Ivan Scansani Gregori
Ivan Roger Scansani Gregori holds a Ph.D. in Engineering and is an Engineering Manager at ZF. He has more than thirty years of experience working with friction materials, tribology, and signal analysis, applying multivariate statistics and machine learning to real-world problems in clutch and transmission systems. He has also joined his son’s platform to help create high-quality content based on his expertise.
A data-driven learning system that reads the torque signal of a dry clutch, tells six friction materials apart, and predicts judder in the vehicle from a laboratory bench test.
Multivariate statistics applied to real bench-test torque signals separates clutch facings by judder performance and manufacturing characteristics, and establishes a reference torque behaviour for material development.
Finite element analysis is used to predict when a clutch facing bursts, with numerical results showing clear agreement with experimental burst tests.
A methodology for classifying clutch facing judder sensitivity on a sub-scale bench test instead of a full vehicle, with preliminary results showing good correlation to the car.
The original proposal for moving clutch facing judder classification off the vehicle and onto a sub-scale bench machine, motivated by test time and material development speed.
A two-part methodology for characterising facing judder sensitivity: numerical simulation of the judder bench test to save time, validated against an experimental judder test in a passenger car.
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Books
1Every clutch tells a story in torque—if you know how to read it. This collection of nine studies follows a single thread from bench to road: how laboratory signals, multivariate statistics, and finite element models can predict judder, burst, and wear without waiting for the vehicle. It is a casebook for engineers who want to move friction material development out of the field and into the lab.
Sep 13, 2026
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