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contributor authorNobuhisa Suzuki
contributor authorShizuo Ohshima
contributor authorToshiaki Murakami
contributor authorJunichi Shibuya
date accessioned2017-05-08T23:54:09Z
date available2017-05-08T23:54:09Z
date copyrightFebruary, 1997
date issued1997
identifier issn1087-1357
identifier otherJMSEFK-27293#68_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/119074
description abstractThe warm damper, a component located outermost in a rotor of the superconducting generator, is intended to shut off magnetic fields of the armature and bear large bending stresses due to electromagnetic force. So it is required to have both high conductivity and sufficient strength against bending stresses. Meeting these requirements is a promising three-layer cylindrical structure composed of a highly conductive cylinder sandwiched between cylindrical high-strength nonmagnetic stiffeners, so that only middle cylinder bear high conductivity and outer and inner ones bear most of the bending stresses. Candidate materials for the middle is Cu-Cr, and for the outer and inner is A286, a iron-base superalloy. To realize this three-layer cylindrical structure, the first step is to select a method of bonding the three layers and the second step is to research and develop large structures. Using test rings (300 mm in O.D. × 500 mm in axial length) made to a reduced scale, layer bonding tests were carried out in the present study to investigate three bonding methods: explosion bonding, brazing, and diffusion bonding. The two methods other than brazing were selected because they involved few defects and provided high bonding strength. When manufacturing long large-gauge warm dampers, deformations due to bonding must be uniform and bonding strength must be thermally stable so as to join them axially by three-layer welding. The two methods were compared for these requirements and finally diffusion bonding was chosen. As the last step, diffusion bonding tests were carried out with a mock-up warm damper model, which was the largest diffusion-bonded cylinders that ever made. The size of the model was 885 mm in O.D. and 2800 mm in axial length, and the layer bonding strength was evaluated, proving that sufficient layer bonding strength could be obtained together with uniform deformations.
publisherThe American Society of Mechanical Engineers (ASME)
titleStructural Component Development of Three-Layer Cylinders for Superconducting Generators, Part 1: Selection of Layer-Bonding Method and Development of Long Large-Gauge Three-Layer Cylindrical Structure
typeJournal Paper
journal volume119
journal issue1
journal titleJournal of Manufacturing Science and Engineering
identifier doi10.1115/1.2836557
journal fristpage68
journal lastpage77
identifier eissn1528-8935
keywordsGages
keywordsBonding
keywordsCylinders
keywordsGenerators
keywordsBending (Stress)
keywordsDampers
keywordsDiffusion bonding (Metals)
keywordsBrazing
keywordsDeformation
keywordsConductivity
keywordsDiffusion (Physics)
keywordsExplosions
keywordsRotors
keywordsIron
keywordsThermal stability
keywordsElectromagnetic force
keywordsWelding
keywordsSuperalloys
keywordsMagnetic fields
keywordsProduct quality AND Manufacturing
treeJournal of Manufacturing Science and Engineering:;1997:;volume( 119 ):;issue: 001
contenttypeFulltext


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