2018
DOI: 10.1186/s10033-018-0254-1
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Plastic Deformation Mechanism in Double-Roller Clamping Spinning of Flanged Thin-Walled Cylinder

Abstract: Double-roller clamping spinning (DRCS) is a new process for forming a thin-walled cylinder with a complex surface flange. The process requires a small spinning force, and can visibly improve forming quality and production efficiency. However, the deformation mechanism of the process has not been completely understood. Therefore, both a finite element numerical simulation and experimental research on the DRCS process are carried out. The results show that both radial force and axial force dominate the forming p… Show more

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“…DRCS spinning force, stress, strain, and wall thickness distributions for the different deformation areas were obtained. Furthermore, microstructure analysis and tensile test results show that the flanged thin-walled cylinder formed by DRCS has good mechanical properties (Fan et al, 2018). The finite element model of the multi-pass DRCS for the sheet metal is established.…”
Section: Introductionmentioning
confidence: 99%
“…DRCS spinning force, stress, strain, and wall thickness distributions for the different deformation areas were obtained. Furthermore, microstructure analysis and tensile test results show that the flanged thin-walled cylinder formed by DRCS has good mechanical properties (Fan et al, 2018). The finite element model of the multi-pass DRCS for the sheet metal is established.…”
Section: Introductionmentioning
confidence: 99%