Patents by Inventor Tomi Pekka Bernhard Nissinen

Tomi Pekka Bernhard Nissinen 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: 20230018287
    Abstract: The invention relates to a window for a building structure containing optically transparent and self-cooling coatings on a substrate. The optically transparent and self-cooling coatings has a multi-layered structure including a passive cooling layer, a near-infrared radiation absorption layer and a near-infrared radiation reflecting layer. The optically transparent and self-cooling coatings have a visible light transmittance of more than approximately 70%. In addition, an air temperature under the window under ventilation condition is reduced by at least approximately 2° C., and an air temperature under the window under insulated condition is reduced by at least approximately 8° C.
    Type: Application
    Filed: June 23, 2022
    Publication date: January 19, 2023
    Inventors: Tomi Pekka Bernhard NISSINEN, Hau To WONG, Heung Kiu CHENG
  • Patent number: 11084760
    Abstract: The present application provides for water capsules, preparation methods of water capsules, a preparation method for lightweight concrete and a structure of lightweight concrete. Each of the water capsules comprises an alkali-sensitive shell and water inside; the water capsules are used to mix with a cementitious matrix, the water capsules can survive during concrete mixing and transportation processes but then gradually rupture in hardened concrete; the water released during the hardening of the concrete is beneficial for the hydration of the concrete. The water capsules and their preparation method, the preparation method for and structure of the lightweight concrete of the present application are of unique design and strong practicability.
    Type: Grant
    Filed: February 8, 2018
    Date of Patent: August 10, 2021
    Assignee: Hip Hing Construction Technology Limited
    Inventors: Hong Gang Zhu, Yuet Kee Lam, Xiao Hu Zhu, Man Lung Sham, Tomi Pekka Bernhard Nissinen, Jing Wen Liang, Su Ping Bao, Kwok Leung So
  • Patent number: 11078117
    Abstract: A low strength backfill material having a 28 days compressive strength less than approximately 2.0 MPa is provided. The backfill is suitable for use in areas with dense underground utilities due to its high excavatability and good thermal conductivity. The backfill includes a cementitious binder of approximately 1 weight percent to approximately 10 weight percent and fine aggregates in an amount of approximately 40 to approximately 75 weight percent. Filler is provided at 20 microns to approximately 100 microns for high flowability. A density-controlling agent of 0.0001-5 weight percent is used such that the density of a cured backfill material is approximately 1600 kg/m3 to 2000 kg/m3. Thermally conductive particles having a size range of approximately 0.01 microns to 500 microns in an amount of approximately 0.1 to 10 weight percent are evenly dispersed throughout the backfill.
    Type: Grant
    Filed: February 25, 2020
    Date of Patent: August 3, 2021
    Assignee: Nano and Advanced Materials Institute Limited
    Inventors: Tomi Pekka Bernhard Nissinen, Xianrui Chen, Jiawen Qiu
  • Publication number: 20200377415
    Abstract: A low strength backfill material having a 28 days compressive strength less than approximately 2.0 MPa is provided. The backfill is suitable for use in areas with dense underground utilities due to its high excavatability and good thermal conductivity. The backfill includes a cementitious binder of approximately 1 weight percent to approximately 10 weight percent and fine aggregates in an amount of approximately 40 to approximately 75 weight percent. Filler is provided at 20 microns to approximately 100 microns for high flowability. A density-controlling agent of 0.0001-5 weight percent is used such that the density of a cured backfill material is approximately 1600 kg/m3 to 2000 kg/m3. Thermally conductive particles having a size range of approximately 0.01 microns to 500 microns in an amount of approximately 0.1 to 10 weight percent are evenly dispersed throughout the backfill.
    Type: Application
    Filed: February 25, 2020
    Publication date: December 3, 2020
    Inventors: Tomi Pekka Bernhard NISSINEN, Xianrui CHEN, Jiawen QIU
  • Patent number: 10442734
    Abstract: A foam formulation for preparing polymer-grafted nanoparticles stabilized foam, including nanoparticles, monomers of a polymer to be grafted on the nanoparticle surface, polymerization initiator, surfactant and water. The polymer-grafted nanoparticles may act together with the surfactant to form single-layer assembling at the boundary of bubbles, which in turn stabilizes the foam. The generated foam shows much better stability in long-term storage, high-temperature drying process and alkaline environments than conventional wet foams. A method of preparing solid porous materials with the foam is also provided.
    Type: Grant
    Filed: May 5, 2016
    Date of Patent: October 15, 2019
    Assignee: Nano and Advanced Materials Institute Limited
    Inventors: Guoxing Sun, Tomi Pekka Bernhard Nissinen, Ivan M. L. Sham
  • Publication number: 20180222806
    Abstract: The present application provides for water capsules, preparation methods of water capsules, a preparation method for lightweight concrete and a structure of lightweight concrete. Each of the water capsules comprises an alkali-sensitive shell and water inside; the water capsules are used to mix with a cementitious matrix, the water capsules can survive during concrete mixing and transportation processes but then gradually rupture in hardened concrete; the water released during the hardening of the concrete is beneficial for the hydration of the concrete. The water capsules and their preparation method, the preparation method for and structure of the lightweight concrete of the present application are of unique design and strong practicability.
    Type: Application
    Filed: February 8, 2018
    Publication date: August 9, 2018
    Inventors: Hong Gang Zhu, Yuet Kee Lam, Xiao Hu Zhu, Man Lung Sham, Tomi Pekka Bernhard Nissinen, Jing Wen Liang, Su Ping Bao, Kwok Leung So
  • Publication number: 20170321026
    Abstract: A foam formulation for preparing polymer-grafted nanoparticles stabilized foam, including nanoparticles, monomers of a polymer to be grafted on the nanoparticle surface, polymerization initiator, surfactant and water. The polymer-grafted nanoparticles may act together with the surfactant to form single-layer assembling at the boundary of bubbles, which in turn stabilizes the foam. The generated foam shows much better stability in long-term storage, high-temperature drying process and alkaline environments than conventional wet foams. A method of preparing solid porous materials with the foam is also provided.
    Type: Application
    Filed: May 5, 2016
    Publication date: November 9, 2017
    Inventors: Guoxing Sun, Tomi Pekka Bernhard Nissinen, Ivan M.L. Sham