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1.
Fully dense ceramics with retarded grain growth can be attained effectively at relatively low temperatures using a high-pressure sintering method. However, there is a paucity of in-depth research on the densification mechanism, grain growth process, grain boundary characterization, and residual stress. Using a strong, reliable die made from a carbon-fiber-reinforced carbon (Cf/C) composite for spark plasma sintering, two kinds of commercially pure α-Al2O3 powders, with average particle sizes of 220 nm and 3 μm, were sintered at relatively low temperatures and under high pressures of up to 200 MPa. The sintering densification temperature and the starting threshold temperature of grain growth (Tsg) were determined by the applied pressure and the surface energy relative to grain size, as they were both observed to increase with grain size and to decrease with applied pressure. Densification with limited grain coarsening occurred under an applied pressure of 200 MPa at 1050 °C for the 220 nm Al2O3 powder and 1400 °C for the 3 μm Al2O3 powder. The grain boundary energy, residual stress, and dislocation density of the ceramics sintered under high pressure and low temperature were higher than those of the samples sintered without additional pressure. Plastic deformation occurring at the contact area of the adjacent particles was proved to be the dominant mechanism for sintering under high pressure, and a mathematical model based on the plasticity mechanics and close packing of equal spheres was established. Based on the mathematical model, the predicted relative density of an Al2O3 compact can reach ~80 % via the plastic deformation mechanism, which fits well with experimental observations. The densification kinetics were investigated from the sintering parameters, i.e., the holding temperature, dwell time, and applied pressure. Diffusion, grain boundary sliding, and dislocation motion were assistant mechanisms in the final stage of sintering, as indicated by the stress exponent and the microstructural evolution. During the sintering of the 220 nm alumina at 1125 °C and 100 MPa, the deformation tends to increase defects and vacancies generation, both of which accelerate lattice diffusion and thus enhance grain growth.  相似文献   
2.
To benefit from recent advances in modeling and computational algorithms,as well as the availability of new covariance data,sensitivity and uncertainty analyses are needed to quantify the impact of uncertain sources on the design parameters of small prismatic high-temperature gas-cooled reactors(HTGRs).In particular,the contribution of nuclear data to the keff uncertainty is an important part of the uncertainty analysis of small-sized HTGR physical calculations.In this study,a small-sized HTGR designed by China Nuclear Power Engineering Co.,Ltd.was selected for keff uncertainty analysis during full lifetime burnup calculations.Models of the cold zero power(CZP)condition and full lifetime burnup process were constructed using the Reactor Monte Carlo Code RMC for neutron transport calculation,depletion calculation,and sensitivity and uncertainty analysis.For the sensitivity analysis,the Contribution-Linked eigenvalue sensitivity/Uncertainty estimation via Track length importance Characterization(CLUTCH)method was applied to obtain sensitive infor-mation,and the"sandwich"method was used to quantify the keff uncertainty.We also compared the keff uncertainties to other typical reactors.Our results show that 235U is the largest contributor to keff uncertainty for both the CZP and depletion conditions,while the contribution of 239Pu is not very significant because of the design of low discharge burnup.It is worth noting that the radioactive capture reaction of 28Si significantly contributes to the keff uncer-tainty owing to its specific fuel design.However,the keff uncertainty during the full lifetime depletion process was relatively stable,only increasing by 1.12%owing to the low discharge burnup design of small-sized HTGRs.These numerical results are beneficial for neutronics design and core parameters optimization in further uncertainty prop-agation and quantification study for small-sized HTGR.  相似文献   
3.
通过硬度、拉伸、冲击测试,以及光学显微镜(OM)、扫描电镜(SEM)等分析手段研究了C64钢在不同温度淬火过程中的显微组织和力学性能的变化。结果表明:当淬火温度低于950 ℃时,C64试验钢的显微组织中板条马氏体较为细小;当温度高于950 ℃时,板条马氏体急剧长大。随着淬火温度的升高,碳化物开始逐渐溶解,950 ℃时几乎全部溶解。钢的强度、硬度随着淬火温度的升高呈现下降的趋势;钢的伸长率、断面收缩率、冲击吸收能量随着淬火温度的升高表现出先升高后下降的趋势,并在950 ℃时达到最大值。试验钢最佳淬火温度为950 ℃,能够获得组织均匀、细小的板条状马氏体组织。此时,试验钢的抗拉强度为1122 MPa,屈服强度为1106 MPa,伸长率为11.40%,断面收缩率为25.20%,冲击吸收能量为191.0 J,能达到强韧化的最佳匹配。  相似文献   
4.
