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Die design must reflect pass schedule design.
However, product design procedures, in terms of rolls design and rolls pass schedule, remains more an art than science.
This chapter discusses common die materials, die wear and die life, pass schedule concept, and drawing practices.
In the paper the problem of optimal pass schedule design in multi-pass wire drawing process is investigated.
An appropriate pass schedule, which can control the wire temperature, is achieved by using the temperature calculation model.
Moreover, a new multi-stage wet wire drawing machine is designed for carrying out a wire drawing experiment to verify the new pass schedule.
Similar(46)
Rolling pass schedules leading to round stock generally employ sequences of ovals and rounds.
Two pass schedules were obtained and discussed in the paper with regard to rolling pass time, average grain size, grain size deviation in thickness, etc.
The current numerical results provide a valuable source of reference for the design of pass schedules for porous metals undergoing rolling processes.
In the present study, three different rolling pass schedules for thick plates are proposed to obtain fine and uniform grains through thickness, based on combined analyses of recrystallization modeling, finite element analysis and experiments.
Since meta-dynamic and dynamic recrystallization have been found to be effective in producing fine grains, the reduction ratio and the interpass time were carefully considered in the proposed rolling pass schedules.
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