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The streamlined extrusion die is designed based on the principle of constant area reduction over the length of the die.
The obtained springback simulation results under the optimum boundary conditions showed that the logarithmic strain percent is approximately equal to 8% and using these conditions where the minimal springback is yielded, the tensile forming die is designed and manufactured.
The die is designed for direct determination of loading and unloading forces of powder compact inside the die in compaction and transverse directions.
In the present work, a new die is designed for ECAP and the performance is analyzed using finite element modeling Deform 3D commercially available software.
The cubic die is designed for directly determining the loading and unloading forces and displacements of powder compact inside the die in compaction and transverse directions without any additional calibration.
The die is designed according to the standards of ASTM B925 with the die being made of AISI D3 tool steel with the punch material being AISI D2 steel.
Similar(52)
Different shapes of pre-forming die were designed using MSC.
Two different multi-hole porthole dies with and without pockets in lower die were designed.
A combined female die was designed to solve the die releasing.
The die was designed considering the punch load and fabricated by micro electrodischarge machining process.
A forward extrusion die was designed and manufactured for the purpose of the experimental research.
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