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41.
Building upon the equivalence of the basic scheme in the work of Moulinec and Suquet with gradient descent methods, we investigate the effect of using the celebrated Barzilai-Borwein step size selection technique in this context. We provide an overview of recent convergence theory and present efficient implementations in the context of computational micromechanics, with and without globalization. In contrast to polarization schemes and fast gradient methods, no lower bound on the eigenvalues of the material tangent is necessary for the Barzilai-Borwein scheme. We demonstrate the power of the proposed method for linear elastic and inelastic large scale problems with finite and infinite material contrast.  相似文献   
42.
A biphenyl type liquid crystal epoxy (LCE) monomer 4,4′-di(2,3-epoxyhexyloxy)biphenyl (LCBP4) containing flexible chain was synthesized and the curing behavior was investigated using 4,4′-diaminodiphenylmethane (DDM) as the curing agent. The effect of curing condition on the formation of the liquid crystalline phase was examined. The cured samples show good mechanical properties and thermal stabilities. Moreover, the relationship between thermal conductivity and structure of liquid crystalline domain was also discussed. The samples show high thermal conductivity up to 0.28–0.31 W/(m*K), which is 1.5 times as high as that of conventional epoxy systems. In addition, thermal conductive filler, Al2O3, was introduced into LCBP4/DDM to obtain higher thermal conductive composites. When the content of Al2O3 was 80 wt%, the thermal conductivity of the composite reached to 1.86 W/(m*K), while that of diglycidyl ether of bisphenol A (Bis-A) epoxy resin/DDM/Al2O3 was 1.15 W/(m*K). Compared with Bis-A epoxy resin, the formation of liquid crystal domains in the cured LCE resin enhanced the thermal conductivity synergistically with the presence of Al2O3. Furthermore, the introduction of Al2O3 also slightly increased the thermal stabilities of the cured LCE.  相似文献   
43.
水体中微塑料的环境影响行为研究进展   总被引:1,自引:0,他引:1       下载免费PDF全文
微塑料是指一类广泛存在于环境中的粒径小于5mm的塑料颗粒的总称,当其存在于水体环境中,容易吸附其他污染物,影响它们的迁移行为,进而对生态效应产生影响。本文依据水体环境中微塑料的相关研究报道,对微塑料在水环境中的影响行为进行概述。主要从微塑料的物理、化学和生物特性在环境中的变化特性,微塑料与环境中其他污染物质的相互作用关系,以及微塑料及其复合污染体系对水生生物造成的生态效应影响等3个方面对微塑料的环境行为进行总结、归纳与阐述。最后,针对微塑料对水环境中的环境影响效应,提出了今后的研究方向与展望。  相似文献   
44.
在车轮-钢轨高速滚动接触疲劳试验机上进行油介质下高速轮轨低黏着特性和增黏试验,研究油介质条件下不同速度、蠕滑率、轴质量以及撒砂对黏着系数的影响,最高试验线速度200 km/h。结果表明:黏着系数随蠕滑率的增加先增大、再微降随后趋于平稳,在蠕滑率3%左右达到最大;随着速度的增加,黏着系数呈快速下降趋势,如速度从50 km/h增加至200 km/h时,最大黏着系数从0.092下降至0.049;当轴质量由12 t增至16 t时,黏着系数仅略微增加了0.01;撒砂后,黏着系数约为未撒砂时的3倍左右,且依然随速度增加而降低;撒砂会使得试验后轮轨表面产生很多麻坑,从而增大了表面粗糙度,对增黏起到了一定作用,但增黏砂会对接触表面造成显著损伤,在极端条件下会促进滚动接触疲劳的萌生,威胁运行安全。  相似文献   
45.
Effects of bentonite concentration on morphology and permeation characteristics of bentonite-doped polysulfone membranes were investigated. Solubility sphere for bentonite was constructed to estimate its solubility parameter. Thermodynamic modeling of phase inversion of this system was carried out using Flory–Huggins theory. The trade-off between thermodynamic and kinetic parameters was used to predict the membrane morphology for bentonite concentration varying from 0 to 5 wt %. The porosity of bentonite-doped membranes decreased up to 3 wt % that increased thereafter. Morphological analysis showed dense cross section with finger-like macrovoids at 3 wt % beyond which it changed to honeycomb structure with large circular voids. Permeability of 3 wt % membrane was the lowest (5.6 × 10−12 m/Pa s) with 95% bovine serum albumin rejection. Contact angle of the membranes decreased from 83 to 66° with bentonite addition making the membrane more hydrophilic. © 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2020 , 137, 48450.  相似文献   
46.
