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    • 1. 发明专利
    • Manufacturing method of recycled glass
    • 回收玻璃的制造方法
    • JP2006076823A
    • 2006-03-23
    • JP2004261818
    • 2004-09-09
    • Masayoshi Kojima正良 児島
    • KOJIMA MASAYOSHI
    • C03B19/06
    • PROBLEM TO BE SOLVED: To provide a manufacturing method of a recycled glass dispensing with sorting and label releasing operation of glass products, and capable of easily manufacturing the recycled glasses of different feeling. SOLUTION: This manufacturing method 1 of the glass comprises a first crushing process S1 and a second crushing process S2 in which glass bottles are crushed into minute particles in two stages, a particle control process S3 in which the crushed glass powder is sifted to control particle diameter, a mixing process S4 in which an aluminum powder controlled to about the same particle diameter is mixed to the glass powder, a mold filling process S5 in which the mixed powder is filled in a refractory vessel for molding, a sintering process S6 in which the mixed powder filled in the refractory vessel is heated to be sintered in a furnace, and a releasing process S7 in which the recycled glass manufactured by sintering is released from the mold. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种再生玻璃的制备方法,其分配玻璃制品的分选和标签释放操作,并且能够容易地制造不同感觉的再循环玻璃。 解决方案:该玻璃的制造方法1包括第一破碎过程S1和第二破碎过程S2,其中将玻璃瓶分成两个阶段的微小颗粒,其中筛选破碎的玻璃粉末的颗粒控制过程S3 为了控制粒径,将其中控制大约相同粒径的铝粉末混合到玻璃粉末的混合过程S4,将混合粉末填充在用于模塑的耐火容器中的模具填充工艺S5,烧结过程 S6,其中填充在耐火容器中的混合粉末被加热以在炉中烧结,并且其中通过烧结制造的回收玻璃从模具中释放的脱模过程S7。 版权所有(C)2006,JPO&NCIPI
    • 2. 发明授权
    • Slide fastener with simple locking mechanism
    • 滑动紧固件具有简单的锁定机构
    • US09480311B2
    • 2016-11-01
    • US14006990
    • 2011-03-24
    • Go TakaniMasayoshi Kojima
    • Go TakaniMasayoshi Kojima
    • A44B19/24A44B19/30A44B19/06
    • A44B19/30A44B19/06A44B19/24A44B19/303Y10T24/2511
    • In a slide fastener, at least one stopping element including a resistance portion that increases sliding resistance by being brought into contact with an inner surface of a slider when the slider is sliding is locally disposed locally on an element row of a fastener stringer. Accordingly, the slider can be stopped at any position where the stopping element is disposed arbitrarily on the element row and an immobilized state of the slider can be maintained. By operating the slider with a force greater than the sliding resistance to the stopping element, the slider can be made to ride over the resistance portion of the stopping element and to slide along the element row.
    • 在拉链中,至少一个止动元件局部地局部地局部地设置在紧固件纵梁的元件列上,该止动元件局部地局部地设置有一个阻止部,该阻力部通过在滑动件滑动时与滑动件的内表面接触而增加滑动阻力。 因此,滑块可以停止在任何位置上,其中止动元件任意地设置在元件行上,并且可以保持滑块的固定状态。 通过以大于对止动元件的滑动阻力的力来操作滑块,可以使滑块越过止动元件的阻力部分并且沿着元件排滑动。
    • 9. 发明申请
    • Magnetic Composite Body, Production Method Thereof, Method for Removing Substance with Mannose on Its Surface, and Method for Concentrating Substance with Mannose on Its Surface
    • 磁性复合体及其制造方法,其表面用甘露糖去除物质的方法及其表面上用甘露糖浓缩物质的方法
    • US20080156736A1
    • 2008-07-03
    • US11883742
    • 2006-02-08
    • Hiroyuki HiraiMasayoshi Kojima
    • Hiroyuki HiraiMasayoshi Kojima
    • B03C1/02H01F1/42
    • B03C1/01B82Y25/00H01F1/0054
    • A magnetic composite body comprising magnetic nanoparticles having a number average particle diameter of 1 to 50 nm and having a compound represented by formula (I) fixed on their surfaces, and a method comprising bringing the magnetic composite body into contact with a test piece followed by magnetic separation: R1O—(CH(R2)CH2O)n-L-X   Formula (I) wherein R1 represents a hydrogen atom, an alkyl or alkenyl group having a carbon chain length of 1 to 20, or a substituted or unsubstituted, aryl or heterocyclic group; R2 represents a hydrogen atom or a methyl group; L may be present or not present, and, when L is present, L represents an alkylene or alkenylene group having a carbon chain length of 1 to 10 which may have a branched chain or a substituent; X represents a hydrogen atom, a carboxylic acid group, a phosphoric acid group, or a sulfonic acid group; and n represents an integer of 1 to 10
    • 一种磁性复合体,其包含数均粒径为1〜50nm的磁性纳米颗粒,并且具有固定在其表面上的式(I)表示的化合物,以及包括使磁性复合体与试验片接触的方法, 磁分离:<?in-line-formula description =“In-line Formulas”end =“lead”?> R O-(CH(R 2)2 CH 式(I)<?in-line-formula description =“In-line formula”end =“tail”?>其中R 1 表示氢原子,碳链长度为1-20的烷基或烯基,或取代或未取代的芳基或杂环基; R 2表示氢原子或甲基; L可以存在或不存在,并且当存在L时,L表示碳链长度为1至10的亚烷基或亚烯基,其可以具有支链或取代基; X表示氢原子,羧酸基,磷酸基或磺酸基; n表示1〜10的整数