Reeved Tooling Design and Finite Element Analysis on Stators of a 400MW Generator
2013 ◽
Vol 455
◽
pp. 593-597
Keyword(s):
Aiming at the time and labor issues that exist when reeved tools are used to reeve stator cores of different sizes in the case of 400MW gas generator, this article gives a new tooling structure design based on parallel double-crank mechanism for 400MW generators. The tooling enables fast transition between reeving internal and external stators of two different sizes. Three-dimensional modeling and virtual assembly are completed based on software UG, and finite element analysis of tooling structure is performed using software ABAQUS. The results indicate that this newly-designed reeved tooling has a reasonable mechanical structure and its mechanical behaviors meet the design requirements.
2011 ◽
Vol 139
(1)
◽
pp. e59-e71
◽
2014 ◽
Vol 596
◽
pp. 640-645
2012 ◽
Vol 271-272
◽
pp. 797-800
2012 ◽
Vol 151
◽
pp. 424-428
2011 ◽
Vol 328-330
◽
pp. 690-694
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Vol 283
(18)
◽
pp. 3469-3474
◽
2013 ◽
Vol 712-715
◽
pp. 1002-1005
2011 ◽
Vol 243-249
◽
pp. 4311-4314