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Impact of Heat Treatments and Hole Density (p) on the Structural, Electrical, and Superconducting Properties of LnSrBaCu3O6+z (Ln = Eu, Sm, Nd) Compounds
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作者 Mohammed Bellioua Mohamed Id El Amel +8 位作者 Fatima Bouzit Mohamed Errai Driss Soubane Aderrahim Ait Khlifa Mohammed Khenfouch Issam Mouhti Ahmed Tirbiyine Essediq Youssef El Yakoubi Abdelhakim Nafidi 《Communications and Network》 2023年第4期83-97,共15页
In this study, we thoroughly examined the impact of heat treatments and hole count (p) on the properties of LnSrBaCu<sub>3</sub>O<sub>6+z</sub> (Ln = Eu, Sm, Nd) compounds. We focused on prepar... In this study, we thoroughly examined the impact of heat treatments and hole count (p) on the properties of LnSrBaCu<sub>3</sub>O<sub>6+z</sub> (Ln = Eu, Sm, Nd) compounds. We focused on preparation, X-ray diffraction with Rietveld refinement, AC susceptibility, DC resistivity measurements, and heat treatment effects. Two heat treatment types were applied: oxygen annealing [O] and argon annealing followed by oxygen annealing [AO]. As the rare earth Ln’s ionic radius increased, certain parameters notably changed. Specifically, c parameter, surface area S, and volume V increased, while critical temperature Tc and holes (p) in the CuO<sub>2</sub> plane decreased. The evolution of these parameters with rare earth Ln’s ionic radius in [AO] heat treatment is linear. Regardless of the treatment, the structure is orthorhombic for Ln = Eu, tetragonal for Ln = Nd, orthorhombic for Ln = Sm [AO], and pseudo-tetragonal for Sm [O]. The highest critical temperature is reached with Ln = Eu (Tc [AO] = 87.1 K). Notably, for each sample, Tc [AO] surpasses Tc [O]. Observed data stems from factors including rare earth ionic size, improved cationic and oxygen chain order, holes count p in Cu(2)O<sub>2</sub> planes, and in-phase purity of [AO] samples. Our research strives to clearly demonstrate that the density of holes (p) within the copper plane stands as a determinant impacting the structural, electrical, and superconducting properties of these samples. Meanwhile, the other aforementioned parameters contribute to shaping this density (p). 展开更多
关键词 High-Tc Superconductors heat treatments Hole Density (p) Tc Parameter c surface ab Electrical Resistance X-Ray Diffraction
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Finite Element Simulation of Processes Involving Moving Heat Sources. Application to Welding and Surface Treatment
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作者 J.M. Bergheau , V. Robin, F. Boitout 1. LTDS, UMR55 13 CNRS/ECL/ENISE, 58, rue J. Parot, 42023 Saint Etienne Cedex 2, France 2.SYSTUS International, 84 Bvd Vivier Merle, 69485, Lyon Cedex 03, France 《Journal of Shanghai Jiaotong university(Science)》 EI 2000年第1期114-122,共9页
A wide range of welding and surface treatment processes involve the use of a heat source which is moving at a constant speed over the component. The numerical simulation of such processes implies a transient analysis ... A wide range of welding and surface treatment processes involve the use of a heat source which is moving at a constant speed over the component. The numerical simulation of such processes implies a transient analysis using a very refined mesh in order to follow properly the path of the heat source. The 3D-mesh size can be very large if one consider the welds length or the heat-treated surface size in industrial components. To reduce the computational time to acceptable values, several techniques have been investigated. The first type is to use analytical methods such as Rosenthal equations. The second type of solutions consists in performing a transient analysis using adaptive meshing. But, for a large proportion of the involved processes, practical experience demonstrates the existence of quasi steady state conditions over the major part of the heat source path. Numerical algorithms have therefore been developed to directly compute the steady temperature, metallurgical phase proportion and stress distributions. This paper gives a general overview of the different numerical methods used to simulate welding and surface treatment processes with a special emphasis on the steady state calculation. The benefits and limitations of each of them are discussed and applications are presented. 展开更多
关键词 WELDING surface treatment MOVING heat Source FINITE Element Simulation Analytical Solutions Adaptive MESHING STEADY-STATE Calculation.
