Rapid consolidation and curing of advanced composites using electron beam irradiation

Author:

Rizzolo Robert1,Walczyk Daniel1ORCID,Kuppers Jaron2,Montoney Daniel3,Galloway Richard4

Affiliation:

1. Center for Automation Technologies & Systems, Rensselaer Polytechnic Institute, Troy, NY, USA

2. Vistex Composites LLC, Schenectady, NY, USA

3. Rapid Cure Technologies, Inc., East Syracuse, NY, USA

4. IBA Industrial, Inc., Edgewood, NY, USA

Abstract

A low-cost, low-waste manufacturing method for advanced thermoset composite parts could improve market penetration of composites compared to other engineering materials such as aluminum or steel. Such a method could combine some of the new trends in composites manufacturing such as resin infusion (eliminates need for prepreg), out-of-autoclave consolidation, and snap curing. The feasibility of a hybrid process with these characteristics has been demonstrated by uniting liquid composite molding, resin curing by electron beam irradiation, and high pressure consolidation with specialized elastomeric tooling. To demonstrate feasibility, a mold set was designed to make flat, square four-ply woven carbon fiber parts by (1) vacuum-infusing dry preforms with an electron beam–curable epoxy resin in minutes, (2) applying 690 kPa of uniform pressure and consolidating in seconds using an elastomer-faced specialized elastomeric tooling tool and simple hydraulic press, and (3) curing in seconds using a 3 MeV electron beam source. To better understand how various process parameters affect part performance, parameters are varied in a simple design of experiments, and flexural strength and stiffness, thickness distribution, fiber and void volume fractions, surface roughness, and cross-sectional characteristics (via microscopy) are measured and compared.

Funder

National Science Foundation

New York State Energy Research and Development Authority

Publisher

SAGE Publications

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

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