首页> 外文会议>International Congress on Applications of Lasers Electro-Optics >LASER POWER MODULATION TO GRAIN REFINEMENT OF SAE 1045 STEEL WELDS: Paper # Poster 119
【24h】

LASER POWER MODULATION TO GRAIN REFINEMENT OF SAE 1045 STEEL WELDS: Paper # Poster 119

机译:SAE 1045钢焊接晶粒细化的激光功率调制:纸#海报119

获取原文

摘要

Refined grain size structure is one of the most sought-after features during parameterization of welding processing. Refined grains in the region of the molten zone provide high tenacity in addition to high hardness, due to the dislocation blocking by grain boundaries. However, obtaining refined grain structure is not trivial, since a molten pool is formed during bonding of materials via welding, which often results in grain growth. In this sense, this study aimed to refine the granular structure of a SAE 1045 steel by modulating laser power. The success through the modulation method in some aspects of welding is well known from literature, such as the reduction of pores and cracks, as well as deep penetration with narrow heat affected zones (HAZ). These enhancements are due to cooling rate control produced by the non-uniform way of interaction between the laser and the specimen. In the present study, 1045 steel specimens were first welded utilizing the conventional continuous mode, and then the results were compared with a modulated rectangular-shaped power mode while maintaining the average power constant. Microhardness measurements were used in order to investigate the mechanical effect of grain size changes. It was found that an increase in hardness of 50 HV was achieved by modulating the laser power in time. This increase is credited to the reduction in grain size of the studied steel. It can be assumed that the time modulation of the laser power possibilities a better control of the cooling rate and consequently the mass flux in the molten pool, what may explain the hardening effect by grain refinement.
机译:精制粒度结构是焊接加工参数化期间最受欢迎的特征之一。由于晶界偏移阻断,熔融区的区域中的精制晶体在高硬度之外提供高韧度。然而,获得精制晶粒结构并不易于平凡,因为在通过焊接的粘合期间形成熔池,这通常会导致晶粒生长。从这个意义上讲,该研究旨在通过调制激光功率来优化SAE 1045钢的颗粒结构。通过调制方法在焊接的一些方面取得了成功,从文献中是众所周知的,例如孔隙和裂缝的减少,以及窄热影响区域(HAZ)的深度渗透。这些增强是由于激光和样本之间的非均匀相互作用方式产生的冷却速率控制。在本研究中,首先利用传统连续模式焊接1045钢样品,然后将结果与调制的矩形电力模式进行比较,同时保持平均功率常数。使用微硬度测量以研究晶粒尺寸变化的机械效果。发现通过及时调制激光功率,实现了50HV硬度的增加。这一增长被记入学习钢的晶粒尺寸的降低。可以假设激光功率可能性的时间调制更好地控制冷却速率,从而更好地控制熔池中的质量磁通,可以通过晶粒细化来解释硬化效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号