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991.
Aging and re‐poling induced enhancement of piezoelectricity are found in (K,Na)NbO3 (KNN)‐based lead‐free piezoelectric ceramics. For a compositionally optimized Li‐doped composition, its piezoelectric coefficient d33 can be increased up to 324 pC N?1 even from a considerably high value (190 pC N?1) by means of a re‐poling treatment after room‐temperature aging. Such a high d33 value is only reachable in KNN ceramics with complicated modifications using Ta and Sb dopants. High‐angle X‐ray diffraction analysis reveals apparent changes in the crystallographic orientations related to a 90° domain switching before and after the aging and re‐poling process. A possible mechanism considering both defect migration and rotation of spontaneous polarization explains the experimental results. The present study provides a general approach towards piezoelectric response enhancement in KNN‐based piezoelectric ceramics. 相似文献
992.
Hsin‐Te Lue Ming‐Gang Wen Hsu‐Yung Cheng Kuo‐Chin Fan Chih‐Wei Lin Chih‐Chang Yu 《ETRI Journal》2010,32(5):729-739
Due to the rapid development of mobile devices equipped with cameras, instant translation of any text seen in any context is possible. Mobile devices can serve as a translation tool by recognizing the texts presented in the captured scenes. Images captured by cameras will embed more external or unwanted effects which need not to be considered in traditional optical character recognition (OCR). In this paper, we segment a text image captured by mobile devices into individual single characters to facilitate OCR kernel processing. Before proceeding with character segmentation, text detection and text line construction need to be performed in advance. A novel character segmentation method which integrates touched character filters is employed on text images captured by cameras. In addition, periphery features are extracted from the segmented images of touched characters and fed as inputs to support vector machines to calculate the confident values. In our experiment, the accuracy rate of the proposed character segmentation system is 94.90%, which demonstrates the effectiveness of the proposed method. 相似文献
993.
微波加热高碳铬铁粉流态化脱碳是一种简捷的无渣脱碳法,既能获得中低碳铬铁粉,又可避免有害铬渣的排放。高碳铬铁粉气-固相流化脱碳,气体脱碳剂的选择、气-固相流化脱碳热力学条件以及铬氧化热力学就成为试验研究的基础问题。热力学计算研究表明,微波加热温度分别高于298,1380和1435K时,气体脱碳剂O2、CO2、H2O(g)开始和高碳铬铁粉颗粒发生气-固相流化脱碳反应。由于脱碳生成的铬铁素体易被气体脱碳剂所氧化,使得脱碳反应由高碳铬铁粉颗粒表面的气-固相脱碳反应转变为颗粒内部的铬铁碳化物与铬铁氧化物之间的固一固相反应,从而可在一定的微波加热温度、流化时间下实现高碳铬铁粉的深度脱碳。 相似文献
994.
介绍九江钢铁公司生产的低松弛镀锌PC钢绞线产品的生产工艺、制造过程及有关技术要点。大跨度桥梁采用低松弛镀锌PC钢绞线具有施工简便、造价低等优点。 相似文献
995.
996.
Mei-Feng Xu Lin-Song Cui Xiao-Zhao Zhu Chun-Hong Gao Xiao-Bo Shi Zhi-Ming Jin Zhao-Kui Wang Liang-Sheng Liao 《Organic Electronics》2013,14(2):657-664
The authors demonstrate an effective anode interfacial layer based on aqueous solution-processed MoO3 (sMoO3) in poly (3-hexylthiophene) (P3HT) and indene-C60 bisadduct (ICBA) based bulk-heterojunction organic solar cells (PSCs). Various sMoO3 concentration (0.03–0.25 wt%) was obtained by dissolving MoO3 powder into deionized water directly with weak solubility. The characteristics of sMoO3 films evaluated by atomic force microscope (AFM) and scanning electron microscope (SEM) suggest that the sMoO3 films continuously cover the entire indium tin oxide (ITO) surface. The sMoO3 based PSCs exhibit comparable power conversion efficiency with poly (3,4-ethylenedioxythiophene)–polystyrenesulfonic acid (PEDOT:PSS) based devices. However, even more importantly, the stability of sMoO3 based devices have been greatly improved in air under continual light-illumination at 52 mW/cm2. Further evaluations on Mo valence states and work function of sMoO3 films by X-ray photoelectron spectroscopy (XPS) and ultraviolet photoelectron spectroscopy (UPS) demonstrate that the aqueous solution-processed MoO3 could act as an better anode interfacial layer than the conventional PEDOT:PSS. 相似文献
997.
