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    • 2. 发明申请
    • METHOD AND DEVICE FOR FIXING AND SUPPORTING A PHOTOVOLTAIC MODULE
    • 用于固定和支持光伏模块的方法和装置
    • WO2010058011A3
    • 2010-12-02
    • PCT/EP2009065664
    • 2009-11-23
    • OERLIKON SOLAR IP AG TRUEBBACHSINICCO IVAN
    • SINICCO IVAN
    • H01L31/042
    • F24J2/5254H02S20/00Y02E10/47Y02E10/50
    • The inventions relates to a method for fixing and supporting a photovoltaic module (1) on a surface by means of a connecting device, the connecting device comprising two connecting parts, one connecting part being attached to the backside of the photovoltaic module (1) and the other connecting part being attached to the surface, wherein one connecting part comprises a supporting point (6), the supporting point (6) comprises a structural member (9) exhibiting a receptacle (10), the other connecting part comprises a pivot (11), the receptacle (10) matches against the pivot (11), the structural member (9) comprises a fixation means to fixate the pivot (11) in the receptacle (10), for fixation of the photovoltaic module (1) on the surface the structural member (9) is plugged onto the pivot (11), and the pivot (11) is fixated in the receptacle (10) by said fixation means when the structural member (9) is plugged onto the pivot (11), thereby forming a joint of the photovoltaic module (1) to the surface.
    • 本发明涉及一种通过连接装置固定和支撑光伏模块(1)的方法,所述连接装置包括两个连接部分,一个连接部分附接到光伏模块(1)的背面,一个连接部分 所述另一个连接部分附接到所述表面,其中一个连接部分包括支撑点(6),所述支撑点(6)包括展现出容器(10)的结构构件(9),所述另一连接部分包括枢轴 接收器(10)与枢轴(11)相配合,结构件(9)包括用于将枢轴(11)固定在容器(10)中的固定装置,用于将光伏组件(1)固定在 结构构件(9)的表面被塞到枢轴(11)上,并且当结构构件(9)被塞到枢轴(11)上时,枢轴(11)通过所述固定装置固定在容器(10)中, ,由此形成光伏模块(1)的接头 表面。
    • 3. 发明申请
    • CONNECTING DEVICE FOR A VACUUM UNIT
    • 连接装置的真空系统
    • WO2010081246A8
    • 2010-10-14
    • PCT/CH2010000010
    • 2010-01-14
    • OERLIKON SOLAR IP AG TRUEBBACHWAGNER PHILIPPMONAUNI GIAN-RETO PETER
    • WAGNER PHILIPPMONAUNI GIAN-RETO PETER
    • F16L27/02F04D29/60F16L27/10F16L51/00
    • F16L27/026F04D19/04F04D29/601F16L27/1012F16L27/1017F16L51/00
    • A pipe socket (18) surrounded by a flange (11) receives an end portion of a pipe piece (16). In an annular gap situated between them, a main sealing ring (12) of plastic, preferably Teflon, is arranged and an auxiliary seal having, for example, a radial shaft sealing ring (13) is placed against the end of the pipe socket (18). Outside of operating times when the pipe socket (18) and the pipe piece (16) have approximately the same ambient temperature, the pipe piece (16) is movable, i.e. displaceable and inclinable, to a limited degree with respect to the pipe socket (18), while the sealing function is performed above all by the auxiliary seal. In operation, the pipe piece (16) assumes a higher operating temperature and expands with the result that the main sealing ring (12) is pressed against the inside of the pipe socket (18) and takes over the sealing function such that the radial shaft sealing ring (13) is protected from corrosive gases. The pipe piece (16) is also then displaceable with respect to the pipe socket (18).
    • 由一个凸缘(11)A包围管座(18)接收一个管件(16)的端部。 在相同的环形间隙之间位于由塑料制成的主密封环(12)的区域中,优选特氟纶被布置朝向所述管座(18)的辅助密封件与例如的端部 径向轴密封环(13)。 操作期间,当所述管座(18)和所述管状件(16)具有大致相同的环境温度,所述管件(16)管头相反的(18)的外侧是可移动的限制,即 的滑动和倾斜,而密封功能主要是由该辅助密封进行。 在操作中,管段(16)假定一个较高的操作温度和膨胀,从而使主密封环(12)抵靠管座(18)的内侧被按压并且执行密封功能,从而使径向轴密封环(13)抵抗腐蚀性气体保护。 所述管件(16)也相对于所述管座(18)移动。