目的 开发环境友好、抗高温耐浓酸的长效缓蚀剂复配体系.方法 采用红外光谱仪对席夫碱基吡啶季铵盐的分子结构进行表征,采用高温高压腐蚀测定仪、吸附等温模型、动力学参数、扫描电镜和量子化学计算,研究了缓蚀剂对N80的缓蚀性能及其吸附机理.结果 在120、140、160℃温度下,随着席夫碱基吡啶季铵盐缓蚀剂(以下简称Shif-PyQA)质量分数的增大,腐蚀速率在低浓度时大幅减小,缓蚀率在低浓度时大幅增加,两者在高浓度时均逐渐趋于平稳.在所测温度范围内,N80在空白溶液中的腐蚀速率远大于在加有Shif-PyQA溶液中的腐蚀速率.随着温度的升高或反应时间的增加,N80的腐蚀速率持续增大,缓蚀率逐渐减小,但减小幅度不大.当温度为120℃、Shif-PyQA质量分数为2%时,N80在20%盐酸中的腐蚀速率为28.77 g/(m2·h),缓蚀率为97.97%;当温度为140℃、Shif-PyQA质量分数为3%时,N80在20%盐酸中的腐蚀速率为37.12 g/(m2·h),缓蚀率为97.71%;当温度为160℃、Shif-PyQA质量分数为4%时,N80在20%盐酸中的腐蚀速率为63.91 g/(m2·h),缓蚀率为96.41%.Shif-PyQA在N80表面的吸附遵循Langmuir等温吸附模型,属于单分子层化学吸附,且N80表面的吸附为自发过程.动力学参数结果表明,添加不同质量分数的Shif-PyQA后,活化能大大增加为74.16~88.43 kJ/mol,属化学吸附.量子化学研究表明,席夫碱基吡啶季铵盐(以下简称PyQ-S)分子可与金属形成多中心的稳定吸附,同时PyQ-S分子接受电子的趋势大于供出电子的趋势.结论 Shif-PyQA在温度为120、140、160℃时,均可达到SY/T 5405—2019中相关指标要求,对N80具有较好的缓蚀作用.  相似文献   
5.
This study presents a self-designed foaming apparatus and routes to manufacture foamed isotactic polypropylene (iPP) blends with uniform and dense cells, using styrene-ethylene-butadiene-styrene (SEBS) block copolymer as toughening additive. The addition of SEBS can clearly enhance the impact strength of solid iPP, iPP blends with a 20 wt% SEBS has obtained high notched impact strength of 75 kJ/m2, which is ca. 16 times larger than that of neat iPP. Relatively fine microcellular iPP-SEBS foams with the average cell size of several micrometers, and the cell density of 109 cells/cm3 were fabricated using a batch foaming procedure. Moreover, using our self-designed mold and compression foaming method, iPP-SEBS foams with balanced mechanical properties were produced. With the increasing of SEBS, tensile strength and flexural strength were slightly decreased, but the impact strength was increased clearly. The balanced mechanical properties between stiffness and toughness were achieved after compression foaming.  相似文献   
6.
Hypoxic–ischemic encephalopathy (HIE) is a devastating neonatal brain condition caused by lack of oxygen and limited blood flow. Environmental enrichment (EE) is a classic paradigm with a complex stimulation of physical, cognitive, and social components. EE can exert neuroplasticity and neuroprotective effects in immature brains. However, the exact mechanism of EE on the chronic condition of HIE remains unclear. HIE was induced by a permanent ligation of the right carotid artery, followed by an 8% O2 hypoxic condition for 1 h. At 6 weeks of age, HIE mice were randomly assigned to either standard cages or EE cages. In the behavioral assessments, EE mice showed significantly improved motor performances in rotarod tests, ladder walking tests, and hanging wire tests, compared with HIE control mice. EE mice also significantly enhanced cognitive performances in Y-maze tests. Particularly, EE mice showed a significant increase in Cav 2.1 (P/Q type) and presynaptic proteins by molecular assessments, and a significant increase of Cav 2.1 in histological assessments of the cerebral cortex and hippocampus. These results indicate that EE can upregulate the expression of the Cav 2.1 channel and presynaptic proteins related to the synaptic vesicle cycle and neurotransmitter release, which may be responsible for motor and cognitive improvements in HIE.  相似文献   
7.
