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首页> 外文期刊>Experimental Mechanics >Damage Detection in Transparent Materials Using Non-Contact Laser Excitation by Nano-Second Laser Ablation and High-Speed Polarization-imaging Camera
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Damage Detection in Transparent Materials Using Non-Contact Laser Excitation by Nano-Second Laser Ablation and High-Speed Polarization-imaging Camera

机译:纳米秒激光烧蚀和高速偏振成像相机的非接触激光激发在透明材料中的损伤检测

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摘要

Although transparent materials with birefringent properties (e.g., solar panels and separator films for secondary cells) are common, damage detection during the manufacturing process is crucial to economically realize high-quality materials. Herein a method using a pulsed-laser and a high-speed polarization-imaging camera is proposed to rapidly detect damage, including scratches and dents, in transparent materials. Specifically, as stress waves, which are generated by a non-contact impulse excitation from laser ablation, propagate through a material, the stress concentrations induced around damage are measured as the two-dimensional birefringent phase differences using a high-speed polarization-imaging camera with a microsecond-order temporal resolution. When stress is dominant, the distribution of the measured birefringent phase difference can be considered the relative distribution of stress. Using acrylic plates as a representative transparent material with several hundred micrometers of damage (e.g., a dent or a scratch), we demonstrate that the proposed method detects damage in a very short timeframe of several microseconds.
机译:尽管具有双折射特性的透明材料(例如,太阳能电池板和二次电池用隔膜)很常见,但是在制造过程中进行损坏检测对于经济地实现高质量材料至关重要。在本文中,提出了一种使用脉冲激光和高速偏振成像相机的方法来快速检测透明材料中的损伤,包括划痕和凹痕。具体地,由于由激光烧蚀产生的非接触脉冲激发所产生的应力波在材料中传播,因此使用高速偏振成像相机将损伤周围引起的应力集中测量为二维双折射相差。具有微秒级的时间分辨率。当应力为主导时,可以将测得的双折射相差的分布视为应力的相对分布。使用丙烯酸板作为具有数百微米损坏(例如凹痕或刮擦)的代表性透明材料,我们证明了所提出的方法可以在几微秒的非常短的时间内检测到损坏。

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