In-Line Dimensional Inspection of Warm-Die Forged Revolution Workpieces Using 3D Mesh Reconstruction
Поточный контроль размеров горячештампованных тел вращения с использованием реконструкции трёхмерной сетки
2019-03-14
SCID: 54.1/7h5q2pnf
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3D mesh reconstructioncircular runoutcoordinate measuring machinein-line dimensional inspectionwarm-die forging
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Abstract (AI)
Industrial dimensional assessment presents instances in which early control is exerted among “warm” (approx. 600 ∘C) pieces. Early control saves resources, as defective processes are timely stopped and corrected. Existing literature is devoid of dimensional assessment on warm workpieces. In response to this absence, this manuscript presents the implementation and results of an optical system which performs in-line dimensional inspection of revolution warm workpieces singled out from the (forming) process. Our system can automatically measure, in less than 60 s, the circular runout of warm revolution workpieces. Such a delay would be 20 times longer if cool-downs were required. Off-line comparison of the runout of T-temperature workpieces (27 ∘C ≤ T ≤ 560 ∘C) shows a maximum difference of 0.1 mm with respect to standard CMM (Coordinate Measurement Machine) runout of cold workpieces (27 ∘C), for workpieces as long as 160 mm. Such a difference is acceptable for the forging process in which the system is deployed. The test results show no correlation between the temperature and the runout of the workpiece at such level of uncertainty. A prior-to-operation Analysis of Variance (ANOVA) test validates the repeatability and reproducibility (R&R) of our measurement system. In-line assessment of warm workpieces fills a gap in manufacturing processes where early detection of dimensional misfits compensates for the precision loss of the vision system. The integrated in-line system reduces the number of defective workpieces by 95 % .
Key Findings
1
ANOVA-based R&R testing validated measurement-system repeatability and reproducibility, while deployment reduced defective workpieces by 95%.
2
An optical 3D mesh reconstruction system performs in-line dimensional inspection of warm forged revolution workpieces at approximately 600 °C.
3
For workpieces up to 160 mm long and temperatures from 27 °C to 560 °C, runout differs from cold-workpiece CMM measurements by at most 0.1 mm.
4
No correlation was observed between workpiece temperature and measured runout within the reported uncertainty.
5
The system automatically measures circular runout in less than 60 seconds, avoiding cool-down delays that would make inspection 20 times longer.
Research Object
Warm-die forged revolution workpieces undergoing in-line dimensional inspection
Research Subject
In-line measurement of circular runout and the measurement system’s accuracy, repeatability, reproducibility, temperature robustness, and defect-reduction performance
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2019-03-14
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