Advances in Sustainable and Competitive Manufacturing by Hasse Nylund, Mikko Tapaninaho, Seppo Torvinen, Paul H.

By Hasse Nylund, Mikko Tapaninaho, Seppo Torvinen, Paul H. Andersson (auth.), Américo Azevedo (eds.)

The court cases contains the set of revised papers from the twenty third overseas convention on versatile Automation and clever production (FAIM 2013). This convention goals to supply a world discussion board for the trade of innovative scientific wisdom and business event in regards to the improvement and integration of a number of the features of versatile Automation and clever production structures protecting the full life-cycle of a company’s items and techniques. Contents will comprise subject matters equivalent to: Product, approach and manufacturing facility built-in layout, production know-how and clever platforms, production Operations administration and Optimization and production Networks and MicroFactories.

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Miltenburg J (2005) Manufacturing strategy: how to formulate and implement a winning plan. Productivity Press, Portland, p 435 9. Johnson G, Scholes K, Whittingon R (2010) Exploring corporate strategy, 8th edn. Pearson Education, Essex, UK, p 625 10. Lapinleimu I, Kauppinen V, Torvinen S (1997) Kone- ja metalliteollisuuden tuotantojärjestelmät. Tammer-paino, Porvoo, Finland (in Finnish) 11. Lapinleimu I (2001) Ideal factory theory of factory planning, produceability and ideality. Doctoral thesis, Tampere University of Technology, Publications 328, p 195 12.

This is achieved by integrating advanced technologies in various functional units to achieve corporate objectives [8]. ) that are vital to a business’ competitive advantage. Figure 3 shows the authors’ interpretation of CIMS from relevant literature, including Nagaligam and Lin [8], Rzevski [10], Beeby [11] and Harrington [9], in the area of integrated design and manufacturing. This consists of the integrated computer-aided design, manufacture and engineering (CAD/CAM/CAE) as well as additional managerial, planning and control activities.

Obviously, the technological level of the injection molding machine used for production can have a strong impact on the performance and energy efficiency [5, 6]. The injection mold also can have huge influence on energy efficiency, as it is directly linked with production speed (especially cooling time) and scrap rate. Besides technological aspects, the machine operator remains as a key factor for efficient molding processes. The operator’s goal is to set up stable and efficient processes for a specific combination of mold and machine.

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