The Effect of Layer Orientation on the Fatigue Behavior of 3D Printed PLA Samples

This book presents fused deposition modeling (FDM) which is an additive manufacturing (AM) process to fabricate 3D parts from a build-up of 2D layers. The chapters present an experimental analysis of fatigue characteristics of FDM-processed PLA samples. The results indicate that the concentric build orientation provides highest cycles of fatigue, ultimate strength, and impact energy. The effect of layer orientation on the fatigue behavior of 3D-printed PLA samples is investigated in this case study.

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The Effect of Layer Orientation on the Fatigue Behavior of 3D Printed PLA Samples

This book presents fused deposition modeling (FDM) which is an additive manufacturing (AM) process to fabricate 3D parts from a build-up of 2D layers. The chapters present an experimental analysis of fatigue characteristics of FDM-processed PLA samples. The results indicate that the concentric build orientation provides highest cycles of fatigue, ultimate strength, and impact energy. The effect of layer orientation on the fatigue behavior of 3D-printed PLA samples is investigated in this case study.

49.99 In Stock
The Effect of Layer Orientation on the Fatigue Behavior of 3D Printed PLA Samples

The Effect of Layer Orientation on the Fatigue Behavior of 3D Printed PLA Samples

The Effect of Layer Orientation on the Fatigue Behavior of 3D Printed PLA Samples

The Effect of Layer Orientation on the Fatigue Behavior of 3D Printed PLA Samples

eBook1st ed. 2023 (1st ed. 2023)

$49.99 

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Overview

This book presents fused deposition modeling (FDM) which is an additive manufacturing (AM) process to fabricate 3D parts from a build-up of 2D layers. The chapters present an experimental analysis of fatigue characteristics of FDM-processed PLA samples. The results indicate that the concentric build orientation provides highest cycles of fatigue, ultimate strength, and impact energy. The effect of layer orientation on the fatigue behavior of 3D-printed PLA samples is investigated in this case study.


Product Details

ISBN-13: 9783031225734
Publisher: Springer-Verlag New York, LLC
Publication date: 03/10/2023
Series: SpringerBriefs in Applied Sciences and Technology
Sold by: Barnes & Noble
Format: eBook
File size: 30 MB
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