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    • 1. 发明申请
    • LITHIUM-CONTAINING TRANSITION METAL OXIDE TARGET
    • 含锂的过渡金属氧化物目标
    • WO2016146732A1
    • 2016-09-22
    • PCT/EP2016/055779
    • 2016-03-17
    • UMICORE
    • SHIN, Jong-Won
    • C23C14/34
    • C23C14/3414B22F3/04B23K1/002C01G51/42C01P2004/53H01J37/3491
    • A process for the formation of an LiM0 2 (e.g., LiCoO 2 ) sputtering target with a bi-modal grain size distribution (as in a hollow cylinder target body) that includes a CIP-based process involving, for example, forming or sourcing an LiMO 2 (e.g., LiCoO 2 ) powder; dispersion and milling (e.g., wet milling); binder introduction; drying (e.g., spray drying) to form a granulate; CIP processing of the granulate into a molded shape; and a heating cycle for debinding and sintering to form a densified sintered shape. The target body produced is suited for inclusion on a sputtering target assembly (as in a rotary sputtering target assembly with a plurality of cylindrical target bodies attached to a backing support). The invention is inclusive of the resultant target bodies formed under the CIP based process as well as an induction heater based process for attachment (e.g., metal solder bonding) of the low conductivity target body(ies) of LiMO 2 (e.g., LiCoO 2 ) to a common backing support through use of an added conductive wrap or layer provided to the target body and heated with the induction heater during the attachment process.
    • 用于形成具有双模式粒度分布的LiMO 2(例如,LiCoO 2)溅射靶的方法(如在中空圆柱体目标体中),其包括基于CIP的方法,所述方法涉及例如形成或来源LiMO 2( 例如LiCoO2)粉末; 分散和研磨(例如湿磨); 粘合剂介绍; 干燥(例如喷雾干燥)以形成颗粒; 将颗粒CIP加工成模制形状; 以及用于脱脂和烧结以形成致密烧结形状的加热循环。 所制造的靶体适于包含在溅射靶组件上(如在具有连接到背衬支撑件上的多个圆柱形目标体的旋转溅射靶组件中)。 本发明包括在基于CIP的工艺下形成的所得目标体以及用于将LiMO 2(例如,LiCoO 2)的低电导率目标体(例如,LiCoO 2))附着(例如,金属焊料粘合)的感应加热器的方法 通过使用附加的导电包裹或层提供到目标主体并且在附接过程期间与感应加热器一起加热的共同背衬支撑。
    • 9. 发明申请
    • RUTILE-BASED PIGMENT AND A METHOD FOR THE PRODUCTION THEREOF
    • 颜料ON金红石基地和生产方法
    • WO2006021354A3
    • 2007-04-12
    • PCT/EP2005008892
    • 2005-08-16
    • HEUBACH GMBHHEUBACH RAINER
    • HEUBACH RAINER
    • C09C3/04B02C17/20B02C17/22C09C1/00C09C1/34
    • C09C1/0084B02C17/16B02C17/20B02C17/22C01P2002/30C01P2002/52C01P2004/51C01P2004/53C01P2004/62C01P2004/80C01P2006/80C09C1/0096C09C1/34C09C1/36C09C1/3623C09C3/041
    • The invention relates to a fine-particle, bright and high-coating rutile-based pigment which is characterised in that it is devoid of any metal or reactive metal compounds relevant to mill abrasion detectable by application technology but whose grain-size in terms of particle diameters ranges from 50 to 1000 nm, for mono-, bi-, tri- or oligo-modal size distribution and a primary maximum ranges from 230 to 400 nm, wherein optionally for a bi- or poly-modal frequency distribution, a secondary maximum is less than 25 % of the primary maximum between 400 and 1000 nm. The method for producing said pigment consists in treating an organic mixed-phase rutile structured oxide pigment by high-speed grinding in suspension in a ball grinding mill provided with a mechanically and chemically resistant coating until said grain-size and a substentially isometric rounded particle shape are attained. According to the invention, means for viscosity adjustment and surface conditioning of the pigment are also provided. The inventive pigment differs from prior art by improved brightness, low whiteness or low lightness, relatively high hue saturation and by extremely high covering power which is not obtainable in said class of products up to now and exhibits a low photoactivity with respect to known fine-particle rutiles. In practice no abrasivity, neither interaction of possible grinding residues with an application matrix is observed.
    • 公开了一种细颗粒,明亮,且高遮盖颜料金红石基。 这是其特征在于,它示出了反应性金属或作为其结果铣刀的磨损的金属化合物的任何应用程序相关的内容,但用50和1000纳米和单 - ,二,三或230之间的Hauptma ximum的oligomodal频率分布和之间的粒径的粒径分布 包括400纳米,任选地具有400和1000之间的主要最大纳米以双峰或多峰的频率分布的发生低于25%的次级最大值。 用于制造这样的颜料的方法,其特征在于,直到上述的粒度分布给予和几乎等距圆形,与由高性能研磨金红石结构的无机混合相氧化物颜料在悬浮液进行处理以化学和机械抗拉内衬搅拌球磨机 已设置的粒子。 助剂以调整本发明的颜料的粘度和表面调节是在这种情况下任选地提供。 如上所述的颜料的特征在于,在由改进的光泽度,减少的白度或白化少,相对较高的色饱和度,以及现有技术的非常高的,以前没有在这个类遮盖力的使用,而在相对于所述细碎金红石根据现有技术的低光活性相同 出。 此外,还有在实践中无不良磨损并没有与应用矩阵中的任何咖啡渣滓的互动。