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Laser beam machining of zirconia ceramic: An investigation of micro-machining geometry and surface roughness

机译:氧化锆陶瓷激光束加工:微加工几何和表面粗糙度的研究

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摘要

Micro-machining of dental ceramics namely as zirconium oxide is carried out through laser beam machining. Micro-channels of different sizes are fabricated under different laser parameters. The laser process performance is evaluated by considering the geometrical and quality responses associated with micro-channels. Laser intensity, pulse frequency, scanning speed and layer thickness per laser scan are opted as the influential controlling parameters. Geometrical characteristics of micro-channels include upper width (W-U), lower width (W-L), depth (D), taper angle of micro-channel's sidewalls at right side (theta(R)), and taper angle at left side (theta(L) ). Quality of the machined micro-channels is evaluated by means of surface roughness (R-a) of the bottom surface. Effects of each of the laser parameters on each of the geometrical and quality responses are studied in order to get the influential trends of laser parameters. SEM analysis is further performed to assess the micro-details of machining results. The results reveals that the shape and size of micro-channel are very sensitive to the variation in laser parameters. Two types of micro-channels shapes are obtained having V-shaped and U-shaped cross-sections. Furthermore, it is quite challenging to achieve the micro-channels with reasonable amount of lower width (W-L).
机译:牙科陶瓷的微加工即通​​过激光束加工进行氧化锆。不同尺寸的微通道在不同的激光参数下制造。通过考虑与微通道相关的几何和质量响应来评估激光工艺性能。激光强度,脉冲频率,扫描速度和每个激光扫描的层厚度被选择为有影响的控制参数。微通道的几何特性包括上宽度(WU),较低宽度(WL),深度(D),右侧的微通道侧壁的锥形角度(左侧(θ)和锥角(θ( l))。通过底表面的表面粗糙度(R-A)评估加工的微通道的质量。研究了每个激光参数对每个几何和质量响应的影响,以获得激光参数的影响力趋势。进一步进行SEM分析以评估加工结果的微细节。结果表明,微通道的形状和尺寸对激光参数的变化非常敏感。获得具有V形和U形横截面的两种类型的微通道形状。此外,实现具有合理量的较低宽度(W-L)的微通道非常具有挑战性。

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