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THE CHARACTERISTICS OF SHORT CRACKS AND EQUIVALENT PARAMETER OF FATIGUE DAMAGE

Z.X. Wu Engineering College , Yangzhou University , Yangzhou 225009 , China

金属学报(英文版)

In order to understand which parameters, such as the number of cracks and the total crack length is the useful indicators of fatigue damage, rotatory bending fatigue tests are carried out using smooth specimens of a medium-carbon steel. The behavior of short crock propagation and the evolution of surface cracks during fatigue are examined. The aim of this paper is to study how these damage parameters are correlated with the process of fatigue in order to evaluate the effectiveness of damage detection methods.

关键词: fatigue damage , null , null , null

XZ-pin增强泡沫夹层结构的剪切性能

杜龙 , 矫桂琼 , 黄涛 , 赵龙 , 黄峰

复合材料学报 doi:10.3321/j.issn:1000-3851.2007.06.024

通过不同Z-pin角度(15°和25°)和夹芯厚度(8mm和12.7mm)的XZ-pin增强泡沫夹层材料的剪切性能试验,与相同材料同尺寸的未增强件进行对比,考察XZ-pin对泡沫夹层结构的增强作用.试验结果表明,XZ-pin增强使材料的剪切强度和刚度都有较大幅度的提高;同时,Z-pin的加入使该结构具有与传统泡沫夹层材料不同的剪切破坏形式.在此基础上,结合空间网架结构和等效夹杂方法,提出了XZ-pin增强泡沫夹层结构剪切刚度模型,计算结果与试验值符合良好.结果表明,XZ-pin增强不仅能大幅度提高泡沫夹层结构的剪切性能,并具有良好的可设计性,可以通过改变Z-pin角度和材料等改变其力学性能.

关键词: 夹层结构 , Z-pin增强 , 剪切性能

211Z.X耐热高强韧铝合金热变形行为及加工图研究

徐祥 , 杨明 , 梁益龙 , 张世伟 , 龚乾江

材料导报 doi:10.11896/j.issn.1005-023X.2016.18.030

在Gleeble-3500热模拟试验机上对211Z.X耐热高强韧铝合金进行了等温热压缩实验,实验的应变温度为350~500℃、应变速率为0.01~10 s-1.研究了不同变形条件下的流变特征,并分析该合金高温变形时流变应力的规律,构建了材料流变应力本构模型;同时基于动态材料模型建立了加工图,确立了该合金在实验条件的最佳工艺参数.结果显示:功率耗散图与失稳图随应变量的增加而变化,功率耗散峰区由3个逐渐减为1个,失稳区域随应变而移动并逐渐增大;在加工图中,随着应变的增大,安全加工区域逐渐减小.综合加工图与微观组织的分析结果,211Z.X铝合金最佳的加工工艺区间为:变形温度485~500℃、应变速率0.03~10 s-1.

关键词: 211Z.X耐热高强韧铝合金 , 热压缩变形 , 加工图

小角度直线反走样的改进Wu算法

李铂 , 周建江 , 夏伟杰 , 吴连慧

液晶与显示 doi:10.3788/YJYXS20142904.0605

直线是机载座舱显示画面中最基本的图元,其显示质量对于整个画面的显示效果影响较大,尤其是小角度下直线显示的“麻花”现象一直是影响显示效果的关键问题之一.为了提高小角度下直线的显示效果,本文提出了一种基于Wu算法的亮度渐变改进算法.该算法通过渐进地展现直线从轴方向上的亮度变化过程,减少亮度畸变,有效地改进了显示效果.通过Matlab仿真和FPGA实现,验证了该算法反走样后的小角度直线显示效果明显优于其他算法,而且结合中点画线法后,绘制时间与Wu算法相当.同时该算法还可改善大角度直线和圆弧的显示效果,消除了大角度直线的边缘锯齿,解决了圆弧在小角度部分的虚化问题.因此本文算法可用于对实时性和显示效果要求高的机载座舱显示系统,以缓解飞行员的视觉疲劳.

