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    • 3. 发明授权
    • Thermal print head
    • 热敏打印头
    • US4989017A
    • 1991-01-29
    • US161368
    • 1988-02-22
    • Goro OdaNiro NagataYoshitsugu NakatomiTakashi Sawafuji
    • Goro OdaNiro NagataYoshitsugu NakatomiTakashi Sawafuji
    • B41J2/335B41J2/32
    • B41J2/32Y10S65/11
    • A thermal print head having a base, a glass glaze layer formed on the base by electrically-heated welding, and heating elements formed on the glass glaze layer. A manufacturing method of a thermal print head uses a furnace to accommodate molten glass and a pair of opposed electrodes disposed within the furnace to melt the glass by flowing the current. The method comprises the steps of supplying electric power across the electrodes to cause electric current to flow through glass so as to melt glass, passing an elongated base through the molten glass accommodated in the furnace to form a glass glaze layer on the base, and forming heating elements on the glass glaze layer. Furthermore, an apparatus for forming a glass glaze layer on an elongated base, comprises a furnace having a space to accommodate molten glass therein and a pair of opposed electrodes disposed within the furnace with their opposed faces inclined such that the distance between them is smallest at their upper ends, and the distance increases towards their lower ends. Electric power is supplied across the electrodes. An opening provided at the bottom of the furnace allows the base to be inserted therethrough. A lifting mechanism withdraws the base inserted in the opening after it has passed through the molten glass. A cooling mechanism is provided for cooling the molten glass at the bottom of the furnace.
    • 4. 发明授权
    • Apparatus for manufacturing thermal print head
    • 热打印头制造装置
    • US4944786A
    • 1990-07-31
    • US220064
    • 1988-07-15
    • Goro OdaNiro NagataYoshitsugu NakatomiTakashi SawafujiYoshihisa ShinozakiEizo Goto
    • Goro OdaNiro NagataYoshitsugu NakatomiTakashi SawafujiYoshihisa ShinozakiEizo Goto
    • B41J2/335B41J2/32
    • B41J2/32Y10S65/11
    • A thermal print head having a base, a glass glaze layer formed on the base by electrically-heated welding, and heating elements formed on the glass glaze layer. A manufacturing method of a thermal print head uses a furnace to accommodate molten glass and a pair of opposed electrodes disposed within the furnace to melt the glass by flowing the current. The method comprises the steps of supplying electric power across the electrodes to cause electric current to flow through glass so as to melt glass, passing an elongated base through the molten glass accommodated in the furnace to form a glass glaze layer on the base, and forming heating elements on the glass glaze layer. Furthermore, an apparatus for forming a glass glaze layer on an elongated base, comprises a furnace having a space to accommodate molten glass therein and a pair of opposed electrodes disposed within the furnace with their opposed faces inclined such that the distance between them is smallest at their upper ends, and the distance increases towards their lower ends. Electric power is supplied across the electrodes. An opening provided at the bottom of the furnace allows the base to be inserted therethrough. A lifting mechanism withdraws the base inserted in the opening after it has passed through the molten glass. A cooling mechanism is provided for cooling the molten glass at the bottom of the furnace.
    • 具有底座的热打印头,通过电加热焊接在基座上形成的玻璃釉层,以及形成在玻璃釉层上的加热元件。 热打印头的制造方法使用炉子来容纳熔融玻璃和设置在炉内的一对相对的电极,以通过流动电流来熔化玻璃。 该方法包括以下步骤:跨电极提供电力以使电流流过玻璃以熔化玻璃,使细长的基底通过容纳在炉中的熔融玻璃,以在基底上形成玻璃釉层,并形成 加热元件在玻璃釉层上。 此外,在细长基部上形成玻璃釉层的装置包括:具有容纳熔融玻璃的空间的炉子和设置在炉内的一对相对的电极,其相对的面倾斜,使得它们之间的距离最小 它们的上端,并且距离向着它们的下端增加。 在电极两端供电。 设置在炉底部的开口允许基座插入其中。 提升机构在通过熔融玻璃后插入开口中的基座。 提供冷却机构,用于冷却炉底部的熔融玻璃。