2022
DOI: 10.1007/s10845-022-02036-6
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Automated 3D burr detection in cast manufacturing using sparse convolutional neural networks

Abstract: For automating deburring of cast parts, this paper proposes a general method for estimating burr height using 3D vision sensor that is robust to missing data in the scans and sensor noise. Specifically, we present a novel data-driven method that learns features that can be used to align clean CAD models from a workpiece database to the noisy and incomplete geometry of a RGBD scan. Using the learned features with Random sample consensus (RANSAC) for CAD to scan registration, learned features improve registratio… Show more

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Cited by 4 publications
(1 citation statement)
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References 23 publications
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“…Registration of cast manufactured parts is a prerequisite for automation of tasks such as sanding, welding and assembly in low-volume production. Typically, the part is placed with an arbitrary pose on a table surface or bin, and scanned 1) Cast manufactured parts dataset: We use 3D data of cast manufactured parts acquired for the scan-to-cad dataset in [16] to construct a scan-to-scan dataset. The cast parts are brass parts from from Mjøs Metallvarefabrikk, approximately 30-40 cm in diameter, and 20 individual physical items.…”
Section: B Cast Iron Parts Casementioning
confidence: 99%
“…Registration of cast manufactured parts is a prerequisite for automation of tasks such as sanding, welding and assembly in low-volume production. Typically, the part is placed with an arbitrary pose on a table surface or bin, and scanned 1) Cast manufactured parts dataset: We use 3D data of cast manufactured parts acquired for the scan-to-cad dataset in [16] to construct a scan-to-scan dataset. The cast parts are brass parts from from Mjøs Metallvarefabrikk, approximately 30-40 cm in diameter, and 20 individual physical items.…”
Section: B Cast Iron Parts Casementioning
confidence: 99%