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    • 1. 发明专利
    • Heating mechanism of molten glass sending part
    • 玻璃发光部分的加热机理
    • JP2010047462A
    • 2010-03-04
    • JP2009098645
    • 2009-04-15
    • Furuya Kinzoku:Kk株式会社フルヤ金属
    • SATO SHIGETOSHISHIMAMUNE TAKAYUKIAKATSUKA SHIGEHARU
    • C03B7/098C03B5/235
    • C03B7/098
    • PROBLEM TO BE SOLVED: To provide a heating mechanism of a molten glass sending part, wherein the heating condition can be controlled so that the sending part has a temperature at which necessary viscosity of molten glass is retained, and the outside of the sending part is made to be in an oxidizing atmosphere, whereby the service life of the sending part is prolonged and energy consumption by heating is saved. SOLUTION: Disclosed is the heating mechanism of the molten glass sending part 5 which heats the sending part 5 which connects an upstream-side container and a downstream-side container of a glass melting apparatus and flows molten glass, and keeps the molten glass at a predetermined temperature. All of the upstream-side container, the downstream-side container and the sending part 5 are formed of platinum or platinum alloy, the sending part 5 has the shape of a tube or trough, and electrodes 9a, 9b formed of the same material as the sending part are attached to the outer surface of the sending part except both ends in a state where the attached faces have two-dimensional or three-dimensional broadening. When the electrodes 9a, 9b are electrified, the sending part itself generates heat and acts as a heater. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供一种熔融玻璃送料部件的加热机构,其中可以控制加热条件,使得送出部件具有保持熔融玻璃所必需的粘度的温度,和 发送部件处于氧化气氛中,从而延长发送部件的使用寿命,节省加热能量消耗。 解决方案:公开了熔融玻璃送出部5的加热机构,该加热机构加热连接玻璃熔融装置的上游侧容器和下游侧容器的送出部5,并使熔融玻璃熔融 玻璃在预定温度。 上游侧容器,下游侧容器和送出部5均由铂或铂合金形成,发送部5具有管状或槽状,电极9a,9b由与上述相同材料形成的电极9a,9b 在附着面具有二维或三维变宽的状态下,发送部分附接到发送部分的外表面,除了两端。 当电极9a,9b通电时,发送部件本身产生热量并作为加热器。 版权所有(C)2010,JPO&INPIT
    • 2. 发明专利
    • Heating mechanism of molten glass sending part
    • 玻璃发光部分的加热机理
    • JP2010047445A
    • 2010-03-04
    • JP2008213262
    • 2008-08-21
    • Furuya Kinzoku:Kk株式会社フルヤ金属
    • SATO SHIGETOSHISHIMAMUNE TAKAYUKIAKATSUKA SHIGEHARU
    • C03B5/235
    • C03B7/098
    • PROBLEM TO BE SOLVED: To provide a heating mechanism of a molten glass sending part, wherein the heating condition can be controlled so that the sending part has a temperature at which necessary viscosity of molten glass is retained, and the outside of the sending part is made to be in an oxidizing atmosphere, whereby the service life of the sending part is prolonged and energy consumption by heating is saved.
      SOLUTION: Disclosed is the heating mechanism of the molten glass sending part which heats the sending part which connects an upstream-side container and a downstream-side container of a glass melting apparatus and flows molten glass, and keeps the molten glass at a predetermined temperature. All of the upstream-side container, the downstream-side container and the sending part are formed of platinum or platinum alloy, the sending part has the shape of a tube or trough, and electrodes formed of the same material as the sending part are attached to an outer surface of the sending part in a state where the attached faces have two-dimensional or three-dimensional broadening. When the electrodes are electrified, the sending part itself generates heat and serves as a heater.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供一种熔融玻璃送料部件的加热机构,其中可以控制加热条件,使得送出部件具有保持熔融玻璃所必需的粘度的温度,和 发送部件处于氧化气氛中,从而延长发送部件的使用寿命,节省加热能量消耗。 解决方案:公开了一种加热连接上游侧容器和玻璃熔融装置的下游侧容器的送出部的熔融玻璃送出部的加热机构,并使熔融玻璃流动,并将熔融玻璃保持在 预定温度。 所有上游侧容器,下游侧容器和送出部均由铂或铂合金形成,送出部具有管或槽的形状,并且由与发送部相同的材料形成的电极被附接 在所述附接面具有二维或三维变宽的状态下到达所述送出部的外表面。 当电极通电时,发送部件本身产生热量并用作加热器。 版权所有(C)2010,JPO&INPIT