Effect of Glass Waste on Masonry Ceramics with 3 Temperatures and 4 Formulations
by Alexandre Zaccaron
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Description
An experimental dataset by Alexandre Zaccaron investigates the effect of adding 5%, 10%, and 20% glass waste to clay ceramics fired at 800, 900, and 1000 °C. The work measured technological properties including linear drying shrinkage, water absorption, and mechanical resistance to compression. Results indicate that adding up to 20% glass waste sintered at 900 °C yields properties acceptable by Brazilian standards for non-load-bearing blocks.
Use Cases
Predicting mechanical resistance to compression based on glass waste percentage and firing temperature.
Modeling the relationship between glass content and linear drying/firing shrinkage.
Analyzing the effect of firing temperature on water absorption in waste-incorporated ceramics.
Optimizing ceramic formulations for sustainable manufacturing based on established property norms.
Strengths
The description provides specific quantitative results, such as drying shrinkage decreasing from 7.9% to 5.9% with increased glass content.
Experimental conditions are clearly defined, including three firing temperatures (800, 900, 1000 °C) and four distinct material formulations.
Results are benchmarked against a specific technical standard (Brazilian norm for hollow ceramic blocks).
Limitations
Column-level documentation is absent; field semantics must be inferred after download.
Row count is unknown, which may limit suitability assessment.
Last update date is unknown; freshness unverified.
Provenance
Source
Alexandre Zaccaron via paperswithcode
Collection Method
Experimental study involving the creation and testing of cylindrical ceramic samples.
License is listed as Open Access (green); specific terms should be verified from the source.