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Cable‐shaped supercapacitors (SCs) have recently aroused significant attention due to their attractive properties such as small size, lightweight, and bendability. Current cable‐shaped SCs have symmetric device configuration. However, if an asymmetric design is used in cable‐shaped supercapacitors, they would become more attractive due to broader cell operation voltages, which results in higher energy densities. Here, a novel coil‐type asymmetric supercapacitor electrical cable (CASEC) is reported with enhanced cell operation voltage and extraordinary mechanical‐electrochemical stability. The CASECs show excellent charge–discharge profiles, extraordinary rate capability (95.4%), high energy density (0.85 mWh cm−3), remarkable flexibility and bendability, and superior bending cycle stability (≈93.0% after 4000 cycles at different bending states). In addition, the CASECs not only exhibit the capability to store energy but also to transmit electricity simultaneously and independently. The integrated electrical conduction and storage capability of CASECS offer many potential applications in solar energy storage and electronic gadgets.  相似文献   
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黄明辉 《机电工程技术》2021,50(10):249-252
层门属于电梯的重要部件之一,它把乘客和井道、轿厢进行有效隔离,让乘客拥有一个安全良好的使用空间,有效保障乘梯人员的安全性和舒适性.层门若在带病情况下运行,乘坐电梯的人员将面临严重的安全威胁,甚至造成剪切、坠落等事故,因此乘客的乘梯安全很大程度上取决于电梯层门是否处于正常使用状态.为确保层门能够充分发挥出自身功能,减少甚至避免因层门引起的事故发生,层门的安全检验成为主要的研究对象.简要阐述了层门的结构形式,重点介绍了层门检验的主要对象和检验细节,最后对检验过程中碰到的层门滑块与防脱钩装置不能契合、层门副门锁动作不可靠两则案例进行分析探讨,为后期的检验提供参考.  相似文献   
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Orthorhombic molybdenum trioxide (MoO3) is one of the most promising anode materials for sodium‐ion batteries because of its rich chemistry associated with multiple valence states and intriguing layered structure. However, MoO3 still suffers from the low rate capability and poor cycle induced by pulverization during de/sodiation. An ingenious two‐step synthesis strategy to fine tune the layer structure of MoO3 targeting stable and fast sodium ionic diffusion channels is reported here. By integrating partially reduction and organic molecule intercalation methodologies, the interlayer spacing of MoO3 is remarkably enlarged to 10.40 Å and the layer structural integration are reinforced by dimercapto groups of bismuththiol molecules. Comprehensive characterizations and density functional theory calculations prove that the intercalated bismuththiol (DMcT) molecules substantially enhanced electronic conductivity and effectively shield the electrostatic interaction between Na+ and the MoO3 host by conjugated double bond, resulting in improved Na+ insertion/extraction kinetics. Benefiting from these features, the newly devised layered MoO3 electrode achieves excellent long‐term cycling stability and outstanding rate performance. These achievements are of vital significance for the preparation of sodium‐ion battery anode materials with high‐rate capability and long cycling life using intercalation chemistry.  相似文献   
5.
Multibody System Dynamics - This paper represents an explicit analytical solution for attitude dynamics of spacecraft combination during on-orbit refueling. Due to the fuel transfer from the...  相似文献   
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In this work, we synthesized Se doped MoS2@Ni3S2 with nanosheets coated nanorods structure supported on Ni foam (MoNiSeS). Firstly, MoS2@Ni3S2 (MoNiS) nanorods was synthesized by hydrothermal method. After selenization treatment, MoSe2 successfully formed on the edge of MoS2 nanosheets and particle Ni3S2 transformed into NiSe, in which MoSe2 and NiSe acted as new phase in MoNiSeS. The obtained MoNiSeS only needs a low overpotential of 68 mV to reach the current density of 10 mA cm?2, and has a low Tafel plots of 72.77 mV dec?1 and good electrochemical durability, whose electrochemical activity is much better than that of MoNiS and NiSeS, implying the introduction of Mo and Se is beneficial to improve the electrocatalytic performance of NiS for HER. In addition, the proper amount of Mo source, which has an effect on the morphology of product, has also been investigated. For MoNiSeS, the typical nanosheets coated nanarods expose more active sites and the synergic effects is good to the improvement of the catalytic activity. Meanwhile, WNiSeS has also been prepared using the same method and the corresponding results show that the electrochemical activity of WNiSeS is much better than that of NiSeS, proving the universality of this strategy.  相似文献   
7.
随着我国建筑节能工作的全面推进和不断深化,促进了新型墙体材料的研究和应用.参考相关规范,选取砌块主规格:长×宽×高=390 mm×240 mm×190 mm,根据空心砌块不同孔排数、交错程度和孔洞率,设计12种内部结构不同的空心砌块.通过有限元软件ABAQUS和加权求和法对混凝土自保温空心砌块进行结构优化设计,将优化后的砌块结构浇制成陶粒混凝土空心砌块,空心砌块孔洞由正交试验优化后的泡沫混凝土填充,定量分析不同配比条件下各种材料对泡沫混凝土热工和力学性能影响程度的大小,得到最优配比:水灰比41%,粉煤灰20%,碳酸锂0.16%,聚羧酸减水剂0.075%,微硅粉含量4%和硬质酸钙0.2%,泡沫混凝土的导热系数和抗压强度分别为0.0602 W/(m·K)和5.2 MPa.结合有限元数值模拟和试验研究,制得优化后的陶粒混凝土复合砌块,平均传热系数▉KC3=0.61 W/(m2·K),平均抗压强度10.11 MPa,强度等级达到MU10,同时满足节能65%的要求.  相似文献   
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The smoke suppression of rigid polyurethane foam (RPUF) modified by melamine was investigated based on three sections: the condensed phase, the carbon layer, and the gas phase. In the condensed phase, the results of thermogravimetry, X‐ray photoelectron spectroscopy (XPS) N1S spectrum, and Fourier transform infrared spectroscopy indicated that melamine could suppress the degradation of RPUF by reacting with the aromatic hydrocarbons. It also reduced the smoke generation because the volatilizable aromatic hydrocarbons were the principal smoke precursors in a fire. In the carbon layer, the decrease from 38.50% to 24.76% of the inner layer oxygen content identified by XPS full‐spectrum and C1S spectrum indicated that melamine could prevent oxygen from transferring into the inner foam by the formation of an enhanced surface carbon layer, and the enhanced carbon layer could also block the release of smoke precursors. In the gas phase, the content of total aromatic hydrocarbons declined to 59.12% according to pyrolysis gaseous chromatography mass spectroscopy and indicated that melamine could reduce the smoke precursors. The results of smoke density chamber and cone calorimeter tests revealed that the addition of the melamine could decrease the smoke density of burning RPUF. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   
10.
循环流化床固-固换热系统传热规律   总被引:1,自引:0,他引:1  
在自制的循环流化床固-固换热设备中,以催化裂化平衡催化剂[平均粒径60μm,堆密度980 kg/m3,比热1.01 kJ/(kg.K),临界流化速度0.002 1 m/s]为原料,对系统的循环特性及传热规律进行了研究,考察了床层密度、提升风量、床层温度、催化剂粒径等因素对传热的影响。结果表明,随着提升风量增加,表观气速增大,床层密度下降,传热系数下降;提高床层温度,减小催化剂的粒径,传热系数增加。  相似文献   
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