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    • 4. 发明授权
    • Electric grill pan device with a separate power connection
    • 电烤盘装置具有单独的电源连接
    • US09211029B2
    • 2015-12-15
    • US13726587
    • 2012-12-25
    • Yu-Yuan Lin
    • Yu-Yuan Lin
    • F27B14/00F27D11/00A47J27/00A47J37/06
    • A47J27/004A47J37/0676
    • An electric grill pan device includes a heating pan detachably mounted above a base. A socket is mounted in the base and includes a seat and an upper cover. A compartment is defined between the upper cover and the seat. The upper cover includes a plurality of insertion holes aligned with terminals on the seat. The upper cover further includes a notch aligned with an abutment peg on the heating pan. A shield is pivotably mounted in the compartment and includes a guiding portion aligned with the abutment peg. The shield is biased to a position covering the insertion holes. When the heating pan is mounted to the base, the abutment peg presses against the guiding portion and pivots the shield to another position not covering the insertion holes, and conductive ends of a heating element on the heating pan is in electrical contact with the terminals.
    • 电烤盘装置包括可拆卸地安装在基座上方的加热盘。 插座安装在基座中,并包括座和上盖。 在上盖和座椅之间限定一个隔间。 上盖包括与座椅上的端子对准的多个插入孔。 上盖还包括与加热盘上的抵接栓对准的凹口。 屏蔽件可枢转地安装在隔室中,并且包括与抵接栓对准的引导部分。 屏蔽被偏压到覆盖插入孔的位置。 当加热盘安装到基座上时,抵接钉压靠引导部分并将屏蔽件枢转到不覆盖插入孔的另一位置,加热盘上的加热元件的导电端与端子电接触。
    • 5. 发明授权
    • Heating device with temperature sensor
    • 带温度传感器的加热装置
    • US08993935B2
    • 2015-03-31
    • US13208715
    • 2011-08-12
    • Andreas Schlipf
    • Andreas Schlipf
    • H05B3/00H05B11/00F27B14/00H05B3/58H05B3/44H05B3/50B29B11/06B29C45/00B29C45/17B29C45/27
    • B29C45/1782B29C45/2737B29C2045/274
    • A heating device (100, 200), which can be arranged at an object (101, 201) to be heated, especially an injection molding die, has an inner jacket surface (111, 211) and an outer jacket surface (112, 212), with a heating element (105, 205) and with a thermocouple (103, 203). The thermocouple (102, 203) has at least one positioning section, in which the cross section of the thermocouple (103, 203) deviates in at least one direction of the cross-sectional area from the cross section of at least one section of the thermocouple (103, 203) located adjacent to this positioning section. The heating device (100, 200) has at least one device for locking this positioning section against displacement in and/or opposite to the direction in which the thermocouple (103, 203) extends.
    • 可以布置在待加热物体(101,201)上的加热装置(100,200),特别是注塑模具中,具有内护套表面(111,211)和外护套表面(112,212) ),具有加热元件(105,205)和热电偶(103,203)。 热电偶(102,203)具有至少一个定位部分,其中热电偶(103,203)的横截面沿横截面积的至少一个方向偏离至少一个部分的横截面 位于该定位部分附近的热电偶(103,203)。 加热装置(100,200)具有至少一个装置,用于锁定该定位部分以防止在热电偶(103,203)延伸的方向和/或与热电偶(103,203)延伸的方向相反的位移。
    • 8. 发明授权
    • Apparatus for purifying metallurgical silicon for solar cells
    • 用于净化太阳能电池冶金硅的设备
    • US08461487B2
    • 2013-06-11
    • US13023467
    • 2011-02-08
    • Masahiro HoshinoCheng C. Kao
    • Masahiro HoshinoCheng C. Kao
    • H05H1/44C30B28/04C01B33/02C01B33/037F27B14/00F27B14/04
    • C01B33/037C30B11/002C30B11/003C30B29/06F27B14/06F27B14/14H05B7/18
    • A system for forming high quality silicon material, e.g., polysilicon. In a specific embodiment, the melted material comprises a silicon material and an impurity, e.g., phosphorous species. The system includes a crucible having an interior region. In a specific embodiment, the crucible is made of a suitable material such as a quartz material or others. The quartz material is capable of withstanding a temperature of at least 1400 Degrees Celsius for processing silicon. In a specific embodiment, the crucible is configured in an upright position and has an open region to expose a melted material. In a specific embodiment, the present system has an energy source. Such energy source may be an arc heater or other suitable heating device, including multiple heating devices, which may be the same or different. The arc heater is configured above the open region and spaced by a gap between the exposed melted material and a muzzle region of the arc heater to cause formation of a determined temperature profile within a vicinity of a center region of the exposed melted material while maintaining outer regions of the melted material at a temperature below a melting point of the quartz material of the crucible. In a specific embodiment, the system produces a melted material comprising a resulting phosphorous species of 0.1 ppm and less, which is purified silicon.
