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公开(公告)号:WO2010139054A1
公开(公告)日:2010-12-09
申请号:PCT/CA2010/000816
申请日:2010-05-31
Applicant: INTEGRAN TECHNOLOGIES, INC. , FACCHINI, Diana , GONZALEZ, Francisco , MCCREA, Jonathan , UETZ, Mike , PALUMBO, Gino , TOMANTSCHGER, Klaus , NAGARAJAN, Nandakumar , VICTOR, Jared J. , ERB, Uwe
Inventor: FACCHINI, Diana , GONZALEZ, Francisco , MCCREA, Jonathan , UETZ, Mike , PALUMBO, Gino , TOMANTSCHGER, Klaus , NAGARAJAN, Nandakumar , VICTOR, Jared J. , ERB, Uwe
Abstract: Free standing articles or articles at least partially coated with substantially porosity free, fine-grained and/or amorphous Co-bearing metallic materials optionally containing solid particulates dispersed therein, are disclosed. The electrodeposited metallic layers and/or patches comprising Co provide, enhance or restore strength, wear and/or lubricity of substrates without reducing the fatigue performance compared to either uncoated or equivalent thickness Cr coated substrate. The fine-grained and/or amorphous metallic coatings comprising Co are particularly suited for articles exposed to thermal cycling, fatigue and other stresses and/or in applications requiring anti-microbial and hydrophobic properties.
Abstract translation: 公开了至少部分地涂覆有基本上无孔隙的细颗粒和/或无定形的含Co金属材料的任选地含有分散在其中的固体颗粒的独立制品或制品。 包含Co的电沉积金属层和/或贴剂提供,增强或恢复基材的强度,磨损和/或润滑性,而不降低与未涂覆或等效厚度的Cr涂覆的基材相比的疲劳性能。 包含Co的细晶粒和/或无定形金属涂层特别适用于暴露于热循环,疲劳和其他应力的物品和/或需要抗微生物和疏水性质的应用中。
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公开(公告)号:EP2438216A1
公开(公告)日:2012-04-11
申请号:EP10782857.6
申请日:2010-05-31
Applicant: Integran Technologies Inc.
Inventor: FACCHINI, Diana , GONZALEZ, Francisco , MCCREA, Jonathan , UETZ, Mike , PALUMBO, Gino , TOMANTSCHGER, Klaus , NAGARAJAN, Nandakumar , VICTOR, Jared J. , ERB, Uwe
Abstract: Free standing articles or articles at least partially coated with substantially porosity free, fine-grained and/or amorphous Co-bearing metallic materials optionally containing solid particulates dispersed therein, are disclosed. The electrodeposited metallic layers and/or patches comprising Co provide, enhance or restore strength, wear and/or lubricity of substrates without reducing the fatigue performance compared to either uncoated or equivalent thickness Cr coated substrate. The fine-grained and/or amorphous metallic coatings comprising Co are particularly suited for articles exposed to thermal cycling, fatigue and other stresses and/or in applications requiring anti-microbial and hydrophobic properties.
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