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World of Possibilities

World of Possibilities PDF Author: Charles F. Sabel
Publisher: Cambridge University Press
ISBN: 9780521894432
Category : Business & Economics
Languages : en
Pages : 526

Book Description
This book retells the history of Western industrialization, revealing possibilities unexplored in the nineteenth century, variants of which have come to transform present day economies. It shows that economic actors have historically been more aware of the great strategic choices they faced than standard theory credits them with being, and this surprising acuity allows them to imagine and put into practice solutions which current theories of industrial organization have scarcely anticipated. The book is therefore at one and the same time a contribution to a substantive revision of the history of mechanized production and a propaedeutic in a form of explanation that approximates the knowledge of the actor to the knowledge of the theorist. The volume groups essays presented by a multinational team of historians and social scientists drawing on intensive primary research on a wide range of firms, regions, sectors and national economies in Western Europe and the United States from the eighteenth century to the 1990s.

World of Possibilities

World of Possibilities PDF Author: Charles F. Sabel
Publisher: Cambridge University Press
ISBN: 9780521894432
Category : Business & Economics
Languages : en
Pages : 526

Book Description
This book retells the history of Western industrialization, revealing possibilities unexplored in the nineteenth century, variants of which have come to transform present day economies. It shows that economic actors have historically been more aware of the great strategic choices they faced than standard theory credits them with being, and this surprising acuity allows them to imagine and put into practice solutions which current theories of industrial organization have scarcely anticipated. The book is therefore at one and the same time a contribution to a substantive revision of the history of mechanized production and a propaedeutic in a form of explanation that approximates the knowledge of the actor to the knowledge of the theorist. The volume groups essays presented by a multinational team of historians and social scientists drawing on intensive primary research on a wide range of firms, regions, sectors and national economies in Western Europe and the United States from the eighteenth century to the 1990s.

Design of Flexible Production Systems

Design of Flexible Production Systems PDF Author: Tullio Tolio
Publisher: Springer Science & Business Media
ISBN: 3540854142
Category : Technology & Engineering
Languages : en
Pages : 308

Book Description
In the last decade, the production of mechanical components to be assembled in final products produced in high volumes (e.g. cars, mopeds, industrial vehicles, etc.) has undergone deep changes due to the overall modifications in the way companies compete. Companies must consider competitive factors such as short lead times, tight product tolerances, frequent market changes and cost reduction. Anyway, companies often have to define production objectives as trade-offs among these critical factors since it can be difficult to improve all of them. Even if system flexibility is often considered a fundamental requirement for firms, it is not always a desirable characteristic of a system because it requires relevant investment cost which can jeopardize the profitability of the firm. Dedicated systems are not able to adapt to changes of the product characteristics while flexible systems offer more flexibility than what is needed, thus increasing investment and operative costs. Production contexts characterized by mid to high demand volume of well identified families of products in continuous evolution do not require the highest level of flexibility; therefore, manufacturing system flexibility must be rationalized and it is necessary to find out the best trade-off between productivity and flexibility by designing manufacturing systems endowed with the right level of flexibility required by the production problem. This new class of production systems can be named Focused Flexibility Manufacturing Systems-FFMSs. The flexibility degree in FFMSs is related to their ability to cope with volume, mix and technological changes, and it must take into account both present and future changes. The required level of system flexibility impacts on the architecture of the system and the explicit design of flexibility often leads to hybrid systems, i.e. automated integrated systems in which parts can be processed by both general purpose and dedicated machines. This is a key issue of FFMSs and results from the matching of flexibility and productivity that respectively characterize FMSs and Dedicated Manufacturing Systems (DMSs). The market share of the EU in the machine tool sector is 44%; the introduction of focused flexibility would be particularly important for machine tool builders whose competitive advantage is based on the ability of customizing their systems on the basis of needs of their customers. In fact, even if current production contexts frequently present situations which would fit well with the FFMS approach, tradition and know-how of machine tool builders play a crucial role. Firms often agree with the focused flexibility vision, nevertheless they decide not to pay the risk and efforts related to the design of this new system architecture. This is due also to the lack of well-structured design approaches which can help machine tool builders to configure innovative systems. Therefore, the FFMS topic is studied through the book chapters following a shared mission: "To define methodologies and tools to design production systems with a minimum level of flexibility needed to face, during their lifecycle, the product and process evolution both in the technological and demand aspects. The goal is to find out the optimal trade-off between flexibility and productivity". The book framework follows the architecture which has been developed to address the FFMS Design problem. This architecture is both broad and detailed, since it pays attention to all the relevant levels in a firm hierarchy which are involved in the system design. Moreover, the architecture is innovative because it models both the point of view of the machine tool builder and the point of view of the system user. The architecture starts analyzing Manufacturing Strategy issues and generating the possible demand scenario to be faced. Technological aspects play a key role while solving process plan problems for the products in the part family. Strategic and technological data becomes input when a machine tool builder performs system configuration. The resulting system configurations are possible solutions that a system user considers when planning its system capacity. All the steps of the architecture are deeply studied, developing methods and tools to address each subproblem. Particular attention is paid to the methodologies adopted to face the different subproblems: mathematical programming, stochastic programming, simulation techniques and inverse kinematics have been used. The whole architecture provides a general approach to implement the right degree of flexibility and it allows to study how different aspects and decisions taken in a firm impact on each other. The work presented in the book is innovative because it gives links among different research fields, such as Manufacturing Strategy, Process Plan, System Design, Capacity Planning and Performance Evaluation; moreover, it helps to formalize and rationalize a critical area such as manufacturing system flexibility. The addressed problem is relevant at an academic level but, also, at an industrial level. A great deal of industrial sectors need to address the problem of designing systems with the right degree of flexibility; for instance, automotive, white goods, electrical and electronic goods industries, etc. Attention to industrial issues is confirmed by empirical studies and real case analyses which are presented within the book chapters.

