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The Combination of Two Laser Energy Sources for Surface Modification of High Alumina Ceramics

机译:两个激光能源的组合高氧化铝陶瓷表面改性

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Alumina-based refractory materials are extensively used in high-temperature applications, such as linings in waste incinerators. A significant problem affecting the performance of these materials is the presence of porosity and material inhomogeneities, which promote molten slag corrosion and chemical degradation. Single laser energy sources have been used in the past to modify the surface properties of such ceramics. A major difficulty during laser surface treatment is solidification cracking due to very large temperature gradients that are developed during processing. The aim of the work presented in this paper is to investigate the surface modification of 60% alumina refractory ceramics by combining two laser energy sources in order to control the thermal gradients and cooling rates so that crack formation can be eliminated. The surface morphologies and cross sections of the treated samples have been examined using optical and scanning electron microscopy (SEM) and compared with those of single laser beam treated samples.
机译:基于氧化铝的耐火材料广泛用于高温应用,例如废物焚烧炉中的衬里。影响这些材料性能的显着问题是存在孔隙率和材料的不均匀性,这促进了熔渣腐蚀和化学降解。过去使用单个激光能源来改变这种陶瓷的表面性质。由于在加工过程中显影的非常大的温度梯度,激光表面处理期间的主要困难是凝固裂缝。本文所呈现的作品的目的是通过组合两个激光能源来研究60%氧化铝耐火陶瓷的表面改性,以控制热梯度和冷却速率,从而可以消除裂缝形成。已经使用光学和扫描电子显微镜(SEM)检查处理过的样品的表面形态和横截面,并与单激光束处理的样品相比。

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