By M. W. Fu, J. Lu (auth.), Xiu-Tian Yan BEng, PhD, CEng, MIET, FITL, Chengyu Jiang PhD, Benoit Eynard PhD, MAFM, MDS (eds.)
The globalisation of producing industries ends up in a thirst for fast developments in technological improvement and services within the fields of complicated layout and production. during this situation, either and academia have an pressing have to equip themselves of the newest wisdom and traits with regards to layout and manufacture.
Advanced layout and Manufacture to achieve a aggressive Edge collects jointly papers from the 2008 foreign convention on complex layout and Manufacture (ICADAM). This convention solicits either leading edge primary examine and up to date business software papers, with a target in the direction of bringing jointly from worldwide layout and manufacture practitioners from academia, govt firms and undefined. fresh developments, rising developments and new demanding situations within the fields of layout and production are coated, with a specific concentrate on the knowledge of the influence of allotted team-based layout and manufacture on study and commercial practices for worldwide companies.
The complaints of ICADAM 2008 is split into volumes: Global layout to realize a aggressive facet: An Holistic and Collaborative layout method in response to Computational instruments and Advanced layout and Manufacture to achieve a aggressive facet: New production innovations and their position in bettering firm Performance.
Read Online or Download Advanced Design and Manufacture to Gain a Competitive Edge: New Manufacturing Techniques and their Role in Improving Enterprise Performance PDF
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Extra resources for Advanced Design and Manufacture to Gain a Competitive Edge: New Manufacturing Techniques and their Role in Improving Enterprise Performance
Effect of blank holder force on maximum forming force Max. 4 mm Max. 6 mm Figure 8. Effect of clearance between punch and die on effective stress (a, b and c) Figure 9. Effect of clearance between punch and die on maximum forming force 40 T. S. Yang Max. effective stress = 1200 MPa Max. effective stress = 363 MPa (a) T = 25 b) T = 100 Max. 4mm 50000 40000 30000 20000 0 50 100 Temperature ( ) 150 200 (c) T = 200 Figure 10. Effect of working temperature on effective stress distribution (a, b and c) Figure 11.
14]. 30 T. Salonen and J. Sääski 5,0 4,5 4,0 3,5 3,0 2,5 2,0 1,5 1,0 0,5 0,0 < 30 Average 30-40 Average 41-50 Average 50 > Average I found the system easy to use System I did know what understood what to say/do during i do the interaction with the system < 30 Average 30-40 Average I would like to use the system in the future 41-50 Average 50 > Average 5,0 4,5 4,0 3,5 3,0 2,5 2,0 1,5 1,0 0,5 0,0 What is your opinion about augmented reality? Did you like graphical interface? Was the Does interaction graphical w ith the system interface useful?
The stress-strain relationship of PC Ti for different temperature is shown in Fig. 0 mm, respectively. The workpiece is modeled using approximately 9700 nodes and 15600 elements. 2 mm/s. 36 T. S. Yang punc a blankholde blan Rp blank die Rd b Figure 1. Schematic diagram of the square cup drawing process Figure 2. 4 Figure 3. 1 Effect of Process Parameters on the Effective Stress and Maximum Forming Force To investigate the effects of process parameters on the effective stress distribution and maximum forming force of PC Ti, numerical analysis was performed for each change in these values.