Assignee: INSTITUTE OF CHEMISTRY, CHINESE ACADEMY OF SCIENCES
    Inventors: Heng Shen, Jing Guo, Tang Zhu, Ning Zhao, Jian Xu, Wenhua Sun, Jinyong Dong, Chuncheng Li, Wenxin Fu, Xuechun Lin, Yongmei Ma
  • Publication number: 20210324556
    Abstract: A modified polypropylene spunbond non-woven fabric and a preparation method of the modified polypropylene spunbond non-woven fabric are provided. The modified polypropylene spunbond non-woven fabric contains a modified nanocomposite material including an organic compound, the organic compound including one of tea polyphenol, naringin, and emodin. The organic compound is in a weight percentage range of approximately 0.1%-5% based on a total weight of the modified polypropylene spunbond non-woven fabric.
    Type: Application
    Filed: April 15, 2021
    Publication date: October 21, 2021
    Inventors: Xiaohua HUANG, Qiang CAI, Shichao WANG, Weihua MU, Jie LIU, Yongmei MA, Yu LIU, Li ZHEN
  • Patent number: 10518354
    Abstract: An ultraviolet laser 3D printing device includes a thermostat, a laser head, a non-contact type temperature monitoring device, a scanning galvanometer, a processing platform, a powder laying device, a material to be processed, a computer control system. The device is configured to perform the following functions: presetting a processing temperature by the control system; during the processing procedure, the temperature rise condition of the processed object is monitored by the non-contact type temperature monitoring device and fed back in real time to the control system; and by recording the rise value of the temperature within a certain period, the system can obtain the absorption capability of the laser and the temperature rise degree of the processed material, so that the laser output power can be calculated according to the preset processing temperature value, and the laser power can be adjusted in real time to precisely control the processing temperature.
    Type: Grant
    Filed: April 24, 2015
    Date of Patent: December 31, 2019
    Assignees: INSTITUTE OF CHEMISTRY, CHINESE ACADEMY OF SCIENCES, INSTITUTE OF SEMICONDUCTORS, CHINESE ACADEMY OF SCIENCES
    Inventors: Xuechun Lin, Wenting Wang, Zhiyan Zhang, Shusen Zhao, Haijuan Yu, Yongmei Ma, Wenhua Sun, Jian Xu, Jinyong Dong, Chuncheng Li, Wenxin Fu
  • Publication number: 20170259504
    Abstract: The present disclosure disclosed an ultraviolet laser 3D printing method for the precise temperature control of polymer material and device thereof. The device comprises a thermostat, a laser head, a non-contact type temperature monitoring device, a scanning galvanometer, a processing platform, a powder laying device, a material to be processed, a computer control system and so on.
    Type: Application
    Filed: April 24, 2015
    Publication date: September 14, 2017
    Inventors: Xuechun LIN, Wenting WANG, Zhiyan ZHANG, Shusen ZHAO, Haijuan YU, Yongmei MA, Wenhua SUN, Jian XU, Jinyong DONG, Chuncheng LI, Wenxin FU
  • Publication number: 20170253681
    Abstract: The present invention provides a composition for 3D printing, a process for preparing the same and an article thereof. By the solidifying method of UV irradiation, 3D printing is implemented. During said implementation, there is no need of high temperature heating, thus energy consumption is reduced, and there is no need for special solvent, thus harm to the environment is reduced. Meanwhile, the present invention uses micro-nano powder as the main material and polymer resin as adhesive, and at the same time, adds irradiation sensitizer. After electron beam irradiation, the polymer resin forms three-dimensional crosslinked network, thereby the strength, heat resistance and chemical resistance are improved after resin adhesion.
    Type: Application
    Filed: April 24, 2015
    Publication date: September 7, 2017
    Inventors: Heng SHEN, Jing GUO, Tang ZHU, Ning ZHAO, Jian XU, Wenhua SUN, Jinyong DONG, Chuncheng LI, Wenxin FU, Xuechun LIN, Yongmei MA
  • Publication number: 20170253702
    Abstract: This invention relates to a high molecular weight nylon powder composition for 3D printing, its preparation method and use. The composition comprises: 100 parts by weight of high-viscosity nylon powder, 1-5 parts by weight of a flow agent, and 0.1-1 parts by weight of an antioxidant; the high-viscosity nylon powder is one or more selected from nylon 6, nylon 66, nylon 11, nylon 12, nylon 612 and nylon 610; or the powder composition is obtained via polymerization reaction of the raw materials comprising the following components, based on the weight parts of lactam monomers or amide monomers: 100 parts by weight of lactam monomers or amide monomers, 0.005-1 parts by weight of a catalyst, and 0.1-1 parts by weight of an antioxidant.
    Type: Application
    Filed: April 24, 2015
    Publication date: September 7, 2017
    Applicant: Institute of Chemistry, Chinese Academy of Sciences
    Inventors: Yongmei MA, Kun ZHENG, Jingnan ZHANG, Xinyu CAO, Fusong WANG, Xuechun LIN, Wenhua SUN, Jian XU, Jinyong DONG, Chuncheng LI, Wenxin FU