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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Thermophysical behavior of boron nitride and boron trioxide ceramics compounds with high energy electron fluence and swift heavy ion irradiated
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Thermophysical behavior of boron nitride and boron trioxide ceramics compounds with high energy electron fluence and swift heavy ion irradiated

机译:高能量电子流量和迅速重离子的氮化硼和三氧化硼陶瓷化合物的热理行为

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We report differential scanning calorimetry (DSC) studies of boron nitride and boron trioxide compounds under different irradiation conditions. In the present work, boron nitride (h-BN) (purity of 99.8% and density of 2.29 g/cm(3)) and boron trioxide (B2O3) (purity of 99.5% and density of 3.10 g/cm(3)) samples were irradiated by using high intense electron beam and swift heavy ions irradiation. Electron beam irradiation of the samples was carried out at the different electron fluence of 4.16 x 10(16), 1.20 x 10(17) and 1.03 x 10(18) cm(-2) with energy of 2.5 MeV. Whereas the swift heavy ion irradiation of the samples was carried out using 132 Xe ions with energy of 167 MeV/u at the different fluence of 5 x 10(12), 5 x 10(13) and 3.83 x 10(14) ion/cm(2). The thermal parameter changes with a differential mechanism under different irradiation conditions were investigated. In the DSC curves at the low temperature for initial and irradiation samples do not undergo phase transitions. However, at the 100 <= T <= 300 K temperature range widely changed the mechanism of the heat flow rate, specific heat capacity and thermodynamic functions in the boron nitride and boron trioxide samples is a more completed. In addition, for each of irradiation fluences, the calculated thermodynamic functions and specific heat capacity was found to increase from 0.002 J/g.K to 0.08 J/g.K as the irradiation electron fluence increased. For swift heavy ion irradiation, the specific heat capacity was found to increase from 0.005 J/g.K to 0.06 J/g.K. The results have revealed that there was a thermodynamic change. (C) 2020 Elsevier B.V. All rights reserved.
机译:我们在不同照射条件下报告氮化硼和三氧化硼化合物的差扫描量热法(DSC)研究。在本作工作中,氮化硼(H-Bn)(纯度为99.8%,密度为2.29g / cm(3))和三氧化硼(B2O3)(纯度为99.5%,密度为3.10g / cm(3))通过使用高强度电子束和SWIFT重离子照射来照射样品。样品的电子束照射在不同的电子流量为4.16×10(16),1.20×10(17)和1.03×10(18)cm(-2)的电量下进行2.5 meV。虽然样品的SWIFT重离子照射使用132 Xe离子,其能量为167meV / u,其流量为5×10(12),5×10(13)和3.83×10(14)离子/ cm(2)。研究了在不同照射条件下的差分机制的热参数变化。在低温下的DSC曲线上,初始和辐射样品不会经历相转变。然而,在100 <= T <= 300k的温度范围内广泛改变了硼氮化物和三氧化硼样品中的热流速,比热容量和热力学功能的机理更大。另外,对于每种辐射流量,发现计算的热力学功能和特定的热容量从0.002J / g.K增加到0.08J / g.k,因为照射电子流量增加。对于SWIFT重离子照射,发现比率从0.005J / G.K增加到0.06J / G.K。结果表明,存在热力学变化。 (c)2020 Elsevier B.v.保留所有权利。

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