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    • 2. 发明申请
    • FLUIDIZED BED HEAT TREATING SYSTEM
    • 流化床热处理系统
    • WO2010147943A1
    • 2010-12-23
    • PCT/US2010/038611
    • 2010-06-15
    • BABCOCK & WILCOX TECHNICAL SERVICES Y-12, LLCRIPLEY, Edward, B.PFENNIGWERTH, Glenn, L.
    • RIPLEY, Edward, B.PFENNIGWERTH, Glenn, L.
    • C21D1/09F27D11/00
    • C21D1/09F27B15/14F27D11/12F27D2099/0028
    • Systems for heat treating materials are presented. The systems typically involve a fluidized bed that contains granulated heat treating material. In some embodiments a fluid, such as an inert gas, is flowed through the granulated heat treating medium, which homogenizes the temperature of the heat treating medium. In some embodiments the fluid may be heated in a heating vessel and flowed into the process chamber where the fluid is then flowed through the granulated heat treating medium. In some embodiments the heat treating material may be liquid or granulated heat treating material and the heat treating material may be circulated through a heating vessel into a process chamber where the heat treating material contacts the material to be heat treated. Microwave energy may be used to provide the source of heat for heat treating systems.
    • 介绍了热处理材料系统。 该系统通常包括含有颗粒状热处理材料的流化床。 在一些实施方案中,诸如惰性气体的流体流过颗粒状热处理介质,其使热处理介质的温度均匀化。 在一些实施例中,流体可以在加热容器中加热并流入处理室,其中流体然后流过颗粒状热处理介质。 在一些实施方案中,热处理材料可以是液体或颗粒状热处理材料,并且热处理材料可以通过加热容器循环到处理室中,其中热处理材料与待热处理的材料接触。 微波能量可用于为热处理系统提供热源。
    • 4. 发明申请
    • THERMOCOUPLE SHIELD
    • 热电偶屏蔽
    • WO2008115904A1
    • 2008-09-25
    • PCT/US2008/057302
    • 2008-03-18
    • BABCOCK & WILCOX TECHNICAL SERVICES Y-12, LLCRIPLEY, Edward, B.
    • RIPLEY, Edward, B.
    • G01K1/08
    • G01K1/08G01K1/12
    • A thermocouple shield for use in radio frequency fields. In some embodiments the shield includes an electrically conductive tube that houses a standard thermocouple having a thermocouple junction. The electrically conductive tube protects the thermocouple from damage by an RF (including microwave) field and mitigates erroneous temperature readings due to the microwave or RF field. The thermocouple may be surrounded by a ceramic sheath to further protect the thermocouple. The ceramic sheath is generally formed from a material that is transparent to the wavelength of the microwave or RF energy. The microwave transparency property precludes heating of the ceramic sheath due to microwave coupling, which could affect the accuracy of temperature measurements. The ceramic sheath material is typically an electrically insulating material. The electrically insulative properties of the ceramic sheath help avert electrical arcing, which could damage the thermocouple junction. The electrically conductive tube is generally disposed around the thermocouple junction and disposed around at least a portion of the ceramic sheath. The concepts of the thermocouple shield may be incorporated into an integrated shielded thermocouple assembly.
    • 用于射频场的热电偶屏蔽。 在一些实施例中,屏蔽件包括容纳具有热电偶结的标准热电偶的导电管。 导电管保护热电偶免受RF(包括微波)场的损害,并减轻由微波或RF场导致的错误温度读数。 热电偶可以被陶瓷护套包围,以进一步保护热电偶。 陶瓷护套通常由对微波或RF能量的波长透明的材料形成。 微波透明性妨碍了微波耦合对陶瓷护套的加热,这可能影响温度测量的精度。 陶瓷护套材料通常是电绝缘材料。 陶瓷护套的电绝缘性能有助于防止电弧,这可能会损坏热电偶接头。 导电管通常围绕热电偶接头设置并且设置在陶瓷护套的至少一部分周围。 热电偶屏蔽的概念可以并入集成的屏蔽热电偶组件中。