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Design of flexible production systems methodologies and tools

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. 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.

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  • "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. 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."@en
  • "Manufacturing Flexibility is usually seen as the main answer for surviving in present markets characterized by short lead times, tight product tolerances, pressure on costs, frequent changes of demand and continuous evolution of products. However, the competitiveness of a firm can be negatively affected by capital intensive investments in system flexibility. Indeed production contexts characterized by mid to high demand volume of well identified families of products in continuous evolution normally do not require the highest level of flexibility. Designing manufacturing systems that optimally satisfy the production requirements represents a very complex problem, since aspects ranging from manufacturing strategy to process planning, and from scenario analysis to performance evaluation must be considered over the system lifecycle. The book addresses these interdependencies proposing an integrated approach to flexible production system design. Since traditional system architectures are not always the most efficient solution to face new production contexts a new manufacturing system architecture named Focused Flexibility Manufacturing Systems - FFMSs is also introduced. Indeed the explicit design of flexibility can lead to hybrid systems, i.e. automated integrated systems consisting of general purpose and dedicated machines. This is a key issue of FFMSs which are designed to achieve an optimal balance between flexibility and productivity at system level."
  • "Presents work that links different research fields, such as Manufacturing Strategy, Process Plan, System Design, Capacity Planning and Performance Evaluation. This title helps to formalize and rationalize a critical area such as manufacturing system flexibility. It also includes empirical studies and real case analyses."@en

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  • "Aufsatzsammlung"
  • "Electronic books"@en

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  • "Design of Flexible Production Systems Methodologies and Tools"
  • "Design of flexible production systems methodologies and tools"@en
  • "Design of flexible production systems methodologies and tools"
  • "Design of Flexible Production Systems : Methodologies and Tools"
  • "Design of flexible production systems : methodologies and tools"
  • "Design of Flexible Production Systems"@en