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    • 5. 发明授权
    • Method of manufacturing a finely granular concentrate of fire-retarding
foam-forming solid addition substances for plastics, varnishes, coating
compositions, and similar substrates
    • 制造用于塑料,清漆,涂料组合物和类似基材的阻燃泡沫形成固体添加物的细颗粒浓缩物的方法
    • US4123587A
    • 1978-10-31
    • US764847
    • 1977-02-02
    • Ludwig WeschLuis C. RomaCarlos F. Pellicer
    • Ludwig WeschLuis C. RomaCarlos F. Pellicer
    • C08J3/22C09D5/18C08K9/06B32B31/00
    • C09D5/185C08J3/226Y10S260/24Y10T428/2998
    • A method is provided for producing a fine granular concentrate of fire-retarding, foam-forming solids for addition to host material including plastics, paints, coating compositions and the like by mixing particles of solid fire-retarding additives of particle size less than about 5.mu.m with a polymeric material wherein the particles are surrounded and coated by said polymeric material, said polymeric material being compatible with or the same as the host material to which the coated particles are subsequently added to confer fire-retarding and foam-forming properties thereto. The steps include drying said polymeric-particle mixture, comminuting said polymeric-particle mixture to a granular product of less than about 50.mu.m, and repeating the coating procedure at least one more time on said granular product by mixing said granular product with polymeric material, followed by drying and comminuting said granular-polymeric mixture to provide a granular concentrate having a size of less than about 50.mu.m with an outer layer of said polymeric material, said polymeric material in at least the outer layer of granular concentrate being characterized by being capable of splitting off nitrogen and/or water under pyrolitic conditions.
    • 提供了一种用于通过混合颗粒尺寸小于约5的固体阻燃添加剂的颗粒来生产用于添加到主体材料(包括塑料,涂料,涂料组合物等)的阻燃,泡沫形成固体的细粒状浓缩物的方法 其中颗粒被所述聚合物材料包围和涂覆,所述聚合物材料与主体材料相容或相同,随后加入涂覆的颗粒以赋予其阻燃和泡沫形成性质 。 所述步骤包括干燥所述聚合物 - 颗粒混合物,将所述聚合物 - 颗粒混合物粉碎成小于约50μm的颗粒产物,并且通过将所述颗粒状产物与聚合物材料混合,在所述颗粒产物上重复涂覆程序至少一次 然后干燥和粉碎所述颗粒状聚合物混合物以提供具有小于约50μm的尺寸的颗粒状浓缩物与所述聚合物材料的外层,所述至少外层颗粒状浓缩物中的所述聚合物材料的特征在于 能够在热解条件下分解氮和/或水。
    • 10. 发明授权
    • Detection process and apparatus
    • 检测过程和装置
    • US4496833A
    • 1985-01-29
    • US428255
    • 1965-01-26
    • Ludwig Wesch
    • Ludwig Wesch
    • G01S3/784H01J31/49H01J40/14G01J1/00H01J40/00
    • H01J31/49G01S3/784
    • 1. Apparatus for locating a target which radiates or reflects electromagnetic energy comprising a circular-scan cathode-ray tube including a screen and an electron beam moving over said screen, regions of said screen fluorescing when impinged upon by said electron beam to generate light energy, a plurality of semi-conductor elements disposed on said screen, each of said semi-conductor elements includng a layer of photoconductive material adjacent said screen and a layer of photo-dielectric material on said layer of photoconductive material and adapted to receive electromagnetic energy from said target, said photoconductive material having a low resistance only when receiving light energy, said photo-dielectric material changing electrical capacitance when receiving electromagnetic energy, means for conductively connecting together said layers of photoconductive material to provide a first terminal, an electromagnetic radiation permeable conductor disposed on all other said layers of photo-dielectric material and including a second terminal, and an oscillator means including a tuned circuit connected to said first and second terminals, said oscillator means transmitting a target indicating signal when the layer of photo-dielectric material of one of said semi-conductor elements receives electromagnetic energy simultaneously with the receipt of light energy by its associated layer of photoconductive material.
    • 1.一种用于定位辐射或反射电磁能的装置,包括包括屏幕和在所述屏幕上移动的电子束的圆形扫描阴极射线管,所述屏幕的区域在被所述电子束撞击时发出荧光,以产生光能 设置在所述屏幕上的多个半导体元件,每个所述半导体元件包括与所述屏幕相邻的光电导材料层和所述光电导材料层上的光电介质材料层,并且适于从 所述靶,所述光电导材料仅在接收光能时具有低电阻,所述光电介质材料在接收电磁能时改变电容,用于将所述光导电材料层导电连接在一起以提供第一端子的装置,电磁辐射可渗透导体 布置在所有其他所述ph层上 并且包括第二端子,以及包括连接到所述第一和第二端子的调谐电路的振荡器装置,所述振荡器装置在所述半导体元件之一的光电介质材料层发送目标指示信号 通过其相关的光电导材料层与光能的接收同时接收电磁能。