关键词: 座舱显示 , 反走样 , 改进Wu算法 , 小角度 , FPGA实现

Subsolidus phase relation and crystal structure in the Pr(1+x-y)Ba(2-x-z)Ca(y+z)Cu(3)O(7 +/-delta) system

Applied Physics a-Materials Science & Processing

The Pr(1+x)Ba(2-x)Cu(3)O(7+/-delta) solid solution was investigated by means of X-ray powder diffraction combined with Rietveld analysis. A Pr123 single phase could be synthesized under Pr-rich conditions by sintering at 950 degreesC in air. The solubility range of Pr(1+x)Ba(2-x)Cu(3)O(7+/-delta) solid solution is 0.08 less than or equal to x less than or equal to 0.80. The structure of Pr(1+x)Ba(2-x)Cu(3)O(7+/-delta) for 0.08 less than or equal to x less than or equal to 0.30 is orthorhombic. The structure transforms into tetragonal for 0.30 less than or equal to x less than or equal to 0.80. To form the Pr123 single phase, the Ba sites in the Pr123 structure must have partial Pr ions, and the least amount is x = 0.08. Ba ions cannot occupy the sites of Pr ions. In the Pr123 structure, Ca ions can replace Pr ions; the highest value is x = 0.4 in the PrBa(2-x)Ca(x)Cu(3)O(7+/-delta) system under our experimental conditions. However, Ca ions cannot replace B a ions. The ionic radius plays a more important role than the chemical properties in the substitution between Pr, Ba and Ca ions in the Pr123 structure.

关键词: cu-o system;approximately 950-degrees-c;superconductivity;diagram;pr;growth;nd;prba2cu3o7-delta;praseodymium;property

Service Performance of Engineering Materials

Andrej Atrens

材料科学技术(英文)

Corrosion research by Atrens and co-workers has made significant contributions to the understanding of the service performance of engineering materials. This includes: (1) elucidated corrosion mechanisms of Mg alloys, stainless steels and Cu alloys, (2) developed an improved understanding of passivity in stainless steels and binary alloys such as Fe-Cr, Ni-Cr, Co-Cr, Fe-Ti, and Fe-Si, (3) developed an improved understanding of the melt spinning of Cu alloys, and (4) elucidated mechanisms of environment assisted fracture (EAF) of steels and Zr alloys. This paper summarises contributions in the following: (1) intergranular stress corrosion cracking of pipeline steels, (2) atmospheric corrosion and patination of Cu, (3) corrosion of Mg alloys, and (4) transgranular stress corrosion cracking of rock bolts.

关键词: Stress corrosion cracking , null , null

X波段宽频大损耗BaZnCo-Z型铁氧体的磁性和微波吸收特性

徐超 , 卢佃清 , 刘学东 , 尚涛

材料热处理学报

采用柠檬酸溶胶.凝胶自蔓延法制备了Ba3(Zn1-xCox) 2Fe24O41(x=0.2,0.4,0.6,0.8)铁氧体纳米晶颗粒.材料相结构、静态磁参数和电磁参数分别通过XRD、VSM和矢量网络分析仪测得.结果表明,随着Co含量的增加,样品静态磁性能的改变与Co2+在点阵中的占位密切相关;样品的复磁导率实部的变化较好的符合单畴畴转磁化理论,而其虚部变化还要受到旋磁阻尼系数的影响;样品的复介电常数受到Co含量和晶粒尺寸的共同影响.反射功率损耗测试表明,在X波段1 mm厚x=0.6样品的反射功率损耗最大吸收值可达49.907 dB,并且反射功率损耗大于30 dB和20 dB的频宽分别为3.56 GHz和4.26 GHz.可见x=0.6样品在整个X波段内具有非常好的微波吸收性能,是X波段理想的微波吸收剂.

