Analysis of the Potential Impact of Additive Manufacturing on Army Logistics

Abstract

This study examines additive manufacturing and describes the potential impact it could have on Army logistics, specifically contingency resupply operations. We research the three primary methods of additive manufacturing stereolithography, selective laser sintering, and fused deposition modeling. Our research identifies how each process works, the varieties of materials used, and the build times utilized in each process. Our methodology examines industry and military applications of additive manufacturing and identifies advantages and disadvantages of its use. Our analysis examines aerial resupply operations during Operation Iraqi Freedom and the Department of Defense standard times for aerial resupply associated with each step in the process. A comparative analysis identifies how the availability of additive manufacturing at the point of embarkation could impact order-to-receipt time of repair parts. This study concludes with the identification of the pros and cons of additive manufacturing, its potential impact on future operations, and recommendations for further research.

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Document Details

Document Type
Technical Report
Publication Date
Nov 06, 2013
Accession Number
ADA613024

Entities

People

  • Brock A. Zimmerman
  • Ellis E. Allen Iii

Organizations

  • Naval Postgraduate School

Tags

Communities of Interest

  • Advanced Electronics
  • Biomedical
  • Human Systems
  • Space
  • Weapons Technologies

DTIC Thesaurus Topics

  • Additive Manufacturing
  • Assembly
  • Computer-Aided Design
  • Construction
  • Fabrication
  • Fused Deposition Modeling
  • Iraqi-War
  • Logistics
  • Manufacturing
  • Materials
  • Military Applications
  • Prostheses And Implants
  • Prosthetics
  • Selective Laser Sintering
  • Stereolithography
  • Supply Chain
  • Three Dimensional

Readers

  • Logistics and Supply Chain Management.
  • Manufacturing Engineering.
  • Systems Analysis and Design

Technology Areas

  • Directed Energy