Hypertension induces renal fibrosis or tubular interstitial fibrosis, which eventually results in end-stage renal disease. Epithelial-to-mesenchymal transition (EMT) is one of the underlying mechanisms of renal fibrosis. Though previous studies showed that Ecklonia cava extracts (ECE) and dieckol (DK) had inhibitory action on angiotensin (Ang) I-converting enzyme, which converts Ang I to Ang II. It is known that Ang II is involved in renal fibrosis; however, it was not evaluated whether ECE or DK attenuated hypertensive nephropathy by decreasing EMT. In this study, the effect of ECE and DK on decreasing Ang II and its down signal pathway of angiotensin type 1 receptor (AT1R)/TGFβ/SMAD, which is related with the EMT and restoring renal function in spontaneously hypertensive rats (SHRs), was investigated. Either ECE or DK significantly decreased the serum level of Ang II in the SHRs. Moreover, the renal expression of AT1R/TGFβ/SMAD was decreased by the administration of either ECE or DK. The mesenchymal cell markers in the kidney of SHRs was significantly decreased by ECE or DK. The fibrotic tissue of the kidney of SHRs was also significantly decreased by ECE or DK. The ratio of urine albumin/creatinine of SHRs was significantly decreased by ECE or DK. Overall, the results of this study indicate that ECE and DK decreased the serum levels of Ang II and expression of AT1R/TGFβ/SMAD, and then decreased the EMT and renal fibrosis in SHRs. Furthermore, the decrease in EMT and renal fibrosis could lead to the restoration of renal function. It seems that ECE or DK could be beneficial for decreasing hypertensive nephropathy by decreasing EMT and renal fibrosis.  相似文献   
8.
刘乾  王洪元  曹亮  孙博言  肖宇  张继 《计算机应用》2021,41(12):3596-3601
目前的行人重识别(Re-ID)研究主要集中在短时间情形,即一个人的衣着不太可能发生改变的情况。然而现实中更常见的是长时间的情况,这时一个人有很大的机会更换衣服,Re-ID模型应该考虑这种情况。为此,研究了一种基于联合损失胶囊网络的换衣行人重识别方法。所提方法基于换衣行人重识别胶囊网络ReIDCaps,使用与传统的标量神经元相比包含更多信息的矢量胶囊,用其长度表示行人身份信息,用其方向表示行人衣着信息;采用软嵌入注意力(SEA)防止模型过拟合;使用特征稀疏表示(FSR)机制提取具有判别性的特征;增加标签平滑正则化交叉熵损失与Circle Loss的联合损失以提高模型的泛化能力和鲁棒性。在三个换衣行人重识别数据集Celeb-reID、Celeb-reID-light和NKUP上进行实验,实验结果表明所提方法与目前已有的Re-ID方法相比具有一定优势。  相似文献   
9.
While the challenges associated with the stability of metal halide perovskites are well known and intensely studied, variability in electronic properties represents an equally significant, yet seldom studied, challenge that could potentially slow or inhibit the commercial viability of these systems. In this work, the contactless characterization technique time-resolved microwave conductivity (TRMC) is used to quantify the variability in electronic properties of the prototypical perovskite, methylammonium lead iodide (MAPbI3) both between different samples, and at different locations within the same sample. Using scanning electron microscopy (SEM) and a quasi-automated image-analysis strategy, it is possible to evaluate the metrics of heterogeneity in surface microstructure and correlate them with the electronic properties as obtained by TRMC. Substantial intra-sample and inter-sample variation is observed in the mobility-yield product in samples prepared following differing protocols, and in samples prepared following identical protocols.  相似文献   
10.
基于NECP-X程序中已经研发的全局-局部耦合共振计算方法,研究了针对非棒状几何燃料的共振计算方法。首先,采用中子流方法计算真实问题的丹可夫修正因子,以处理全局的空间效应;其次,基于丹可夫修正因子等效获得小规模问题周围慢化剂的几何信息;最后,对于小规模问题燃料区的有效自屏截面的计算采用共振伪核素子群方法。将该方法应用于非棒状几何燃料数值计算,结果表明,该方法在处理非棒状几何燃料栅元的共振计算时,与蒙特卡罗结果程序相比,微观吸收截面偏差不超过1.8%,无限介质增殖因数偏差不超过110 pcm(1 pcm=10-5),具有较高的计算精度;在大规模问题的计算中,基于板状燃料的JRR-3M实验堆全堆在整个燃耗过程有效增殖因数偏差均在300 pcm左右,组件功率偏差在整个燃耗过程不超过0.62%。因此,本研究提出的共振计算方法具有较高的正确率和精度。   相似文献   
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