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    • 6. 发明公开
    • SOLID METAL ALLOY
    • FESTE METALLLEGIERUNG
    • EP2781282A1
    • 2014-09-24
    • EP12849230.3
    • 2012-11-16
    • M Technique Co., Ltd.
    • MAEKAWA, MasakiHONDA, DaisukeENOMURA, MasakazuARAKI, Kazuya
    • B22F1/00B22F9/24C22C5/08C22C9/00
    • C22C19/03B22F1/0018B22F9/24B82Y30/00C22C5/02C22C5/06C22C5/08C22C9/00C22C12/00C22C13/00
    • The present invention addresses the problem of providing a novel, sold metal alloy. Provided is a metal alloy containing two or more types of metal, wherein an equilibrium diagram of the metal alloy shows the two or more types of metal in a finely mixed state at the nanolevel in a specific region where the two types of metal are unevenly distributed. This metal alloy has a substitutional solid solution of the two or more types of metal as the principal constituent thereof. This metal alloy is preferably one obtained by precipitation after mixing ions of two or more types of metal and a reducing agent in a thin-film fluid formed between processing surfaces, at least one of which rotates relative to the other, which are arranged so as to face one another and are capable of approaching and separating from one another.
    • 本发明解决了提供一种新型销售的金属合金的问题。 提供了含有两种以上金属的金属合金,其中金属合金的平衡图在两种类型的金属不均匀分布的特定区域中显示纳米级的微细混合状态的两种或更多种金属 。 该金属合金具有作为其主要成分的两种以上金属的取代固溶体。 该金属合金优选在将两种或更多种金属和还原剂的离子混合在形成于处理表面之间的薄膜流体中沉淀而获得的,其中至少一个相对于另一个旋转相对于另一个旋转, 相互面对,有能力相互分离。
    • 8. 发明公开
    • NOVEL QUINACRIDONE PIGMENT COMPOSITION, AND PROCESS FOR PRODUCTION OF QUINACRIDONE MICROPARTICLES
    • 用于生产喹吖啶酮微粒NEW喹吖啶酮组合物及方法
    • EP2592118A1
    • 2013-05-15
    • EP11795445.3
    • 2011-03-04
    • M Technique Co., Ltd.
    • MAEKAWA, MasakiHONDA, DaisukeENOMURA, Masakazu
    • C09B67/20C09B67/02C09B67/04C09B67/10G02B5/22
    • C09D7/41B29B9/10B82Y30/00C09B67/0014C09B67/0027C09B67/0096C09D11/322G02B5/22G03G9/092Y10S977/773Y10S977/788Y10S977/90Y10T428/2982
    • Disclosed are: a quinacridone pigment composition containing quinacridone microparticles which have durability and spectral characteristics equivalent to those required for a magenta color of a dye; and a method for producing the quinacridone microparticles. Specifically disclosed are: a quinacridone pigment composition containing at least one type of quinacridone microparticles, wherein the quinacridone microparticles are characterized in that the difference between the maximum transmittance (Tmax1) and the minimum transmittance (Tmin) (i.e., Tmax1 - Tmin) is 80% or more in a transmission spectrum at 350 nm to 800 nm and the difference between the maximum transmittance (Tmax2) and the minimum transmittance (Tmin) (i.e., Tmax2 - Tmin) is 30% or more in a transmission spectrum at 350 nm to 580 nm, or that the difference between the maximum transmittance (Tmax1) and the minimum transmittance (Tmin) (i.e., Tmax1 - Tmin) is 80% or more in a transmission spectrum at 350 nm to 800 nm and the wavelength (λmax) at which the transmittance in a transmission spectrum at 350 nm to 500 nm becomes maximum is less than 430 nm; and a method for producing the quinacridone microparticles.
    • 公开的是:包含喹吖啶酮的微粒哪些具有耐久性和光谱特性等同于用于染料的品红色色所需的喹吖啶酮颜料组合物; 及其制造喹吖啶酮的微粒的方法。 具体盘游离缺失有:喹吖啶酮颜料组合物含有至少一种类型的喹吖啶酮的微粒的,worin的喹吖啶酮的微粒的特征在于DASS最大透射率的时间(Tmax 1)和最小透射(T分钟)之间的差(即,最高温度1 - T的分钟)为80 %以上,在350〜800nm的透射光谱和最大透射率的时间(Tmax 2)和最小透射(T分钟)之间的差(即,最高温度2 - T的分钟)为30%或更多的透射光谱在350纳米至 580纳米,或做了最大的透射率的时间(Tmax 1)和最小透射(T分钟)(即,最高温度1 - T的分钟)之间的差为80%以上,在350〜800nm的透射光谱和波长(“最大) 在其中在在350nm处的透射光谱500的透射率为变为最大小于430纳米; 及其制造喹吖啶酮的微粒的方法。