Patents by Inventor Chengrong LIAN

Chengrong LIAN 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: 20230253917
    Abstract: Disclosed is a photovoltaic array structure having low line loss. The photovoltaic array structure includes several photovoltaic modules as photovoltaic array units, where each photovoltaic module includes one photovoltaic cell string or a plurality of photovoltaic cell strings distributed row by row or column by column and connected in series and/or in parallel, and the photovoltaic module includes a long side and a short side, a first end edge junction box and a second end edge junction box being arranged on light-facing surfaces or surfaces facing away from light at two ends along a center line of the long side of the photovoltaic module respectively, and being located on the same side of the long side of the photovoltaic module. The present invention can obviously shorten a thread of a direct current cable in the photovoltaic array structure and reduce line loss inside the photovoltaic array structure.
    Type: Application
    Filed: November 14, 2020
    Publication date: August 10, 2023
    Applicant: SUNMAN (ZHENJIANG) CO., LTD.
    Inventors: Zhengrong SHI, Biao CUI, Taotao XIE, Chengrong LIAN
  • Patent number: 10872989
    Abstract: An encapsulant material for a photovoltaic module. The encapsulant material includes: between 30 and 50 parts by weight of fiber cloth and between 50 and 70 parts by weight of acrylic powder coating. The fiber cloth is made of fiber material. The acrylic powder coating includes an acrylic resin, a curing agent, and an additive. The acrylic powder coating is uniformly coated on the fiber cloth. A method of preparing the encapsulant material includes: uniformly coating the acrylic powder coating on the fiber cloth, thermally bonding the acrylic powder coating and the fiber cloth using pressure and heat, and piecewise cutting the thermally bonded acrylic powder coating and the fiber cloth.
    Type: Grant
    Filed: August 22, 2018
    Date of Patent: December 22, 2020
    Assignees: TIGER NEW SURFACE MATERIALS (SUZHOU) CO., LTD., SUNMAN (SHANGHAI) CO., LTD.
    Inventors: Tianhe Dai, Biao Luo, Zhicheng Wang, Guozhu Long, Jiaoyan Liu, Chengrong Lian, Weili Wang
  • Patent number: 10553737
    Abstract: A laminated structure, including: a first encapsulation layer, a second encapsulation layer, and a solar cell string between the first encapsulation layer and the second encapsulation layer. The first encapsulation layer includes 30-50 wt. % of fiber cloth and 50-70 wt. % of a first powder coating evenly disposed on the fiber cloth. The second encapsulation layer includes 30-50 wt. % of the fiber cloth and 50-70 wt. % of a second powder coating evenly disposed on the fiber cloth. The first powder coating includes an acrylic powder coating or a polyester powder coating. The second powder coating includes the polyester powder coating. The acrylic powder coating includes an acrylic resin and an acrylic resin curing agent. The polyester powder coating includes a polyester resin and a polyester resin curing agent.
    Type: Grant
    Filed: April 25, 2019
    Date of Patent: February 4, 2020
    Assignee: SUNMAN (HONG KONG) LIMITED
    Inventors: Zhengrong Shi, Guozhu Long, Jiaoyan Liu, Chengrong Lian, Weili Wang
  • Publication number: 20190252563
    Abstract: A laminated structure, including: a first encapsulation layer, a second encapsulation layer, and a solar cell string between the first encapsulation layer and the second encapsulation layer. The first encapsulation layer includes 30-50 wt. % of fiber cloth and 50-70 wt. % of a first powder coating evenly disposed on the fiber cloth. The second encapsulation layer includes 30-50 wt. % of the fiber cloth and 50-70 wt. % of a second powder coating evenly disposed on the fiber cloth. The first powder coating includes an acrylic powder coating or a polyester powder coating. The second powder coating includes the polyester powder coating. The acrylic powder coating includes an acrylic resin and an acrylic resin curing agent. The polyester powder coating includes a polyester resin and a polyester resin curing agent.
    Type: Application
    Filed: April 25, 2019
    Publication date: August 15, 2019
    Inventors: Zhengrong SHI, Guozhu LONG, Jiaoyan LIU, Chengrong LIAN, Weili WANG
  • Publication number: 20190097071
    Abstract: An encapsulant material for a photovoltaic module. The encapsulant material includes: between 30 and 50 parts by weight of fiber cloth, and between 50 and 70 parts by weight of a polyester powder coating. The polyester powder coating includes a polyester resin and a curing agent. The polyester resin is a polymer of monomers selected from terephthalic acid, m-phthalic acid, neopentyl glycol, adipic acid, ethylene glycol, or a mixture thereof. The curing agent accounts for 2-20 wt. % of the polyester powder coating. The polyester powder coating is evenly distributed on the fiber cloth. A method of preparing the packaging material includes: evenly distributing the polyester powder coating on the fiber cloth using a coating device; and thermally bonding the polyester powder coating and the fiber cloth.
    Type: Application
    Filed: November 22, 2018
    Publication date: March 28, 2019
    Inventors: Tianhe DAI, Biao LUO, Zhicheng WANG, Guozhu LONG, Jiaoyan LIU, Chengrong LIAN, Weili WANG
  • Publication number: 20180374974
    Abstract: An encapsulant material for a photovoltaic module. The encapsulant material includes: between 30 and 50 parts by weight of fiber cloth and between 50 and 70 parts by weight of acrylic powder coating. The fiber cloth is made of fiber material. The acrylic powder coating includes an acrylic resin, a curing agent, and an additive. The acrylic powder coating is uniformly coated on the fiber cloth. A method of preparing the encapsulant material includes: uniformly coating the acrylic powder coating on the fiber cloth, thermally bonding the acrylic powder coating and the fiber cloth using pressure and heat, and piecewise cutting the thermally bonded acrylic powder coating and the fiber cloth.
    Type: Application
    Filed: August 22, 2018
    Publication date: December 27, 2018
    Inventors: Tianhe DAI, Biao LUO, Zhicheng WANG, Guozhu LONG, Jiaoyan LIU, Chengrong LIAN, Weili WANG