March 2026

Conference Paper

Multiplexing core & sheath extrusion system development for additive manufacturing for inner-bead multi-material capability

By:
Tekinalp, Halil L; Roschli, Alex C; Heineman, Jesse ; Kumar, Vipin ; Mhatre, Paritosh S; Marathe, Umesh N; Talabi, Segun I; Wasti, Sanjita ; Reynolds, Jay T; Nuttall, David ; Ozcan, Soydan
Page Number:
1-13
Book Title:
CAMX 2025 Technical Proceedings
Publication Date:
March 2026
Publisher Location:
SAMPE North America, California, United States of America
Conference Name:
CAMX 2025 – the Composites and Advanced Materials Expo
Conference Location:
Orlando, Florida, United States of America
Conference Sponsor:
CAMX
View DOI Listing:
https://doi.org/10.33599/nasampe/c.25.148

Abstract

Single-feed polymer extruders are widely used in large-format additive manufacturing (AM) systems; however, the increasing demand for multi-material functionality within a single part has driven significant innovation in this field. One approach involves robotic pick-and-place operations, while another explores mechanical switching of feed lines during extrusion. Although robotic pick-and-drop systems offer flexibility, they introduce longer layer times during material changes, which can negatively affect the structural integrity of the part. On the other hand, mechanical feed switching causes delays in material transitions, as the existing material must be flushed before the new material emerges from the nozzle. This poses particular challenges for smaller or more intricate parts. In this study we are developing a unique multiplexing extrusion system with core & sheath nozzle that combines two extruders via co-extrusion. This allows for a unique inside and outside inner-bead (i.e., within the same bead) multi-material capability. We believe that this technology will allow for combining neat and filled materials, ductile and stronger materials, and many other combinations to address the problems aforementioned above and disrupt the AM technology creating new opportunities and opening application areas.