Publication | Open Access
State-of-the-Art Technologies in Piezoelectric Deformable Mirror Design
24
Citations
34
References
2022
Year
Laser Processing (Laser Material Processing)EngineeringMechanical EngineeringLaser ApplicationsLaser AblationState-of-the-art TechnologiesSoft RoboticsLaser Micro-processingMaterials FabricationWelding ProcessPiezoelectric MaterialYag LaserGraded-reflectivity MirrorsMaterials ScienceNanomanufacturingMechatronicsBimorph Wavefront CorrectorLaser Processing TechnologyPiezoelectricityLaser-assisted DepositionAdvanced Laser ProcessingMicrofabricationPiezoelectric NanogeneratorsLaser Processing (Business Administration)Mechanical SystemsLaser UltrasoundVibration Control
In this work, two advanced technologies were applied for manufacturing a bimorph wavefront corrector: laser ablation, to vaporize conductive silver coating from piezoceramic surface, and parallel-gap resistance microwelding, to provide a reliable electrical contact between the piezodisk surface silver electrodes and copper wires. A step-by-step guide for bimorph mirror production is presented, together with the ‘bottlenecks’. Optimization of the laser ablation technique was carried out using an Nd:YAG laser with an output power of 4 W and a frequency of 20 kHz. A comparison of the ultrasonic welding and parallel-gap resistance microwelding methods was performed. The tensile strength in the first case was in the range of 0.2…0.25 N for the system ‘copper wire–silver coating’. The use of resistance welding made it possible to increase the value of this parameter for the same contact pair by almost two times (0.45…0.5 N).
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