SAE SRP-001-2016 Studies into Additive Manufacturing for In-Space Manufacturing (To Purchase Call 1-800-854-7179 USA Canada or 303-397-7956 Worldwide).pdf
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1、Studies into Additive Manufacturing for In-Space ManufacturingFor more information or to order a book, contact: SAE INTERNATIONAL 400 Commonwealth Drive Warrendale, PA 15096 Phone: +1.877.606.7323 (U.S. and Canada only) or +1.724.776.4970 (outside U.S. and Canada) Fax: +1.724.776.0790 Email: Custome
2、rServicesae.org Website: books.sae.orgStudies into Additive Manufacturing for In-Space Manufacturing Edited by Rani Elhajjar and Tracy R. Gill Warrendale, Pennsylvania, USA Copyright 2016 SAE International eISBN: 978-0-7680-8374-3Copyright 2016 SAE International. All rights reserved. No part of this
3、 publication may be reproduced, stored in a retrieval system, distributed, or transmitted, in any form or by any means without the prior written permission of SAE International. For permission and licensing requests, contact SAE Permissions, 400 Commonwealth Drive, Warrendale, PA 15096-0001 USA; e-m
4、ail: copyrightsae.org; phone: +1-724-772-4028; fax: +1-724-772-9765. Library of Congress Catalog Number 2014944059 SAE Order Number SRP-001 DOI http:/dx.doi.org/10.4271/srp-001/ Information contained in this work has been obtained by SAE International from sources believed to be reliable. However, n
5、either SAE International nor its authors guarantee the accuracy or completeness of any information published herein and neither SAE International nor its authors shall be responsible for any errors, omissions, or damages arising out of use of this information. This work is published with the underst
6、anding that SAE International and its authors are supplying information, but are not attempting to render engineering or other professional services. If such services are required, the assistance of an appropriate professional should be sought. ISBN-Print 978-0-7680-8373-6 ISBN-PDF 978-0-7680-8374-3
7、 ISBN-epub 978-0-7680-8376-7 ISBN-prc 978-0-7680-8375-0 To purchase bulk quantities, please contact SAE Customer Service e-mail: CustomerServicesae.org phone: +1.877.606.7323 (inside USA and Canada) +1.724.776.4970 (outside USA) fax: +1.724.776.0790 Visit the SAE Bookstore at books.sae.org 400 Commo
8、nwealth Drive Warrendale, PA 15096 E-mail: CustomerServicesae.org Phone: +1.877.606.7323 (inside USA and Canada)+1.724.776.4970 (outside USA) Fax: +1.724.776.0790v Table of Contents Preface vii Introduction ix Chapter 1: Extrusion and 3D Printing of Recycled ABS Filament for Use in FDM Lessons Learn
9、ed . 1 Aleksey Yermakov, Brandon Hitter, Tressa Norden, and Anthony Demeuse Chapter 2: Mechanical Properties of 3D-Printed Recycled ABS Materials for FDM Applications 11 Jon Wolgamott, Alexandra Slay, Keith Anderson, and Gabriella Santarosa Chapter 3: Effects of Orientation Angle on the Mechanical P
10、roperties of FDM Parts 19 Jon Wolgamott, Alexandra Slay, and Keith Anderson Chapter 4: Finite Element Modeling of 3D Printed Materials Using Unit Cell Methods 27 Seyedmohammad S. Shams and Daniella M. Perazzo Chapter 5: Design of a Carbon-Fiber Reinforced Fused Deposition Modeling Modular Wrench Too
11、l 37 Alex Francis, Ben Huberty, Nicole Przybyla, and Alex Seidcheck Chapter 6: Carbon Fiber Reinforced 3D Printed Ratchet: Feasibility and Application in Deep Space Missions . 53 Bryan Sinkovec and John Emholtz Chapter 7: High Performance 3D Printed Carbon-Fiber Reinforced Crowfoot Adaptive Tool 63
12、Kelly Scott and Brett Sweeney Chapter 8: A Recyclable ABS/Carbon-Fiber Reinforced Locking Pliers Tool Using Fused Deposition Modeling 3D Printing Technique 71 Joel Klopstein and Bill Merschdorf About the Authors . 79 About the Editors 82vii Preface The annual X-Hab Academic Innovation Challenge, ini
13、tiated in 2011, provides university students with the opportunity to be on the forefront of innovation. The X-Hab Challenge, for short, is designed to engage and retain students in Science, Technology, Engineering, and Math (STEM). The National Aeronautics and Space Administration (NASA) identifies
14、necessary technologies and studies for deep space missions and invites universities from around the country to develop concepts, prototypes, and lessons learned that will help shape future space missions and awards seed funds to design and produce functional products of interest as proposed by unive
15、rsity teams according to their interests and expertise. Universities propose on a variety of projects suggested by NASA and are then judged on technical merit, academic integration, leveraged funding, and outreach. The universities assemble a multidisciplinary team of students and advisors that inve
16、st months working together, developing concepts, and frequently producing working prototypes. Not only are students able to gain quality experience, working real-world problems that have the possibility of being implemented, but they work closely with subject matter experts from NASA who guide them
17、through an official engineering development process. During the 2014-2015 academic year, the University of Wisconsin-Milwaukee was selected to execute a project entitled Design of a Carbon-Fiber/Fused Deposition Modeling Spacecraft Structural Fabrication System. The project was sponsored by NASAs In
18、-Space Manufacturing Project, based at the Marshall Space Flight Center, but the team was able to get the benefit of experts from other NASA centers as well. The team studied 3D printing technology applications for creating and recycling tools on long-term space missions. The project showed very pro
19、mising results, and this book is a compilation of findings from the project and hopefully the first of more of its kind as a result of an X-Hab Challenge project. Tracy R. Gill, NASA, Kennedy Space Center ix Introduction Three-dimensional (3D) printing or additive manufacturing (AM) using thermoplas
20、tic materials has had a profound impact on the engineering field. The ability to use AM for one-off special parts or as a tool for conceptualizing complex details has been applied successfully in various applications. AM using plastics has been applied in areas ranging from rapid prototyping of comp
21、lex parts to brain surgeons employing models of patient brains to visualize the surgery procedures in advance. However, the use of plastics in additive manufacturing is coupled with an increased public awareness on the need for recycling technologies that will limit the amount of waste going to the
22、landfills. Advances in AM for space exploration has also been a subject of growing interest as ideas and concepts of long-range space missions evolve. In partnership with the National Space Grant Foundation and NASA, students from the University of Wisconsin-Milwaukee participated in the 2014-15 X-H
23、ab Academic Innovation Challenge. This program is a university-level challenge designed to engage and retain students in science, technology, engineering, and math and simultaneously engage students in pressing research and design topics of interest to the space exploration community. NASA has recog
24、nized the need for new AM technologies not only for environmental sustainability but also for recycling capabilities for replacement parts on long-range spacecraft missions. NASA has embarked on an ambitious program to integrate additive manufacturing techniques and to develop processes for the micr
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