太陽電池のパッケージング方法と太陽電池装置

    公开(公告)号:JP2019192900A

    公开(公告)日:2019-10-31

    申请号:JP2018224555

    申请日:2018-11-30

    Abstract: 【課題】本出願は、太陽電池のパッケージング方法と太陽電池装置を提供する。 【解決手段】まずバックプレーンなしのフレキシブル太陽光モジュールに対しラミネートを行い、その後に曲面バックプレーンとのパッケージングを施す。ラミネートを行う際のフレキシブル太陽光モジュールはバックプレーンなしのものであるため、その際の圧力不均一に起因するバックプレーンの破裂問題の発生を防ぎ、歩留まりを向上させることができる。また、フレキシブル太陽光モジュールを、元の複合バックプレーンを除去して直接に曲面バックプレーンの凹溝内にパッケージングすることにより、太陽電池全体の重量を低減させるとともに、パッケージングのコストを大幅に低減できる。 【選択図】図1

    フレキシブル太陽電池モジュールに用いる信頼性試験装置

    公开(公告)号:JP2019536980A

    公开(公告)日:2019-12-19

    申请号:JP2018541217

    申请日:2018-07-05

    Abstract: 【課題】本願は、フレキシブル太陽電池モジュールに用いる信頼性試験装置を開示する。 【解決手段】当該フレキシブル太陽電池モジュールに用いる信頼性試験装置は、環境試験箱、温度取得装置、及び前記環境試験箱内に収納される載置フレームを備え、載置フレームは、対向されるように設置された少なくとも1対の直立フレーム、及び、直立フレームの間に水平に積み重ねられる複数のブラケットを備え、ブラケットと直立フレームとは固定接続され、ブラケット同士の間には、第1の隙間が設置され、ブラケットには複数のベント孔が設置され、フレキシブル太陽電池モジュールはブラケット上に水平配置され、温度取得装置はフレキシブル太陽電池モジュールの表面に固定設置される。本願は、モジュールの垂直に配置に起因するモジュールの歪み、クリープ等の不良な構成上の問題を解消した同時に、好ましい形態によってバッフルプレートを設置して試験箱内のガスのサイクル流れ方向を変更させることで、モジュールに対して温度上昇及び温度下降の過程で温度及び湿度を均一に維持するようにして、正確且つ効果的な信頼性評価結果をえることができる。 【選択図】図1

    Solar cell degaussing device, solar cell production system and solar cell degaussing method

    公开(公告)号:AU2018214001A1

    公开(公告)日:2019-05-16

    申请号:AU2018214001

    申请日:2018-07-10

    Abstract: Abstract The present disclosure provides a solar cell degaussing device, a solar cell production system and a solar cell degaussing method, the solar cell degaussing device comprises: a controller, a degausser, a sensing unit and a switching unit; the controller is connected to the sensing unit and the switching unit respectively; the switching unit is connected to the degausser; after the sensing unit detects presence of a cell slice, the controller triggers the switching unit to act so as to enable the degausser to be powered, and the powered degausser performs a degaussing treatment to the cell slice. The present disclosure solves the problem of lack of a cell slice degaussing device in the field of solar cell production, and the present device thereby can eliminate the magnetic of a magnetized cell slice, decrease the magnetic adsorption phenomena of facilities, and thus improve production efficiency.

    Sunshade umbrella
    5.
    发明专利

    公开(公告)号:AU2018213962A1

    公开(公告)日:2019-07-04

    申请号:AU2018213962

    申请日:2018-06-19

    Abstract: The present disclosure provides a sunshade umbrella, which includes an umbrella rod, an umbrella body at an end of the umbrella rod, an umbrella handle at an opposite end of the umbrella rod, a solar cell component, a current output structure in the umbrella handle and in an 5 electrical connection with the solar cell component, a first connection structure at the umbrella body and a second connection structure at the solar cell component. The solar cell component is detachably mounted to the umbrella body through detachable engagement between the first connection structure and the second connection structure.

