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EFFECT OF TEMPERING TEMPERATURE ON HARDNESS AND MICROSTRUCTURE OF LASER SURFACE REMELTED AISI H13 TOOL STEEL

机译:回火温度对激光重熔AISI H13工具钢的硬度和显微组织的影响

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Surface hardening was performed by laser surface remelting of AISI H13 tool steel samples using a high power fiber laser. The surface hardened samples were exposed to different tempering temperature of 500°C, 700 °C and 900 °C in a furnace for one hour and brought back to room temperature in still air and by water quenching. Changes of the laser remelted and hardened layer were investigated in terms of microstructure and hardness before and after exposure to different tempering temperatures. Laser remelting caused mainly dendritic microstructure at the top layer but the dendritic structure of the remelted layer got altered after tempering at high temperatures. Air and water quenching caused almost similar result during tempering of laser remelted layer. The microhardness variations along depth after tempering at different temperatures indicates that the surface hardening imparted by laser remelting remains almost intact up to 700 °C but gets destroyed at 900 °C. Although the experimental temperature limits gives approximate threshold values, but it provides a clear indication of a safe limit for laser surface hardened components in high temperature applications like hot-forging dies and friction stir welding tool, etc.
机译:表面硬化是通过使用高功率光纤激光器对AISI H13工具钢样品进行激光表面重熔来进行的。将表面硬化的样品在炉中分别暴露于500°C,700°C和900°C的不同回火温度下一小时,然后在静止空气中通过水淬使温度恢复到室温。在暴露于不同回火温度之前和之后,从微观结构和硬度方面研究了激光重熔和硬化层的变化。激光重熔主要引起顶层的树枝状组织,但高温回火后重熔层的树枝状结构发生了变化。在激光重熔层的回火过程中,空气和水的淬火导致几乎相似的结果。在不同温度下回火后,沿深度的显微硬度变化表明,激光重熔所赋予的表面硬化在700°C时几乎保持不变,但在900°C时会被破坏。尽管实验温度极限给出了近似阈值,但它清楚地表明了高温应用中激光表面硬化部件的安全极限,例如热锻模和搅拌摩擦焊接工具等。

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