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    • 5. 发明申请
    • RESIN-METAL COMPOSITE MATERIAL AND TIRE USING SAME
    • 树脂金属复合材料和轮胎使用相同
    • US20170021670A1
    • 2017-01-26
    • US15302321
    • 2015-04-10
    • BRIDGESTONE CORPORATION
    • Shinichi TOYOSAWA
    • B60C9/00D07B1/06C23G1/24
    • B60C9/005B60C1/00B60C1/0041B60C5/01B60C9/0007B60C2001/005B60C2009/0014C23G1/00C23G1/24D07B1/0666D07B2205/20D07B2205/3089D07B2801/18
    • Provided is a resin-metal composite material that ensures high adhesion between a resin material and a metal material. Additionally provided is a tire that achieves high durability by using the resin-metal composite material. The resin-metal composite material includes a metal material and a resin material that coats at least a part of the surface of the metal material. The resin material includes, as a main component, a thermoplastic resin having a polar group. The surface of the metal material is treated with a buffer solution having a pH of from 5 to 7.2, and an abundance ratio of copper to a total amount of copper and zinc (Cu/(Cu+Zn)×100) in the surface of the metal material is from 55 to 95% by mass. The tire includes a circular tire frame formed of a resin material and a reinforcing layer composed of a reinforcing member wound around an outer circumference of the tire frame, in which the reinforcing member includes the resin-metal composite material.
    • 提供一种确保树脂材料和金属材料之间高粘合性的树脂 - 金属复合材料。 另外提供了通过使用树脂 - 金属复合材料实现高耐久性的轮胎。 树脂 - 金属复合材料包括涂覆金属材料表面的至少一部分的金属材料和树脂材料。 作为主要成分,树脂材料含有具有极性基团的热塑性树脂。 金属材料的表面用pH为5〜7.2的缓冲溶液处理,铜与铜和锌的总量(Cu /(Cu + Zn)×100)的丰度比在 金属材料为55〜95质量%。 轮胎包括由树脂材料形成的圆形轮胎框架和由缠绕在轮胎框架的外周上的加强件构成的加强层,其中加强构件包括树脂 - 金属复合材料。
    • 9. 发明申请
    • PRODUCTION METHOD FOR R-FE-B BASED SINTERED MAGNET HAVING PLATING FILM ON SURFACE THEREOF
    • R-FE-B型烧结磁铁在其表面上具有镀膜的生产方法
    • US20130313125A1
    • 2013-11-28
    • US13984943
    • 2012-01-04
    • Masanao KamachiKoshi YoshimuraTakahiro Isozaki
    • Masanao KamachiKoshi YoshimuraTakahiro Isozaki
    • C25D7/00
    • C25D7/001C23C18/1844C23G1/085C23G1/24C25D3/12C25D5/34C25D17/16H01F1/0577H01F41/026
    • An object of the present invention is to provide a production method for an R—Fe—B based sintered magnet having a plating film excellent in adhesiveness on the surface thereof, by conducting a series of processes of acid cleaning and smut removal as pretreatments of a plating treatment of an R—Fe—B based sintered magnet, and the subsequent plating treatment, effectively without requiring troubles. The production method for an R—Fe—B based sintered magnet having a plating film on the surface thereof of the present invention, as a solution method therefor, is characterized in that a series of processes of acid cleaning and smut removal of a magnet as pretreatments of a plating treatment, and the subsequent plating treatment is conducted consistently with a state, in which the magnet is placed in a barrel made of synthetic resin, and that the smut removal is conducted by ultrasonic cleaning of the magnet with rotating the barrel in water in which the dissolved oxygen amount is set to 0.1 ppm to 6 ppm by degassing.
    • 本发明的目的是提供一种R-Fe-B系烧结磁体的制造方法,其具有通过进行一系列酸清洗和除杂处理的方法,其中具有优异的表面粘附性的镀膜 R-Fe-B系烧结磁体的电镀处理以及后续的电镀处理,而不需要麻烦。 本发明的表面具有镀膜的R-Fe-B系烧结磁体的制造方法作为其溶液方法的特征在于,将一系列酸洗和除去磁铁的方法作为 电镀处理的预处理和随后的电镀处理与将磁体放置在由合成树脂制成的圆筒中的状态一致地进行,并且通过使滚筒旋转来对磁体进行超声波清洗来进行黑线除去 通过脱气将溶解氧量设定为0.1ppm〜6ppm的水。