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Deformation behavior and microstructural changes of a hardened high carbon alloy steel in laser bending

机译:高碳合金钢在激光弯曲中的变形行为和显微组织变化

摘要

In this article, the deformation behavior and microstructure of a hardened high carbon steel in laser bending were examined. A CO2 laser unit (TEM00) was used to bend the samples at different laser powers, scanning velocities, and number of scans. A relatively linear relationship between bending angle and number of scans was obtained at laser powers of 150 and 200 W and at a scanning velocity of 30 mm/s. A threshold heat input of about 3.25 J/mm was observed, below which bending was unlikely to occur. The bending angle was also found to increase linearly with increasing line energy and was sensitive to specimen width. The microstructure and microhardness profile of the sheets deformed at both low- and high-energy inputs were examined. For accumulated energy density (AED) of 193 J/mm2, melting was observed at the scanning surface and the microstructure was different significantly across the thickness of the bent region. A microstructure of coarse martensite with retained austenite was observed near the top surface, whereas martensite with retained carbide and banite was found near the bottom surface. For AED of 97 J/mm2, no melting was observed, and tempered martensite could be found at the bottom surface of the bent region.
机译:在本文中,研究了硬化高碳钢在激光弯曲中的变形行为和显微组织。使用CO2激光单元(TEM00)以不同的激光功率,扫描速度和扫描次数弯曲样品。在150和200 W的激光功率以及30 mm / s的扫描速度下,获得了弯曲角度和扫描次数之间的相对线性关系。观察到约3.25J / mm的阈值热输入,低于该阈值,不太可能发生弯曲。还发现弯曲角随线能量的增加而线性增加,并且对样品宽度敏感。检查了在低能量和高能量输入下变形的片材的显微结构和显微硬度分布。对于193 J / mm2的累积能量密度(AED),在扫描表面观察到熔化,并且在弯曲区域的整个厚度范围内,微观结构明显不同。在顶表面附近观察到具有残余奥氏体的粗马氏体的显微组织,而在底表面附近观察到具有残余碳化物和贝氏体的马氏体。对于97 J / mm2的AED,未观察到熔化,并且在弯曲区域的底面发现回火马氏体。

著录项

  • 作者

    Chan KC; Liang J;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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