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    • 62. 发明申请
    • METHOD AND APPARATUS FOR FABRICATING SEPARATOR ASSEMBLY
    • 制造分离器装配的方法和装置
    • US20130292034A1
    • 2013-11-07
    • US13996715
    • 2011-12-07
    • Chen WangTodd Alan AndersonSu LuHua LiZhen LiuJie HuangAnubhav Kumar
    • Chen WangTodd Alan AndersonSu LuHua LiZhen LiuJie HuangAnubhav Kumar
    • B32B38/00
    • B32B38/00B01D63/10B01D63/103B01D65/003B01D2313/10B01D2313/12B01D2323/42
    • The present invention provides a method and apparatus for fabricating a separator assembly. The method comprises: providing a central core element comprising at least one concentrate exhaust conduit and at least one permeate exhaust conduit; disposing a first portion of a membrane stack assembly comprising a permeate carrier layer, a membrane layer, and a feed carrier layer within the central core element such that the concentrate exhaust conduit and permeate exhaust conduit are separated by the first portion of the membrane stack assembly; radially winding a second portion of the membrane stack assembly around the central core element; and sealing the wound assembly comprising two opposing end surfaces made of the membrane stack assembly by applying an adhesive on both end surfaces of the wound assembly; and applying a negative pressure inside the central core element so that the adhesive penetrates into the membrane stack assembly.
    • 本发明提供一种用于制造分离器组件的方法和装置。 该方法包括:提供包括至少一个浓缩物排出管道和至少一个渗透物排放导管的中心芯体元件; 在中心芯元件内设置包括渗透物载体层,膜层和进料载体层的膜堆叠组件的第一部分,使得浓缩物排出管道和渗透物排出管道被膜堆叠组件的第一部分分离 ; 围绕中心芯元件径向缠绕膜堆叠组件的第二部分; 并且通过在所述缠绕组件的两个端表面上施加粘合剂来密封包括由所述膜堆叠组件制成的两个相对端面的所述缠绕组件; 并且在中心芯元件内部施加负压,使得粘合剂渗透到膜堆叠组件中。
    • 63. 发明申请
    • Chromium-Free Insulation Coating Material for Non-Oriented Silicon Steel
    • 用于非定向硅钢的无铬绝缘涂层材料
    • US20130203896A1
    • 2013-08-08
    • US13818258
    • 2011-04-13
    • Yunpeng XuYongjie YangDengfeng LiYaming JiZipeng ZhaoLingyun ChenXiao ChenJie Huang
    • Yunpeng XuYongjie YangDengfeng LiYaming JiZipeng ZhaoLingyun ChenXiao ChenJie Huang
    • C09D5/00
    • C09D5/00C09D5/084C09D7/61C09D163/00H01B3/40
    • The present invention refers to a chromium-free insulation coating material for non-oriented silicon steel, comprising, in parts by weight, the following components: metal dihydrogen phosphate salt of 100 parts, epoxy resin of 10˜60 parts, naphthenate drier or isooctanoate metal salt drier of 0.001˜10 parts, organic solvent of 0.001˜100 parts and pure water of 60˜2000 parts. The metal dihydrogen phosphate salt is Al(H2PO4)3, Mg(H2PO4)2, Ca(H2PO4)2 or Zn(H2PO4)2; the epoxy resin is water-soluble epoxy resin or epoxy resin emulsion. Chromium-free insulation coating material of the present invention, after being coated on non-oriented silicon steel, renders highly transparent appearance, and has excellent insulativity, corrosion resistance, adhesiveness, weldability and manufacturability, so as to eliminate defects of the existing chromium-free coating, such as sticky and un-wear-resistant and to meet environment protection requirements.
    • 本发明涉及一种用于非取向硅钢的无铬绝缘涂层材料,其包含以重量份计的以下组分:100份的金属二氢磷酸盐,10〜60份的环氧树脂,环烷酸盐干燥剂或异辛酸酯 金属盐干燥剂为0.001〜10份,有机溶剂为0.001〜100份,纯水为60〜2000份。 磷酸金属盐为Al(H 2 PO 4)3,Mg(H 2 PO 4)2,Ca(H 2 PO 4)2或Zn(H 2 PO 4)2; 环氧树脂是水溶性环氧树脂或环氧树脂乳液。 本发明的无铬绝缘涂层材料涂覆在非取向硅钢上后,外观高透明,绝缘性,耐腐蚀性,粘合性,焊接性和可制造性优异,从而消除了现有的铬 - 自由涂层,如粘性和不耐磨损,符合环保要求。
    • 68. 发明申请
    • PHOTOVOLTAIC SYSTEMS WITH VOLTAGE BALANCERS
    • 具有电压平衡的光伏系统
    • US20130033113A1
    • 2013-02-07
    • US13251733
    • 2011-10-03
    • Gui-Song HuangYa-Hong XiongJie Huang
    • Gui-Song HuangYa-Hong XiongJie Huang
    • H02J1/00
    • H01L31/02021H02J3/385Y02E10/58Y10T307/685
    • A photovoltaic module includes N sub-modules electrically connected to each other such that the negative terminal of any one but the last sub-module is electrically connected to the positive terminal of the immediate next sub-module, and N−1 voltage balancers, each having a first terminal, a second terminal and a third terminal. The second and third terminals of any one but the last voltage balancer are electrically connected to the third and first terminal of the immediate next voltage balancer, respectively. The first terminal of the first voltage balancer is electrically connected to the positive terminal of the first sub-module. The second terminal of the last voltage balancer is electrically connected to the negative terminal of the last sub-module. The third terminal of the j-th voltage balancer is electrically connected to both the negative terminal of the j-th sub-module and the positive terminal of the (j+1)-th sub-module.
    • 光伏模块包括N个子模块,它们彼此电连接,使得除了最后一个子模块之外的任何一个子模块的负极端子电连接到紧邻的下一个子模块的正极端子和N-1个电压平衡器 具有第一端子,第二端子和第三端子。 任何一个但最后一个电压平衡器的第二和第三端子分别电连接到立即下一个电压平衡器的第三和第一端子。 第一电压平衡器的第一端子电连接到第一子模块的正极端子。 最后一个电压平衡器的第二个端子电连接到最后一个子模块的负极端子。 第j电压平衡器的第三端子与第j子模块的负端子和第(j + 1)子模块的正极端子电连接。