首页> 外文会议>International Conference on Photonic Technologies >Scaling melt pool geometry over a wide range of laser scanning speeds during laser-based Powder Bed Fusion
【24h】

Scaling melt pool geometry over a wide range of laser scanning speeds during laser-based Powder Bed Fusion

机译:在基于激光的粉末床融合期间,在广泛的激光扫描速度下进行缩放熔池几何形状

获取原文

摘要

Generating dense parts from laser-based Powder Bed Fusion of metals often requires the adaption of laser scanning speed. Thereby, scanning speed is lost as a degree of freedom for tailoring the microstructure. This paper addresses this issue by using an analytical model from literature to achieve equal melt pool width and depth for a range of factor 12 for laser scanning speeds and by examining the resulting specimen densities for this range of scanning speeds. The melt pool width and the melt pool depth of a dense reference specimen are measured. The measured melt pool width and melt pool depth are defined as the target sizes of the melt pool for all examined scanning speeds, as this is expected to result in dense specimens from a geometrical point of view. The target size shall be achieved by using an analytical model from the literature. This strategy is chosen to estimate the necessary energy input for creating dense specimens while avoiding incomplete fusion and keyholing. Defects mechanisms like splatters and cracks are excluded from this initial examination.
机译:从基于激光的粉末床融合的产生密集部件通常需要适应激光扫描速度。由此,扫描速度损失为剪裁微观结构的自由度。本文通过使用文献中的分析模型来解决该问题,以实现激光扫描速度的一系列因子12的相等熔池宽度和深度,并通过检查所得到的试样密度为此扫描速度。测量熔池宽度和致密参考样品的熔池池深度。测量的熔池宽度和熔融池深度被定义为所有检查扫描速度的熔池的目标尺寸,因为这预期导致来自几何观点的密集标本。目标大小应通过使用文献中的分析模型来实现。选择该策略来估计用于在避免不完全融合和钥匙孔时产生致密样本的必要能量输入。缺陷机制如泼溅物和裂缝被排除在此初步检查之外。

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