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A study of photothermal laser ablation of various polymers on microsecond time scales

机译:微秒时间尺度上各种聚合物的光热激光烧蚀研究

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摘要

To analyze the photothermal ablation of polymers, we designed a temperature measurement setup based on spectral pyrometry. The setup allows to acquire 2D temperature distributions with 1 μm size and 1 μs time resolution and therefore the determination of the center temperature of a laser heating process. Finite element simulations were used to verify and understand the heat conversion and heat flow in the process. With this setup, the photothermal ablation of polystyrene, poly(α-methylstyrene), a polyimide and a triazene polymer was investigated. The thermal stability, the glass transition temperature Tg and the viscosity above Tg were governing the ablation process. Thermal decomposition for the applied laser pulse of about 10 μs started at temperatures similar to the start of decomposition in thermogravimetry. Furthermore, for polystyrene and poly(α-methylstyrene), both with a Tg in the range between room and decomposition temperature, ablation already occurred at temperatures well below the decomposition temperature, only at 30–40 K above Tg. The mechanism was photomechanical, i.e. a stress due to the thermal expansion of the polymer was responsible for ablation. Low molecular weight polymers showed differences in photomechanical ablation, corresponding to their lower Tg and lower viscosity above the glass transition. However, the difference in ablated volume was only significant at higher temperatures in the temperature regime for thermal decomposition at quasi-equilibrium time scales.
机译:为了分析聚合物的光热消融,我们设计了基于光谱高温法的​​温度测量装置。该设置允许获取尺寸为1μm,时间分辨率为1μs的2D温度分布,因此可以确定激光加热过程的中心温度。有限元模拟被用来验证和理解过程中的热转化和热流。通过这种设置,研究了聚苯乙烯,聚(α-甲基苯乙烯),聚酰亚胺和三氮烯聚合物的光热消融。热稳定性,玻璃化转变温度Tg和高于Tg的粘度决定了烧蚀过程。所施加的约10μs激光脉冲的热分解在与热重分析中的分解开始相似的温度下开始。此外,对于Tg介于室温和分解温度之间的聚苯乙烯和聚(α-甲基苯乙烯),在远低于分解温度的温度下已经发生了烧蚀,仅在Tg之上30–40 K处发生了烧蚀。该机理是光机械的,即,由于聚合物的热膨胀而引起的应力是烧蚀的原因。低分子量聚合物在光机械烧蚀方面表现出差异,这与它们在玻璃化转变温度以上的较低的Tg和较低的粘度相对应。然而,仅在准平衡时间尺度下热分解的温度范围内,烧蚀体积的差异才显着。

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