Abstract
AbstractSmart load-bearing structures are created by forming integration of functional materials into passive metallic components with target-oriented pre-stress conditions by rotary swaging. Their sensory capability cannot only be used during the utilization but also during the manufacturing phase. Previous works demonstrated how this capability paves the way for efficient monitoring and controlling of the used integration process. In search of an even higher overall efficiency of the manufacturing chain, the subsequent costly calibration step deserves closer attention. Therefore, a cost- and time-efficient approach for the process-integrated calibration of a sensor-integrated structure is proposed in this paper. During the in-process calibration, the acting process forces are measured both in the integrated sensor and in a special-built clamping fixture. The measured data can be transferred into calibration slopes of the sensory structures. A suitable signal processing based on the process characteristics is performed to compensate interference effects on the raw signals. As a result, an accuracy of the calibration better than 2% of the nominal value compared to an offline standardized calibration is achieved with the in-line calibration method. Consequently, efficiency in the manufacturing of sensory structures is further boosted by avoidance of setup or logistical operations.
Funder
Deutsche Forschungsgemeinschaft
Technische Universität Darmstadt
Publisher
Springer Science and Business Media LLC
Subject
Industrial and Manufacturing Engineering,Mechanical Engineering
Reference25 articles.
1. Lee C, Tarbutton JA (2014) Electric poling-assisted additive manufacturing process for PVDF polymer-based piezoelectric device applications. Smart Mater Struct. https://doi.org/10.1088/0964-1726/23/9/095044
2. Stoffregen H, Fischer J, Flaschenträger D, Rauschenbach M, Nuffer J, Melz T et al (2011) Additive manufacturing of adaptive components by selective laser melting. Adaptronic Congress, Darmstadt, pp 82–89
3. Kräusel V, Graf A, Heinrich M, Decker R, Caspar M, Kroll L et al (2015) Development of hybrid assembled composites with sensory function. CIRP Ann Manuf Technol. https://doi.org/10.1016/j.cirp.2015.04.054
4. Majumder M, Gangopadhyay TK, Chakraborty AK, Dasgupta K, Bhattacharya DK (2008) Fibre Bragg gratings in structural health monitoring-present status and applications. Sens Actuators A. https://doi.org/10.1016/j.sna.2008.04.008
5. Schwankl M, Rübner M, Singer RF, Körner C (2013) Integration of PZT-ceramic modules using hybrid structures in high pressure die casting. Procedia Mater Sci. https://doi.org/10.1016/j.mspro.2013.02.020
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