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Influence of dovetail microstructures on adhesive tensile strength and morphology of thermally sprayed metal coatings

机译:燕尾微观结构对热喷涂金属涂料粘合力拉伸强度及形态的影响

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An approach for a reduction of weight and fuel consumption of passenger cars consists in a replacement of grey cast iron by alum inium alloys as base material of combustion engine blocks. Regarding the insufficient chemical resistance of these alloys to the fuels with its additives, material compounds with thermally sprayed coatings are used as cylinder linings. For machining and in service a high connection strength between the substrate and the coating is demanded. This can be gained by a predefined microstructuring of the substrate surface to attain a local form fit with the coating. But, the microstructured surface also influences the local morphology of the layer. Another possibility to improve the connection strength is the application of a primer between the substrate and the coating. For basic investigations, spiral dovetail microstructures with different pitches (200 μm - 500 μm) are machined by face turning using tools with CVD diamond tippings. The substrates consist of the aluminium alloy EN AW-5754 and their microstructured surfaces are coated with a nickel-aluminium layer. The coating with a thickness of about 200 μm is produced by high-velocity arc spraying. The material is usually used as a primer between the substrate and an iron-based coating. The substrate microstructures and the morphology of the coatings are analysed by SEM and 3D laser scanning microscopy. To determine the adhesive tensile strength of the coating tensile adhesion strength tests are performed. The results show that a higher number of structure elements per length increase the tensile adhesion strength, the hardness and the oxide proportion of the coating. Furthermore, tensile adhesion strength tests reveal failure mechanisms of the compound of substrate and coating depending on the substrate microstructure.
机译:减少乘用车的重量和燃料消耗的方法包括替代灰铸铁,作为燃烧发动机块的基础材料。关于这些合金对燃料的耐化学性不足,用其添加剂,具有热喷涂涂层的材料化合物用作圆柱套。为了加工和在使用的高连接基板和涂层之间。这可以通过基板表面的预定微观结构来获得,以获得与涂层配合的局部形式。但是,微观结构表面也影响层的局部形态。改善连接强度的另一种可能是在基板和涂层之间施加底漆。对于基本调查,通过使用具有CVD金刚石滴滴的工具,通过面部转动加工具有不同间距(200μm-500μm)的螺旋燕尾微结构。基材由铝合金en-5754组成,并且它们的微观结构表面涂有镍铝层。厚度为约200μm的涂层是通过高速电弧喷涂产生的。该材料通常用作基材和铁基涂层之间的引物。通过SEM和3D激光扫描显微镜分析衬底微结构和涂层的形态。为了确定涂层拉伸粘合强度试验的粘合抗拉强度。结果表明,每个长度的较多的结构元件增加了涂层的拉伸粘附强度,硬度和氧化物比例。此外,拉伸粘附强度试验根据基板微结构揭示基材化合物和涂层化合物的失效机制。

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