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- W4214839498 abstract "Abstract Flanging is a well-known process in sheet metal forming (SMF) process, which is highly used in automobile industry and in manufacturing of home appliances. The effectiveness of the flanging process depends on the geometry of tools, material properties etc. In the present research assessment, influence of punch shape on thickness variation in aluminium alloy sheet in stretch flanging (SF) process is presented, which is major challenge of this process. Six types of punches are used in the present work i.e. spherical, conical, cylindrical, 2 step, 3 step and 6 step. Punch of shape is an important part of tooling that affects the deformation behaviour of blank. FEM simulation work is carried out for the assessment of thickness and strain distribution in the flange portion (along the die profile radius and midsection (centre) of blank) in stretch flanging process. The results are validated with experiments that observed in a very good agreement. The reduction in thickness of blank is found minimum in hemispherical punch along the die profile radius and in the midsection of blank as compared to other punch geometry. Thus, it is concluded from this work, based on the reduction of thickness of blank, that the hemispherical punch profile is more suitable in the product design by stretch flanging process." @default.
- W4214839498 created "2022-03-05" @default.
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- W4214839498 date "2022-03-03" @default.
- W4214839498 modified "2023-09-28" @default.
- W4214839498 title "Analysis of the effect of different punch shapes on thickness distribution of AA5052 sheet in stretch flanging process" @default.
- W4214839498 doi "https://doi.org/10.21203/rs.3.rs-1323947/v1" @default.
- W4214839498 hasPublicationYear "2022" @default.
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