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    • 2. 发明申请
    • Method of using an alloy type thermal fuse, and alloy type thermal fuse
    • 使用合金型热熔丝的方法和合金型热熔丝
    • US20050220661A1
    • 2005-10-06
    • US11085392
    • 2005-03-21
    • Yoshiaki TanakaNaotaka IkawaMiki IwamotoToshiaki Saruwatari
    • Yoshiaki TanakaNaotaka IkawaMiki IwamotoToshiaki Saruwatari
    • C22C12/00C22C13/02C22C28/00H01H37/76
    • H01H37/76
    • An In—Sn alloy of 85 to 52% In provides advantages that dispersion of an operating temperature can be sufficiently eliminated, and that a high yield can be ensured by adequate ductility, but has a defect which is fatal to a DC fuse, or in which troubles due to long-term DC application such as long-term DC application breakage occurs. In view of this fact, when an alloy type thermal fuse in which an In—Sn alloy is used as a fuse element is used under DC application, stability under long-term DC application that is a condition severer than that under AC application is imposed on the alloy type thermal fuse, whereby the fuse can be rationally used. An AC electronic/electrical appliance is protected against overheating by an AC-only alloy type thermal fuse in which a fuse element is made of an In—Sn alloy, and which has a predetermined operating temperature, and a DC electronic/electrical appliance is protected against overheating of a same temperature by a DC alloy type thermal fuse in which the alloy composition of a fuse element is different from that of the AC-only alloy type thermal fuse.
    • 85〜52%In的In-Sn合金可以充分消除工作温度的分散,通过充分的延展性可以确保高产率,但是具有对直流熔断器致命的缺陷,或 由于长期直流应用破坏等长期直流应用引起的故障。 鉴于这一事实,当在直流应用下使用其中使用In-Sn合金的合金型热熔丝时,施加比在AC施加下更严格的条件下的长期DC施加下的稳定性 在合金型热熔丝上,可以合理使用保险丝。 AC电子电器通过仅由合金型的热熔丝保护而不被过热,其中熔丝元件由In-Sn合金制成,并具有预定的工作温度,并且DC电子电器被保护 通过熔丝元件的合金组成不同于仅合金型热熔丝的合金组成的DC合金型热熔丝来防止相同温度的过热。