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1.
Co含量对Zn0.6CoxFe2.4-xO4结构与磁性的影响   总被引:1,自引:0,他引:1  
采用溶胶-凝胶方法制备纳米尺度钴锌铁氧体Zn0.6CoxFe2.4-xO4(x=0~0.30)颗粒,利用X射线衍射仪(XRD)分析晶体结构和相变过程,利用振动样品磁强计(VSM)对其磁性进行测量和分析.实验结果表明,钴锌铁氧体Zn0.6Co0.15Fe2.25O4在800℃时生成单一尖晶石相锌钴铁氧体,在550~800℃温度区间出现R-Fe2O3过渡相.随钴含量的增加,Zn0.6CoxFe2.4-xO4的比饱和磁化强度先增后减,x=0.075~0.15比饱和磁化强度较高;Zn0.6CoxFe2.4-xO4在1300℃时x=0.075的矫顽力为47163.6A/m,x≥0.15时矫顽力在1200℃附近随温度缓慢上升,在1200~1300℃之间为平台状态,并且随钴含量的增加,矫顽力略有升高.在x=0.10附近,可同时获得较高的比饱和磁化强度和较高的矫顽力.  相似文献   

2.
采用共沉淀法将纳米锰锌铁氧体粒子(Mn0.8Zn0.2Fe2O4)与镁铝双金属氢氧化物(MgAl-LDHs)进行组装合成了磁性纳米镁铝双金属氢氧化物,并通过TEM,FTIR、DTA、XRD、VSM等方法对其进行表征.样品的结构分析结果表明,复合材料具有典型的核壳结构,镁铝双金属氢氧化物被赋予磁性后并没有改变其层状结构的典型特征.样品的磁学性能和磁热性能测试结果表明,铁氧体的含量对复合材料的磁性能和磁热效应起着决定性作用;MgAl-LDHs对铁氧体粒子没有显著的磁屏蔽效应,复合材料的饱和磁化强度与铁氧体的含量呈正线性相关,而复合材料的矫顽力随MgAl-LDHs含量的增加呈现先减小后增大的趋势,但整体变化幅度很小,同时MgAl-LDHs对铁氧体粒子磁热效应的影响也极小.  相似文献   

3.
Zn2+对MnZn铁氧体结构、磁性能和磁热效应的影响   总被引:2,自引:0,他引:2  
采用溶胶-凝胶自燃烧法制备了不同Zn2 含量的纳米MnZn铁氧体微粒,并通过XRD、VSM、TEM等方法研究了Zn2 含量对MnZn铁氧体结构、磁性能及在外磁场作用下磁热效应的影响.结果表明,Zn2 含量对MnZn铁氧体的结构与性能有重要的影响,其中成分为Mn0.8Zn0.2Fe2O4的铁氧体微粒,具有最高的饱和磁化强度和磁热效应,10mg的该样品在频率为60kHz的外磁场诱导下,20min内使得1ml去离子水升温了32℃,显示出优良的磁热性能.同时,通过调节Zn2 含量实现了MnZn铁氧体发热量的可调性.随着Zn2 含量的增加,Mn1-xZnxFe2O4的矫顽力Hc和剩余磁化强度Br不断减小,而饱和磁化强度Ms先增大后减小,在x=0.2处达到最大值,约为44.6(A·m2)/kg.  相似文献   

4.
张宁  吴华强  冒丽  李明明  李亭亭  夏玲玲 《功能材料》2012,43(18):2554-2557,2563
以多壁碳纳米管(MWCNTs)为模板,三乙二醇(TREG)为溶剂,采用微波多元醇法制备MWC-NTs负载组成可控的Ni1-xZnxFe2O4(x=0.4、0.5、0.6)纳米复合材料Ni1-xZnxFe2O4/MWCNTs。其结构和形貌通过XRD、SEM、TEM和EDX进行表征,用VSM测试样品的磁性,并探讨了微波功率、微波时间对镍锌铁氧体负载的影响。结果表明立方系尖晶石结构的单分散Ni1-xZnxFe2O4磁性纳米粒子均匀负载在碳纳米管表面,平均粒径约为6nm;其磁性能与镍锌铁氧体的组成有关,随着Zn含量的增加,饱和磁化强度(Ms)先增大后减小,当x=0.5时Ms达到最大值。矫顽力(Hc)都比较小,在室温下表现为超顺磁性。  相似文献   

5.
采用聚丙烯酰胺凝胶法制备了尖晶石型纳米晶Ni0.4CoxZn0.6-xFe2O4(x=0、0.2、0.4),同时考察了铁氧体的电磁性能.由X射线衍射(XRD)可知,随着x的增大,Ni0.4CoxZn0.6-xFe2O4的晶格常数从0.838 4 nm减小到0.835 7 nm.透射电镜(TEM)结果表明,Ni0.4Zn0.6Fe2O4铁氧体粒子的平均直径约为20 nm.Ni0.4CoxZn0.6-xFe2O4在8.2~12.4 GHz的测试频率范围内具有介电损耗和磁损耗.在频率为9.0 GHz时,Ni0.4CoxZn0.6-xFe2O4(x=0.4)复介电常数虚部的最大值达到19.6.随着x值的增加,复数磁导率虚部的共振吸收峰向高频移动.制备的复合物可以被广泛地用于抑制电磁辐射和吸收雷达波等领域.  相似文献   

