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- W2054496720 abstract "Abstract Computer-aided design is particularly useful in areas which traditionally require skills arising from extensive experience and practice. This applies to the forging industry where guidelines for die design are largely qualitative, and the few quantitative rules that exist are subject to modification to suit particular needs of manufacture. The lack of precise design rules is largely due to the diverse range of shapes produced and traditionally a mastery of die design is gained through many years of practice under the tuition of an expert. The value of computer-aided die design in the forging industry, is mainly twofold. First, existing skills can be rationalised and programmed for interactive use, easing the problem of training new designers. Second, the estimating process is accelerated and lead time to die manufacture reduced, affording savings in production cost. Sequence design for horizontal upsetting machines can be tedious as many interactive requirements of metal flow and volume conservation require simultaneous consideration. This paper deals with the manufacture of parts using piercing and upsetting operations. The computer programme described contains a number of rules which define limits to deformation, including volume of material upset in one stroke, unsupported bar length and punch nose angles. Operational sequences for a finished shape are presented graphically, together with a list of dimensions sufficient for manufacture. The programme user can modify designs interactively, using a keyboard to suit a particular upsetter or product." @default.
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- W2054496720 date "1983-06-01" @default.
- W2054496720 modified "2023-09-26" @default.
- W2054496720 title "Computer-aided sequence design for piercing on horizontal forging machines" @default.
- W2054496720 cites W2640864858 @default.
- W2054496720 doi "https://doi.org/10.1016/0378-3804(83)90046-3" @default.
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