    Cooling device of photovoltaic assembly

    公开(公告)号:AU2018204925A1

    公开(公告)日:2019-05-16

    申请号:AU2018204925

    申请日:2018-07-06

    Abstract: Disclosed is a photovoltaic assembly (4), including a cooling platform (5) for supporting the photovoltaic assembly (4) to be cooled; a first high-temperature cloth unit (21) provided on the cooling platform (5); a vacuum cover (3) for forming a vacuum chamber together with the cooling platform (5), the vacuum chamber accommodating the photovoltaic assembly (4) to be cooled; a second high-temperature cloth unit (22) provided at a side of the vacuum cover (3) facing the cooling platform (5); and a lifting bracket (1) for driving the vacuum cover (3) lift or fall. In the above-mentioned photovoltaic assembly (4), the vacuum cover (3) is driven and lifted by the lifting bracket (1), and forms a vacuum chamber together with the cooling platform (5). The vacuum chamber creates a pressure cooling effect for the photovoltaic assembly (4) to be cooled. In turn, the appearance defects may be reduced when the photovoltaic assembly (4) is cooled to the normal temperature. Fig. 1 Fig. 2

    Outdoor test device for variable-angle photovoltaic module

    公开(公告)号:AU2018206746A1

    公开(公告)日:2019-03-14

    申请号:AU2018206746

    申请日:2018-06-21

    Abstract: Abstract The present disclosure discloses an outdoor test device for a variable-angle photovoltaic module comprising a base, a turntable and a storage table, wherein a caster assembly is fixedly arranged on the base, the turntable is rotatably connected with the base, a beam angle pole is fixedly arranged on the turntable, the beam angle pole is perpendicular to the turntable, and the storage table is fixedly connected with the base. The outdoor test device for a variable-angle photovoltaic module according to the present disclosure solves the problem that an existing test bracket cannot change its angle or direction, keeps a test turntable perpendicular to the sunlight constantly according to a projection state of the beam angle pole, facilitates an outdoor test operation, meets requirements of IEC on outdoor tests, and improves stability and accuracy of tests. - 15-

    ALLOY POWDER AND METHOD FOR PREPARING THE SAME

    公开(公告)号:CA3010483A1

    公开(公告)日:2019-02-04

    申请号:CA3010483

    申请日:2017-12-29

    Abstract: Provided is a method of preparing an alloy powder, comprising the steps of: melting the metal elements for preparing the alloy powder to produce the alloy solution; atomizing the alloy solution into small drops under oxygen-containing atmosphere; forcing the small drops to be quickly cooled under the driving of the atomizing flow to obtain the alloy powder; wherein, when the method is used to prepare Cu-In-Ga alloy powder, Cu/(In+Ga) is 0.5 to 1.1, In/(In+Ga) is 0.2 to 0.9, Ga/(In-FGa) is 0.1 to 0.8, In/(In+Ga) + Ga/(In+Ga) is 1. Also provided is an alloy powder and a method of preparing Cu-In-Ga alloy powder.

    pó de liga e método de preparação do mesmo

    公开(公告)号:BR112018014868A2

    公开(公告)日:2020-02-11

    申请号:BR112018014868

    申请日:2017-12-29

    Abstract: é fornecido um método de preparação de um pó de liga compreendendo as etapas de fusão de elementos metálicos para produzir a solução de liga; a atomização da solução de liga em pequenas gotas sob a atmosfera contendo oxigênio; o resfriamento rápido e forçado das gotas pequenas sob o acionamento do fluxo de atomização para obter o pó de liga; onde, quando o método é utilizado para preparar o pó de liga de cu-in-ga, cu/(in+ga) é igual a 0,5 a 1,1, in/(in+ga) é igual a 0,2 a 0,9, ga/(in+ga) é igual a 0,1 a 0,8, in/(in+ga) + ga/(in+ga) é igual a 1. é fornecido também um pó de liga e um método de preparação de pó de liga de cu-in-ga.

    Reliability test device for flexible photovoltaic module

    公开(公告)号:AU2018211292A1

    公开(公告)日:2019-05-16

    申请号:AU2018211292

    申请日:2018-07-05

    Abstract: The present disclosure discloses a reliability test device for flexible photovoltaic module, this reliability test device for flexible photovoltaic module comprises: an environment test box, a temperature acquisition means and a placing rack placed inside an environment test box; the placing rack comprises at least one set of oppositely provided vertical frames, and a plurality 10 of carriers horizontally stacked between the vertical frames, the carriers and the vertical frames are fixedly connected; a first gap is provided between the carriers, and a plurality of gas holes are provided on the carriers; the flexible photovoltaic module is horizontally placed on the carrier, and the temperature acquisition means is fixedly provided on a surface of the flexible photovoltaic module. In the present disclosure, problems of undesirable structures 15 such as deformation and creeping of the module caused by vertically placing the module are eliminated, meanwhile in preferred solutions, by providing a baffle, the gas circulation flow direction in the test box is changed, such that the module maintains a uniform temperature and a uniform humidity during heating up and cooling down, and accordingly accurate and effective reliability evaluation results can be obtained.

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