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Effects of Steam Heat Treatment on the Surface Contact Angle of Chinese Fir 被引量:1
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作者 高伟 罗建举 +3 位作者 石世亨 李荣册 卢佩 郭玺 《Agricultural Science & Technology》 CAS 2014年第1期127-131,共5页
The aim of this study was investigate the effects of heat treatment on the contact angle of Chinese fir, and the indicators affecting the change of contact an-gle change. It was determined that the duration of treatme... The aim of this study was investigate the effects of heat treatment on the contact angle of Chinese fir, and the indicators affecting the change of contact an-gle change. It was determined that the duration of treatment had significant effect on the change curves of contact angle of Chinese fir wood due to the change curves of contact angle became more centralized and orderly after the specimens heat treated at 180 ℃. Compared with the untreated wood, the contact angle in-creased from 51&#176; to 124&#176; after 4 h treatment, and hydroxyl absorbance of hy-drophilic functional groups decreased from 2.08 to 1.63, while carbonyl absorbance from 0.92 to 0.62. The surface roughness has not significant influence on the con-tact angle. Heat treatment of the Chinese fir caused surface morphological change, which produced hol owed-out phenomenon. The increased surface contact angle caused by heat treatment can be used for outdoor and sauna facilities. 展开更多
关键词 Chinese fir Contact angle Steam heat treatment surface roughness FTIR analysis SEM observation
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Heat treatment optimization for tensile properties of 8011 Al/15% SiCp metal matrix composite using response surface methodology 被引量:7
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作者 V.VEMBU G.GANESAN 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2015年第4期390-395,共6页
In this study,a mathematical model was developed to optimize the heat treatment process for maximum tensile strength and ductility of aluminum(8011) silicon carbide particulate composites.The process parameters are so... In this study,a mathematical model was developed to optimize the heat treatment process for maximum tensile strength and ductility of aluminum(8011) silicon carbide particulate composites.The process parameters are solutionizing time,aging temperature,and aging time.The experiments were performed on an universal testing machine according to centre rotatable design matrix.A mathematical model was developed with the main and interactive effects of the parameters considered.The analysis of variance technique was used to check the adequacy of the developed model.The optimum parameters were obtained for maximum tensile strength.Fractographic examination shows the cracks and dimples on the fractured surfaces of heat-treated specimen. 展开更多
关键词 热处理工艺优化 颗粒复合材料 响应曲面法 拉伸性能 金属基体 万能试验机 开发模型
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The effect of heat treatment on the structure and morphology of poly (p-phenylene benzobisoxazole) fiber
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作者 张敏 Tang Laian Wu Pingping Han Zhewen 《High Technology Letters》 EI CAS 2006年第4期367-371,共5页
The effect of heat treatment on the structure of Poly(p-phenylene benzobisoxazole) (PBO) fiber was studied by wide angle X-ray diffraction (WAXD) and differential scanning calorimetry-(DSC), which resuits in c... The effect of heat treatment on the structure of Poly(p-phenylene benzobisoxazole) (PBO) fiber was studied by wide angle X-ray diffraction (WAXD) and differential scanning calorimetry-(DSC), which resuits in confirmation of secondary crystallization in the heat treatment process. The effect of heat treatment on the structure and morphology of PBO fiber' s surface was investigated with X-ray photoelectron spectroscopic analysis (XPS), scanning electron microscopy (SEM) and atomic force microscopy (AFM). The results show that heat treatment not only has an effect on the composition of PBO fiber's surface, but also improves the microstmcture of PBO fiber, makes fiber more regular. 展开更多
关键词 PBO fiber AS HM heat treatment structure MORPHOLOGY surface
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Surface Cleaning or Activation?Control of Surface Condition Prior to Thermo-Chemical Heat Treatment
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作者 BrigitteHaase JuanDong JensHeinlein 《材料热处理学报》 EI CAS CSCD 北大核心 2004年第5期343-348,共6页
Actual heat treatment processes must face increasing specifications with reference to process quality, safety and results in terms of reproducibility and repeatability. They can be met only if the parts’ surface cond... Actual heat treatment processes must face increasing specifications with reference to process quality, safety and results in terms of reproducibility and repeatability. They can be met only if the parts’ surface condition is controlled during manufacturing and, especially, prior to the treatment. An electrochemical method for the detection of a steel part’s surface condition is presented, together with results, consequences, and mechanisms concerning surface pre-treatment before the thermochemical process. A steel surface’s activity or passivity can be detected electrochenucalry, independently from the chemical background. The selected method was the recording of potential vs. time curves at small constant currents, using a miniaturized electrochemical cell, a (nearly) non-destructive electrolyte and a potentio-galvanostatic setup. The method enables to distinguish types of surface contamination which do not interfere with the thermochemical process, from passive layers which do and must be removed. Whereas some types of passive layers can be removed using conventional cleaning processes and agents, others are so stable that their effects can only be overcome by applying an additional activation pre-treatment, e.g. oxynitriding. 展开更多
