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Steel occupies a prominent place in the manufacturing industry in India. Development of Steel Industry in India covers the refractory industry, the cold rolling industry, the sponge iron industry and reserves, with focus on the export prospects, global competitiveness and research & development. Given the importance of infrastructure, a special analysis of it has been made. The book also discusses every major steel plant and examines different end uses of steel production, current and potential. Tables and charts have been suitably provided to explain various issues. A brief analysis of e-commerce is also included. In the technology appraisal section, core performance areas and key issues have been discussed at length. The conclusion details the future scenario of the industry. The book includes detailed discussions on complex matters, which would be of interest and use to both technologists and administrators.
Steel is the foundational material of modern civilization and constitutes the core of industry, and yet, it is overproduced across the world. This supply glut is reducing margins and turning steel into a sunset industry. Steel consumes as much as four times the amount of raw materials as its produced volume, and the sheer bulk of the steel makes it costly to transport. Because of this, countries prefer to make their own rather than to source it across land and sea. The Indian steel industry has grown from being the tenth largest steel producer in the world in 1991 to emerging as the second largest, after China. This book aims to reveal, through data and the use of simple economic concepts, the mistakes that abound in the discourses surrounding the steel industry. Its main objective is to dispel the many myths that are perpetuated by policy makers and the industry in order to benefit a small coterie of large firms, and discusses how through such favours the Indian steel industry is set to lose out in terms of margins, products and growth in technology. It covers the unique role of the Indian state in the development of the broad base of steel production, and observes the change in the direction in policy, which reverses the economic equality of the past and promotes collusion among oligopolies leading to overexpansion in capacities. Economics of the Indian Steel Industry will be of interest to students of industrial economics and corporate strategy, as well as financial managers and policy makers.
Develops a fresh non-Eurocentric analysis of the rise and development of the global economy in the last half-millennium.
Recognizing the urgent need for expansion of the steel industry in both India and China, the authors of this comparative study analyze present deficiencies and assess possible remedies.
Iron and steel have played a leading role in the development of human civilization and their techniques. Together with its derivative, steel, iron has no real rival in its particular fields of application and has become a synonym of progress, being an essential element in mankind greatest technological achievements. It was at the origin of the industrial and scientific revolutions and at the heart of all the great discoveries which have marked the history of humanity from the manufacture of high quality swords in ancient times to today architectural wonders. Steel is an alloy that consists mostly of iron and has carbon content between 0.2% and 2.1% by weight, depending on the grade. Carbon is the most common alloying material for iron, but various other alloying elements are used, such as manganese, chromium, vanadium, and tungsten. Rolling is a metal forming process in which metal stock is passed through a pair of rolls. Rolling is classified according to the temperature of the metal rolled. Steelmaking is the second step in producing steel from iron ore. Processing of steel results in special steel product with required properties, for example; vacuum treated steel for forging ingots; pre strengthened stress relieved elongated steel, metallurgical addition product, forging powder alloy steels, etc. Fasteners are used to join and hold two or more pieces of metal either temporarily or more pieces of metal either temporarily or permanently. Some of the most common are bolts, screws, nuts, rivets and pins. Packaging steels differ from other sheet products particularly in terms of their thickness, mechanical properties and coatings, together with their aptitude to satisfy specific industrial and marketing requirements related to high production rates, design factors etc. Small gage welded tubes have an extremely wide range of applications, including metallic roof frames, mechanical construction in public work and industrial engineering sector, agricultural machinery, fluid distribution circuits, piston, etc. India is among the top producers of all forms of steel in the world. Easy availability of low cost manpower and presence of abundant reserves make India competitive in the global setup. The steel industry in India has witnessed an increase in demand due to expanding oil and gas sector, huge spending on infrastructural facilities coupled with growth in housing, consumer durables and auto sectors. This book basically deals with structural changes in steel during hot rolling, structural changes during reheating, kinds of grain restoration process, dynamic restoration process, static restoration process, effect of initial grain, size of static re crystallization, effects of temperature and micro alloying, fundamental principles of the metal rolling process, preparing and heating the initial materials, preparations for rolling heating before rolling operations, bolt and nut manufacturing technology, casting of steel for flat products etc. The present book covers different important aspects of steel processing with the casting method of steel for flat products, rolling of rails, wheels and rings, rolling of different steel products, production of fasteners, welded pipes, steel products for the building trade and many more. The book is very useful for everybody who wants the thorough study on steel and steel products or wants to diversify in to this field. 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Buying, selling, budgeting, and saving are fundamental business practices that almost everyone understands on a basic level.
All machining process are dependent on a number of inherent process parameters. It is of the utmost importance to find suitable combinations to all the process parameters so that the desired output response is optimized. While doing so may be nearly impossible or too expensive by carrying out experiments at all possible combinations, it may be done quickly and efficiently by using computational intelligence techniques. Due to the versatile nature of computational intelligence techniques, they can be used at different phases of the machining process design and optimization process. While powerful machine-learning methods like gene expression programming (GEP), artificial neural network (ANN), support vector regression (SVM), and more can be used at an early phase of the design and optimization process to act as predictive models for the actual experiments, other metaheuristics-based methods like cuckoo search, ant colony optimization, particle swarm optimization, and others can be used to optimize these predictive models to find the optimal process parameter combination. These machining and optimization processes are the future of manufacturing. Data-Driven Optimization of Manufacturing Processes contains the latest research on the application of state-of-the-art computational intelligence techniques from both predictive modeling and optimization viewpoint in both soft computing approaches and machining processes. The chapters provide solutions applicable to machining or manufacturing process problems and for optimizing the problems involved in other areas of mechanical, civil, and electrical engineering, making it a valuable reference tool. This book is addressed to engineers, scientists, practitioners, stakeholders, researchers, academicians, and students interested in the potential of recently developed powerful computational intelligence techniques towards improving the performance of machining processes.