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61.
Residual thermal stress in the system is a serious problem that affects the application of tritium permeation barrier coatings in fusion reactors. The stress not only determines the adhesion between coating and substrate, but also changes the properties of the material. In this study,finite element analysis was used to investigate the relationship between the residual thermal stress and the mechanical properties of Al_2O_3 tritium penetration barrier systems. Moreover, the residual thermal stress influenced by factors such as different substrates, temperature, and substrate roughness was also analyzed. The calculation showed that the hardness and elastic modulus increased with increasing compressive stress. However, the hardness and elastic modulus decreased with increasing tensile stress. The systems composed of Al_2O_3 coatings and different substrates exhibited different trends in mechanical properties. As the temperature increased, the hardness and the elastic modulus increased in an Al_2O_3/316 L stainless steel system; the trend was opposite in an Al_2O_3/Si system.Apart from this, the roughness of the substrate surface in the system could magnify the change in hardness and elastic modulus of the coating. Results showed that all these factors led to variation in the mechanical properties of Al_2O_3 tritium permeation barrier systems. Thus, thedetailed reasons for the changes in mechanical properties of these materials need to be analyzed. 相似文献
62.
The changeable structure and movement law of overlying strata are the main contributor to the change of mining stress. Starting from the relevant theory of key stratum and particularly based on the theory of mine ground pressure and strata control, this research proposed a new solution to mining stress problems by establishing a dual-load-zone stratum structural model. Elastic foundation beam theory was used to solve the stress of overlying strata of the dual-load-zones with superposition method, which revised the traditional calculation method of mining stress. The abnormal increase of lead abutment pressure in the mining area was explained effectively, through which the evolution law of mining stress in the case of hard rock was obtained. The results indicate that mining stress experiences a drastic change within the range of 50 m ahead of the coal wall due to the collapse of main roof; under the influence of main key stratum and inferior key strata, the influence range of lead abutment pressure is extended up to approximately 120 m in the working face; this remarkable increase can be attributed to the excessive length of sagging zone. Results from both the dual-load-zone model experiment and field measurement demonstrate high consistency. The model can predict the influence range of abutment pressure effectively and thus guide the safety production of mining. 相似文献
63.
64.
为充分发挥小型实验室设备的功能,实验采用熔融制样,使用台式能量色散X射线荧光光谱仪(10W, Rh靶)定量分析了硅酸盐样品中的Na2O、MgO、Al2O3、SiO2、P2O5、SO3、Cl、K2O、CaO、TiO2、V、Cr、MnO、Fe2O3、Co、Ni、Cu、Zn、Ga、Rb、Sr、Y、Zr、Nb、As、Ba、La、Ce、Th、U、Hf、Pb等32种主、次、痕量组分。对3种不同的解谱方法进行比较,确定Na、Mg、Al、Si、P、As、Ce、Cr、Cu、Ga、La、Nb、Ni、Pb、Th、U、V、Y选择感兴趣区解谱,其余元素用高斯或经改进的高斯函数的最小二乘法拟合解谱。选用有代表性的多个硅酸盐类样品,比较了理论检出限及10次重复测定计算3倍标准偏差得出的检出限,发现以3倍标准偏差作为检出限再取它们的平均值则更具代表性和使用意义。各组分的检出限为0.2~1740μg/g。精密度试验表明,各组分测定结果的相对标准偏差(RSD)为0.12%~10.5%(Na为轻元素,由于含量低,小能谱测定的精密度稍差);对两个土壤标准样品进行正确度验证,测定值与标准值一致。 相似文献
65.
Chenxu Liu Shuguang Zhang Ruonan Ji Peng Wang Jin Zhang Yu Tian Yonggang Meng Yedong He 《Ceramics International》2019,45(4):4747-4755
Semiconductor particles doped Al2O3 coatings were prepared by cathode plasma electrolytic deposition in Al(NO3)3 electrolyte dispersed with SiC micro- and nano-particles (average particle sizes of 0.5–1.7?µm and 40?nm respectively). The effects of the concentrations and particle sizes of the SiC on the microstructures and tribological performances of the composite coatings were studied. In comparison with the case of dispersing with SiC microparticles, the dispersion of SiC nanoparticles in the coatings was more uniform. When the concentration of SiC nanoparticles was 5?g/L, the surface roughness of the composite coating was reduced by 63%, compared with that of the unmodified coating. Friction results demonstrated that the addition of 5?g/L SiC nanoparticles reduced the friction coefficient from 0.60 to 0.38 and decreased the wear volume under dry friction. The current density and bath voltage were measured to analyze the effects of SiC particles on the deposition process. The results showed that the SiC particles could alter the electrical behavior of the coatings during the deposition process, weaken the bombardment of the plasma, and improve the structures of the coatings. 相似文献
66.
