Development of a Test Bench for the Investigation of Thermoplastic-Thermoset Material Combinations in Additive Manufacturing

Author:

Schreil Daniela1,Zhilev Georgi1,Matschinski Alexander1,Drechsler Klaus1

Affiliation:

1. Technical University of Munich

Abstract

To enhance the mechanical properties of fused filament fabricated parts, the process integrates continuous fibers. Currently, fibers are impregnated either with thermoplastics or with thermoset material, which is completely cured before printing and later combined with thermoplastic filament during the coextrusion process. A major problem about using cured thermoset matrix for the fibers is an insufficient bond between the fiber matrix and the thermoplastic material. A new approach proposed by the authors combine uncured thermoset matrices with thermoplastic filaments to form a substance-to-substance bond. To investigate the material and bonding behavior, a test bench is constructed. Its main purpose is to replicate the coextrusion of thermoplastic filament and thermoset impregnated continuous fibers. Parameters, such as temperature, tension and extrusion speed can be adjusted within the setup to accurately simulate the additive manufacturing process. Aluminum blocks including heater cartridges and thermocouples act as hot ends and impregnation units. Heated blocks compact the fiber strands. We tested different heating blocks containing flat and curved geometries including actual additive manufacturing nozzles to evaluate the impregnation behavior of the dry carbon fiber filaments. Approaches with additive manufacturing nozzles show the most promising results regarding fiber impregnation with thermoplastic material.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference22 articles.

1. Sanei SHR, Popescu D. 3D-Printed Carbon Fiber Reinforced Polymer Composites: A Systematic Review. J. Compos. Sci. 2020;4(3):98.

2. Yasa E, Ersoy K. A Review on the Additive Manufacturing of Fiber Reinforced Polymer Matrix Composites. Solid Freeform Fabrication Symposium;2018:1024–33.

3. Mark GT, Benhaim D, et al. Methods for Fiber Reinforced AM(US 9,694,544 B2); (2017).

4. Azarov AV, Golubev MV, Antonov FK, Khaziev AR. Print Head for Additive Manufacturing of Articles - European Patent Office - EP 3611007 A1(EP 3611007A1); (2020).

5. Mason H, Gardiner G. 3D printing with continuous fiber: A landscape. [July 29, 2021].

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