Results 31 to 40 of about 15,664 (213)

Calculation of Young's Modulus and Coefficient of Linear Expansion on Several Solid Solution with Cubic Structure [PDF]

open access: yes, 2015
杨氏模量和线膨胀系数是表征金属材料重要的物理量。但是,目前已有的二元及多元合金固溶体的杨氏模量和线膨胀系数的实验数据十分有限。因此,利用合理的理论模型来实现对杨氏模量和线膨胀系数的计算并建立性能数据库十分重要,能够为材料设计提供必要的基础信息。本课题组在应用相图计算技术建立热力学数据库和指导合金的成分设计方面取得了不错的成效。本研究基于相图计算的研究方法,考虑温度和成分两个变量的影响,开展合金溶体相的杨氏模量和线膨胀系数的计算。其具体研究成果如下: (1)借鉴计算相图(CALPHAD)方法的研究思路 ...
林明娜
core  

Electrospun Carbon Nanofiber‐Based Multifunctional Electrocatalysts for Zinc‐Air Batteries and Overall Water Splitting: Fabrication, Progress, and Perspective

open access: yesRare Metals, Volume 45, Issue 3, March 2026.
ABSTRACT The development of high‐performance and stable electrocatalysts for oxygen reduction reaction (ORR), oxygen evolution reaction (OER), and hydrogen evolution reaction (HER) plays a critical role in advancing clean energy technologies, including metal‐air batteries and hydrogen production through overall water splitting.
Chen‐Yu Cai   +4 more
wiley   +1 more source

The Study of Ruthenium Catalysts with Metal-NH Ligand Cooperation for Hydrogenation of Esters to Alcohols [PDF]

open access: yes, 2016
设计合成具有金属-NH配体协同作用的优秀催化剂是催化加氢研究的重要组成部分。本论文新合成了多种不同结构的o-PPh2C6H4NH2-Ru化合物并成功将它们应用于催化酯类化合物加氢制醇的反应研究中。在对系列催化剂结构进行系统表征的基础上,结合它们的催化活性进行了构效关联。鉴于o-PPh2C6H4NH2-Ru体系难以有效催化位阻较大底物的加氢这一问题,进一步将与o-PPh2C6H4NH2结构相似的柔性膦胺配体以及N,N’-二烷基取代的乙二胺配体引入到催化剂结构中,合成出了多种新型催化剂 ...
方霄龙
core  

Coalescence‐Ripening Mechanism of γ′−Ni3(Al, Ti) During Long‐Term/High‐Temperature Operation of Ni‐Based Superalloy Discs

open access: yesRare Metals, Volume 45, Issue 3, March 2026.
ABSTRACT The evolution of the γ′−Ni3(Al, Ti) phase in superalloys is governed by a coupled coalescence‐ripening mechanism driven by elemental diffusion. In this study, thermal exposure experiments were performed at 750°C and 800°C for durations ranging from 100 to 20,000 h.
Zhaotian Wang   +5 more
wiley   +1 more source

Research on the Effects of Pulsed Field on Cell and The Cellular Dielectric Parameters [PDF]

open access: yes, 2017
近年来,随着电子和通讯技术的进步,电磁场对生命体的影响越来越受人们的关 注。其中,脉冲电场对细胞结构和功能的影响与对肿瘤细胞的消融作用逐渐成为近些 年生物电磁领域研究的热点。在脉冲电场作用下,细胞的形状,内部结构的电磁性质 会发生改变,甚至可以靶向性诱导肿瘤细胞凋亡、坏死。研究脉冲电场作用下细胞的 电响应及细胞内部导电、介电性质的改变对揭示电磁场生物效应的发生机制及肿瘤治 疗有着非常重要的意义。为此,本论文着眼于电磁场与细胞的相互作用,深入研究了 脉冲电场下细胞穿孔和细胞融合的机理 ...
刘琳英
core  

3D‐Printed Porous High‐Entropy Alloy Boosts Peroxymonosulfate Activation for Long‐Term Organic Pollutant Degradation

open access: yesRare Metals, Volume 45, Issue 3, March 2026.
ABSTRACT High‐entropy alloys (HEAs) have attracted considerable interest from researchers owing to their tunable chemical compositions, exceptional structural stability, and promising catalytic properties. However, their large‐scale application is often hindered by complex manufacturing techniques and poor durability.
Sheng Guo   +9 more
wiley   +1 more source

Surface Structure and Thermal Stability of Platinum Group Metallic Nanoparticles with High-Index Facets [PDF]

open access: yes, 2017
铂族金属纳米粒子由于具有优异的催化性能,已被广泛地应用于燃料电池,石油化工,汽车催化转化器等领域。但是,稀缺的资源以及昂贵的价格严重地限制了它们的应用。为了满足工业上日益增长的需求,如何提高它们的催化活性和催化效率就成为了工业催化领域的一个关键问题。高指数晶面纳米粒子的成功合成为解决这一问题提供了一条新的途径。高指数晶面是指密勒指数{hkl}中至少有一个指数大于1的晶面。这类晶面拥有高密度的低配位原子,这些原子分布在具有高活性的催化位点,如台阶、棱边和扭结位。因此 ...
曾祥明
core  

Multiscale Study of a Synergistic System in Carbon‐Coated Multimetal‐Based Selenides Toward Rapid and Highly Stable Sodium Storage

open access: yesRare Metals, Volume 45, Issue 3, March 2026.
ABSTRACT The development of sodium‐ion batteries (SIBs) is limited by slow charge transfer kinetics and large material volume changes caused by the large radius of Na+. Leveraging the excellent physicochemical properties and unique heterostructures of metal selenides, ultrafine hetero‐CuFeSe2‐CoSe2 nanoparticles are in situ wrapped by ...
Ying Zhu   +5 more
wiley   +1 more source

高速精密电主轴转子动力学研究进展

open access: yesZhendong Ceshi yu Zhenduan
现代高速精密切削对电主轴动态性能的要求不断提高,结构的复杂化、运行的高速化、轴承的多样化向电主轴转子动力学设计提出了新的挑战。针对此问题,综合运用滚动轴承分析理论、流体润滑理论与转子动力学理论,建立滚动轴承电主轴、空气轴承电主轴、水润滑轴承电主轴与组合轴承电主轴转子动力学模型,并开发了计算软件。基于性能分析结果,设计了多款高速精密电主轴产品。结果表明:取得的电主轴转子动力学成果为电主轴动态设计提供了理论支撑,所设计的高速精密电主轴产品在国内高端数控装备中获得成功应用,解决了核心功能部件的国产化难题。
doaj   +1 more source

显微结构对瓷绝缘子钢脚力学性能及运行可靠性的影响

open access: yesDianci bileiqi, 2022
输电线路线盘形悬式绝缘子掉串事故大多源于钢脚球头部位的断裂。在对国内两个厂家的4种盘形悬式绝缘子用钢脚开展成分、显微组织结构及力学性能测试分析的基础上,采用有限元分析软件对相应钢脚进行静力学分析及疲劳寿命计算。研究表明,这4种钢脚均含有氧化物、硫化物夹杂物及大块的铁素体,力学性能达不到相关国家标准的要求。有限元模拟证实在绝缘子服役条件下,钢脚球头部位存在应力集中,导致钢脚疲劳寿命降低。钢脚材料冶金质量不佳,不合理热处理工艺下显微组织不良,加之在导线覆冰、舞动等恶劣条件下,钢脚球头部位承受大的循环应力 ...
王万里   +5 more
doaj  

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