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3D Printing of Metals
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Metals 2016,6, 280 Figure21.Stressdistributiondensityof traditionalandoptimizedstopper. 3.4.2.Case2:ConnectingPlate The connecting platewith inner splines is always used to transfer torque between themain step-downgearandsidereducerofaheavytrackedvehicle. It connectswiththemainreducerbybolts andtransfers torquebythesplines. Theactualuseconditionsof theconnectingplateareshownin Figure22. Figure22.Theuseconditionsof theconnectingplate. Similarly, theredesignprocessesof theconnectingplateareas follows. 1.Modelbuildinganddesignof theskin The model can be made by 3D scanning measuring and reverse engineering technology. Theoptimizedthicknessof theskin is2mmaccordingto thepreviouswork. 2.Connectingplatestructureseveringandframeworkdesign Theconnectingplate canbedivided into threepartsby their forceconditionsandshapes: the flangestructurewith torque, theringstructurewith torqueandthesplinestructure. The frameworkof eachdividedplatewasredesignedbythemethodstudiedinSection3. Thentheredesignedconnecting platewasconnectedbytheir topological relationship. Thereconstructionresult is showninTable3. 3. Finiteelementanalysisanddetaildesignof theconnectingplate TheoriginalandreconstructedconnectingplatemodelswereintroducedintoANSYSYWorkbench (Pittsburgh, CA, USA) for finite element analysis to show the change of the stress distribution. Otherdetaileddesignssuchasfilletsandpowderoutletswerecompleted in this stage. 101
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3D Printing of Metals
Titel
3D Printing of Metals
Autor
Manoj Gupta
Herausgeber
MDPI
Ort
Basel
Datum
2017
Sprache
englisch
Lizenz
CC BY-NC-ND 4.0
ISBN
978-3-03842-592-2
Abmessungen
17.0 x 24.4 cm
Seiten
170
Schlagwörter
3D printing, additive manufacturing, electron beam melting, selective laser melting, laser metal deposition, aluminum, titanium, magnesium, composites
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Naturwissenschaften Chemie
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3D Printing of Metals