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    • 5. 发明申请
    • REINFORCING MEMBERS FOR PHOTOVOLTAIC MODULES
    • 加强光伏组件的成员
    • WO2013067085A3
    • 2014-01-23
    • PCT/US2012062909
    • 2012-11-01
    • CORNING INCWASSON KEVIN LEE
    • WASSON KEVIN LEE
    • H01L31/02H01L31/042H01L31/048
    • H01L31/02013H01L31/0488Y02E10/50
    • A thin film photovoltaic module that is connectable to a terminal includes a first glass sheet defining a sun facing surface and a second glass sheet defining a back facing surface opposite the front side surface. The second glass sheet includes a feed-though opening extending through the second glass sheet. A photovoltaic material is between the first glass sheet and the second glass sheet. An encapsulant material is between the first glass sheet and the second glass sheet that bonds the first glass sheet and the second glass sheet together and seals the photovoltaic material from moisture. A conductor is electrically connected to the photovoltaic material at one end. The conductor passes through the feed-though opening. A reinforcing member is disposed on the sun facing surface of the first glass sheet. The reinforcing member has a footprint hanging over at least a portion of the feed-through opening.
    • 可连接到端子的薄膜光伏模块包括限定面向阳光的表面的第一玻璃板和限定与前侧表面相对的背面的表面的第二玻璃板。 第二玻璃板包括延伸穿过第二玻璃板的进给孔。 光伏材料在第一玻璃板和第二玻璃板之间。 密封剂材料在第一玻璃板和第二玻璃板之间,将第一玻璃板和第二玻璃板粘合在一起,并将光伏材料从水分中密封。 导体在一端与光伏材料电连接。 导体通过馈通开口。 加强构件设置在第一玻璃板的朝向阳光的表面上。 加强构件具有悬挂在馈通开口的至少一部分上的覆盖物。
    • 6. 发明申请
    • REINFORCING MEMBERS FOR PHOTOVOLTAIC MODULES
    • 加强光伏组件的成员
    • WO2013067085A2
    • 2013-05-10
    • PCT/US2012/062909
    • 2012-11-01
    • CORNING INCORPORATEDWASSON, Kevin Lee
    • WASSON, Kevin Lee
    • H01L31/042
    • H01L31/02013H01L31/0488Y02E10/50
    • A thin film photovoltaic module that is connectable to a terminal includes a first glass sheet defining a sun facing surface and a second glass sheet defining a back facing surface opposite the front side surface. The second glass sheet includes a feed-though opening extending through the second glass sheet. A photovoltaic material is between the first glass sheet and the second glass sheet. An encapsulant material is between the first glass sheet and the second glass sheet that bonds the first glass sheet and the second glass sheet together and seals the photovoltaic material from moisture. A conductor is electrically connected to the photovoltaic material at one end. The conductor passes through the feed-though opening. A reinforcing member is disposed on the sun facing surface of the first glass sheet. The reinforcing member has a footprint hanging over at least a portion of the feed-through opening.
    • 可连接到端子的薄膜光伏模块包括限定面向阳光的表面的第一玻璃板和限定与前侧表面相对的背面的表面的第二玻璃板。 第二玻璃板包括延伸穿过第二玻璃板的进给孔。 光伏材料在第一玻璃板和第二玻璃板之间。 密封剂材料在第一玻璃板和第二玻璃板之间,将第一玻璃板和第二玻璃板粘合在一起,并将光伏材料从水分中密封。 导体在一端与光伏材料电连接。 导体通过馈通开口。 加强构件设置在第一玻璃板的朝向阳光的表面上。 加强构件具有悬挂在馈通开口的至少一部分上的覆盖物。
    • 7. 发明申请
    • INTEGRATED SHAFT-SELF COMPENSATING HYDROSTATIC BEARINGS
    • 集成轴自动补偿静水压轴承
    • WO1997008470A1
    • 1997-03-06
    • PCT/IB1996000818
    • 1996-08-16
    • AESOP INC.WASSON, Kevin, LeeSLOCUM, Alexander, Henry
    • AESOP INC.
    • F16C32/06
    • F16C32/0648F16C32/0659F16C32/0685
    • An integrated spindle shaft and the like and self-compensating hydrostatic bearing assembly, obviating the need for external bearing sleeve constructions, in which a cylindrical bearing bore is so provided having circumferential grooves connected to pressure supply (11, 12) and drain systems (14), and in which collection space pressure supply and fluid drain grooves are provided that cooperate with circumferential collector grooves (4a, 4b, 4c, 4d) and pockets (5c, 5d, 5a, 5b), such that when fluid flows axially from the pressure groove (11, 12) areas across the shaft into the collector grooves (4a, 4b, 4c, 4d), in proportion to the radial clearance between the shaft surface and the bore, in conjunction to the pocket opposite to the collector groove, to provide a restoring force in proportion to the radial displacement of the shaft.
    • 集成的主轴和类似物以及自补偿静液压轴承组件,从而避免了外部轴承套筒结构的需要,其中提供圆柱形轴承孔,其具有连接到压力供应(11,12)和排水系统(14)的周向槽 ),并且其中设置有与周向收集器槽(4a,4b,4c,4d)和凹穴(5c,5d,5a,5b)配合的收集空间压力供应和流体排放槽,使得当流体从 与所述轴表面和所述孔之间的径向间隙相对于与所述收集器槽相对的所述凹口,所述压力槽(11,12)将所述轴横跨所述轴进入所述收集器槽(4a,4b,4c,4d) 以提供与轴的径向位移成比例的恢复力。