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Mechanochemical reactions between structural defects in magnetic fields

机译:磁场中结构缺陷之间的机械化学反应

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摘要

An influence of steady, pulse and microwave magnetic fields on mechanochemical reactions between structural defects in doped ionic crystals has been studied. The effects of dislocation depinning, dislocation mobility increase, macroplastic unhardening and magnetoresonant softening in magnetic fields have been revealed. It is shown that the magnetosensitive spin-dependent reactions between structural defects is the reason of magnetoplastic effects in nonmagnetic crystals. It means that the electron and nuclear spin states of the paramagnetic defects play an important role in the formation of mechanical properties of crystals in magnetic fields and without them.
机译:研究了稳定,脉冲和微波磁场对掺杂离子晶体中结构缺陷之间的机械化学反应的影响。揭示了位错脱钉,位错迁移率增加,宏观塑性未硬化和磁场中的磁共振软化的作用。结果表明,结构缺陷之间的磁敏自旋相关反应是非磁性晶体中磁塑性效应的原因。这意味着顺磁性缺陷的电子和核自旋态在磁场存在和不存在的情况下在晶体机械性能的形成中起着重要作用。

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