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Thermal engineering of stone increased prehistoric toolmaking skill.
Veronica Mraz1, Mike Fisch2, Metin I Eren3,4
1Department of Anthropology, University of Tulsa, Tulsa, Oklahoma, 74104, USA.
Scientific Reports
|October 12, 2019
Summary
Heat treating toolstone reduces the force needed for flake propagation. However, this study found no significant changes in flake morphology due to heat treatment, challenging long-held beliefs in lithic technology.
Area of Science:
- Archaeology
- Materials Science
- Lithic Technology
Background:
- Intentional heat treatment of toolstone is an ancient practice dating back at least 70,000 years BP.
- The precise benefits of heat treating toolstone remain a subject of debate among researchers.
- Two primary hypotheses exist: reduced flake propagation force versus altered flake morphology.
Purpose of the Study:
- To systematically investigate the effects of heat treatment on toolstone.
- To test whether heat treatment primarily reduces the force required for flake propagation or also alters flake morphology.
- To provide empirical data to resolve the long-standing debate on the advantages of heat treating toolstone.
Main Methods:
- Toolstone cores were subjected to three temperature conditions: ambient, 300°C, and 350°C.
- Automated propagation procedures were used to generate flakes, minimizing human variability.
- Flake morphology was quantitatively analyzed using nine distinct measures.
Main Results:
- Heat treatment was confirmed to significantly reduce the force magnitude required for flake propagation.
- No significant or systematic differences in flake morphology were observed across the three temperature treatment groups.
- Analysis of nine morphological measures showed no discernible impact of heat treatment on flake form.
Conclusions:
- Heat treatment demonstrably lowers the force threshold for creating stone flakes.
- The study's findings indicate that heat treatment does not significantly alter the major morphological characteristics of stone flakes.
- This research challenges the notion that heat treatment fundamentally changes flake form, suggesting its primary effect is on the mechanics of fracture.
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