6.
共沉淀-熔盐法合成的BaFe8(Ti0.5Mn0.5)4O19纳米颗粒掺杂在邻甲苯胺的酸性溶液中,采用原位复合法制备导电聚邻甲苯胺磁性复合颗粒.借助FTIR、XRD、UV-Vis、TEM和VSM等分析手段研究了复合粒子的形貌、结构及其光、电和磁性能.结果表明,BaFe8(Ti0.5Mn0.5)4O19以15nm左右的晶粒分散于聚邻甲苯胺(POT)基体之中,一定程度上减小了铁氧体纳米粒子的团聚.但是BaFe8(Ti0.5Mn0.5)4O19与POT之间不存在化学键合作用,此现象与其它文献报道不一致.POT/BaFe8(Ti0.5Mn0.5)4O19复合颗粒的导电性随POT含量的增加而增强,而比饱和磁化强度随之下降.  相似文献   

7.
采用柠檬酸盐溶胶凝胶法制得尖晶石型纳米钴镍锰锌铜铁氧体,通过原子吸收光谱仪测定元素组成,XRD、透射电镜、网络分析仪研究矿物组成并研究其颗粒形貌与吸波性能。试验表明:所得产物为尖晶石立方晶系铁氧体;其中铁元素易于被钴取代,形成CoFe2O4;而Mn、Zn、Cu、Ni趋向于互相掺杂形成固溶铁氧体。铁氧体的平均粒径为50nm。采用网络分析仪研究了5~7GHz,9~11GHz,15~18GHz内铁氧体的吸波性能:尖晶石型立方晶系纳米铁氧体具有良好的微波吸收性能;适量提高锰、锌等掺杂元素含量,有助于提高材料的吸波性能。  相似文献   

8.
采用溶胶凝胶自燃烧法制备了Mn0.4Zn0.6-xCoxFe2O4铁氧体,研究了钴掺杂对其结构和磁性质的影响。将自燃烧法制备的粉末进行1,150℃烧结。利用X射线衍射仪对制备的粉末测试发现,Mn0.4Zn0.6-xCoxFe2O4系列铁氧体都具有尖晶石结构。利用VSM对铁氧体进行磁性测试,发现饱和磁化强度与晶格常数的变化规律一致,在钴含量为0.2时,都取得最大值。通过μi-T曲线发现,初始磁导率随着钴含量的增加而降低,居里温度是一个常数。而且,钴含量可以调节磁导率的温度稳定性,在钴含量为0.3时,磁导率具有优良的温度稳定性。基于铁氧体中离子分布的原理,阐明了钴掺杂对铁氧体磁导率温度稳定性的作用机理。  相似文献   

9.
利用共沉淀法,以Fe3 、Zn2 、Mn2 金属离子溶液为原料制备出锰锌铁氧体前驱体,通过不同的工艺对前驱体进行热处理.研究结果表明:热处理温度和气氛是影响锰锌铁氧体性能的关键因素.在950℃,空气中升温、氮气保护下降温的热处理工艺所制得的锰锌铁氧体具有最高的比饱和磁化强度、最低矫顽力.  相似文献   

10.
采用聚丙烯酰胺凝胶法制备了尖晶石型纳米晶Ni0.4CoxZn0.6-xFe2O4(x=0、0.2、0.4),同时考察了铁氧体的电磁性能.由X射线衍射(XRD)可知,随着x的增大,Ni0.4CoxZn0.6-xFe2O4的晶格常数从0.838 4 nm减小到0.835 7 nm.透射电镜(TEM)结果表明,Ni0.4Zn0.6Fe2O4铁氧体粒子的平均直径约为20 nm.Ni0.4CoxZn0.6-xFe2O4在8.2~12.4 GHz的测试频率范围内具有介电损耗和磁损耗.在频率为9.0 GHz时,Ni0.4CoxZn0.6-xFe2O4(x=0.4)复介电常数虚部的最大值达到19.6.随着X值的增加,复数磁导率虚部的共振吸收峰向高频移动.制备的复合物可以被广泛地用于抑制电磁辐射和吸收雷达波等领域.  相似文献   

11.
In this paper, we present a new method for inserting several triangulated surfaces into an existing tetrahedral mesh generated by the meccano method. The result is a conformal mesh where each inserted surface is approximated by a set of faces of the final tetrahedral mesh. First, the tetrahedral mesh is refined around the inserted surfaces to capture their geometric features. Second, each immersed surface is approximated by a set of faces from the tetrahedral mesh. Third, following a novel approach, the nodes of the approximated surfaces are mapped to the corresponding immersed surface. Fourth, we untangle and smooth the mesh by optimizing a regularized shape distortion measure for tetrahedral elements in which we move all the nodes of the mesh, restricting the movement of the edge and surface nodes along the corresponding entity they belong to. The refining process allows approximating the immersed surface for any initial meccano tetrahedral mesh. Moreover, the proposed projection method avoids computational expensive geometric projections. Finally, the applied simultaneous untangling and smoothing process delivers a high‐quality mesh and ensures that the immersed surfaces are interpolated. Several examples are presented to assess the properties of the proposed method.  相似文献   

