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    • 1. 发明申请
    • PLASMA ELECTRODE
    • 等离子电极
    • US20100021655A1
    • 2010-01-28
    • US12441852
    • 2007-09-21
    • Robert P. Haley, JR.Mark J. Semer
    • Robert P. Haley, JR.Mark J. Semer
    • H01J37/32C23C16/513
    • H01J37/32825H01J37/32009H01J37/32348H01J37/32605H01J37/32724
    • An improved electrode (44) useful for modifying a substrate using corona or plasma treatment or coating a substrate using plasma enhanced chemical vapor deposition under atmospheric or near atmospheric pressure conditions, the electrode comprising a body (10) defining at least a first cavity therein, the body having at least one inlet passageway (12) therein in gaseous communication with the first cavity (11) so that a gas mixture can be flowed into the first cavity by way of the at least one inlet passageway (12), the electrode having at least one outlet passageway (43) therein in gaseous communication with the first cavity so that a gas that is flowed into the first cavity can flow out of the cavity by way of the at least one outlet passageway. The improvement of the instant invention requires that the at least one outlet passageway be a slot (43) and that the body (10) include at least a first removable portion thereof, one edge of the first removable portion (30, 31) defining one side of the at least one outlet passageway (43).
    • 一种用于使用电晕或等离子体处理或使用等离子体增强化学气相沉积在大气压或接近大气压条件下涂覆基板的改进的电极(44),所述电极包括在其中限定至少第一腔的主体(10) 所述主体具有与所述第一空腔(11)气态连通的至少一个入口通道(12),使得气体混合物可以通过所述至少一个入口通道(12)流入所述第一空腔,所述电极具有 至少一个出口通道(43)与第一空腔气态连通,使得流入第一空腔的气体可以通过至少一个出口通道流出空腔。 本发明的改进要求,至少一个出口通道是槽(43),并且主体(10)至少包括第一可移除部分,第一可移除部分(30,31)的一个边缘限定一个 至少一个出口通道(43)的一侧。
    • 6. 发明申请
    • METHOD FOR CONTROLLING AND OPTIMIZING MICROWAVE HEATING OF PLASTIC SHEET
    • 控制和优化塑料片微波加热的方法
    • US20100282741A1
    • 2010-11-11
    • US12743601
    • 2008-11-17
    • Ronald Van DaeleRay A. LewisRobert P. Haley, JR.
    • Ronald Van DaeleRay A. LewisRobert P. Haley, JR.
    • H05B6/64
    • B29B13/08B29B13/023B29C35/0266B29C35/0288B29C35/0805B29C2035/0855H05B6/80
    • A method for processing a thermoplastic material (46), the method including: passing a thermoplastic material through a microwave heating apparatus (40) a a selected feed rate; wherein the microwave heating apparatus comprises: a microwave emitter for supplying microwave energy to a resonant cavity (43); the resonant cavity comprising at least one inlet and at least one outlet, the inlets and outlets collectively forming a passageway (49) for passing the thermoplastic material through the resonant cavity; and a movable piston (48) configured to adjust a length of the resonant cavity; exposing the thermoplastic material to microwaves in the resonant cavity, wherein the exposing causes an increase in temperature of at least a portion of the thermoplastic material; measuring an e-field generated by the microwave emitter; and adjusting a position of the movable piston in response to the measured e-field; and, processing the thermoplastic material.
    • 一种处理热塑性材料(46)的方法,所述方法包括:使热塑性材料通过微波加热装置(40)以选定的进料速率; 其中所述微波加热装置包括:用于向谐振腔(43)提供微波能量的微波发射器; 所述谐振腔包括至少一个入口和至少一个出口,所述入口和出口共同形成用于使所述热塑性材料通过所述谐振腔的通道(49) 和可移动活塞(48),其构造成调节所述谐振腔的长度; 将所述热塑性材料暴露于所述谐振腔中的微波,其中所述暴露导致所述热塑性材料的至少一部分的温度升高; 测量由微波发生器产生的电场; 以及响应于所测量的电场来调节所述可移动活塞的位置; 并加工热塑性材料。