Z.K. Fan
,
Y.Q. Wang
,
S.H. Liangand HS. Huang(School of Materials Science and Engineering
,
Xi'an University of Technology
,
Xi'an 710048
,
China)(Mechanical Engineering Department
,
Tsinghua University
,
Beijing 100084
,
China)
金属学报(英文版)
The combinational use of alloying elements with positive and negative segmpation hasbeen shown to be very thective in strengthening the matrix of cast iron. Negativesegmpation alloying elements, Cu and Si, make the inner parts of dendritic austenitesand eutectic cells get good handenability. On the contrury, positive segmpation alloyingelements Cr and Mn make the outer parts of dendrites have higher microhaofness.Appropriate combination of the above two tyPes Of alloying elements can produce auniform microharkness and high strength in grny cast irons.
关键词:
cast iron
,
null
,
null
郑建邦
,
丁浩
,
郭益平
,
刘林
,
柳伟
,
李行健
金属学报
选用K4169Fe—Ni基高温合金,研究了向熔体中加入NixAlyTiz金属间化合物对合金冷凝后的晶粒尺寸、枝晶组织等凝固组织特征的影响结果表明,加入微量NixAlyTiz细化剂并控制合金液的均匀化处理过程可显著细化晶粒,将铸件整体晶粒细化至0、1—02mm;达到ASTM1—3级,同时、枝晶组织出现了由树枝晶向胞状晶的转变、并且NixAlyTiz细化剂的加入对合金的结晶特性及凝固组织无不良影响.
关键词:
Fe-Ni
,
grain refinement
,
nucleant
,
dendrite morphology
,
null
Superconductor Science & Technology
In this paper we report the transport properties of c-axis-oriented superconducting La(1.44)Nd(0.4)Sr(0.16)CuO(4) films on LaSrAlO(4) substrates with different thicknesses in various magnetic fields parallel and perpendicular to the c axis of the films. It is found that with decreasing film thickness there is a crossover from the parallel shift to fan-shape broadening in the resistive transitions. Moreover, for both field configurations, the flux pinning potential U(0)(H) of the film shifts upward with an order of magnitude with increasing in-plane compressive strain. These results indicate that the compressive epitaxial strain and strain-induced destabilization of the static charge stripes are important aspects for the promotion of superconducting transition temperature as well as the flux pinning potential.
关键词:
high-temperature superconductors;crystal thin-films;flux motion;la2-xsrxcuo4;strain;insulator;dependence;behavior
Journal of Physics D-Applied Physics
A large magnetoresistance (MR) is observed in a double helical CoMnSi compound over the entire temperature region from 5 K to the maximum measuring temperature of 380 K, with the largest MR ratio of -18.3% at 245 K and the smallest MR ratio of -5.5% at 85 K at 5 T. This phenomenon is ascribed to two different mechanisms in different temperature regions. The suppressed spin fluctuations of the double helical structure are responsible for the MR below 110 K. However, in consideration of the natural multilayer superstructure of CoMnSi, the larger MR above 110 K is ascribed to the decrease in K-space restrictions when the change in magnetic structure from double helical order to fan order occurs.
关键词:
giant magnetoresistance;magnetic-structure;crystal;metals
段沐枫
,
李宁
,
郑莹莹
,
肖军
,
李勇
宇航材料工艺
K-cor是应用Z-pin增强技术的一种新型高性能结构.本文以NHZP-1树脂为基体研究适合K-cor结构的半固化Z-pin拉挤工艺,得到固化度为51.25%的Z-pin为满足制备要求的最佳参数,并制作悬空装置采用两步法进行半固化Z-pin的植入和压弯,探索出压弯和后固化工艺.在此基础上,对试制的K-cor夹层结构进行平拉和剪切试验研究.结果发现,折弯长度是K-cor夹层结构的另一重要参数,较长的折弯长度会增加Z-pin与蒙皮的结合面积从而提高结构的拉伸性能.
关键词:
复合材料
,
半固化Z-pin
,
K-cor夹层结构
,
制备工艺
,
力学性能
王晓旭
,
陈利
材料工程
doi:10.3969/j.issn.1001-4381.2011.11.001
通过单根Z-pin从复合材料层合板中拔出的试验方法,测试了Z-pin的拔出强度,计算了Z-pin的临界埋入深度,并引入抗拉强度利用率概念来表征Z-pin的抗拉强度在拔出过程中的利用程度.结果表明,直径0.50mm和0.28mm的Z-pin临界埋入深度分别约为5.1mm和3.1mm.当Z-pin的埋入深度小于临界埋入深度时,Z-pin从层板中拔出;Z-pin拔出强度与埋入深度成正比,与Z-pin的直径成反比;当Z-pin的埋入深度大于临界埋入深度时,Z-pin发生断裂,Z-pin的抗拉强度利用率达到100%.最后提出了提高抗拉强度利用率的建议.
关键词:
Z-pin
,
拔出强度
,
复合材料
,
拔出试验
,
抗拉强度
刘韡
,
矫桂琼
,
张为民
材料科学与工程学报
提出手工预缝纫方法将3K丝束的T300碳纤维引入预成型体,采用CVI工艺在预成型体和缝线处同时渗透SiC基体,制备了Z-pin增强平纹编织C/SiC陶瓷基复合材料。通过三点弯曲试验测定了Ⅰ+Ⅱ混合型应变能释放率,分析了材料的裂纹扩展行为和Z-pin增强机理。结果表明:随着裂纹扩展长度的增大,Ⅰ+Ⅱ型裂纹扩展阻力不断增大,相同裂纹扩展长度,增加Z-pin植入密度可以提高粘结强度,增大止裂作用。Z-pin增强平纹编织C/SiC陶瓷基复合材料裂纹扩展的耗能途径主要是层间界面剥离、Z-pin弹性剪切和拉伸变形。
关键词:
陶瓷基复合材料
,
断裂韧性
,
应变能释放率
,
Z-pin
董鹏莉
,
张梅
,
郭敏
,
王习东
耐火材料
doi:10.3969/j.issn.1001-1935.2009.01.006
在1773 K、埋Si3N4粉气氛下,以Si、Al和Al2O3(均为分析纯)为原料合成了Z值分别为0.6、1.3、3.0和4.0的β-SiAlON.试验发现:随着所合成β-SiAlON的Z值从0.6增加至4.0,反应产物中逐渐有Al2O3剩余并生成15R(SiAl4O2N4),而且β-SiAlON的晶体形貌也有较大变化:Z=0.6~3.0时,β-SiAlON由细小晶须伴生转变为具有较大直径和长径比的六方柱状晶交织,且具有较完整的晶体结构,随着Z值的增加,材料的耐压强度和抗折强度同时提高;Z=4.0时,晶体形貌则是片状和具有较大长径比的长片状晶相互交错,和Z=3.0相比,材料的耐压和抗折强度有所下降,这主要取决于不同Z值β-SiAlON的不同晶体形貌及断裂方式.
关键词:
β-SiAlON
,
显微结构
,
晶须
,
耐压强度
,
抗折强度