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    • 3. 发明授权
    • Deflecting yoke for electromagnetic deflection type cathode-ray tubes
and method for manufacturing it
    • 用于电磁偏转型阴极射线管的偏转轭及其制造方法
    • US4620933A
    • 1986-11-04
    • US763517
    • 1985-08-08
    • Kumi OchiaiHiromichi HorieItsuo ArimaMikio Morita
    • Kumi OchiaiHiromichi HorieItsuo ArimaMikio Morita
    • H01J9/236H01F1/26H01J29/76
    • H01F1/26
    • Disclosed are deflecting yoke for electromagnetic deflection type cathode-ray tubes which comprises a compressively molded products consisting substantially of an iron powder or an iron-based alloy magnetic powder; an electrically insulating powdery resin; an organic metallic coupling agent; and an electrically insulating powdery inorganic compound;and a method for manufacturing it which comprises the steps of: mixing an iron powder or an iron-based alloy magnetic powder, an electrically insulating powdery resin and an organometallic coupling agent with one other; then mixing an electrically insulating powdery inorganic compound therewith; and compressively molding the prepared mixture.The deflecting yoke of the present invention has more excellent properties, as compared with conventional ferrite cores and dust cores. Moreover, the deflecting yoke of the present invention can restrain the temperature rise more satisfactorily than the conventional deflecting yoke. Further, the deflecting yoke of the present invention can be manufactured with extreme ease and is suitable for mass production.
    • 公开了用于电磁偏转型阴极射线管的偏转磁轭,其包括基本上由铁粉或铁基合金磁粉组成的压缩成型产品; 电绝缘粉末树脂; 有机金属偶联剂; 和电绝缘粉末状无机化合物; 及其制造方法,包括以下步骤:将铁粉或铁基合金磁粉,电绝缘粉末树脂和有机金属偶联剂彼此混合; 然后将电绝缘粉末状无机化合物混合; 并压制成型制备的混合物。 本发明的偏转磁轭与传统的铁氧体磁芯和磁心相比具有更优异的性能。 此外,本发明的偏转磁轭可以比传统的偏转磁轭更令人满意地抑制温升。 此外,本发明的偏转轭可以非常容易地制造,并且适合于批量生产。
    • 8. 发明授权
    • Getter material and evaporable getter device using the same, and electron tube
    • 吸气材料和蒸发吸气装置使用相同的电子管
    • US07927167B2
    • 2011-04-19
    • US12839230
    • 2010-07-19
    • Hiromichi HorieYoshiyuki FukudaHiromasa KatoNobuaki NakashimaYasuhisa Makino
    • Hiromichi HorieYoshiyuki FukudaHiromasa KatoNobuaki NakashimaYasuhisa Makino
    • H01J9/39H01J9/38
    • H01J29/94B01J20/3035B01J2220/42B22F1/0003B22F3/02H01J7/183H01J7/186
    • The present invention provides a getter material configured by a pressed powder mixture comprising Ba—Al alloy powder and Ni powder, wherein when the pressed powder mixture is heated in a vacuum atmosphere or an inert gas atmosphere, a temperature at which an exothermic reaction starts is ranging from 750° C. to 900° C. According to this getter material, since the temperature at which the pressed powder mixture starts the exothermic reaction is set within a range from 750° C. to 900° C., there can be provided a getter material and an evaporation type getter device capable of suitably controlling an evaporation amount of getter components under a stable condition, and is excellent in responsiveness because a time ranging from a starting time of heating the getter material to a starting time of evaporation of the getter components can be shortened. In addition, the metal container to be filled with the getter material is free from deformation and melting, and a heat-evaporation process time of the getter material can be shortened, so that there can be provided the evaporation type getter device excellent in responsiveness because a time required for the electron tube to attain to a predetermined vacuum degree can be also shortened.
    • 本发明提供一种由包含Ba-Al合金粉末和Ni粉末的压制粉末混合物构成的吸气剂材料,其中当在真空气氛或惰性气体气氛中加压压粉混合物时,发生放热反应的温度为 根据该吸气剂材料,由于压粉混合物开始放热反应的温度设定在750℃至900℃的范围内,因此可以提供 吸气剂材料和蒸发型吸气装置,其能够在稳定的条件下适当地控制吸气剂组分的蒸发量,并且响应性优异,因为从吸气剂材料的加热开始时间到蒸发的起始时间 吸气剂组分可以缩短。 此外,要填充吸气剂材料的金属容器没有变形和熔化,并且可以缩短吸气剂材料的热蒸发处理时间,从而可以提供响应性优异的蒸发型吸气装置,因为 电子管达到预定真空度所需的时间也可以缩短。