科技报告详细信息
Energy Saving Melting and Revert Reduction Technology (Energy SMARRT): Manufacturing Advanced Engineered Components Using Lost Foam Casting Technology
Littleton, Harry ; Griffin, John
关键词: CARBON;    CASTING;    CASTINGS;    COMPUTERIZED SIMULATION;    EFFICIENCY;    ENERGY CONSUMPTION;    MANUFACTURING;    MARKET;    MARKETING;    MECHANICAL PROPERTIES;    MELTING;    METRICS;    PRODUCTION;    QUALITY CONTROL;    SCRAP;    SIMULATION Lost Foam;    Casting;    Metalcasting;   
DOI  :  10.2172/1024103
RP-ID  :  NA
PID  :  OSTI ID: 1024103
Others  :  TRN: US201119%%193
学科分类:能源(综合)
美国|英语
来源: SciTech Connect
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【 摘 要 】
This project was a subtask of Energy Saving Melting and Revert Reduction Technology (Energy SMARRT) Program. Through this project, technologies, such as computer modeling, pattern quality control, casting quality control and marketing tools, were developed to advance the Lost Foam Casting process application and provide greater energy savings. These technologies have improved (1) production efficiency, (2) mechanical properties, and (3) marketability of lost foam castings. All three reduce energy consumption in the metals casting industry. This report summarizes the work done on all tasks in the period of January 1, 2004 through June 30, 2011. Current (2011) annual energy saving estimates based on commercial introduction in 2011 and a market penetration of 97% by 2020 is 5.02 trillion BTU's/year and 6.46 trillion BTU's/year with 100% market penetration by 2023. Along with these energy savings, reduction of scrap and improvement in casting yield will result in a reduction of the environmental emissions associated with the melting and pouring of the metal which will be saved as a result of this technology. The average annual estimate of CO2 reduction per year through 2020 is 0.03 Million Metric Tons of Carbon Equivalent (MM TCE).
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