HARTFORD - The Secret to Precision Machining : AI Thermal Displacement Compensation
Last updated: 23 Jul 2025
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The Secret to Precision Machining : AI Thermal Displacement Compensation
Did you know that thermal deformation during machining can cause errors of several dozen microns?
Now, with just 3 simple steps, let AI handle compensation automatically and boost your machining accuracy to the next level!
Improve thermal displacement accuracy by up to 60% no more long warm-up times!
Easy in 3 Steps:
Data Collection: Capture temperature, displacement, and training data all at onc
AI Model Development: Use smart learning to build a machine-specific compensation model
Thermal Compensation: Real-time multi-sensor input auto-corrects positional drift instantly
Real Test Data MVP-8_Z Axis :
From a max error of 25.8 μm reduced to just 6.1 μm after compensation
From 8.3 μm down to an incredible 0.2 μm outperforming traditional methods!
Powered by FANUC control systems, integrated with Hartford's AI model,
this is true self-correcting precision machining.
Did you know that thermal deformation during machining can cause errors of several dozen microns?
Now, with just 3 simple steps, let AI handle compensation automatically and boost your machining accuracy to the next level!
Improve thermal displacement accuracy by up to 60% no more long warm-up times!
Easy in 3 Steps:
Data Collection: Capture temperature, displacement, and training data all at onc
AI Model Development: Use smart learning to build a machine-specific compensation model
Thermal Compensation: Real-time multi-sensor input auto-corrects positional drift instantly
Real Test Data MVP-8_Z Axis :
From a max error of 25.8 μm reduced to just 6.1 μm after compensation
From 8.3 μm down to an incredible 0.2 μm outperforming traditional methods!
Powered by FANUC control systems, integrated with Hartford's AI model,
this is true self-correcting precision machining.
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