1971
DOI: 10.1016/0022-3115(71)90130-9
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Production of voids in nickel with high energy selenium ions

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Cited by 65 publications
(19 citation statements)
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“…Obviously, a homogeneous solution, N hom , satisfies equation (2). To derive the basic conditions for its destabilisation, we apply the linear stability analysis and insert the ansatz N = N hom + % N exp(iqR + aφ) , where R is the radius vector, q is a wave vector and a is the amplification factor.…”
Section: Conditions For the Onset Of Void Ordering: A Linear Stabilitmentioning
confidence: 99%
See 1 more Smart Citation
“…Obviously, a homogeneous solution, N hom , satisfies equation (2). To derive the basic conditions for its destabilisation, we apply the linear stability analysis and insert the ansatz N = N hom + % N exp(iqR + aφ) , where R is the radius vector, q is a wave vector and a is the amplification factor.…”
Section: Conditions For the Onset Of Void Ordering: A Linear Stabilitmentioning
confidence: 99%
“…The formation of a void lattice was first reported in 1971 by Evans [1] in molybdenum under nitrogen ion irradiation, by Kulchinski, Brimhall and Kissinger [2] in nickel under selenium ion bombardment and by Wiffen [3] in molybdenum, niobium and tantalum under neutron irradiation. Since then it was observed in bcc tungsten, the fcc Al, the hcp Mg, and some alloys.…”
Section: Introductionmentioning
confidence: 99%
“…Згодом надґратниці нанопор було виявлено в багатьох металах, яких було опромінено швидкими невтронами та йонами: вольфрамі [51,52], танталі [53], ніобії [54,55,56], хромі [57], ніклі [58], алю-мінії [59], аморфному кремнії [60], неіржавійній сталі [61]. Крім того, надґратниці нанопор спостерігалися у стопах Ni-Al [62].…”
Section: експериментальні дослідження явища просторово-періодичного вunclassified
“…В роботі [58] досліджувалося утворення вакансійних наноклас-терів у ніклі внаслідок опромінення йонами селену. Спостерігалося збільшення розміру кластерів і їх густини зі збільшенням потоку йонів.…”
Section: експериментальні дослідження явища просторово-періодичного вunclassified
“…Extensive experiments demonstrated that the microstructure evolution kinetics in irradiated materials has strongly spatial correlation. [1][2][3] For example, radiation-induced segregation near grain boundaries, enhanced swelling, void supper-lattices, and heterogeneous nucleation and growth of second phases at pre-existing defects (such as dislocations, grain boundaries, and cracks) are observed in the materials under neutron or heavy-ion irradiation. The heterogeneous microstructures eventually determine the material performance.…”
Section: Introductionmentioning
confidence: 99%