Spatiotemporal chaotification of delta robot mixer for homogeneous graphene nanocomposite dispersing
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Date
2020
Authors
Savas Sahin
Ali Emre Kavur
Sibel Demiroglu Mustafov
Ozgur Seydibeyoglu
Ozgun Baser
Yalcin Isler
Cuneyt Guzelis
Journal Title
Journal ISSN
Volume Title
Publisher
ELSEVIER
Open Access Color
Green Open Access
Yes
OpenAIRE Downloads
4
OpenAIRE Views
10
Publicly Funded
No
Abstract
This paper presents the design implementation and polymer nanocomposite mixing application of a robust spatiotemporal chaotic delta robot. Blending fluids efficiently is a vital process for the preparation of graphene nanocomposite mixing. The most commonly used mixing materials are polymeric materials that need to be blended in non-Newtonian fluids. To achieve a superior blending performance over the conventional ones it is used two different chaotification mechanisms for the realization of the spatiotemporal chaotic delta robot mixer system. One of them is for the chaotification of the mixer propeller while the second one is for the chaotification of the three-dimensional position of the endpoint of the delta robot. The model-based robust chaotification scheme based on sliding mode control is applied to chaotify the speed of the delta robot-mixer via dynamical state-feedback chaotification method. The chaotification of 3D position of the mixer is realized in a feedforward way by producing chaotic input signals. The implemented robust chaotic delta robot mixer exploits the efficacy of chaotic mixing in obtaining homogeneity in the mixture with less operation time and hence reduced electrical energy consumption. In these performance evaluations energy consumption and material characterization which are measured by reliable material characterization methods such as X-ray diffraction Fourier-transform-infrared spectroscopy water contact angle dynamical mechanical analysis atomic force microscopy Raman and field emission-scanning electron microscope analyses are used as criteria. The obtained results show that for the delta robot the proposed chaotic-speed together with 3D chaotic-movement operation mode provides a better mixing performance than other mixing operation modes. (C) 2020 Elsevier B.V. All rights reserved.
Description
Keywords
Delta robot, Chaotification, Robustness, Sliding mode control, Polymer nanocomposites mixing, Graphene, MECHANICAL-PROPERTIES, GRAPHITE OXIDE, EXFOLIATION, POLYMER, SYSTEMS, CHAOS, Polymer Nanocomposites Mixing, Robustness, Chaotification, Delta Robot, Sliding Mode Control, Graphene
Fields of Science
0103 physical sciences, 02 engineering and technology, 0210 nano-technology, 01 natural sciences
Citation
WoS Q
Scopus Q

OpenCitations Citation Count
13
Source
Robotics and Autonomous Systems
Volume
134
Issue
Start Page
103633
End Page
PlumX Metrics
Citations
CrossRef : 13
Scopus : 14
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Mendeley Readers : 12
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