Analysis of the Economical, Ecological and Quality Advantages Consequent Resulting from Initiation of Technology Integrated in Metallurgy
Analysis of the Economical, Ecological and Quality Advantages Consequent Resulting from Initiation of Technology Integrated in Metallurgy
摘要
Metallurgical sector plays an important role in the economy of each country because steel products present essential raw material for basic industries. Changes in the sectors of iron, steel and non-ferrous metals and the current development of technology forces the steel mills increased productivity, reduce production costs while ensuring to obtain a product with the required properties and to improve the competitiveness of enterprises in the global market. Currently, the most popular in meeting these requirements, enjoys a method of integration which combines individual operations into one integrated whole. The use of modem, perfectly designed, fully automated design of mechanical, hydraulic and measurement allowed us to achieve an innovative line of production. This article presents the general characteristics of the steel industry and a description of the latest integrated technology currently used in foundries and rolling mills. It also presents examples of the use of integrated technologies in metallurgy and the effects of economic, environmental and quality resulting from their use on an industrial scale.
参考文献10
-
1Kubifiski, W. 2008. Engineering and Production Technology. Poland: Publishing House AGH.
-
2Kubifiski, W., and Kubifiska-Kaleta, E. 2008. "Direction of Integration Process in Metallurgy." Production and Management In Metallurgy, 27-30.
-
3Turczyn, S., and Nowakowski, A. 1999. "IntegratedCasting and Rolling of Flat Products." Hutnik-Wiadomoci Hutnicze 5: 240-2.
-
4"Smelting and Continuous Casting of Steel Machines and Integrated Systems for the Production of Flat Products." www.home.agh.edu.pl/-zmsz/pliki/mez/Model_COS.ppt 16.04.2014.
-
5Kubifiski, W., and Dziarmagowski, M. 1992. "Integrated Production Processes Metal Tape." Hutnik-Wiadomokei Hutnicze 11: 357-61.
-
6Kubifski, W. 2001. "Integrated Casting and Rolling of Bars and Sections." Hutnik-Wiadomoci Hutnicze 6: 230-1.
-
7Wala, A., Kupka, M., and Barrcik, J. 1998. "Metal Technology." V. II, Publishing House Uniwersytet Sly, ski.
-
8Kubifiski, W., Krawczyk, K., and Zitek, M. 2004. "Integration of Technological Processes in Cold Strip Mill." Humik-Wiadomoci Hutnicze 12: 600-7.
-
9Kubifiski, W., and Kazanecki, J. 1992. "Planetary Mill for Hot-Rolled Pipes." Hutnik-Wiadomoci Hutnicze 1: 17-21.
-
10Siflczak, J., and Lukaszek-Solek, A. 2006. "Quality Engineering for Processing." UWND.
-
1Economical Policy[J].China's Refractories,2008,17(1):47-48.
-
2裴雅文.冶建信息网计算机网络系统介绍[J].工程技术与管理,1997(4):33-36.
-
3杨志红.铸造企业技术创新战略研究[J].现代经济信息,2015,0(24):71-71.
-
4边柯柯.实施差异化战略 推动军民融合发展[J].军工文化,2013(6):34-36.
-
5吴金生.着力推动有色金属行业信息化发展[J].微型机与应用,2008,27(4):50-50.
-
6郭声琨.有色金属行业解决计算机2000年问题简况[J].有色金属工业,2000(12):7-8.
-
7卞玉冲.煤矿企业经济与技术结合型成本管理[J].中外企业家,2014(8Z):74-74. 被引量:2
-
8丁德科.陕西军民结合产业基地发展透析[J].中国军转民,2007(4):48-49. 被引量:6
-
9武咸云,赵霞.以技术供给推动产业结构调整[J].发展,2009(5):38-38.
-
10龙飞.冶金部建设INTRANET计划及其实现[J].办公自动化,1997,6(4):24-28.