Beyond Mass Production--flexible Production Systems and Manufacturing Performance in Thw World Auto Industry

Beyond Mass Production--flexible Production Systems and Manufacturing Performance in Thw World Auto Industry PDF Author: John Paul MacDuffie
Publisher:
ISBN:
Category :
Languages : en
Pages : 346

Book Description


Beyond Mass Production

Beyond Mass Production PDF Author: John Paul MacDuffie
Publisher:
ISBN:
Category : Automobile industry and trade
Languages : en
Pages : 346

Book Description


Manufacturing Flexible Packaging

Manufacturing Flexible Packaging PDF Author: Thomas Dunn
Publisher: William Andrew
ISBN: 0323265057
Category : Technology & Engineering
Languages : en
Pages : 305

Book Description
Efficiently and profitably delivering quality flexible packaging to the marketplace requires designing and manufacturing products that are both "fit-to-use" and "fit-to-make". The engineering function in a flexible packaging enterprise must attend to these dual design challenges. Flexible Packaging discusses the basic processes used to manufacture flexible packaging products, including rotogravure printing, flexographic printing, adhesive lamination, extrusion lamination/coating; and finishing/slitting. These processes are then related to the machines used to practice them, emphasising the basics of machines’ control systems , and options to minimize wasted time and materials between production jobs. Raw materials are also considered, including the three basic forms: Rollstock (paper, foil, plastic films); Resin; and Wets (inks, varnishes, primers). Guidance is provided on both material selection, and on adding value through enhancement or modification of the materials’ physical features. A ‘measures’ section covers both primary material features – such as tensile, elongation, modulus and elastic and plastic regions – and secondary quality characteristics such as seal and bond strengths, coefficient of friction, oxygen barrier and moisture vapour barrier. Helps engineers improve existing raw material selection and manufacturing processes for manufacturing functional flexible packaging materials. Covers all aspects of delivering high value packaging to the customer – from the raw materials, to the methods of processing them, the machines used to do it, and the measures required to gauge the characteristics of the product. Helps engineers to minimize waste and unproductive time in production.

Flexible Manufacturing Systems in Practice

Flexible Manufacturing Systems in Practice PDF Author: Joseph Talavage
Publisher: CRC Press
ISBN: 1000103528
Category : Technology & Engineering
Languages : en
Pages : 377

Book Description
This book has been written for all those interested in flexible manufacturing systems (FMS) and other forms of computerized manufacturing systems (CMS). It deals with many aspects of the design, operation, and simulation of FMS and explains the origins of FMS.

Flexible Manufacturing

Flexible Manufacturing PDF Author: John E. Lenz
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 344

Book Description
Providing the basis for a formal flexible manufacturing design procedure, effective color graphics animation of simulation, and an economoc model for inverstment decisions, this important reference takes a fresh look at flexible manufacturing, going beyond computerization and mechanization to develop a unique technology.

Beyond Mass Production--flexible Production Systems and Manufacturing Performance in Thw World Auto Industry

Beyond Mass Production--flexible Production Systems and Manufacturing Performance in Thw World Auto Industry PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
By John Paul MacDuffie.

