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- W2119342336 abstract "Modern building structural materials, such as concrete and steel, embody relatively high amounts of energy and detrimentally contribute to the building industry’s high output of greenhouse gases. Additionally, semi-permanent modern building construction methods used with these materials, such as welding and wet work detrimentally contribute to the building industry’s large contribution of landfill wastes. In response to these two issues, Professor Jack Elliott of Cornell University has developed a new structural system known as “Triakonta”, a modular wood-based, carbonsequestering system designed for disassembly, to reduce landfill wastes. The purpose of this thesis research is to investigate the structural viability of the Triakonta framing system, utilizing black locust timber as the carbon sequestering material in conjunction with a novel modular connector system. Through a proof of concept prototyping effort, and a mechanical testing program, the assembly’s basic mechanical characteristics under loading, and its viability as a complete structural system were tested. Quarter scale modeling and full scale mechanical testing in tension, compression, and bending were undertaken at the Bovay Civil Infrastructure Laboratory Complex at Cornell University. The results from these prototype trials demonstrate the viability of the system as a flexible, environmentally conscious alternative to conventional construction." @default.
- W2119342336 created "2016-06-24" @default.
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- W2119342336 date "2012-01-31" @default.
- W2119342336 modified "2023-09-26" @default.
- W2119342336 title "The Viability Of Black Locust And The Triakonta Connection System As Structural Components In Modular Framing Systems" @default.
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