Dong Hyeop Shin Ji Hye Kim Young Min Shin Kyung Hoon Yoon Essam A. Al‐Ammar Byung Tae Ahn 《Progress in Photovoltaics: Research and Applications》2013,21(2):217-225
ZnS is a candidate to replace CdS as the buffer layer in Cu(In,Ga)Se2 (CIGS) solar cells for Cd‐free commercial product. However, the resistance of ZnS is too large, and the photoconductivity is too small. Therefore, the thickness of the ZnS should be as thin as possible. However, a CIGS solar cell with a very thin ZnS buffer layer is vulnerable to the sputtering power of the ZnO : Al window layer deposition because of plasma damage. To improve the efficiency of CIGS solar cells with a chemical‐bath‐deposited ZnS buffer layer, the effect of the plasma damage by the sputter deposition of the ZnO : Al window layer should be understood. We have found that the efficiency of a CIGS solar cell consistently decreases with an increase in the sputtering power for the ZnO : Al window layer deposition onto the ZnS buffer layer because of plasma damage. To protect the ZnS/CIGS interface, a bilayer ZnO : Al film was developed. It consists of a 50‐nm‐thick ZnO : Al plasma protection layer deposited at a sputtering power of 50 W and a 100‐nm‐thick ZnO : Al conducting layer deposited at a sputtering power of 200 W. The introduction of a 50‐nm‐thick ZnO : Al layer deposited at 50 W prevented plasma damage by sputtering, resulting in a high open‐circuit voltage, a large fill factor, and shunt resistance. The ZnS/CIGS solar cell with the bilayer ZnO : Al film yielded a cell efficiency of 14.68%. Therefore, the application of bilayer ZnO : Al film to the window layer is suitable for CIGS solar cells with a ZnS buffer layer. Copyright © 2012 John Wiley & Sons, Ltd. 相似文献
998.
Jun Liu Yong‐Lai Lu Ming Tian Fen Li Jianxiang Shen Yangyang Gao Liqun Zhang 《Advanced functional materials》2013,23(9):1156-1163
Among all carbon nanostructured materials, helical nanosprings or nanocoils have attracted particular interest as a result of their special mechanical behavior. Here, carbon nanosprings are used to adjust the viscoelasticity and reduce the resulting hysteresis loss (HL) of elastomeric polymer materials. Two types of nanospring‐filled elastomer composites are constructed as follows: system I is obtained by directly blending polymer chains with nanosprings; system II is composed of the self‐assembly of a tri‐block structure such as chain‐nanospring‐chain. Coarse‐grained molecular dynamics simulations show that the incorporation of nanosprings can improve the mechanical strength of the elastomer matrix through nanoreinforcement and considerably decrease the hysteresis loss. This finding is significant for reducing fuel consumption and improving fuel efficiency in the automobile tire industry. Furthermore, it is revealed that the spring constant of nanosprings and the interfacial chemical coupling between chains and nanosprings both play crucial roles in adjusting the viscoelasticity of elastomers. It is inferred that elastomer/carbon nanostructured materials with good flexibility and reversible mechanical response (carbon nanosprings, nanocoils, nanorings, and thin graphene sheets) have both excellent mechanical and low HL properties; this may open a new avenue for fabrication of high performance automobile tires and facilitate the large‐scale industrial application of these materials. 相似文献
999.
G. Cado R. Aslam L. Séon T. Garnier R. Fabre A. Parat A. Chassepot J.‐C. Voegel B. Senger F. Schneider Y. Frère L. Jierry P. Schaaf H. Kerdjoudj M.‐H. Metz‐Boutigue F. Boulmedais 《Advanced functional materials》2013,23(38):4801-4809
Prevention of pathogen colonization of medical implants is a major medical and financial issue since infection by microorganisms constitutes one of the most serious complications after surgery or critical care. Immobilization of antimicrobial molecules on biomaterials surfaces is an efficient approach to prevent biofilm formation. Herein, the first self‐defensive coating against both bacteria and yeasts is reported, where the release of the antimicrobial peptide is triggered by enzymatic degradation of the film due to the pathogens themselves. Biocompatible and biodegradable polysaccharide multilayer films based on functionalized hyaluronic acid by cateslytin (CTL), an endogenous host‐defensive antimicrobial peptide, and chitosan (HA‐CTL‐C/CHI) are deposited on a planar surface with the aim of designing both antibacterial and antifungal coating. After 24 h of incubation, HA‐CTL‐C/CHI films fully inhibit the development of Gram‐positive Staphylococcus aureus bacteria and Candida albicans yeasts, which are common and virulent pathogens agents encountered in care‐associated diseases. Hyaluronidase, secreted by the pathogens, leads to the film degradation and the antimicrobial action of the peptide. Furthermore, the limited fibroblasts adhesion, without cytotoxicity, on HA‐CTL‐C/CHI films highlights a medically relevant application to prevent infections on catheters or tracheal tubes where fibrous tissue encapsulation is undesirable. 相似文献
1000.
Emad Abd‐Elrady Li Gan Gernot Kubin 《International Journal of Communication Systems》2013,26(5):651-661
Digital predistortion of nonlinear systems is an important topic in many practical applications. This paper considers direct predistortion of a Volterra system by connecting in tandem an adaptive Volterra predistorter. The coefficients of the predistorter can be recursively estimated using the nonlinear filtered‐x least mean squares (NFxLMS) algorithm. In this paper, the prediction error method (PEM) is used to derive a novel nonlinear filtered‐x PEM (NFxPEM) algorithm. A simulation study on Volterra systems shows that the NFxPEM algorithm more significantly suppresses spectral regrowth and converges much faster than the NFxLMS algorithm. Also, the NFxPEM algorithm is used in this paper to design more efficient digital predistorter—as compared with the NFxLMS algorithm—for digital subscriber line systems. Copyright © 2012 John Wiley & Sons, Ltd. 相似文献