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Temperature profiles and conditions for thermal fatigue cracking in brass die casting dies

机译:黄铜压铸模具中温度疲劳裂纹的温度曲线和条件

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In this study, the temperature variations in the surface layer of a hot work tool steel was experimentally evaluated during actual brass die casting. A special method was developed to measure the temperature in the surface layer of the mould at different depths. Untreated, borided, and physical vapour deposition (PVD) coated (CrN) tools were included.Temperature profiles in the surface layer of the mould were recorded and details of the thermal cycling were obtained. Starting with a tool of room temperature, the tool temperature range averages during the initial 20 casting events. Simultaneously, within a surface layer of about 2 mm thickness, the maximum stress is reduced to a constant level. Based on the temperature profiles, the maximum surface temperature of the mould and the thickness of the tool surface layer within which fatigue damage can occur were estimated to about 826 deg C and 1.5mm, respectively. This limited thickness results from the decrease in temperature range and, consequently, stress from the tool surface and inwards. Finally, no notable influence of the investigated surface engineering on the thermal conditions was found.
机译:在这项研究中,在实际的黄铜压铸过程中,通过实验评估了热作工具钢表面层的温度变化。开发了一种特殊的方法来测量不同深度的模具表层温度。包括未处理,硼化和物理气相沉积(PVD)涂层(CrN)的工具,记录模具表层的温度曲线并获得热循环的详细信息。从室温的工具开始,工具的温度范围在最初的20次铸造事件中平均。同时,在约2mm厚的表层内,最大应力减小到恒定水平。根据温度曲线,模具的最高表面温度和可能发生疲劳损伤的工具表面层的厚度估计分别约为826摄氏度和1.5毫米。这种有限的厚度是由于温度范围的减小以及因此来自工具表面和内部的应力所致。最后,未发现所研究的表面工程对热条件的显着影响。

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