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Time-resolved in-situ temperature measurement and analysis for continuous-wave laser sintering of carbon nanotube - Metal composites on a polymer substrate

机译:聚合物基材上碳纳米管 - 金属复合材料连续波激光烧结的时间分辨地相温度测量和分析

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Previous research work shows that metal nanocomposite thin films fabricated by laser sintering of mixtures of metal nanoparticles (NPs) and carbon nanotubes (CNTs) on a polymer substrate have a great potential to help enhance reliability and durability of metal components in flexible electronic devices. To gain a good relevant fundamental understanding, it is important to know the material thermal history during laser sintering. However, an in-situ temperature measurement has been rarely reported in a paper in the literature for laser sintering of metal NP-CNT mixture thin films on a polymer substrate. Such temperature measurements are reported in this paper, which are performed using a two-color pyrometry system set up by the authors to overcome related technical challenges such as high spatial and temporal resolution requirements. The measurement method is noncontact, and by measuring thermal radiation in two wavelength ranges it does not require the value of the target surface emissivity. The electrical resistivities of composite material sintered with different laser scanning speeds are also measured. Under the conditions studied, it has been found that as the laser scanning speed increases significantly, the average melted material temperature in the measurement spot only slightly decreases, but the melting duration drops significantly. The average electrical resistivity of sintered composite material first decreases and then increases with the laser scanning speed. The measured material surface temperatures for laser sintering of CNT and silver NP mixtures are similar to those for laser sintering of silver NPs with the same laser scanning speed.
机译:以前的研究工作表明,通过在聚合物基材上的金属纳米颗粒(NPS)和碳纳米管(CNT)混合物的激光烧结制造的金属纳米复合薄膜具有很大的潜力,有助于提高柔性电子设备中金属部件的可靠性和耐久性。为了获得良好的相关基本理解,重要的是在激光烧结期间了解材料热历史非常重要。然而,在聚合物基材上的金属NP-CNT混合物薄膜的激光烧结的文献中,很少报道原位温度测量。本文报道了这种温度测量,这是使用作者设置的双色火光测定系统进行的,以克服相关的技术挑战,例如高空间和时间分辨率要求。测量方法是非接触的,并且通过测量两个波长范围的热辐射,它不需要目标表面发射率的值。还测量了用不同激光扫描速度烧结的复合材料的电阻率。在所研究的条件下,已经发现,随着激光扫描速度显着增加,测量点中的平均熔化材料温度略微降低,但熔化持续时间显着下降。烧结复合材料的平均电阻率首先降低,然后随着激光扫描速度增加。用于CNT和银NP混合物的激光烧结的测量材料表面温度与具有相同激光扫描速度的银NPS的激光烧结的材料表面温度类似。

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