The effects of quenching in different ways following solid-solution treatment on properties and precipitation behaviors of 7050 alloy were investigated by transmission electron microscopy (TEM), scanning electron microscopy (SEM), selected area electron diffraction (SAED), hardness and electrical conductivity tests. Results show that after quenching in different ways, electrical conductivity of the alloy decreases rapidly in the first 48 h of natural aging. The electrical conductivity of 7050 alloy in natural aging state is determined by the size and density of GP zones, and the size of GP zones is the main factor. After natural aging for 70 d, the size of GP zones is 1.8–2.6 nm in matrix of the immersion quenched sample and it is 1.4–1.8 nm in matrix of both water mist and forced air quenched samples. After natural and artificial peak aging, the hardness of the water mist quenched sample is HV 193.6 and its electrical conductivity is 30.5% (IACS) which are both higher than those of the immersion quenched sample. Therefore, water mist quenching is an ideal quenching method for 7050 alloy sheets after solid-solution treatment.  相似文献   
47.
针对电力大数据流的异常检测问题,该文将流数据聚类算法与电力大数据相结合,针对现有流数据聚类算法不易存储全部数据、断电数据易丢失等问题,以及流数据聚类算法对于离线阶段聚类算法实时应答的要求,从数据的完整性、安全性以及流数据聚类算法的低时间复杂度的角度出发,对CluStream流数据聚类算法进行改进,提出流式K-means聚类算法。对在线阶段,使用Redis集群进行流数据的缓冲,并设计节点时间衰减策略,增大心跳消息中有效消息所占比例;对离线阶段聚类算法进行优化,使用最佳距离法确定初始聚类中心,减少迭代次数;最后,使用所提出的流式K-means聚类算法进行用户用电异常行为检测,实验结果表明,该算法能够很好的发现用户用电异常行为。  相似文献   
48.
将聚苯乙烯(PS)颗粒溶解到二乙烯基苯(DVB)、丙烯酸甲酯(MA)与偶氮二异丁腈(AIBN)的混合物中,通过加热引发MA聚合,获得PS/交联PMA共混物, 采用釜压法制备了PS/交联PMA共混物泡沫。采用全自动视频光学接触角测试仪、差示扫描量热仪、傅里叶变换红外光谱仪、动态力学分析仪对PS/交联PMA共混物的结构和性能进行了表征,并通过扫描电子显微镜对PS/交联PMA共混物泡沫的结构进行了表征。结果表明,交联PMA的引入能提高体系的成核效率,随着MA用量的增加,PS/交联PMA共混物的接触角从PS的100.5 °降至86.1 °;当MA的用量为9.6份(质量份,下同)时,PS/交联PMA共混物的泡孔尺寸主要分布在40~60 μm之间,泡孔尺寸分布明显变窄,泡孔密度达到了1.2×108 个/cm3。  相似文献   
49.
The extracellular matrix (ECM) is a macromolecular network that can provide biochemical and structural support for cell adhesion and formation. It regulates cell behavior by influencing biochemical and physical cues. It is a dynamic structure whose components are modified, degraded, or deposited during connective tissue development, giving tissues strength and structural integrity. The physical properties of the natural ECM environment control the design of naturally or synthetically derived biomaterials to guide cell function in tissue engineering. Tissue engineering is an important field that explores physical cues of the ECM to produce new viable tissue for medical applications, such as in organ transplant and organ recovery. Understanding how the ECM exerts physical effects on cell behavior, when cells are seeded in synthetic ECM scaffolds, is of utmost importance. Herein we review recent findings in this area that report on cell behaviors in a variety of ECMs with different physical properties, i.e., topology, geometry, dimensionality, stiffness, and tension.  相似文献   
50.
Dynamic contact angle (DCA) is of crucial importance in the numerical investigation of water management problems in proton exchange membrane fuel cells (PEMFCs). In order to well predict the gas-liquid two-phase flow in the complex flow field in PEMFCs, first, it is very critical to build a robust DCA model that is capable of simulating droplet behaviors on a single surface under various conditions. In our previous research work, an advancing-receding DCA (AR-DCA) model is developed and has been successfully validated against a series of experiments from the available literature for droplet impact on surfaces. In this study, the AR-DCA model is further applied to simulate droplet behaviors on inclined surfaces with different droplet impact velocities, impact angles and viscosities. It is found that the droplet spreading and deformation from the simulations have excellent agreement with those captured in the corresponding experiments. The results also indicate that higher impact velocity and impact angle can facilitate the spreading trend at the droplet trailing edge and have no notable effects on the leading edge. In addition, the increase of droplet viscosity leads to a transition from droplet deposition phenomenon to partial rebound on the surface.  相似文献   
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