67.
Chuntao Lan Haiyang Zou Longfei Wang Meng Zhang Shuang Pan Ying Ma Yiping Qiu Zhong Lin Wang Zhiqun Lin 《Advanced materials (Deerfield Beach, Fla.)》2020,32(47):2005481
Despite recent rapid advances in metal halide perovskites for use in optoelectronics, the fundamental understanding of the electrical-poling-induced ion migration, accounting for many unusual attributes and thus performance in perovskite-based devices, remain comparatively elusive. Herein, the electrical-poling-promoted polarization potential is reported for rendering hybrid organic–inorganic perovskite photodetectors with high photocurrent and fast response time, displaying a tenfold enhancement in the photocurrent and a twofold decrease in the response time after an external electric field poling. First, a robust meniscus-assisted solution-printing strategy is employed to facilitate the oriented perovskite crystals over a large area. Subsequently, the electrical poling invokes the ion migration within perovskite crystals, thus inducing a polarization potential, as substantiated by the surface potential change assessed by Kelvin probe force microscopy. Such electrical-poling-induced polarization potential is responsible for the markedly enhanced photocurrent and largely shortened response time. This work presents new insights into the electrical-poling-triggered ion migration and, in turn, polarization potential as well as into the implication of the latter for optoelectronic devices with greater performance. As such, the utilization of ion-migration-produced polarization potential may represent an important endeavor toward a wide range of high-performance perovskite-based photodetectors, solar cells, transistors, scintillators, etc. 相似文献
68.
目的:探讨PI3K/AKT/GSK-3β信号通路参与异丙酚对缺血再灌注损伤大鼠的脑保护作用及机制。方法:健康雄性SD大鼠72只,所有大鼠参照Zea Longa法建立局灶性脑缺血再灌注损伤的模型。随机分成6组(n=12),A-假手术组,B-模型组(MCAO),C-异丙酚组,D-异丙酚+腺苷A1R拮抗剂组(DPCPX),E-异丙酚组+PI3K特异性抑制剂(LY294002),F-异丙酚+GSK-3β抑制剂组(SB216763),观察大鼠术后24 h神经功能评分情况;LDF监测插栓前后脑血流变化;采用TTC染色法检测各组大鼠的脑梗死体积;用HE染色方法观察大鼠脑组织形态学改变;免疫组织化学法检测Bcl-2阳性细胞表达;采用TUNEL检测各组大脑脑皮质缺血周围神经元凋亡细胞的百分率。结果:与A组比较,B、C、D、E及F组大鼠行为学、脑梗死体积、细胞凋亡率、Bcl-2蛋白表达量均增加(P<0.05);与C组比较,B、D、E组大鼠行为学评分,脑梗死体积及细胞凋亡率均明显增加,Bcl-2蛋白表达量均明显减少(P<0.01),F组Bcl-2蛋白表达量却增加,细胞凋亡率降低(P<0.05),行为学评分减少、梗死体积减少(P<0.05)。 结论:腺苷A1R介导的异丙酚对缺血再灌注损伤大鼠的神经保护作用可能与PI3K/AKT/GSK-3β信号转导通路有关。 相似文献
69.
为提高镀液温度的控制精度,以计算机为平台设计了一种镀液温度智能控制系统。设计了一种模糊PID温度控制器,可实现PID控制器参数的实时在线调整。利用动态矩阵,统计过去和当前时刻的偏差,预测未来偏差,进而得到最佳输入。最后,进行了实验研究。结果表明:镀液温度智能控制系统的收敛速率快、精度高、稳定性好,能满足电镀行业的需求,具有广阔的应用前景。 相似文献
70.
根据目前我国农村生活污水处理的现状以及农村家庭污水水量、水质的特点,提出了一种家庭生活污水处理装置-填料生物转盘。该装置采用生物膜法工艺,结合生物转盘与生物滤池工艺的特点,运用设备一体化的设计理念,设计了一种运行管理简单、结构紧凑的一体化装置。通过实际运行考察了装置用于农村家庭生活污水处理的挂膜启动情况,以及污染物的去除效果。结果表明:填料生物转盘生物膜的驯化培养需要20天的时间,稳定运行期间对COD、NH4+-N、TN、TP的平均去除率分别稳定在75%、85%、65%和75%以上,出水COD、NH4+-N、TN优于城镇污水处理厂污染物排放标准(GB 18918-2002)一级A标准,出水TP达到一级B标准。装置运行管理操作简单,不需要专业技术人员,适合农村家庭污水的处理。 相似文献