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Development of an Atomic Force Microscope Ultra-Microhardness Tester with a Silicon Tip for High-Resolution AFM Imaging

机译:带有硅尖端的原子力显微镜超显微硬度测试仪的开发,用于高分辨率AFM成像

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摘要

A combined instrument for ultra-microhardness testing and atomic force microscopy (AFM) has been developed. The instrument could be employed to conduct hardness tests with a diamond indenter and its Si tip allowed high-resolution AFM images to be obtained at the same position on the specimen. Ultra-microhardness tests and AFM observations were carried out on electrolytically polished specimens of a tungsten single crystal and JIS-SCM415 and JIS-SCM440 low-alloy steels. The SCM415 and 440 steels were tempered at 873 K and 723 K, respectively. The benefits of using a Si tip instead of a diamond indenter for AFM observation are clearly shown by the better profile of the indent mark on the tungsten single crystal and the clearly distinguishable images of the fine carbides of the steels. The ultra-microhardness of the steels was influenced by the local microstructures such as the carbide density and the presence of a ferritic phase.
机译:已经开发出一种用于超显微硬度测试和原子力显微镜(AFM)的组合仪器。该仪器可用于使用金刚石压头进行硬度测试,其Si尖端可在样品的同一位置获得高分辨率的AFM图像。在对钨单晶以及JIS-SCM415和JIS-SCM440低合金钢进行电解抛光的试样上进行了超显微硬度测试和AFM观察。 SCM415和440钢的回火温度分别为873 K和723K。用钨钢单晶代替金刚石压头进行AFM观察的好处明显地体现在钨单晶上压痕的轮廓更好,并且钢的细碳化物清晰可辨。钢的超显微硬度受局部显微组织的影响,例如碳化物密度和铁素体相的存在。

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