12.
We associate a variety of innovations with the term "Industry 4.0". The pioneer of many 4.0 modifications forms the basisfor the trend towards the integrated di...  相似文献   

13.
14.
ABSTRACT

The production of ferrous metal increased during the Roman Late Republican period, Principate and Empire. The direct bloomery process was used to extract the metal from its ores using slag-tapping and slag-pit furnaces. The fuel was charcoal and an air blast was introduced by bellows-operated tuyères. Iron formed as a bloom, often as a spongy mass of metal, which contained impurities from the smelting process, including unreacted ore, fuel, slag and fragments from the furnace walls, while the metal was often inhomogeneous with varied carbon contents. Blooms were either smithed directly into bars or ingots or they were broken up, which also allowed the removal of gross impurities and a selection of pieces with similar properties to be made. These could then be forge-welded together and formed into characteristically shaped ingots. Making steel in the furnace seems to have been achieved: it depended on the ore and the furnace and conditions within it. Surface carburization was also carried out. Iron and steel were used extensively in construction and for tools and weapons. Fire welding was often used to add pieces of steel to make the edges of tools and weapons, which could be heat-treated by quenching to harden them.  相似文献   

15.
Standards are the basis for production enterprises to organize production, ex-factory inspection, trade (delivery) and technical exchanges, product certification, quality arbitration and supervision.……  相似文献   

16.
A four-ball tester was used to evaluate the anti-wear performance of three kinds of organomolybdemun compounds in the engine oils, i. e., molybdenum dialkyldithiophosphate (MoDDP), molybdenum dialkyldithiocarbamate ( MoDTC), and sulphur and phosphorus freeorganomolybdeum (Molybdate). The results indicate that a low concentration of MoDDP doesn' t improve the anti-wear properties of the commercial engine oils, but a high concentration of MoDDP can obviously improve the anti-wear properties and the load-carrying capacity of the engine oils. MoDTC doesn' t improve the antiwear properties of the engine oils, but worsens the anti-wear properties of the oils. Signifi can timprove ment of frictional and wear characteristics is obtained with Molybdate added in the commercial engine oils and the formulated oils.  相似文献   

17.
A flow calorimeter for enthalpy increment measurements on condensed gases is presented. A better knowledge of the properties of the liquefied natural gas is needed, and therefore a liquid loop has been designed for our flow calorimeter. The fluid loop in the calorimeter is designed in order to avoid the two-phase region, since two phases would give compositional disturbances in the measurements. The avoidance of the two-phase region is made possible by increasing the pressure of the test fluid after the measurement section, then heating the fluid at super-critical pressure past the critical point. Finally, the fluid is throttled to the low-pressure gas state at the inlet condition of the compressor that circulates the fluid. To perform the pressure increase, a new cryogenic pump has been designed. To evaluate the new equipment, measurements were taken on liquid ethane over the temperature range 146–256 K at pressure between 0.9 and 5.1 MPa.  相似文献   

18.
Al2O3-ZrO2 nanocomposites were developed starting with the solgel process. Composite alumina-zirconia nanopowders were synthesized from metallorganic precursors (Aluminium secondary butoxide and zirconium Iso propoxide) using the solgel process. The parameters affecting the synthesis—solvent, concentration of precursor, R/H ratio (i.e., dilution of water in solvent)—were varied as also the temperature and pH. BET and TEM were used to measure nanosize. Diffuse reflectance spectroscopy and also qualitative optical absorption led to identical particle size estimate. The variation of process parameters was used to study the effect and interdependence of process parameters. Artificial Neural Networks was used to rigorously analyze the process. Although this led to confirmation of interdependence of parameters, the presence of a single overwhelming solvent variable was also established. Then the optimal process was used to synthesize more nanopowder. To produce bulk nanocomposite the nanopowders were sintered by varying the temperature and time period. The sintered lithoids were probed with a vickers hardness tester to measure elastic modulus, hardness, and fracture toughness. The results showed high elastic modulus, modest hardness, and very high fracture toughness.  相似文献   

19.
On November 30, 2007, the China Association for Standardization (CAS) held a press conference at Beijing Diaoyutai State Guest House. Leaders from the China Household Electric Appliance Research Institute, the China Household Electric Appliance Association, and the China Consumers' Association attended and made speeches.……  相似文献   

20.
Friction stir processing (FSP) is an important technique for preparing surface composites. Fabricating defect-free surface composites with uniform particle distribution by FSP is a challenging task. In this study, silicon carbide particles reinforced AA5083 alloy surface composites was fabricated using different FSP strategies including variation in process parameters, dual-tool processing and tool offset overlapping. Material flow of the processed material with reinforcement particles demonstrated that the distribution of particles was influenced by the stirring action of the probe as well as the extrusion of the plasticized material due to the movement of the tool. Process parameters, particularly rotational speed, showed a dominant influence on the distribution of silicon carbide particles.  相似文献   

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