Gosiewski, Z.Kulesza, Z.2022-04-212022-04-212009Gücüyener, İ. ve Emel, E. (2009). "A fiber-optic bending sensor for the vibration monitoring of CNC face-milling machine". ed. Z. Gosiewski ve Z. Kulesza. Solid State Phenomena, Mechatronic Systems and Materials, 147-149, 627-632.1012-0394https://doi.org/10.4028/www.scientific.net/SSP.147-149.627https://www.scientific.net/SSP.147-149.627http://hdl.handle.net/11452/25955Vibration measurement of CNC milling is one of the used techniques for prediction of tool wear. Monitoring of tool wear is very important since a worn tool will affect machine and workpiece either. We developed a fiber-optic sensor for spindle vibration of CNC face-milling machine. The sensor is based on monitoring loss of light from the fiber core. For this sensor a laser light transmitter circuit, a sense plane construction, and a light receiver circuit are designed. Designed fiber-optic sensor is tested on Taksan TMC 650V face-milling machine. Obtained signals from this sensor is investigated in time domain and frequency domain and showed that it is valuable to tool ware monitoring.eninfo:eu-repo/semantics/closedAccessCNC face-milling machineFiber optic sensorVibration monitoringEngineeringMaterials sciencePhysicsFiber optic sensorsFiber opticsFibersMechatronicsMilling machinesMonitoringOptical materialsSensorsVibration measurementWear of materialsCutting toolsFiber optic sensorsFiber opticsFibersFrequency domain analysisMilling machinesTime domain analysisVibration measurementWear of materialsBending sensorsCNC face-milling machineCNC millingFace-millingFiber coresFrequency domainsLaser lightsLoss of lightsPlane constructionsReceiver circuitsTime domainTool wearTransmitter circuitsVibration monitoringWork piecesSpindle vibrationsMilling (machining)A fiber-optic bending sensor for the vibration monitoring of CNC face-milling machineArticle0002684355001002-s2.0-75849133080627632147-149Engineering, electrical & electronicEngineering, mechanicalMaterials science, multidisciplinaryPhysics, appliedPhysics, condensed matterTool Wear; Condition Monitoring; Machining