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Effects of tangential supersonic airflow on the laser ablation of laminated CFRP

机译:切向超声波气流对层压CFRP激光烧蚀的影响

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Ablation behaviors of laminated carbon fiber reinforced plastics (CFRP) subjected to intense continuous wave laser in the supersonic wind tunnel are investigated experimentally. Comparable laser ablation tests in other environments, i.e., static air, static nitrogen and open airflow, are also carried out. Laser ablation rate in the supersonic wind tunnel is significantly larger than those of the other environments, in particular, at least twice of that in an open tangential airflow condition. The ablation morphology can be classified into two regions, coupled ablation zone (CAZ) and downstream affected zone (DAZ). Coupled thermal-fluid-solid analysis including thermochemical ablation and thermomechanical erosion models reveals that the contribution of each laser mechanisms is distinctive at the different positions of the laser ablation pit.
机译:实验研究了在超音速风隧道中进行强烈连续波激光的层压碳纤维增强塑料(CFRP)的消融行为。 还进行了可比较的激光消融测试,即静电空气,静态氮和开放气流。 超音速风洞中的激光消融率明显大于其他环境的隧道,特别是在开放的切向气流条件下至少两次。 消融形态可以分为两个区域,耦合消融区(CAZ)和下游受影响区(DAZ)。 耦合热流体 - 固体分析,包括热化学消融和热机械侵蚀模型,揭示了每个激光机构的贡献在激光消融坑的不同位置处具有独特的。

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