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Microstructural Characteristics of Cement-Based Materials Fabricated Using Multi-Mode Fiber Laser

机译:多模光纤激光器制造的水泥基材料的微观结构特征

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摘要

Cement-based materials are the most prevalent construction materials, and the conventional cutting techniques are still mostly used for fabricating the materials. However, these conventional cutting methods could generate undesirable micro-cracks and remove unintentional structural sections. This experimental study aims to evaluate the effects of the new fabricating method using laser on the microstructural characteristics of the cement-based materials. The experimental variables are laser cutting speed, water to cement ratio and material compositions. In order to compare the microstructure before and after the laser interaction, the microstructure of the cut surface is observed through scanning electron microscopy/energy dispersive X-Ray (SEM/EDX). After the laser interaction, the Material Removed Zone (MRZ) and Heat Affected Zone (HAZ) are observed on the cut surface. In MRZ, it is found that the glassy layer is thickened by an increasing amount of silicate-based materials in cement-based materials. In addition, it concluded that the amount of silicate-based material mixed in the cement-based materials affects the laser cutting quality.
机译:水泥基材料是最流行的建筑材料,并且传统的切割技术仍主要用于制造该材料。然而,这些常规的切割方法可能产生不希望的微裂纹并去除无意的结构部分。这项实验研究旨在评估使用激光的新制造方法对水泥基材料的微观结构特征的影响。实验变量是激光切割速度,水灰比和材料成分。为了比较激光相互作用之前和之后的微观结构,通过扫描电子显微镜/能量色散X射线(SEM / EDX)观察切割表面的微观结构。激光相互作用后,在切割表面上观察到“材料去除区”(MRZ)和“热影响区”(HAZ)。在MRZ中,发现通过在水泥基材料中增加硅酸盐基材料的量来使玻璃层增厚。此外,得出的结论是,水泥基材料中硅酸盐基材料的混合量会影响激光切割质量。

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