2015
DOI: 10.1016/j.matlet.2014.12.107
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A novel combined severe plastic deformation method for producing thin-walled ultrafine grained cylindrical tubes

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Cited by 43 publications
(21 citation statements)
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“…Although numerous SPD processes have been introduced, not all the existing methods can be listed here owing to the continuing research in this field. However, the examples are high pressure sliding [14], high pressure tube twisting [15], friction stir processing [16], equal channel angular drawing [17], ECAP-partial back pressure [18], accumulative back extrusion [19], accumulative roll bonding [20], accumulative spin bonding [21], constrained groove pressing [22], constrained studded pressing [23], parallel tubular channel angular pressing [24], tube channel pressing [25], elliptical cross-section spiral equal-channel extrusion [26], C-shape equal channel reciprocating extrusion [27], half channel angular extrusion [28], cyclic extrusion compression [29], cyclic closed die forging [30], cyclic expansion extrusion [31], cyclic extrusion compression angular pressing [32], (variable lead) axi-symmetric forward spiral extrusion [33,34], forward shear normal extrusion [35], rotary extrusion [36], torsion extrusion (TE) [37], twist extrusion (TE) [38], simple shear extrusion [39], continuous shearing [40], continuous confined strip shearing [41], continuous frictional angular extrusion [42], repetitive corrugation straightening [43], severe torsion straining [44], and so on.…”
Section: Severe Plastic Deformation Processesmentioning
confidence: 99%
“…Although numerous SPD processes have been introduced, not all the existing methods can be listed here owing to the continuing research in this field. However, the examples are high pressure sliding [14], high pressure tube twisting [15], friction stir processing [16], equal channel angular drawing [17], ECAP-partial back pressure [18], accumulative back extrusion [19], accumulative roll bonding [20], accumulative spin bonding [21], constrained groove pressing [22], constrained studded pressing [23], parallel tubular channel angular pressing [24], tube channel pressing [25], elliptical cross-section spiral equal-channel extrusion [26], C-shape equal channel reciprocating extrusion [27], half channel angular extrusion [28], cyclic extrusion compression [29], cyclic closed die forging [30], cyclic expansion extrusion [31], cyclic extrusion compression angular pressing [32], (variable lead) axi-symmetric forward spiral extrusion [33,34], forward shear normal extrusion [35], rotary extrusion [36], torsion extrusion (TE) [37], twist extrusion (TE) [38], simple shear extrusion [39], continuous shearing [40], continuous confined strip shearing [41], continuous frictional angular extrusion [42], repetitive corrugation straightening [43], severe torsion straining [44], and so on.…”
Section: Severe Plastic Deformation Processesmentioning
confidence: 99%
“…As is realized, the large amount of deformation load in pressing based processes is consumed to overcome the friction forces. 63,64) Orlov et al demonstrated the feasibility of upscaling of SPD technique by an integrated die combining conventional extrusion and ECAP as an integrated processing step. 65) As shown schematically in Fig.…”
Section: Integrated Extrusion and Equal Channel Angularmentioning
confidence: 99%
“…65) Similarly, Abdolvand et al presented a similar combined process for tubular components. 63,66) These processes may increase the efficiency of the process by increasing the length of the final sample with reduced cross section. However, the sample length at the entrance is dramatically decreased in comparison with ECAP.…”
Section: Integrated Extrusion and Equal Channel Angularmentioning
confidence: 99%
“…As the thickness of the tube is reduced, the friction force to process load ratio remarkably increased. Recently, a successfully combined SPD process was proposed to solve the mentioned issue by the authors [20]. In that study, a commercial AZ31 alloy with just a single cycle of the combined process was performed.…”
Section: Introductionmentioning
confidence: 99%
“…During the TBE process, the punch moves down and presses the tube to generate thin-walled tube. The total equivalent strain achieved from N cycles of the PTCAP process and TBE process can be obtained from the following equation [20]: In the current study, the novel combined SPD process was applied to a commercial AZ91 magnesium alloy for the first time. The AZ91 alloy tubes were treated with PTCAP up to three cycles followed by TBE to demonstrate the effect of the number of passes on the mechanical properties, microstructural evolution and microhardness variations of thin-walled UFG tubes.…”
Section: Introductionmentioning
confidence: 99%