Cart 0
The Effect of Layer Orientation on the Fatigue Behavior of 3D Printed PLA Samples
Click to zoom

Share this book

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

1st ed. 2023

Book Details

Format Paperback / Softback
ISBN-10 3031225724
ISBN-13 9783031225727
Edition 1st ed. 2023
Publisher Springer International Publishing AG
Imprint Springer International Publishing AG
Country of Manufacture GB
Country of Publication GB
Publication Date Mar 11th, 2023
Print length 48 Pages
Product Classification: Materials scienceProduction engineering
Ksh 7,200.00
Werezi Extended Catalogue Delivery in 28 days

Delivery Location

Delivery fee: Select location

Delivery in 28 days

Secure
Quality
Fast
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 effect of layer orientation on the fatigue behavior of 3D-printed PLA samples is investigated in this case study.

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.


Get The Effect of Layer Orientation on the Fatigue Behavior of 3D Printed PLA Samples by at the best price and quality guaranteed only at Werezi Africa's largest book ecommerce store. The book was published by Springer International Publishing AG and it has pages.

Mind, Body, & Spirit

Price

Ksh 7,200.00

Shopping Cart

Africa largest book store

Sub Total:
Ebooks

Digital Library
Coming Soon

Our digital collection is currently being curated to ensure the best possible reading experience on Werezi. We'll be launching our Ebooks platform shortly.