    • 一种用于形成高质量硅材料的系统,例如多晶硅。 在具体实施方案中,熔融材料包括硅材料和杂质,例如磷类。 该系统包括具有内部区域的坩埚。 在具体实施例中,坩埚由合适的材料例如石英材料制成。 石英材料能够耐受至少1400摄氏度的温度来处理硅。 在具体实施例中,坩埚被构造成直立位置并且具有敞开的区域以暴露熔融的材料。 在具体实施例中,本系统具有能量源。 这种能量源可以是电弧加热器或其它合适的加热装置,包括可以相同或不同的多个加热装置。 电弧加热器构造在开放区域之上并且间隔开暴露的熔融材料和电弧加热器的枪口区域之间的间隙,以在暴露的熔融材料的中心区域附近形成确定的温度分布,同时保持外部 在低于坩埚的石英材料的熔点的温度下熔化的材料的区域。 在一个具体的实施方案中,系统产生熔融材料,其包含0.1ppm及更少的所得磷种,其为纯化的硅。
    • 9. 发明申请
    • FURNACE SYSTEM WITH CASE INTEGRATED COOLING SYSTEM
    • 具有集成冷却系统的炉体系统
    • US20130026155A1
    • 2013-01-31
    • US13192701
    • 2011-07-28
    • Timothy R. DohertyDerek J. Butland
    • Timothy R. DohertyDerek J. Butland
    • F27B14/00
    • H01L21/67109F27B9/24F27B9/243F27B2009/3607F27D11/12F27D2009/0008H01L21/67225H01L21/6776
    • An infrared firing furnace includes a case-integrated cooling system to provide high performance cooling as the first step in the cooling process. The cooling system includes a cooling manifold integrated into, and made from, the same case material as the adjacent firing zone. As the cooling system is made from the same material as the rest of the case, it can handle being exposed to higher temperatures. The cooling system is positioned such that the plane of its outlet is at a specific clearance level relative to the product passing underneath. High pressure cooling jets of air are directed downward toward the products as they pass under the cooling manifold in order to quickly bring the temperature of the products down from the much higher firing temperature, and minimize the dwell time of the product at the higher temperature.
    • 红外线烧成炉包括壳体一体式冷却系统,作为冷却过程的第一步,提供高性能冷却。 冷却系统包括集成在与相邻的燃烧区域相同的壳体材料中并由其制成的冷却歧管。 由于冷却系统由与壳体的其余部分相同的材料制成,所以它可以处理暴露于更高的温度。 冷却系统的定位使得其出口的平面相对于通过下方的产品处于特定的间隙水平。 空气的高压冷却喷嘴在它们通过冷却歧管下方时向下朝向产品,以便快速使产品的温度从更高的烧制温度降低,并使产品在较高温度下的停留时间最小化。
    • 10. 发明申请
    • WIND POWERED ELECTRIC FURNACE
    • 风力发电电炉
    • US20120248087A1
    • 2012-10-04
    • US13078784
    • 2011-04-01
    • James Hagan
    • James Hagan
    • H05B1/00F27B14/00
    • F24H3/0411F04D25/08F24D13/02F24D2200/15F24H3/022F24H9/0073F24H2240/00F24H2250/02Y02B30/26
    • The present invention relates to methods and devices for generating heat for building structures or otherwise through wind power. In one exemplary embodiment, the present invention provides a wind powered electric furnace. The wind powered electric furnace includes a turbine disposed within a cavity of a first housing. The first housing defines a plurality of intake airflow paths having a narrowing profile in the direction of the cavity. The turbine is connected to a shaft. The wind powered electric furnace further includes a generator drivably connected to the shaft. The generator is adapted to generate electricity during rotation of the shaft. The wind powered electric furnace further includes an electric heater electrically connected to the generator, wherein upon rotation of the shaft electricity generated by the generator is transmitted to the electric heater.
    • 本发明涉及用于生成用于建筑结构或以其他方式通过风力发电的热量的方法和装置。 在一个示例性实施例中,本发明提供一种风力电炉。 风力电炉包括设置在第一壳体的空腔内的涡轮机。 第一壳体限定在空腔的方向上具有变窄轮廓的多个进气气流路径。 涡轮机连接到轴。 风力电炉还包括可驱动地连接到轴的发电机。 发电机适于在轴的旋转期间发电。 风力电炉还包括电连接到发电机的电加热器,其中当轴的旋转时,由发电机产生的电力传递到电加热器。