By Cornelius T. Leondes
This can be a useful five-volume reference at the very vast and hugely major topic of laptop aided and built-in production structures. it's a set of quite titled and well-harmonized volumes by means of prime specialists at the foreign scene. The concepts and applied sciences utilized in machine aided and built-in production structures have produced, and should without doubt proceed to provide, significant annual advancements in productiveness, that is outlined because the items and prone made from each one hour of labor. This e-book offers relatively with more advantageous usage of work and capital, specifically info expertise platforms. jointly the 5 volumes deal with comprehensively the foremost thoughts and applied sciences which are concerned.
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Extra info for Computer Aided and Integrated Manufacturing Systems, Volume 4: Computer Aided Design Computer Aided Manufacturing (CAD CAM)
19 The whole process takes about two days to complete, after which it undergoes a polishing and touching up treatment. 6. Making of working die The final working die, a negative face, is produced by the hobbing process using the master die. The hobbing process takes one day to complete, excluding the annealing process which requires another 8 hours of the time. Polishing of the working die is necessary between hobbing processes. The same procedures are carried when processing the reverse surfaces of the working die of a coin.
Fig. 9. (f) Solid element equation. Continued 54 Masaji Tanaka et al. (g) Two examples of solutions. Fig. 9. Continued 4. 1. The difference between 2D assembly orthographic views of one part drawings and 2D assembly drawings include all the information about the shapes of all the parts in the assembly. The main differences between orthographic views of one part and 2D assembly drawings are the following two points. • Border lines between parts are drawn in 2D assembly drawings. • The part numbers are indicated to each part in 2D assembly drawings.
A face is a closed loop of edges. All of faces form surface models of solids. 5 illustrates all of the faces obtained from Fig. 3. (4) Solid element A solid element is a closed region of faces. 6 illustrates each of the solid elements (S-y, 52,^3) obtained from Fig. 5. A solid element that actually exists in the solid models is called a true solid element, and a solid element that does not exist in the solid models is called a false solid element. Solutions are obtained by distinguishing the truth of all solid elements.
Computer Aided and Integrated Manufacturing Systems, Volume 4: Computer Aided Design Computer Aided Manufacturing (CAD CAM) by Cornelius T. Leondes