Solutions for Sustainable Machining

Author:

Uhlmann Eckart1,Peukert Bernd2,Thom Simon2,Prasol Lukas2,Fürstmann Paul2,Sammler Fiona2,Richarz Sebastian2

Affiliation:

1. Professor Institute for Machine Tools and Factory Management, Technische Universität Berlin, Berlin 10587, Germany e-mail:

2. Institute for Machine Tools and Factory Management, Technische Universität Berlin, Berlin 10587, Germany e-mail:

Abstract

The manufacturing industry contributes over 19% to the world's greenhouse gas emissions (U.S. Energy Information Administration, 2008, “Rep: Annual Energy Review 2008,” Report No. DOE/EIA-0384; Diaz et al., 2010, “Environmental Analysis of Milling Machine Tool Use in Various Manufacturing Environments,” 2010 IEEE International Symposium on Sustainable Systems and Technology.) and 31% of the total energy consumed annually in the U.S. (Herzog, T., 2005, “World Greenhouse Gas Emissions in 2005,” World Resources Institute, Washington, DC 2; Diaz et al., 2010, “Environmental Analysis of Milling Machine Tool Use in Various Manufacturing Environments,” 2010 IEEE International Symposium on Sustainable Systems and Technology.). There is therefore an increasing demand for sustainable solutions for the production technology industry. At the Technische Universitat (TU) Berlin, Germany, a collaborative research center (CRC) is focusing on new solutions for the sustainable machining of high performance alloys, with developments from machine tool frames to cutting tool technology being undertaken. An innovative machine tool concept with a modular frame, which allows a high level of flexibility, has been developed. Furthermore, add-on upgrading systems for older machine tools, which are particularly relevant for developing countries, have been developed. These systems allow the accuracy of outdated machine tools to be increased, thus making the machine tools comparable to modern systems. Finally the cutting process also requires solutions for dry machining, as the use of cooling lubricant is environmentally damaging and a significant cost contributor in machining processes. Two solutions are being developed at the TU Berlin: an internally cooled cutting tool and a heating concept for ceramic tools to allow dry machining of high temperature alloys, for example, for the aerospace industry.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference31 articles.

1. Rep: Annual Energy Review 2008;U.S. Energy Information Administration,2008

2. Diaz, N., Helu, M., Jayanathan, Y., Chen Y., Horvath, A., and Dornfeld, D., 2010, “Environmental Analysis of Milling Machine Tool Use in Various Manufacturing Environments,” 2010 IEEEInternational Symposium on Sustainable Systems and Technology.10.1109/ISSST.2010.5507763

3. World Greenhouse Gas Emissions in 2005,2005

4. Tracking Industrial Energy Efficiency and CO2 Emission;IEA,2007

5. State-of-the-Art in Reconfigurable Machining Systems,1997

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