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公开(公告)号:US09802388B2
公开(公告)日:2017-10-31
申请号:US14466937
申请日:2014-08-22
Applicant: SHENZHEN BYD AUTO R&D COMPANY LIMITED , BYD COMPANY LIMITED
Inventor: Jian Sun , Yanqin Wu , Qiang Guo , Liang Chen
IPC: B32B15/088 , B32B15/08 , B29C45/14 , C25D11/08 , C25D11/16 , C25D11/24 , B32B15/085 , B32B27/28 , B29K705/02
CPC classification number: B32B15/088 , B29C45/14311 , B29C45/14778 , B29K2705/02 , B32B15/08 , B32B15/085 , B32B27/286 , B32B2270/00 , B32B2509/00 , B32B2605/08 , C25D11/08 , C25D11/16 , C25D11/24 , C25D11/246 , Y10T428/249956
Abstract: A method of preparing an aluminum alloy resin composite comprises: providing an aluminum alloy substrate having an oxide layer on a surface thereof, wherein the oxide layer has one or more nanopores; forming one or more corrosion pores on an outer surface of the oxide layer by using a corrosion agent, wherein the corrosion agent is at least one selected from a group of ammonia, ammonium salt, hydrazine, hydrazine derivative, and water-soluble amine compound; and injection molding a resin composition to the surface of the aluminum alloy substrate.
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公开(公告)号:US09809895B2
公开(公告)日:2017-11-07
申请号:US14466906
申请日:2014-08-22
Applicant: BYD COMPANY LIMITED , SHENZHEN BYD AUTO R&D COMPANY LIMITED
Inventor: Jian Sun , Yanqin Wu , Qiang Guo , Liang Chen
IPC: C25D11/08 , B29C45/14 , B32B15/08 , B32B15/20 , B32B27/28 , B32B27/32 , B32B27/36 , C25D11/16 , C25D11/24 , B29K69/00 , B29K71/00 , B29K77/00 , B29K81/00 , B29K105/00 , B29K705/02 , B29L9/00
CPC classification number: C25D11/08 , B29C45/14311 , B29C2045/14868 , B29K2023/06 , B29K2069/00 , B29K2071/12 , B29K2077/00 , B29K2081/04 , B29K2105/0085 , B29K2105/0088 , B29K2705/02 , B29L2009/003 , B29L2009/005 , B32B15/08 , B32B15/20 , B32B27/286 , B32B27/32 , B32B27/365 , B32B2270/00 , B32B2311/24 , B32B2509/00 , B32B2605/08 , C25D11/16 , C25D11/24
Abstract: A method of preparing aluminum alloy-resin composite and an aluminum alloy-resin composite obtained by the same are provided. of the method comprises: S1: anodizing a surface of an aluminum alloy substrate to form an oxide layer on the surface, the oxide layer including nanopores; S2: immersing the resulting aluminum alloy substrate obtained in step S1 in a buffer solution having a pH of about 10 to about 13, to form a corrosion pores on an outer surface of the oxide layer; and S3: injection molding a resin onto the surface of the resulting aluminum alloy substrate obtained in step S2 in a mold to obtain the aluminum alloy-resin composite.
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