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SBIR Phase I: High-performance, chloride-proof, ferritic steel for cold spray coating of steel rebar

SBIR Phase I: High-performance, chloride-proof, ferritic steel for cold spray coating of steel rebar
SBIR 第一期:用于钢筋冷喷涂的高性能、耐氯化物铁素体钢
批准号:
2231660
负责人:
Samuel McAlpine
金额:
$27.5万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2023
资助国家:
美国
项目状态:
已结题
起止时间:
2023-04-01 至 2024-08-31

项目摘要

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中文摘要
翻译
这个小企业创新研究(SBIR)第一阶段项目的更广泛的影响是开发和商业化一种新型的钢筋,耐腐蚀,但优于现有的钢筋,并具有成本竞争力。该项目的先进钢筋将使混凝土基础设施更安全,更持久,需要更少的维修和更换。这项技术将延长混凝土结构的使用寿命,从而减少温室气体排放,同时还支持许多清洁能源技术,如海上风电,水电和核电,所有这些都需要长期使用的钢筋混凝土。SBIR第一阶段项目旨在开发一种新型的不锈钢定制组合物,作为低成本碳钢基础设施的保护性外包层。 几个技术挑战将得到解决,包括定制的组合物是在高氯化物环境中高度耐腐蚀,保持铁素体结构和机械与碳钢基体的兼容性,并开发冷喷涂兼容的加工技术。该项目有望改变钢铁和混凝土基础设施的耐腐蚀性,使新的涂料组合物和方法能够整合到现有的钢铁米尔斯。如果成功,该技术将使低成本的钢部件以不到一半的价格达到不锈钢部件的使用寿命,将关键基础设施的使用寿命延长3倍,并避免大量的公共成本和碳排放。该奖项反映了NSF的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
The broader impact of this Small Business Innovation Research (SBIR) Phase I project is to develop and commercialize a new type of steel rebar which resists corrosion but outperforms existing rebar and is cost competitive. The advanced steel rebar from this project will enable safer and longer lasting concrete infrastructure, requiring fewer repairs and replacements. This technology will provide increases in the lifetimes of concrete structures thereby reducing greenhouse gas emissions while also supporting a number of clean energy technologies, such as offshore wind, hydroelectric, and nuclear power, all of which require long-lasting reinforced concrete. This SBIR Phase I project aims to develop a novel custom composition of stainless steel to serve as a protective outer cladding for low-cost carbon steel infrastructure. Several technical challenges will be addressed including tailoring of the composition to be highly corrosion resistant in high chloride environments, maintaining a ferritic structure and mechanical compatibility with a carbon steel substrate, and developing a cold-spray compatible processing technique. This project promises to shift the paradigm in corrosion resistance of steel and concrete infrastructure, enabling a novel coating composition and method to integrate into existing steel mills. If successful, this technology will enable low-cost steel components to reach the lifetimes of stainless steel components at less than half the price, extending lifetimes of key infrastructure as much as 3-fold and avoiding massive public costs and carbon emissions.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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海外基金
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