会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Low CO water heater
    • 低CO热水器
    • US07360506B2
    • 2008-04-22
    • US11352637
    • 2006-02-13
    • Timothy J. ShellenbergerThomas A. Edds
    • Timothy J. ShellenbergerThomas A. Edds
    • F22B9/18
    • F23G7/07F24H1/205
    • A water heater including a water container, a combustion chamber adjacent the water heater, a burner associated with the combustion chamber and arranged to combust fuel to heat water in the water container, a flue having an upper portion and a lower portion operatively connected to the combustion chamber and extending through at least a portion of the water container, and a catalytic converter located in the upper portion of the flue. The water heater may also reduce NOx and CO emissions generated by a water heater having a radiant burner including activating the burner in response to the temperature of water in the water heater as needed, and substantially removing accumulated foreign matter on the burner by periodically activating the burner irrespective of the water temperature for a selected amount of time.
    • 一种热水器,包括水容器,与热水器相邻的燃烧室,与燃烧室相关联的燃烧器,燃烧燃料以加热水容器中的水;烟道,其具有上部和下部, 燃烧室并延伸穿过水容器的至少一部分,以及位于烟道上部的催化转化器。 热水器还可以减少由具有辐射燃烧器的热水器产生的NO x和CO,包括响应于需要在热水器中的水的温度启动燃烧器,并且基本上除去积聚的外来物质 通过周期性地启动燃烧器而不管水温如何选择的时间量在燃烧器上。
    • 6. 发明授权
    • Electric water heater with improved heating element
    • 电热水器具有改进的加热元件
    • US6137955A
    • 2000-10-24
    • US90513
    • 1998-06-04
    • Anthony KrellTimothy J. Shellenberger
    • Anthony KrellTimothy J. Shellenberger
    • F24H1/20F24H1/10F24H9/18F24H9/20
    • F24H9/2021
    • A water heater heating element including a base member adapted to extend through and sealingly engage a wall of a water heater tank, the base member having a recess; a thermistor positioned in the recess; members connected to the thermistor and extending outwardly of the base member to transmit temperature information; a sheathing sealed to and extending outwardly from the base member; a heating coil positioned within the sheathing; cold pins connected to opposed ends of the heating coil and to the base member, the cold pins being sufficiently long that heat generated by the heating coil is not detected by the thermistor; and members connected to the cold pins and extending outwardly of the base member to transmit power to the heating coil.
    • 一种热水器加热元件,其包括适于延伸通过并密封地接合热水器箱的壁的基座构件,所述基座构件具有凹部; 定位在凹槽中的热敏电阻; 连接到热敏电阻并延伸到基座构件外部以传送温度信息的构件; 密封并从基部构件向外延伸的护套; 定位在护套内的加热线圈; 冷引脚连接到加热线圈的相对端和基座部件,冷引脚足够长,使得加热线圈产生的热量不被热敏电阻检测到; 以及连接到冷销并且从基座构件向外延伸以将动力传递到加热线圈的构件。
    • 8. 发明授权
    • Dual drainage slope recuperative heat exchanger assembly for fuel-fired
condensing furnaces
    • 用于燃油冷凝炉的双排水斜坡换热器组件
    • US5347980A
    • 1994-09-20
    • US190917
    • 1994-02-03
    • Timothy J. Shellenberger
    • Timothy J. Shellenberger
    • F24H3/08F24H8/00F28D7/00F28F9/013F24H3/02
    • F28D7/00F24H3/087F24H8/00F28F9/013Y02B30/102Y10S165/913
    • A fuel-fired forced air condensing furnace has installed therein a recuperative heat exchanger assembly with a primary heat exchange section operative, during furnace operation, to transfer sensible combustion gas heat to air being flowed through the furnace, and a secondary heat exchange section operative to transfer latent combustion gas heat to the air. The secondary heat exchange section includes a finned tube heat exchanger structure extending between spaced apart combustion gas inlet and outlet collector boxes. The finned tube heat exchanger structure is canted in two perpendicular directions relative to the collector boxes in a manner such that combustion gas condensate formed in the secondary heat exchange section during furnace operation will drain into the outlet collector box, and outwardly through a condensate outlet fitting therein, with the heat exchanger in either a vertical air flow orientation or a horizontal air flow orientation in which the assembly has been rotated ninety degrees relative to its vertical air flow orientation about a horizontal axis parallel to the separation direction of the inlet and outlet collector boxes.
    • 燃料式强制空气冷凝炉在其中安装有换热换热器组件,其具有在炉操作期间操作的主要热交换部分,以将明显的燃烧气体热量传递到流过炉的空气;以及二次热交换部分,其操作为 将潜在燃烧气体的热量转移到空气中。 二次热交换部分包括在间隔开的燃烧气体入口和出口收集器盒之间延伸的翅片管式热交换器结构。 翅片管式热交换器结构相对于收集箱以两个垂直的方向倾斜,使得在炉操作期间在二次热交换部分中形成的燃烧气体冷凝物将排入出口收集箱,并且通过冷凝物出口配件 其中热交换器处于垂直空气流动方向或水平空气流动方向,其中组件相对于其垂直空气流动方向旋转90度,围绕平行于入口和出口收集器的分离方向的水平轴线 盒子
    • 9. 发明授权
    • Vent overpressurization detection system for a fuel-fired, induced draft
furnace
    • 用于燃油,引风机的排气过压检测系统
    • US4951651A
    • 1990-08-28
    • US413989
    • 1989-09-28
    • Timothy J. Shellenberger
    • Timothy J. Shellenberger
    • F23N5/04F23N5/18F23N5/24F24H9/20
    • F23N5/245F24H9/205F23N2025/10F23N2033/02F23N5/04F23N5/18
    • In an inducted draft, fuel-fired furnace a flow restriction in the external exhaust flue is detected, and the furnace burners responsively deactivated, by a thermal sensing switch mounted in a spaced relationship with a small flow opening formed in a sensor housing externally secured to the inducer fan outlet section over a wall opening therein. During normal burner combustion product discharge flow through the exhaust flue, a small vane within the inducer fan outlet section creates a venturi therein which draws ambient air within the furnace housing across the temperature sensing switch and into the fan outlet section through the sensor housing opening. The temperature of this ambient air is below the switch set point so that continued burner operation is permitted. However, if the exhaust flue becomes restricted or blocked the resulting pressure increase within the inducer fan outlet section overcomes the venturi effect therein and forces hot burner combustion products outwardly through the sensor housing and across the temperature sensing switch. When the temperature of the switch reaches its set point, the switch operates to deactivate the furnace burners.
    • 在引入的通风中,燃烧炉中检测到外部排气烟道中的流量限制,并且通过与传感器壳体中形成的小流量开口安装的热感测开关来响应地停用炉膛燃烧器,外部固定到 诱导器风扇出口部分在其中的壁开口上。 在正常的燃烧器燃烧产物排放流经排气烟道的过程中,诱导器风扇出口部分内的小叶片在其中形成文丘里管,其中将炉壳内的环境空气穿过温度感测开关并通过传感器壳体开口进入风扇出口部分。 这种环境空气的温度低于开关设定点,以便允许持续的燃烧器操作。 然而,如果排气烟道受到限制或阻塞,则在诱导器风扇出口部分内产生的压力增加克服了其中的文丘里效应,并迫使热燃烧器燃烧产物向外通过传感器外壳并且跨越温度感测开关。 当开关的温度达到设定值时,开关操作使炉膛燃烧器失效。