Brief Summary of Latest Experimental Results with a Mass-Flow Calorimetry System for Anomalous Heat Effect of Nano-Composite Metals under D(H)-Gas Charging

Brief Summary of Latest Experimental Results with a Mass-Flow Calorimetry System for Anomalous Heat Effect of Nano-Composite Metals under D(H)-Gas Charging
复制标题

D(H)-气体充注下纳米复合金属反常热效应质量流量量热系统最新实验结果简述

DOI:
10.18520/cs/v108/i4/589-593
复制
发表时间:
2015
期刊:
影响因子:
1
通讯作者:
Y. Furuyama
Y. Furuyama
中科院分区:
综合性期刊4区
文献类型:
--
作者:
A. Kitamura;A. Takahashi;R. Seto;Y. Fujita;A. Taniike;Y. Furuyama

文献摘要

被引文献

相似文献

一个质量流量量热系统已安装调查在高温下的过剩功率现象。用含有4.1g Ni的含二氧化硅的Cu/Ni纳米复合材料样品(CNS)进行的第一次试验表明,存在持续几天的5 W/g-Ni的过量功率。接下来,检查了含有61 g Ni的Cu-Ni-Zr氧化物纳米复合材料样品(CNZ 4),以显示持续3天的15 W的过量功率,并且以每3周10 W的速率逐渐增加。每个对应于30 eV/atom-Ni和100 eV/atom-Ni,这意味着过剩能量的核起源。
A mass-flow calorimetry system has been installed to investigate the excess power phenomenon at elevated temperatures. The first trial runs with a silica-included CuNi nano-composite sample (CNS) containing 4.1 g of Ni showed an implication of a few days lasting excess power of 5 W/g-Ni. Next, a CuNiZr oxide nanocomposite sample (CNZ4) containing 61 g of Ni has been examined to show excess power of 15 W lasting for 3 days and gradually increasing at a rate of 10 W per 3 weeks. Each corresponds to 30 eV/atom-Ni and 100 eV/atom-Ni, implying a nuclear origin of the excess energy.