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A simulation study of dual laser beam separation technology for thick transparent inorganic materials

机译:厚透明无机材料双激光束分离技术的仿真研究

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摘要

Dual laser beam separation (DLBS) is a novel separating technology developed for KDP crystal with high speed, no contact and excellent separated quality. However, its separating mechanism has not been studied thoroughly and fatal fragmentation always occurred with unknown causes. Meanwhile, there is a lack of research about the material types that DLBS can be adopted. As the real time monitor of 3D stress/strain distribution during separating are difficult, the experimental way to further improve the DLBS is impracticable. In this study, a finite element model was established to achieve a complete understanding of the mechanisms involved in DLBS for transparent inorganic materials. The main behavior of separating stress and the evolution of potential risks during DLBS were analyzed, meanwhile, the influencing mechanisms of critical separating parameters on dynamic temperature and thermal stress distribution were also investigated. Based on these simulation analysis, two significant system improvements for DLBS were put forward, investigated and verified, which improved the separating thickness range, quality, safety and efficiency of DLBS markedly. The simulation results also indicated the material types that DLBS can be adapted to, which have important engineering value for guiding the future application of DLBS technology. (C) 2017 Elsevier Ltd. All rights reserved.
机译:双激光束分离(DLBS)是为KDP晶体开发的一种新颖的分离技术,具有高速,无接触和出色的分离质量。然而,其分离机理尚未得到充分研究,致命碎片总是以未知原因发生。同时,对于可以采用DLBS的材料类型缺乏研究。由于难以实时监测分离过程中的3D应力/应变分布,因此无法进一步提高DLBS的实验方法。在这项研究中,建立了一个有限元模型,以完全了解DLBS中用于透明无机材料的机理。分析了DLBS过程中分离应力的主要行为和潜在风险的演变,同时研究了关键分离参数对动态温度和热应力分布的影响机理。在这些仿真分析的基础上,提出,研究和验证了DLBS的两个重大系统改进,显着提高了DLBS的分离厚度范围,质量,安全性和效率。仿真结果还表明,DLBS可以适应的材料类型,对于指导DLBS技术的未来应用具有重要的工程价值。 (C)2017 Elsevier Ltd.保留所有权利。

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