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A Method for Measuring the Hardness of the Surface Layer on Hot Forging Dies Using a Nanoindenter

机译:一种使用纳米压痕仪测量热锻模表面层硬度的方法

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The properties and characteristics of the surface layer of forging dies are critical for understanding and controlling wear. However, the surface layer is very thin, and appropriate property measurements are difficult to obtain. The objective of the present study is to determine if nanoindenter testing provides a reliable method, which could be used to measure the surface hardness in forging die steels. To test the reliability of nanoindenter testing, nanoindenter values for two quenched and tempered steels (FX and H13) are compared to microhardness and macrohardness values. These steels were heat treated for various times to produce specimens with different values of hardness. The heat-treated specimens were tested using three different instruments - a Rockwell hardness tester for macrohardness, a Vickers hardness tester for microhardness, and a nanoindenter tester for fine scale evaluation of hardness. The results of this study indicate that nanoindenter values obtained using a Nanoindenter XP Machine with a Berkovich indenter reliably correlate with Rockwell C macrohardness values, and with Vickers HV microhardness values. Consequently, nanoindenter testing can provide reliable results for analyzing the surface layer of hot forging dies.
机译:锻模表面层的特性和特性对于理解和控制磨损至关重要。然而,表面层非常薄,并且难以获得适当的性能测量。本研究的目的是确定纳米压头测试是否提供一种可靠的方法,该方法可用于测量锻造模具钢的表面硬度。为了测试纳米压头测试的可靠性,将两种调质钢(FX和H13)的纳米压头值与显微硬度和宏观硬度值进行了比较。对这些钢进行多次热处理,以生产出具有不同硬度值的试样。使用三种不同的仪器测试热处理后的样品:用于宏观硬度的Rockwell硬度测试仪,用于显微硬度的Vickers硬度测试仪和用于精细评估硬度的纳米压头测试仪。这项研究的结果表明,使用带有Berkovich压头的Nanoindenter XP机器获得的纳米压头值与Rockwell C宏观硬度值和维氏HV显微硬度值可靠地相关。因此,纳米压头测试可以为分析热锻模的表面层提供可靠的结果。

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