Results 31 to 40 of about 982,733 (162)

磁性粒子Fe(Mn)对FeMnAl合金磁性和热力学性质的贡献

open access: yes四川大学学报. 自然科学版, 2015
基于伊辛模型的单自旋反转蒙特卡洛算法,研究了无序Fe0.5Mn0.1Al0.4合金中的铁磁性粒子Fe和反铁磁性粒子Mn对体系的磁性和热力学性质的贡献.首先,检验了晶格大小以及Monte Carlo模拟步数对结果的影响,证实了低温合金阻挫的存在,确定了Fe0.5Mn0.1Al0.4合金的冻结温度以及居里温度;其次,详细研究了铁磁性粒子Fe和反铁磁性粒子Mn对Fe0.5Mn0.1Al0.4合金的磁化强度和磁化率的贡献,发现低温区域磁化强度和磁化率的变化是由反铁磁性粒子Mn决定的 ...
高清河, 杜安, 刘锦超
doaj  

Heterointerfaces and Sulfur Vacancies in MXene/MoS2@C for Boosted Ultra‐Broadband Electromagnetic Wave Absorption and Infrared Stealth Response

open access: yesRare Metals, Volume 45, Issue 7, July 2026.
ABSTRACT Ti3C2Tx MXene shows significant potential in the field of electromagnetic wave absorption; however, the wave absorption performance was hindered due to the impedance mismatch, which was caused by its inherent high dielectric constant. In this work, Ti3C2Tx MXene co‐assembled with molybdenum disulfide nanosheets and carbon coating layers (MXene/
Hualong Yu   +11 more
wiley   +1 more source

一种同时提高热压磁环磁性能及力学性能的方法 [PDF]

open access: yes, 2010
一种同时提高热压磁环磁性能及力学性能的方法,包括将钕铁硼速凝片作为母合金快淬成的薄带,然后将薄带破碎磁选成均匀的快淬粉末,接着进行热压成型,热挤压成型,其特征在于在热压成型前将快淬粉末中均匀添加有纳米金属Cu粉末。与现有技术相比,本发明的优点在于:加入具有低熔点、延展性良好的纳米金属Cu粉末的目的是可以使具有该特点的纳米金属粉末在热压过程中,通过扩散的方式,更加均匀的分布在钕铁硼晶粒的晶界中,改善了磁体的织构,该晶界相化合物的维氏硬度远大于纯钕铁硼磁体晶界富钕相的维氏硬度 ...
易鹏鹏, 李东, 林旻, 闫阿儒
core  

同步活化磁化制备磁性多孔炭去除水中孔雀石绿

open access: yesGongye shui chuli, 2021
通过ZnCl2和FeCl3的同步活化磁化法,制备出了既有磁分离能力又有较强吸附能力的磁性多孔炭材料。结果表明:ZnCl2和FeCl3起到了较好的活化作用,随着活化剂用量的增加,孔隙率和比表面积迅速增大,孔填充效果增强。磁性多孔炭比表面积最高为2 302 m2/g,孔容最高为1.176 cm3/g,同时在表面络合和π-π键相互作用下,吸附性能也明显提高。磁性多孔炭对孔雀石绿有着较好的吸附效果,最大吸附量为1 004.3 mg/g。饱和磁化强度为7.99 emu/g ...
苏石川, 林立涛, 王亮
doaj   +2 more sources

Hollow Microsphere‐Modified Asymmetric Multilayer Nanocomposites With Low Reflectivity and High Electromagnetic Shielding Performance

open access: yesRare Metals, Volume 45, Issue 7, July 2026.
ABSTRACT Electromagnetic interference (EMI) shielding materials with low reflectivity are ideal materials for addressing the pollution caused by electromagnetic radiation. Ti3C2Tx MXene is widely used for EMI shielding due to its excellent conductivity.
Guirong Hu   +6 more
wiley   +1 more source

磁场中夹层圆板的非线性磁弹性随机振动 [PDF]

open access: yes, 2014
根据板壳磁弹性基本理论、夹层板的弯曲振动理论及连续体的随机振动理论,得到了在磁场环境中周边固支夹层圆板的非线性随机振动方程;利用稳态FPK方程法解出了夹层圆板随机振动位移和速度响应的多个数字特征,并讨论了参数变化对各数字特征的影响.通过数值模拟讨论了磁场参数、激励的功率谱密度参数以及板的几何尺寸的变化对各数字特征的影响.由数值模拟结果可知,改变随机激励的大小 ...
王知人, 李瑾婷, 王平
core  

磁性Fenton催化剂氧化降解有机污染物的研究进展

open access: yesGongye shui chuli, 2018
磁性催化剂不仅催化活性高,还具有独特的磁响应性,在外加磁场作用下可以实现分离与回收。磁性催化剂可有效解决传统Fe2+催化剂回收困难、易产生二次污染等问题。综述了近年来的相关研究,重点讨论磁性Fenton催化剂的分类和合成方式,并介绍了其在Fenton和类Fenton体系中的催化性能。分析表明,磁性催化剂来源广泛、可再生、合成操作相对简便易行。未来研究应致力于拓展催化剂的pH适用范围、提高催化剂稳定性、开发新型负载材料。
张依含, 史静, 陈悦, 朱思怡
doaj   +2 more sources

Large Cation‐Induced Lattice Distortion in Carbon‐Based High‐Entropy Oxides: Spin‐State Engineering and Broadband Microwave Absorption

open access: yesRare Metals, Volume 45, Issue 7, July 2026.
ABSTRACT High‐entropy oxides (HEOs) are promising for microwave absorption but suffer from a trade‐off between impedance matching and attenuation, often requiring high filling ratios (> 50 wt%). Herein, we propose a “lattice‐spin” dual‐regulation strategy by introducing giant‐radius Bi into a single‐phase HEO solid solution.
Junwei Zhang   +11 more
wiley   +1 more source

PAO基磁性液体的制备 [PDF]

open access: yes, 2006
利用正交实验探索了化学共沉淀法制备Fe3O4纳米颗粒的影响因素:[Fe3+];[Fe2+]:[Fe3+];氨水用量比;乙醇浓度;晶化时间;晶化温度等参数对Fe3O4纳米颗粒饱和磁化强度的影响。找出了试验条件范围内使Fe3O4粉末达到最大饱和磁化强度的最佳工艺条件:D3A3F4B3E5C4 即:[Fe3+]=0.1mol/L;合成温度60℃;NH4OH用量倍数=2;晶化时间30min;[Fe2+]:[Fe3+]=0.7;乙醇质量百分比浓度 16% PAO(聚α烯烃合成油)基磁性液体的制备工艺 ...
黄向阳
core  

Prenatal diagnosis of cardiac rhabdomyoma: implications for predicting tuberous sclerosis complex and guiding perinatal management

open access: yesUltrasound in Obstetrics &Gynecology, Volume 68, Issue 1, Page 88-98, July 2026.
ABSTRACT Objective To identify prenatal predictors of tuberous sclerosis complex (TSC) in fetuses with one or more cardiac rhabdomyomas (CR), evaluate an integrated multimodal diagnostic workflow using fetal magnetic resonance imaging (MRI) and trio whole‐exome sequencing (trio‐WES) and characterize perinatal outcomes.
X. Cai   +8 more
wiley   +1 more source

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