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February 14, 2026Processes0 citationsOpen Access

Tuning the Mechanical Properties of Gelcast Bodies During Drying Process via a Physically and Chemically Crosslinked Gel System

CWChengyu WangZCZhongMing ChenLLLeimin Liu

Key Points

  • This research aims to improve the mechanical properties of gelcast bodies during the drying process by optimizing gel structure design.
  • Analyzed stress-strain curves at various drying stages: wet, ethanol, and dried bodies.
  • Examined the effects of different gel compositions on mechanical performance.
  • Developed a crosslinked gel system to enhance strain capacity.
  • Incorporation of flexible polymer segments significantly increased strain capacity.
  • The PEGDE/PEI-TAC/SMALA-Na gel exhibited high strain during drying and strong performance post-drying.
  • The new gel structure effectively regulated drying stress, reducing warpage and cracking.

Abstract

Gelcasting is a widely developed ceramic forming technique; however, a persistent challenge lies in the drying process, where cracking and deformation frequently occur, hindering the further development of gelcasting. In this study, a strategy was proposed to address warpage and cracking during drying through gel structure design, aimed at increasing the ultimate strain of the bodies. The stress–strain curves of the bodies were analyzed at the wet body, ethanol body, and dried body stages. The effects of different gels on the mechanical performance of the bodies and their roles in regulating drying stress were further examined. The incorporation of flexible polymer segments into the polyethylene glycol diglycidyl ether/polyethyleneimine (PEGDE/PEI) system enhanced the strain capacity of the bodies. A physically and chemically crosslinked gel, denoted as PEGDE/PEI-TAC/SMALA-Na (PPS), was designed and synthesized in a silicon carbide/carbon black aqueous slurry. This PPS gel imparted excellent mechanical properties to the bodies, manifested by high strain during the drying process and high strength after drying. These findings provide a new perspective for controlling the mechanical behavior of gelcast bodies through gel structure manipulation and achieving defect-free execution of the drying process in gelcasting.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/699011932ccff479cfe585a5https://doi.org/10.3390/pr14040632
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