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Investigation of the processing effects of UV, heat and laser ablation on SU-8 microturbines: A first approach by small angle neutron scattering

机译:研究UV,热和激光烧蚀对SU-8型微型涡轮机的加工效果:小角度中子散射的第一种方法

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Purpose - The purpose of this paper is to determine the nano-sized characteristics of SU-8 polymer micro-electromechanical systems airflow metrology turbines samples. These microturbines were made to be the first using axial airflow for low air pressure response. This polymer may be affected during curing by UV and heat baking, as well as confined heat from laser ablation. Defects in the resin matrix may influence the material quality and hence the final turbine performance. Design/methodology/approach - Small angle neutron scattering investigations were performed using the instrumentation of the Budapest Research Reactor.rnFindings - The average sizes of the voids/cracks in the resin matrix of the turbines were determined and allowed the viability of making smaller even thinner rotor blades for higher spin and electrical output capability to be considered.rnOriginality/value - The obtained results have advanced the industrial applicability of the adopted technique in the considered sector of polymer analysis.
机译:目的-本文的目的是确定SU-8聚合物微机电系统气流计量涡轮机样品的纳米尺寸特征。这些微型涡轮机是第一个使用轴向气流进行低气压响应的涡轮机。该聚合物可能会在固化过程中受到紫外线和热烘烤以及激光烧蚀产生的有限热量的影响。树脂基体中的缺陷可能会影响材料质量,从而影响最终的涡轮性能。设计/方法/方法-使用Budapest Research Reactor的仪器进行小角中子散射研究。rnindings-确定了涡轮机树脂基体中空隙/裂纹的平均大小,并允许将其做得更小甚至更薄转子叶片具有更高的自旋和电气输出能力。rnriginity / value-所得结果已经提高了所采用技术在聚合物分析领域中的工业实用性。

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