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Quick evaluation of the dominant phenomenon
Our latest version with the most recent features and advanced AI
Previous stable version with essential features
Quick evaluation of the dominant phenomenon
Identification of the mechanisms involved
Identification of the causes of rapid tool degradation
Quick detection of the main weaknesses of the machining system
Quick detection of tool/toolholder/spindle weaknesses
Determination of xyz stiffness of the different components (machine health)
Identification of stiffness losses under load (machine health)
Anticipation (in CAM) of tool capabilities (machining process optimization)
Anticipation of workpiece machinability (machining process optimization)
Measurement of natural frequencies
Identification of the most stable spindle speed ranges.
Assessment of the criticality of the different natural frequencies
Personalized definition of optimized variable-pitch tools
Dynamic measurement and axis vibration analysis (global condition, required adjustments)
Measurement of spindle vibrations (global condition, speeds to avoid)
Analysis of machining phenomena (runout, imbalance, impact cutting, chatter, chip segmentation, lubrication interruptions, idle times, improper approach distances, axis vibrations, etc.)
Procedure for maximizing productivity by optimizing the product S, Ap, Ae, and fz
Measurement of radial cutting forces and machining system deflection (optimization of semi-finishing and finishing operations)
Boost your productivity with our AI tools and cutting-edge technologies
An intelligent assistant that answers your technical questions to optimize your machining
Using artificial intelligence to quickly identify phenomena in the signal and indicate any measurement inconsistencies
Advanced tool for processing and analyzing machining signals