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    • 5. 发明申请
    • Pulse Filter Cleaner for Portable Cyclonic Dust Collector/Vacuum Cleaner
    • 脉冲过滤器,用于便携式旋风除尘器/吸尘器
    • US20140223690A1
    • 2014-08-14
    • US13765276
    • 2013-02-12
    • Robert A. WitterJeffrey HillJohn J. Fitzsimmons
    • Robert A. WitterJeffrey HillJohn J. Fitzsimmons
    • A47L9/16
    • A47L9/1666A47L9/20B01D46/0068B01D46/0093B04C2009/002
    • A cyclonic portable vacuum cleaner/dust collector has a cyclonic chamber and a filter chamber. The filter chamber contains a filter cartridge with a hollow core positioned over the discharge opening of a motor plate that closes the filter chamber. A vacuum blower is mounted on the motor plate, with an intake tube at the discharge opening of the motor plate. An annular pulse-cleaning plate is positioned over an associated annular opening that surrounds the motor plate discharge opening and has an open center that slides up and down on the intake tube of the vacuum blower. A bail handle or lever extends from the pulse-cleaning plate to a handle portion outside the cover or shroud. The handle is pushed down to lift the pulsing plate to provide a reverse pressure air pulse to the filter to blast off accumulated dust. An anti-deflagration screen may be present at the center of the motor plate.
    • 旋风便携式吸尘器/集尘器具有旋风室和过滤室。 过滤室包含具有中空芯的过滤器滤芯,该中空芯位于关闭过滤室的马达板的排放口上方。 真空鼓风机安装在马达板上,进气管位于马达板的排放口。 环形脉冲清洁板位于围绕电动机板排出口的相关联的环形开口上方,并且具有在真空鼓风机的进气管上上下滑动的打开中心。 保释手柄或杠杆从脉冲清洁板延伸到盖或护罩外部的手柄部分。 手柄被推下以抬起脉冲板,以向过滤器提供反向压力空气脉冲以吹出积聚的灰尘。 在电动机板的中心可能存在防爆燃烧屏。
    • 7. 发明申请
    • FLARE STACK ADAPTED TO HEAT INCOMING FUEL
    • 适用于加热燃料的燃烧堆
    • US20110030561A1
    • 2011-02-10
    • US12907736
    • 2010-10-19
    • E. Todd WigginsD. Jeffrey Hill
    • E. Todd WigginsD. Jeffrey Hill
    • F23G7/08F23D14/66B01D53/14
    • F23N1/002F23G7/085F23J2213/203F23N2025/19F23N2025/21Y02E20/12
    • A flare stack that preferably comprises a burner assembly, an exhaust stack, an housing, and a fuel line. The burner assembly burns a fuel to generate thermal energy and combustion byproducts. The exhaust stack is cooperatively associated with the burner assembly to direct the thermal energy and combustion byproducts away from the burner assembly. The housing at least partially defines a fluid-receiving chamber in thermal communication with the exhaust stack. The fluid-receiving chamber has a heat-transfer fluid disposed therein. The fuel line is in fluid communication with the burner assembly to deliver fuel to the burner assembly. At least a portion of the fuel line is in thermal communication with at least one of the exhaust stack, housing, or heat-transfer fluid to permit fuel in the fuel line to absorb thermal energy before reaching the burner assembly. In one embodiment, the burner assembly includes a pressure-variable burner to increase the rate of fuel consumption of the burner in relation to the pressure in the fuel line. In the preferred embodiment, the housing has an inlet and an outlet formed therethrough in fluid communication with the fluid-receiving chamber. The inlet permits heat-transfer fluid to flow into the fluid-receiving chamber to absorb thermal energy from the exhaust stack, and the outlet permits heat-transfer fluid to flow out of the fluid-receiving chamber.
    • 优选地包括燃烧器组件,排气叠层,壳体和燃料管线的火炬烟囱。 燃烧器组件燃烧燃料以产生热能和燃烧副产物。 废气堆叠与燃烧器组件协作地关联以将热能和燃烧副产物远离燃烧器组件。 壳体至少部分地限定与废气堆叠热连通的流体接收室。 流体接收室具有设置在其中的传热流体。 燃料管线与燃烧器组件流体连通以将燃料输送到燃烧器组件。 燃料管线的至少一部分与排气叠层,壳体或传热流体中的至少一个热连通,以允许燃料管线中的燃料在到达燃烧器组件之前吸收热能。 在一个实施例中,燃烧器组件包括压力可变燃烧器,以相对于燃料管线中的压力增加燃烧器的燃料消耗率。 在优选实施例中,壳体具有与流体接收室流体连通的通过其形成的入口和出口。 入口允许热传递流体流入流体接收室以吸收来自排气叠层的热能,并且出口允许热传递流体流出流体接收室。
    • 9. 发明申请
    • Flare Stack Adapted to Heat Incoming Fuel
    • 火焰堆叠适应热量传入燃料
    • US20090029303A1
    • 2009-01-29
    • US11828006
    • 2007-07-25
    • E. Todd WigginsD. Jeffrey Hill
    • E. Todd WigginsD. Jeffrey Hill
    • F23D14/00
    • F23N1/002F23G7/085F23J2213/203F23N2025/19F23N2025/21Y02E20/12
    • A flare stack that preferably comprises a burner assembly, an exhaust stack, an housing, and a fuel line. The burner assembly burns a fuel to generate thermal energy and combustion byproducts. The exhaust stack is cooperatively associated with the burner assembly to direct the thermal energy and combustion byproducts away from the burner assembly. The housing at least partially defines a fluid-receiving chamber in thermal communication with the exhaust stack. The fluid-receiving chamber has a heat-transfer fluid disposed therein. The fuel line is in fluid communication with the burner assembly to deliver fuel to the burner assembly. At least a portion of the fuel line is in thermal communication with at least one of the exhaust stack, housing, or heat-transfer fluid to permit fuel in the fuel line to absorb thermal energy before reaching the burner assembly. In one embodiment, the burner assembly includes a pressure-variable burner to increase the rate of fuel consumption of the burner in relation to the pressure in the fuel line. In the preferred embodiment, the housing has an inlet and an outlet formed therethrough in fluid communication with the fluid-receiving chamber. The inlet permits heat-transfer fluid to flow into the fluid-receiving chamber to absorb thermal energy from the exhaust stack, and the outlet permits heat-transfer fluid to flow out of the fluid-receiving chamber.
    • 优选地包括燃烧器组件,排气叠层,壳体和燃料管线的火炬烟囱。 燃烧器组件燃烧燃料以产生热能和燃烧副产物。 废气堆叠与燃烧器组件协作地关联以将热能和燃烧副产物远离燃烧器组件。 壳体至少部分地限定与废气堆叠热连通的流体接收室。 流体接收室具有设置在其中的传热流体。 燃料管线与燃烧器组件流体连通以将燃料输送到燃烧器组件。 燃料管线的至少一部分与排气叠层,壳体或传热流体中的至少一个热连通,以允许燃料管线中的燃料在到达燃烧器组件之前吸收热能。 在一个实施例中,燃烧器组件包括压力可变燃烧器,以相对于燃料管线中的压力增加燃烧器的燃料消耗率。 在优选实施例中,壳体具有与流体接收室流体连通的通过其形成的入口和出口。 入口允许热传递流体流入流体接收室以吸收来自排气叠层的热能,并且出口允许热传递流体流出流体接收室。