关键词: Z型铁氧体 , 吸波材料 , 溶胶-凝胶自蔓延 , 电磁损耗

基于WO3?x量子点和TiO2构建高效Z型光催化产氢催化剂

潘伦 , 张靖雯 , 贾旭 , 马煜航 , 张香文 , 王莅 , 邹吉军

催化学报 doi:10.1016/S1872-2067(16)62576-7

TiO2具有高效、廉价、无毒及光化学稳定性好等优点,因而被广泛应用于光能转化和利用领域,如太阳能电池、光催化分解水制氢和环境污染物降解等.但是,TiO2仍然存在一些缺陷制约了其应用,其中,最关键的问题是光生电荷分离效率低.因此,人们对其进行了掺杂、异质结构建和Z型结构建等来解决这一问题,其中Z型结近年来备受关注.全固体Z型结的构建目前主要有两种方式:PSI-C-PSII和PSI-PSII.前者PSI与PSII间要插入中间导电层(如Au、rGO等)来实现界面欧姆接触;后者则无中间层,而是基于界面设计来实现欧姆接触.本文以构建PSI-PSII Z型结为目标,以TiO2和WO3为基础半导体材料,采用原位溶剂热生长的方法构建WO3量子点/TiO2结构,借助氢气还原反应在界面处引入氧缺陷.采用透射电子显微镜、X射线衍射和拉曼光谱研究了复合晶体结构,采用X射线光电子能谱、紫外可见光谱和荧光光谱等手段研究了Z型结的界面结构和能带结构.结合光催化分解水产氢活性来建立Z型结结构与光催化性能的关联关系.表征结果表明,在TiO2上进行原位溶剂热成核反应可点缀WO3量子点,并且量子点粒径随W前驱体用量的增加而变大.两种半导体材料为TiO2锐钛矿和WO3晶体结构,且WO3的XRD特征峰和Raman特征吸收峰会随W前驱体用量增加而变大.通过对WO3/TiO2进行氢气还原处理,使其表面形成大量W5+和氧缺陷,一方面提高了催化剂对可见光的吸收,另一方面在界面形成欧姆接触,实现了Z型结构的构建.Z型结构实现了光催化分解水产氢反应,其中WTH10光催化活性最好.本文为新型Z型光催化剂的设计和构建提供了新思路和策略.

关键词: WO3?x , 二氧化钛 , 产氢 , 量子点 , W5+/氧缺陷

Z型铁氧体Ba_3(MnZn)_xCo_(2(1-x))Fe_(24)O_(41)的微波吸收性能

周克省 , 陈颖 , 秦宪明 , 邓联文 , 夏辉 , 黄生祥 , 卢玉娥 , 齐伟 , 韩建华

功能材料

用溶胶-凝胶法制备锰锌掺杂Z型钡钴铁氧体Ba3(MnZn)xCo2(1-x)Fe24O41(x=0.0、0.1、0.2、0.3、0.4、0.5)样品。用XRD和SEM对样品的晶体结构、颗粒形貌进行表征,用微波矢量网络分析仪测试该样品在2~18GHz微波频率范围的复介电常数、复磁导率,根据测量数据计算电磁损耗角正切及反射率,探讨该材料的微波吸收性能与电磁损耗机理。结果表明样品为Z型六角铁氧体晶体结构,颗粒呈六角片状形貌;当样品厚度为2.2mm、x=0.4时,在频率3.9GHz处吸收峰值为38.5dB,10dB以上频带宽度为3.8GHz;该材料能在1~5.8GHz微波低频范围实现有效吸收,其微波吸收兼具磁损耗和介电损耗,但磁损耗更为显著。

关键词: 溶胶-凝胶法 , Z型钡铁氧体 , 微波吸收 , 电磁损耗

Biomimicry of bamboo bast fiber with engineering composite materials

Materials Science & Engineering C-Biomimetic Materials Sensors and Systems

Bamboo, one of the strongest natural structural composite materials, has many distinguishing features. It has been found that its reinforcement unit, hollow, multilayered and spirally-wound bast fiber, plays an extremely important role in its mechanical behavior. In the present work, on the basis of the study on bamboo bast fiber and wood tracheid, a biomimetic model of the reinforcing element, composed of two layers of helically wound fiber, was suggested. To detect the structural characteristics of such a microstructure, four types of macro fiber specimens made of engineering composites were employed: axially aligned solid and hollow cylinders, and single- and double-helical hollow cylinders. These specimens were subjected to several possible loadings, and the experimental results reveal that only the double-helical structural unit possesses the optimum comprehensive mechanical properties. An interlaminar transition zone model imitating bamboo bast fiber was proposed and was verified by engineering composite materials. In our work, the transition zone can increase the interlaminar shear strength of the composite materials by about 15%. These biomimetic structural models can be applied in the design and manufacture of engineering composite materials.

关键词: bamboo;bast fiber;biomimetics;engineering composites

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