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131.
For production of fine-grained and corrosion-resistant tungsten carbide (WC) based cemented carbides, addition of chromium carbide (Cr33C2) in small amounts is standard practice. No systematic study, however, has been made of the effects of large additions (maximum 6 wt % ) of Cr3C2 as a substitute for tungsten carbide. This study focuses on the effect of hard-phase substitution by C3C2 in WC-1OCo cemented carbide. An attempt is also made to modify the binder metal cobalt by partial or complete substitution of nickel. Specimens were prepared using the standard liquid-phase sintering process and were tested for sintered porosity, mechanical properties, corrosion resistance, and microstructural parameters. Results confirm the findings of earlier workers regarding grain refinement and improvement of mechanical properties upon the addition of small amounts (<2 wt%) of Cr3C2. Modification of the binder phase improves indentation fracture toughness and corrosion resistance. Addition of Cr3C2 independent of the binder type improves corrosion resistance.  相似文献   
132.
20钢及渗铝20钢在KCl盐膜下的腐蚀   总被引:1,自引:0,他引:1  
研究了20钢及渗铝20钢在750℃和800℃于KCl盐膜下空气中的腐蚀行为。结果显示,所有条件下20钢均发生了严重的加速腐蚀现象,形成了厚的、疏松的、与基体结合性很差的腐蚀产物膜。渗铝20钢则腐蚀增重很小。虽然渗铝试样表面致密的、连续的Al2O3对材料起到了保护作用,但在氧化膜内部同时形成了严重的内腐蚀区。从热力学角度讨论了试验结果。  相似文献   
133.
Two full 3D steady mathematical models are developed by finite element method (FEM) to calcalate coupled physics fields. the electro-magnetic model is built and solved first and so is the fluid motion model with the acquired electromagnetic force as source body forces in Navier-Stokes equations. Effects caused by the ferromagnetic shell, busbar system around, and open boundary problem as well as inside induced current were considered in terms of the magnetic field. Furthermore, a new modeling method is found to set up solid models and then mesh them entirely with so-called structuralized grids, namely hex-mesh. Examples of 75kA prebaked cell with two kinds of busbar arrangements are presented. Results agree with those disclosed in the literature and confirm that the coupled simulation is valid. It is also concluded that the usage of these models facilitates the consistent analysis of the electric field to magnetic field and then flow motion to the greater extent, local distributions of current density and magnetic flux density are very much dependent on the cell structure, the steel shell is a shield to reduce the magnetic field and flow pattern is two dimensional in the main body of the metal pad.  相似文献   
134.
研究了等离子喷涂法制备ZrO2Ti系功能梯度涂层。结果表明,采用等离子喷涂工艺制备功能梯度涂层是可行的,涂层与基体除以机械咬合方式结合外,还存在着少量冶金化学反应结合,添加Ni/Al和SiO2有助于提高涂层的结合强度  相似文献   
135.
传统的验证方法难以保证分布式K互斥算法的有效性和安全性.为解决这一问题,给出了进一步的研究,提出一种基于概率模型检测器PRISM的方法,对Kerry Raymond的分布式K互斥算法进行形式化建模与分析验证.通过设置算法中各个进程进入临界区的时间而得出的结果中发现,改变临界区的数目K,对于某一进程进入临界区的平均及时时间的影响并不大.如果某一进程的执行时间比其他进程大很多,则K的增加可以提高运行效率.最后证明了这一结论.  相似文献   
136.
Motion sensing has now become one of the crucial parts of modern life. The tech products for entertainment create huge competition in the modern market, with the front runners such as game and handset manufacturers. Users can use their own bodies to control the systems without Conversational User Interfaces (CUIs) and Graph User Interfaces (GUIs). With many benefits, the technologies of NUI is getting more and more important, which also are usually accompanied by the sensor developments. Hence, system designers uses the sensors on the embedded platforms used to develop the system devices for different body movement control interfaces, such as using the gravitational sensor to control the systems or using touchscreen detection. However most of the body movement is restricted to the hand portion for the system platform, making it not as dynamic as the traditional monitor consoles. Thus, this restriction decreases the multitude and availability of controlling modes in system devices. In this study, a sensor-based gait recognition was proposed, in order to provide a novel natural user interface for control systems except the operating modes of gesture.  相似文献   
137.
Accurate distance estimation is essential for effective user interaction with objects appearing in the virtual space. Research has shown that the distance estimation in the virtual space is not as accurate as that in the real world. The inaccuracy phenomenon is almost exclusively documented for estimating objects appearing straight ahead of the eye. A collection of the accuracy data for targets located in different angles of view in the visual field may be useful in aiding the design of user‐virtual object interaction. This study collected the object to object distance estimation accuracy for targets displayed stereoscopically. There are five horizontal and two vertical viewing angles and three depths, resulting in a total of 30 locations in the virtual space. The distance estimation for any of the 30 object pairs were performed with or without the aid of spatial cues. Significant factors influencing the accuracy and time of distance estimation were identified. Implications of the finding were discussed with respect to the stereoscopic display environment.  相似文献   
138.
139.
In this article, we comprehensively review recent progress in the ReRAM cell technology for 3D integration focusing on a material/device level. First we briefly mention pioneering work on high-density crossbar ReRAM arrays which paved the way to 3D integration. We discuss the two main proposed 3D integration schemes—3D horizontally stacked ReRAM vs 3D Vertical ReRAM and their respective advantages and disadvantages. We follow with the detailed memory cell design on important work in both areas, utilizing either filamentary or interface-limited switching mechanisms. We also discuss our own contributions on HfO2-based filamentary 3D Vertical ReRAM as well as TaOx/TiO2 bilayer-based self-rectifying 3D Vertical ReRAM. Finally, we summarize the present status and provide an outlook for the nearterm future.  相似文献   
140.
Proliferation of mobile handheld devices and the significant advancement of wireless technologies and infrastructures have become a strong driving force of many mobile applications, including ubiquitous web information access through those devices. Despite the tremendous flexibility, accessibility, and convenience, rendering and navigating Web content on handheld devices suffer from significant usability problems attributable to their physical constraints, especially the small screen size, restricted interaction mechanisms, and low memory. Therefore, improving the effectiveness of web content navigation on those devices is crucial and has attracted increasing attention from both academics and industry. One of the promising solutions is adaptation, which focuses on the content restructuring, rearranging, and visualization. This article attempts to provide a comprehensive review of the state-of-the-art approaches to web adaptation for mobile handheld devices. The study not only categorizes, synthesizes, and compares the pros and cons of major adaptation methods but also discusses the observed problems in research methodology adopted in related studies and highlights future research directions. The article provides an important road map to the researchers and practitioners in this field.  相似文献   
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