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Microstructural and Wear Behavior Characterization of Porous Layers Produced by Pulsed Laser Irradiation in Glass-Ceramics Substrates

机译:玻璃陶瓷基底中脉冲激光辐照产生的多孔层的微结构和磨损行为表征

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In this work, wear behavior and microstructural characterization of porous layers produced in glass-ceramic substrates by pulsed laser irradiation in the nanosecond range are studied under unidirectional sliding conditions against AISI316 and corundum counterbodies. Depending on the optical configuration of the laser beam and on the working parameters, the local temperature and pressure applied over the interaction zone can generate a porous glass-ceramic layer. Material transference from the ball to the porous glass-ceramic layer was observed in the wear tests carried out against the AISI316 ball counterface whereas, in the case of the corundum ball, the wear volume loss was concentrated in the porous layer. Wear rate and friction coefficient presented higher values than expected for dense glass-ceramics.
机译:在这项工作中,研究了在单向滑动条件下针对AISI316和刚玉cor体在纳秒范围内通过脉冲激光辐照在玻璃陶瓷基板中产生的多孔层的磨损行为和微观结构特征。根据激光束的光学配置和工作参数,施加在相互作用区域上的局部温度和压力会产生多孔玻璃陶瓷层。在针对AISI316球对接面进行的磨损测试中,观察到了从球到多孔玻璃陶瓷层的材料转移,而在刚玉球的情况下,磨损量损失集中在多孔层中。磨损率和摩擦系数呈现出比致密玻璃陶瓷更高的值。

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