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Diamond-Like Carbon Films - Preparation Techniques, Properties and Applications

机译:类金刚石碳膜-制备技术,性能及应用

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Diamond-like carbon (DLC) films have several excellent properties like high hardness, high wear resistance, low friction coefficients or optical transparency in the infrared (IR) spectral range. The DLC coating material consists of amorphous carbon with (a-C:H) or without hydrogen (a-C, ta-C). By adding other elements like metals, silicon, oxygen, fluorine or others (a-C:H:X), several modifications of the properties are possible. First reports on hard amorphous carbon films were published in the 1950s and about 20 years later began worldwide intensive research activities on DLC. In the following years the number of publications increased continuously and the importance for industrial applications became more and more clear. Several application techniques were applied to prepare DLC coatings. An essential obstacle for a broad industrial application was the high compressive stress level causing delamination and limiting the film thicknesses. With metal based intermediate layer systems the most adhesion problems could be solved satisfyingly and thus from mid of 1990s the pre-conditions for a broad application especially in the automotive industry were given.
机译:类金刚石碳(DLC)膜具有多种优异的性能,例如高硬度,高耐磨性,低摩擦系数或红外(IR)光谱范围内的光学透明性。 DLC涂层材料由具有(a-C:H)或不具有氢(a-C,ta-C)的无定形碳组成。通过添加其他元素,例如金属,硅,氧,氟或其他元素(a-C:H:X),可以对性能进行多种修改。 1950年代首次发表了关于硬质无定形碳膜的报道,大约20年后,全球开始了有关DLC的深入研究活动。在随后的几年中,出版物的数量不断增加,并且在工业应用中的重要性越来越明显。应用了几种涂覆技术来制备DLC涂层。对于广泛的工业应用而言,一个主要的障碍是高的压应力水平,该应力水平导致分层并限制了膜的厚度。使用金属基中间层系统可以最大程度地解决粘合问题,因此,从1990年代中期开始,提出了广泛应用的前提条件,尤其是在汽车工业中。

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