The presented paper suggests a design method which seeks to identify the best scheduling of human robot collaborative (HRC) operations with respect to a required safety level. The human behavior along manufacturing scenarios is effectively forecasted through dedicated computer-aided tools. Consequently, this method stresses the usage of virtual environment to replicate both human postures and robot encumbrances over the manufacturing operations. Moreover, it proposes a safety index formulation for HRC systems based on the minimum distance between human and robot (H-R). As results, the approach returns the safety index for every possible combination of H-R operations. Subsequently, a scheduling algorithm suggests the operations sequence depending on the expected value of the safety index, providing an evaluation of the time needed to complete the process. The method is validated on surface control phase involved in post-processing of parts produced by laser powder bed fusion (L-PBF) Additive Manufacturing.

CAD-based risk assessment approach for safe scheduling of HRC operations for parts produced by laser powder bed fusion / Pini, F.; Dalpadulo, E.; Leali, F.. - 1131:(2020), pp. 789-795. ( 3rd International Conference on Intelligent Human Systems Integration, IHSI 2020 ita 2020) [10.1007/978-3-030-39512-4_120].

CAD-based risk assessment approach for safe scheduling of HRC operations for parts produced by laser powder bed fusion

Pini F.;Dalpadulo E.;Leali F.
2020

Abstract

The presented paper suggests a design method which seeks to identify the best scheduling of human robot collaborative (HRC) operations with respect to a required safety level. The human behavior along manufacturing scenarios is effectively forecasted through dedicated computer-aided tools. Consequently, this method stresses the usage of virtual environment to replicate both human postures and robot encumbrances over the manufacturing operations. Moreover, it proposes a safety index formulation for HRC systems based on the minimum distance between human and robot (H-R). As results, the approach returns the safety index for every possible combination of H-R operations. Subsequently, a scheduling algorithm suggests the operations sequence depending on the expected value of the safety index, providing an evaluation of the time needed to complete the process. The method is validated on surface control phase involved in post-processing of parts produced by laser powder bed fusion (L-PBF) Additive Manufacturing.
2020
no
Inglese
3rd International Conference on Intelligent Human Systems Integration, IHSI 2020
ita
2020
INTELLIGENT HUMAN SYSTEMS INTEGRATION 2020
1131
789
795
7
9783030395117
Springer
Additive Manufacturing; CAD-based methods; Human Robot Collaboration; Safety index; Task scheduling
Pini, F.; Dalpadulo, E.; Leali, F.
Atti di CONVEGNO::Relazione in Atti di Convegno
273
3
CAD-based risk assessment approach for safe scheduling of HRC operations for parts produced by laser powder bed fusion / Pini, F.; Dalpadulo, E.; Leali, F.. - 1131:(2020), pp. 789-795. ( 3rd International Conference on Intelligent Human Systems Integration, IHSI 2020 ita 2020) [10.1007/978-3-030-39512-4_120].
none
info:eu-repo/semantics/conferenceObject
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1199748
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