PDF

2026 Erhard Sintered Bauxite Binder Jetting Cores 10.1007 s40962 025 01691 8

Patricia Erhard, Carla Reddersen

2026enbinder jettingbauxite sandcasting cores3D printingfoundryaluminum casting

Abstract

Language:

In this article, the processing of sintered bauxite sand with a high aluminum oxide content in 3D printing of casting molds and cores with furan resin is investigated regarding the performance achievable with this material system that is tailored for foundry applications. Suitable parameters for processing in a commercial binder jetting system, VX500, were identified. The influence of the binder and catalyst content as well as the coating speed on the properties of 3-point bending strength, surface roughness, and gas permeability is shown and compared with the most used quartz sand system, GS14 RP. Finally, a benchmark geometry to assess the 3D sand printing shape details and a demonstration geometry that is demanding in terms of core removal are produced. The effect of the molding material system on the surface quality of an aluminum casting is quantified. It was found that an increased catalyst content is required to process the bauxite sand in furan 3D printing. Due to its high flowability, this can be added to the sand without any detrimental effects on the coating speed. Indeed, the coating speed could be doubled compared to the silica sand system while the impact of increased catalyst amounts on the resulting emissions needs to be examined. With the bauxite sand, 3-point bending strengths of above 3 MPa and gas permeability of higher than 300 could be achieved with suitable 3D printing process parameters at mean roughness depths Rz of approximately 170 µm, resulting in a roughness Rz on the order of 110 µm in the casting. The specific advantages of the bauxite-based ceramic sand, such as low thermal expansion, high sphericity, and proper refractoriness, could be further exploited in 3D-printed cores for advanced ferrous alloys casting applications.

Download

Cite This Work

@article{0b15e626-2b98-46ae-9bec-819ebaa2dfe5,
  title={2026 Erhard Sintered Bauxite Binder Jetting Cores 10.1007 s40962 025 01691 8},
  author={Patricia Erhard and Carla Reddersen},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - 2026 Erhard Sintered Bauxite Binder Jetting Cores 10.1007 s40962 025 01691 8
AU  - Patricia Erhard
AU  - Carla Reddersen
PY  - 2026
LA  - en
ER  -

Similar Items

Optimization of Integrated Steel Plant R

This paper addresses the challenge of assessing the feasibility of wind power plant projects at sites with insufficient or no local historic wind data

2025enPDF

Design for Recovery of Precious and Base

2026enPDF

Electrochemical techniques for a cleaner

Important advances in electrochemical engineering technology over the last three decades have fostered the development of a lternative methods to alle

2026enPDF

Environmental and Human Health Risks Ass

2026enPDF

The Recovery of Precious and Base Metals

Increasing volumes of waste printed circuit boards from obsolete electronic equipment posed escalating environmental risks and resource losses due to

2026enPDF

Treatment of manufacturing scrap TV boar

The leachability tests for manufacturing scrap TV boards (STVB) have indicated the release of metals beyond the limit levels with potential problems f

2026enPDF