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Mechanical Conjectures Explaining Cold Nuclear Fusion

机译:机械猜想解释冷核融合

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Several evidences of anomalous nuclear reactions occurring in condensed matter have been observed during electrolysis, solid fracture and liquid cavitation. Despite the great amount of experimental results coming from the so-called Cold Nuclear Fusion and Low Energy Nuclear Reaction research fields, the comprehension of these phenomena still remains unanswered. On the other hand, as reported by most articles devoted to Cold Nuclear Fusion, one of the principal features is the appearance of micro-cracks on the electrode surfaces after the experiments. In the present paper, a mechanical explanation is proposed considering a new kind of anomalous nuclear reactions, the piezonuclear fissions, which are a consequence of hydrogen embrittlement of the electrodes during electrolysis. Energy emissions in the form of neutrons and alpha particles were measured during the experiments, where the electrolysis is obtained using Ni-Fe and Cr-Co electrodes in an aqueous solution. The electrode compositions were analyzed both before and after the experiments recognizing the effects of piezonuclear fissions occurring in the host lattices.
机译:在电解,固体骨折和液体空化期间,已经观察到在冷凝物中发生的异常核反应的几次证据。尽管来自所谓的冷核融合和低能量核反应研究领域的实验结果,但这些现象的理解仍然仍未得到答复。另一方面,如大多数致力于冷核融合的大多数文章所报道,其中一个主要特征是实验后电极表面上的微裂纹的外观。在本文中,提出了考虑新种类的异常核反应,压电污垢裂缝的机械解释,这是电解过程中电极的氢脆的结果。在实验期间测量中子和α颗粒形式的能量排放,其中使用Ni-Fe和Cr-Co电极在水溶液中获得电解。在实验之前和之后分析了电极组合物,识别在宿主格子中发生的压电污垢裂缝的影响。

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