By Ali K. Kamrani, Emad Abouel Nasr
Collaborative Engineering (CE) is the systematic method of the built-in, concurrent layout of goods and comparable techniques, together with production, product provider and help. This strategy is meant to reason the builders to think about all components of the product existence cycle from notion via disposal, together with caliber, fee, agenda, and person standards. the target of Collaborative Engineering is to lessen the system/product improvement cycle time via a greater integration of assets, actions and processes.
Collaborative Engineering: thought and perform deals insights into the tools and strategies that let imposing a Collaborative Engineering proposal on product layout via integrating services for clever details help and crew decision-making using a standard company community version and information interface via shared ontologies.
The e-book is usually a suite of the newest utilized equipment and know-how from chosen specialists during this region so as to be established in a fashion priceless in supporting and structuring the course.
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Extra resources for Collaborative Engineering: Theory and Practice
Fmr – radial magnetic force. Fma – axial magnetic force. Frde – radial force acting on drive end bearing. Fade – axial force acting on drive end bearing. Frnde – radial force acting on nondrive end bearing. Fande – axial force acting on nondrive end bearing. L – distance between bearings. l1 – distance between the drive end transmission device and the drive end bearing. l2 – distance between the nondrive end transmission device and the nondrive end bearing. li – distance between the center of the rotor packet and the drive end bearing.
24. Sethi R. and Nicholoson C. (2001), Structural and contextual correlates of charged behavior in product development teams, Journal of Product Innovation Management, Vol. 18, No. 3, pp. 154–168. 25. , and David B. (1997), Integrated product design for marketability and manufacturability, Journal of Marketing Research, Vol. XXXIV, No. 1, pp. 154–163. 26. Ulrich K. and Eppinger S. (2000), Product Design and Development, Second Edition, McGraw-Hill Publication. 27. Wallace, D. and Senin N. (1997), A Framework for Mixed Parametric and Catalog Based Product Design, MIT, CADLab.
The system schema is illustrated in Fig. 1. The user requirements are analyzed and converted into input parameters for the design calculation phase. The output from the design calculations is utilized as the control parameters for selecting feasible drawings from the CAD system. The process planning module uses the CAD data and then generates route sheets as well as a cost analysis of feasible designs. This enables the designer to study the impact on the design on the basis of cost and manufacturing capability.
Collaborative Engineering: Theory and Practice by Ali K. Kamrani, Emad Abouel Nasr