欢迎访问行业研究报告数据库

行业分类

当前位置:首页 > 报告详细信息

找到报告 1 篇 当前为第 1 页 共 1

高级耐磨纳米复合材料用于提高能源效率

Advanced Wear-Resistant Nanocomposites for Increased Energy Efficiency
作者:Cook, B. A.Harringa, J. L.Russell, A. M. 作者单位:Iowa State Univ., Ames. Dept. of Materials Science and Engineering.;Oak Ridge National Lab., TN.;Alberta Univ., Calgary.;Department of Energy, Washington, DC. 加工时间:2014-05-12 信息来源:科技报告(DE) 索取原文[135 页]
关键词:新能源与高效节能;能源效率;纳米复合材料;加工制造
摘 要:This report summarizes the work performed by an Ames-led project team under a 4-year DOE-ITP sponsored project titled, 'Advanced Wear-resistant Nanocomposites for Increased Energy Efficiency.' The Report serves as the project deliverable for the CPS agreement number 15015. The purpose of this project was to develop and commercialize a family of lightweight, bulk composite materials that are highly resistant to degradation by erosive and abrasive wear. These materials, based on AlMgB(sub 14), are projected to save over 30 TBtu of energy per year when fully implemented in industrial applications, with the associated environmental benefits of eliminating the burning of 1.5 M tons/yr of coal and averting the release of 4.2 M tons/yr of CO(sub 2) into the air. This program targeted applications in the mining, drilling, machining, and dry erosion applications as key platforms for initial commercialization, which includes some of the most severe wear conditions in industry. Production-scale manufacturing of this technology has begun through a start-up company, NewTech Ceramics (NTC). This project included providing technical support to NTC in order to facilitate cost-effective mass production of the wear-resistant boride components. Resolution of issues related to processing scale-up, reduction in energy intensity during processing, and improving the quality and performance of the composites, without adding to the cost of processing were among the primary technical focus areas of this program. Compositional refinements were also investigated in order to achieve the maximum wear resistance. In addition, synthesis of large-scale, single-phase AlMgB(sub 14) powder was conducted for use as PVD sputtering targets for nanocoating applications.
© 2016 武汉世讯达文化传播有限责任公司 版权所有
客服中心

QQ咨询


点击这里给我发消息 客服员


电话咨询


027-87841330


微信公众号




展开客服