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    • 62. 发明授权
    • Articles from microarc processes and methods of manufacturing same
    • 微型工艺和制造方法的文章
    • US09458546B2
    • 2016-10-04
    • US13981064
    • 2011-07-06
    • David Amit
    • David Amit
    • C25D5/00C25D7/04C25D11/02C25D11/04C25D11/26C25D11/30
    • C25D11/026C25D5/00C25D7/04C25D11/022C25D11/04C25D11/26C25D11/30
    • Disclosed articles as results of a microarc oxidation process, or plurality thereof, which are not limited by size, specifically by certain dimensions of their size, such as their length. Different sections or surfaces of articles of the invention may be subjected to a microarc oxidation process at any given time, such as by gradually subjecting a surface of an article to a microarc oxidation process, or such as by sequentially subjecting different sections of an articles to a microarc oxidation process. Furthermore, disclosed are methods for manufacturing of articles of the invention, or otherwise for subjecting articles of the invention to a microarc oxidation process, or plurality thereof. In some examples, tubes of above 6 meter in length may be coated according to methods of the invention. The coating of said tubes may be beneficial for desalination applications. In other examples, only grooves of pulleys are coated. Further disclosed are articles which underwent a microarc oxidation process, or plurality thereof, which included different solution, optionally by utilizing a solution modulator.
    • 公开的物品是微孔氧化工艺的结果,或其多个,其不受尺寸限制,特别是其尺寸的某些尺寸,例如其长度。 本发明的制品的不同部分或表面可以在任何给定的时间进行微弧氧化工艺,例如通过将制品的表面逐渐地经受微弧氧化过程,或者通过将制品的不同部分依次 微弧氧化工艺。 此外,公开了本发明的制品的制造方法,或以其他方式使本发明的制品进行微弧氧化工艺或其多个方法。 在一些实例中,可以根据本发明的方法涂覆6米长的管。 所述管的涂层可能有利于脱盐应用。 在其他示例中,仅涂覆滑轮的槽。 进一步公开的是经受微弧氧化过程的物品,或其多个,其包括不同的溶液,任选地通过利用溶液调节剂。
    • 64. 发明申请
    • PEO COATING ON MG SCREWS
    • PEO涂层在MG螺丝上
    • US20160144080A1
    • 2016-05-26
    • US15010583
    • 2016-01-29
    • AAP IMPLANTATE AG
    • Elvira DINGELDEINCyrille GASQUERESAmir ELIEZERMarco WOLFSTADTERLydia HEIMANN
    • A61L31/08C25D11/02A61L31/02C25D11/30
    • A61L31/086A61L31/022A61L31/148A61L2400/18A61L2420/02C25D11/024C25D11/026C25D11/30
    • The present invention relates generally to a bio-degradable implant based on magnesium having a reduced corrosion rate and to a method for the production of such an implant. It is a a method for treating a surface of a bio-degradable metallic implant comprising the following steps: providing a dispersed system comprising a colloid-dispersed apatite and adding an apatite powder to the dispersed system, subjecting an implant to the dispersed system such that a surface of the implant which is to be treated is immersed in the dispersed system wherein the implant comprises a magnesium based alloy, applying an AC voltage difference between the implant as a first electrode and a second electrode positioned in the dispersed system for generating a plasma electrolytic oxidation on the immersed surface of the implant so that the immersed surface is converted to an oxide film which is at least partially covered by apatites formed by the colloid-dispersed apatite and the apatite powder. The evolution of corrosion induced hydrogen gas evolution is decreased and osseointegration is improved.
    • 本发明一般涉及具有降低的腐蚀速率的基于镁的生物可降解植入物和用于生产这种植入物的方法。 它是用于处理生物可降解金属植入物的表面的方法,包括以下步骤:提供包含胶体分散的磷灰石并将磷灰石粉末加入到分散体系中的分散体系,使植入物经受分散体系,使得 将待处理的植入物的表面浸入分散体系中,其中植入物包括镁基合金,在作为第一电极的植入物和位于分散系统中的第二电极之间施加AC电压差以产生等离子体电解质 在植入物的浸渍表面上氧化,使得浸入的表面转化为至少部分被由胶体分散的磷灰石和磷灰石粉末形成的磷灰石覆盖的氧化膜。 腐蚀诱导氢气演化的演化减少,骨整体提高。