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Guided Slow Continuous Suspension Film Flow for Mass Production of Submicrometer Spherical Particles by Pulsed Laser Melting in Liquid

机译:在液体中通过脉冲激光熔化大规模生产亚微米级球形颗粒的导流缓慢连续悬浮膜流

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摘要

Pulsed laser melting in liquid (PLML) is a technique to fabricate submicrometer crystalline spherical particles of various materials by laser irradiation of suspended raw particles with random shapes. To fully exploit the unique features of PLML-fabricated particles (crystalline and spherical) in practice, a mass-production PLML technique is required. To this end, the present study develops a new slit nozzle that guides the suspension film flow into a non-droplet continuous stream with a low flow rate. These two incompatible flow properties (continuity and slowness) are difficult to be realized for a liquid jet to free space. The suspension film flow was irradiated with a typical laboratory scale-flash lamp pumping laser at 30 Hz pulse frequency. Only a single flow passage of the slit nozzle with a few laser pulse irradiation transformed 95% of the raw particles into spherical particles. This spheroidizing ratio exceeded those of low-rate drip flow and high-rate cylindrical laminar flow directly jetted into free space through a Pasteur pipette nozzle. Extrapolating the data obtained from a 20-ml suspension, the average production rate was determined as 195 mg h−1. The high spheroidizing ratio and yield through the slit nozzle is attributable to the uniquely slow but continuous liquid film flow. The structure of the slit nozzle also prevents particles from adhering to the slit wall during continuous laser irradiation. Thus, the suspension film flow through the newly developed slit nozzle can potentially scale up the PLML technique to mass production.
机译:脉冲液体激光熔化(PLML)是一种通过激光照射具有随机形状的悬浮原始颗粒来制造各种材料的亚微米级晶体球形颗粒的技术。为了在实践中充分利用PLML制成的颗粒(晶体和球形)的独特功能,需要大量生产PLML技术。为此,本研究开发了一种新的狭缝喷嘴,该狭缝喷嘴将悬浮膜流引导到低流速的非液滴连续流中。对于液体喷射到自由空间而言,这两个不兼容的流动特性(连续性和缓慢性)很难实现。用典型的实验室规模闪光灯泵浦激光器以30 Hz的脉冲频率辐照悬浮膜流。狭缝喷嘴只有一个流道,受到少量激光脉冲照射,将95%的原始颗粒转化为球形颗粒。该球化率超过了通过巴斯德移液器喷嘴直接喷射到自由空间中的低速率滴流和高速率圆柱层流的比例。推断从20 ml悬浮液获得的数据,平均生产率确定为195 mg h -1 。通过狭缝喷嘴的高球化率和高产率归因于独特缓慢但连续的液膜流动。狭缝喷嘴的结构还防止了在连续激光辐照期间颗粒粘附到狭缝壁上。因此,流经新开发的狭缝喷嘴的悬浮膜可以潜在地扩大PLML技术的规模,以实现批量生产。

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