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Meeting Materials Science & Technology 2020
Symposium Light Metal and Composites Technology
Presentation Title Joining of Light Metals to Polymer Composites by Overcasting Technique
Author(s) Aashish Rohatgi, Kumar Sadayappan
On-Site Speaker (Planned) Aashish Rohatgi
Abstract Scope While light metals and carbon fiber reinforced polymer (CFRP) composites individually offer attractive mechanical performance, fabricating a robust metal-CFRP joint can be challenging. This presentation will describe a technique to join alloys to CFRP by casting the alloy (e.g. Al or Mg) such that a section of the CFRP is completely embedded within the casting to create a strong mechanical interlocking joint. Thus, even though the polymer melting/degradation temperature is several hundred degrees below the casting temperature, the CFRP can survive the overcasting process if the process duration is “short” by maintaining a high cooling rate during the casting solidification (e.g. akin to high-pressure die casting). In this work, overcasting process was performed using continuous and chopped fiber composites. Test coupons were tested in tension and characterized by non-destructive and microscopy techniques. Details of the experiments, the metal-composite interface and the resulting mechanical properties of the joints will be described.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A Novel Equiatomic and Non-equiatomic Low-density High Entropy Alloys and Composites
Developments in Titanium Alloys for Aero-engine Applications
Effect of Cu Content on Tensile and Low Cycle Fatigue Properties of Cast Al-Cu-Mn-Zr Alloys
Functional Relationships between Treatment Time, Microstructure and Mechanical Properties of Ultrasonically Cast Metal Matrix Nanocomposites
Introductory Comments: Light Metals and Composite Technology
Joining of Light Metals to Polymer Composites by Overcasting Technique
Metastable f.c.c. Phase and Its Influence on the Soft-magnetic Properties of FeCoNiAlxSix (0.2 < x < 0.5) Alloys
Microstructure and Interfaces of Nanocomposites Manufactured in Solid State
Microstructure, Interfaces, and Mechanical Properties of Ceramic Matrix Composites
Nanostructured Composites via Environmentally Controlled Pressure Assisted Sintering
Poly(Carborane-siloxane-(aryl)Acetylene)s: A Versatile Inorganic-Organic Polymer Platform for Advanced Materials Applications
Revisiting Phase Field Simulations of Theta’ Variant Selection during Stress Aging of Al-Cu Alloys

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