Design of Flexible Production Systems

Design of Flexible Production Systems PDF Author: Tullio Tolio
Publisher: Springer
ISBN: 9783540854470
Category : Technology & Engineering
Languages : en
Pages : 300

Book Description
In the last decade, the production of mechanical components to be assembled in final products produced in high volumes (e.g. cars, mopeds, industrial vehicles, etc.) has undergone deep changes due to the overall modifications in the way companies compete. Companies must consider competitive factors such as short lead times, tight product tolerances, frequent market changes and cost reduction. Anyway, companies often have to define production objectives as trade-offs among these critical factors since it can be difficult to improve all of them. Even if system flexibility is often considered a fundamental requirement for firms, it is not always a desirable characteristic of a system because it requires relevant investment cost which can jeopardize the profitability of the firm. Dedicated systems are not able to adapt to changes of the product characteristics while flexible systems offer more flexibility than what is needed, thus increasing investment and operative costs. Production contexts characterized by mid to high demand volume of well identified families of products in continuous evolution do not require the highest level of flexibility; therefore, manufacturing system flexibility must be rationalized and it is necessary to find out the best trade-off between productivity and flexibility by designing manufacturing systems endowed with the right level of flexibility required by the production problem. This new class of production systems can be named Focused Flexibility Manufacturing Systems-FFMSs. The flexibility degree in FFMSs is related to their ability to cope with volume, mix and technological changes, and it must take into account both present and future changes. The required level of system flexibility impacts on the architecture of the system and the explicit design of flexibility often leads to hybrid systems, i.e. automated integrated systems in which parts can be processed by both general purpose and dedicated machines. This is a key issue of FFMSs and results from the matching of flexibility and productivity that respectively characterize FMSs and Dedicated Manufacturing Systems (DMSs). The market share of the EU in the machine tool sector is 44%; the introduction of focused flexibility would be particularly important for machine tool builders whose competitive advantage is based on the ability of customizing their systems on the basis of needs of their customers. In fact, even if current production contexts frequently present situations which would fit well with the FFMS approach, tradition and know-how of machine tool builders play a crucial role. Firms often agree with the focused flexibility vision, nevertheless they decide not to pay the risk and efforts related to the design of this new system architecture. This is due also to the lack of well-structured design approaches which can help machine tool builders to configure innovative systems. Therefore, the FFMS topic is studied through the book chapters following a shared mission: "To define methodologies and tools to design production systems with a minimum level of flexibility needed to face, during their lifecycle, the product and process evolution both in the technological and demand aspects. The goal is to find out the optimal trade-off between flexibility and productivity". The book framework follows the architecture which has been developed to address the FFMS Design problem. This architecture is both broad and detailed, since it pays attention to all the relevant levels in a firm hierarchy which are involved in the system design. Moreover, the architecture is innovative because it models both the point of view of the machine tool builder and the point of view of the system user. The architecture starts analyzing Manufacturing Strategy issues and generating the possible demand scenario to be faced. Technological aspects play a key role while solving process plan problems for the products in the part family. Strategic and technological data becomes input when a machine tool builder performs system configuration. The resulting system configurations are possible solutions that a system user considers when planning its system capacity. All the steps of the architecture are deeply studied, developing methods and tools to address each subproblem. Particular attention is paid to the methodologies adopted to face the different subproblems: mathematical programming, stochastic programming, simulation techniques and inverse kinematics have been used. The whole architecture provides a general approach to implement the right degree of flexibility and it allows to study how different aspects and decisions taken in a firm impact on each other. The work presented in the book is innovative because it gives links among different research fields, such as Manufacturing Strategy, Process Plan, System Design, Capacity Planning and Performance Evaluation; moreover, it helps to formalize and rationalize a critical area such as manufacturing system flexibility. The addressed problem is relevant at an academic level but, also, at an industrial level. A great deal of industrial sectors need to address the problem of designing systems with the right degree of flexibility; for instance, automotive, white goods, electrical and electronic goods industries, etc. Attention to industrial issues is confirmed by empirical studies and real case analyses which are presented within the book chapters.

Flexible Manufacturing Technologies and International Competitiveness

Flexible Manufacturing Technologies and International Competitiveness PDF Author: Joseph Tidd
Publisher: Burns & Oates
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 136

Book Description
The drive to reduce costs and enhance competitiveness in manufacturing industry has led to greatly increased interest in industrial automation, particularly for small and medium sized enterprises. Although manufacturing robots and flexible machining systems (FMS) are no longer the exclusive preserve of the major industrial multi-nationals, their adoption has not been as widespread or as effective as was once predicted. The purpose of this book is to examine the international patterns of development and adoption of flexible automated manufacturing, to identify current and future best practice particularly in the emerging technology of robotic assembly, and to show how technology, industrial flexibility and competitiveness are inter-related.