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Automated Assembly

In order to reduce costs and increase the flexibility of HCS readers, it is to be expected that academic laboratories will assemble automated microscopes themselves. Hopefully this will be done with the Open Source hardware (OSHW) model, allowing other laboratories to reproduce the design (http //www.open-hardware.org) (15, 16). [Pg.107]

Ranky, P. G. (2006), Introduction to RFID—Radio frequency identification methods and solutions, Assembly Automation, 26(1), 28-33. [Pg.196]

Ranky, P. G. (2003), A real-time manufacturing/assembly system performance evaluation and control model with integrated sensory feedback processing and visualization, Assembly Automation. [Pg.196]

Ranky, P. G. (2004), Digital, Internet-enabled assembly line and factory modeling, Assembly Automation, 24(3), 247-253. [Pg.196]

Ranky, P. G. (1999), Design, manufacturing and assembly automation trends and strategies in China, Assembly Automation, 19(4), 301-305. [Pg.199]

Figure 10 Objectives Pursued by Assembly Automation Projects. Figure 10 Objectives Pursued by Assembly Automation Projects.
Increasing miniaturization of mechanical components and rising demands in the precision mechanics and microtechnology industries are creating high demands on assembly automation. Today automated solutions only exist for mass series production systems (the watchmaking industry, the electronics industry). Automation of assembly tasks for small and medium-sized series is still rare. Flexible automated microassembly systems are required there due to the large number of different types and variants. [Pg.395]

Boothroyd, G., Assembly Automation and Product Design, Marcel Dekker, New York, 1992. [Pg.399]

Bogue, R., 2009. Shape-memory materials a review of technology and applications. Assembly Automation 29 (3), 214—219 (Emerald Group Publishing Limited). [Pg.16]

World Federation of Engineering Organizations Committee on Technology (2002). Engineers and Sustainable Development, WFEO, Germany. Yamamoto, Y. and Bellgran, M. (2010). Fundamental mindset that drives improvements towards lean production. Assembly Automation, 30(2), 124-130. [Pg.124]

Productivity is increased by making assembly automation processes more efficient. [Pg.768]

Automation is the cmiversion of a procedure, a process, or equipment to an automatic operation without intervention by a human operator (CIRP 2004). In the field of assembly, assembly automation describes the cmiversion of a manual assembly process to an assembly without a human operator, fii general, the term describes the process of increasing the number of assembly steps carried out by automatic assembly machines in a plant. [Pg.53]

Product Design for Automated Assembly As the technical and economical feasibility of products depends on the assembly process, an important part of assembly automation is the design for assembly. Hereby the following rules have to be considered (Boothroyd 2005) ... [Pg.54]

Assembly Automation, Fig. 1 Cost of unit in dependence of the degree of automation in assembly (according to Ehrlenspiel 2007)... [Pg.55]

Limitations to Assembly Automation Automatic assembly has the following technical limitations (Kruger et al. 2009) ... [Pg.55]

Boothroyd G (2005) Assembly automation and product design, 2nd edn. CRC Press/Taylor Francis, Boca Raton (Manufacturing engineering and materials processing, 66)... [Pg.61]

Assembly 50 Assembly Automation 52 Assembly Line 55 Assembly Representation 60 Bonding 102 Handling 615... [Pg.1341]

Hieu LC, Zlatov N, Sloten JV, Bohez E, Khanh L, Binh PH, Oris P, Toshev Y (2005) Medical rapid prototyping applications and methods. Assembly Autom 25(4) 284-292... [Pg.354]

Stylios, G., 1996. Principles of intelhgent textile and garment manufacturing systems. Assembly Autom. 16 (3), 40-44. [Pg.336]

The final function of manufacturing engineering focuses on analyzing and defining processes and machines, and the entities of assembly automation. This area also includes selection of materials-handling systems, robotics, assembly lines, and all other components of manufacturing automation. [Pg.344]

Assembly Automation. 1980-. Bingley, Yorkshire, U.K. Emerald Group Publishing (0144-5154). [Pg.358]

Kochan, A. Rapid pa-ototyping gains speed, volume and precision. Assembly Automation, v. 20, n. 4, p. 295-299, 2000. [Pg.214]

Hicks, C. and Earl, C.F. 2001 The validation of simulation models. Assembly Automation, 21, 3. [Pg.198]

Bak D. Rapid prototyping or rapid production 3D printing processes move industry towards the latter. Assembly Autom 2003 23 340-5. [Pg.633]


See other pages where Automated Assembly is mentioned: [Pg.199]    [Pg.47]    [Pg.94]    [Pg.768]    [Pg.47]    [Pg.53]    [Pg.53]    [Pg.53]    [Pg.54]    [Pg.54]    [Pg.55]    [Pg.55]    [Pg.55]    [Pg.671]    [Pg.830]    [Pg.1334]    [Pg.463]    [Pg.116]    [Pg.82]    [Pg.371]    [Pg.458]    [Pg.90]    [Pg.345]    [Pg.16]    [Pg.241]   
See also in sourсe #XX -- [ Pg.118 ]




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