首页> 外国专利> DIFFERENT, MECHANICAL HIGH-CHALLENGE AND REIGERATION ARRANGEMENTS FOR TITAN OR ITS LEGISLATIONS, AND PROCEDURES FOR THEIR MANUFACTURE

DIFFERENT, MECHANICAL HIGH-CHALLENGE AND REIGERATION ARRANGEMENTS FOR TITAN OR ITS LEGISLATIONS, AND PROCEDURES FOR THEIR MANUFACTURE

机译:钛或其立法的不同的,机械的,具有挑战性的和重新安排的安排及其制造程序

摘要

The invention relates to a wear-resistant, highly stressed and low-friction boundary coating construction for titanium or the alloys thereof which can be advantageously used in order to protect human implants. According to the inventive boundary coating construction the boundary coating is comprised of a 200 to 400 nm thick DLC coating (4), a 5 to 50 nm thick intermediate coating (3) and a 0.3 to 2.0 mm thick gas alloyed coating (2), said gas alloyed coating having a hardness between 600 HV0.1 and 1,400 HV0.1. The inventive boundary coating construction is produced by firstly melting the surface of the member which is to be protected. The surface is then gas alloyed and cleaned in an N2/Ar atmosphere. Subsequently, the intermediate coating is first deposited followed by a depositing of the hard amorphous carbon coating by means of the laser-induced, pulsed vacuum arc (laser-arc) method.
机译:本发明涉及一种用于钛或其合金的耐磨,高应力和低摩擦的边界涂层构造,其可以有利地用于保护人体植入物。根据本发明的边界涂层构造,边界涂层包括200至400nm厚的DLC涂层(4),5至50nm厚的中间涂层(3)和0.3至2.0mm厚的气体合金涂层(2),所述气体合金涂层的硬度在600HV0.1和1400HV0.1之间。本发明的边界涂层构造是通过首先熔化要保护的构件的表面而产生的。然后在N2 / Ar气氛中对表面进行气体合金化和清洁。随后,首先沉积中间涂层,然后通过激光诱导的脉冲真空电弧(激光电弧)法沉积硬质无定形碳涂层。

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