关键词 热化学热处理 表面状况 表面清理 表面活化
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1983-2004 Heat Treatment Embraces Surface Engineering
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作者 Tom Bell 《材料热处理学报》 EI CAS CSCD 北大核心 2004年第5期F007-F010,共4页
The origins of surface engineering lie in antiquity, with the practices in ancient Greece and China of hardening tempering and crude form of case hardening using solid organic materials. The formation of the Internati... The origins of surface engineering lie in antiquity, with the practices in ancient Greece and China of hardening tempering and crude form of case hardening using solid organic materials. The formation of the International Federation for Heat Treatment in 1971 later to include Surface Engineering has been pre-eminent in the globalisation of the rapidly developing discipline of surface engineering. The dominant effect of environmental aspects of surface engineering are discussed regarding the impact for change to light weight materials and the adoption of environmentally friendly plasma technologies. 展开更多
关键词 热处理 表面工程 IFHTSE 淬火 钛合金
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Effect of Heat Treatment on Silica Aerogels Prepared via Ambient Drying 被引量:7
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作者 Fei SHI Lijiu WANG +1 位作者 Jingxiao LIU Miao ZENG 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2007年第3期402-406,共5页
Silica aerogels were prepared at ambient drying by using ethanol/trimethylchlorosilane (TMCS)/heptane solution as pore water exchange and surface modification of the wet gel before drying. The obtained silica aeroge... Silica aerogels were prepared at ambient drying by using ethanol/trimethylchlorosilane (TMCS)/heptane solution as pore water exchange and surface modification of the wet gel before drying. The obtained silica aerogels exhibit a sponge-like structure with uniform pore size distribution. The effects of heat-treatment on the hydrophobicity, specific surface area and other properties were investigated. The results indicated that the hydrophobicity of silica aerogels could be maintained up to 350℃. With increasing heating temperature, hydrophobicity decreased, and became completely hydrophilic after heat-treatment at 500℃. Brunaueremmitt-teller (BET) surface area results indicated that the specific surface area of silica aerogels increased with increasing heating temperature in the range of 150-500℃. The effects of heat-treatment on the morphology and chemical bonding state of silica aerogels were investigated by scanning electron microscopy (SEM), differential temperature analysis (DTA) and Fourier-transform infrared spectroscopy (FT-IR). 展开更多
关键词 Silica aerogel Ambient drying HYDROPHOBICITY Specific surface area heat-treatment
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Surface Oxidation of Al_2O_3/SiC Nanocomposite: Phase Transformation and Microstructure 被引量:4
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作者 蔡舒 彭珍珍 +1 位作者 冯杰 鲁枫 《Journal of Rare Earths》 SCIE EI CAS CSCD 2005年第4期429-432,共4页
The surface oxidation behavior of pressureless sintered Al2O3/SiC nanocomposite was studied from 1000 to 1400 ℃ for more than 10 h in air. Weight gain during the process of heat treatment was measured by TG analysis.... The surface oxidation behavior of pressureless sintered Al2O3/SiC nanocomposite was studied from 1000 to 1400 ℃ for more than 10 h in air. Weight gain during the process of heat treatment was measured by TG analysis. Phase transformation and microstructure changes of these specimens due to oxidation were investigated with X-ray diffraction (XRD), SEM and EDX technology. Thermogravimetric analysis show that the weight gain as a result of oxidation of SiC become significant above 1200 ℃. In the range of 1000 - 1300 ℃, the SiC grits are usually coated with a layer of amorphous silica after oxidation. Above 1300 ℃, the amorphous silica reacted with alumina matrix and formed mullite or crystallized into cristobalite. The rate of oxidation depends on the formation of dense cristobalite film. Large amount of needle-like mullite and alumina crystals are formed on the surface after oxidation at 1400℃. 展开更多
关键词 NANOCOMPOSITES surface OXIDATION heat treatment rare earths
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Hardness Profile Prediction for a 4340 Steel Spline Shaft Heat Treated by Laser Using a 3D Modeling and Experimental Validation 被引量:1
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作者 Mahdi Hadhri Abderazzak El Ouafi Noureddine Barka 《Journal of Materials Science and Chemical Engineering》 2016年第4期9-19,共11页
Laser surface transformation hardening becomes one of the most effective processes used to improve wear and fatigue resistance of mechanical parts. In this process, the material physicochemical properties and the heat... Laser surface transformation hardening becomes one of the most effective processes used to improve wear and fatigue resistance of mechanical parts. In this process, the material physicochemical properties and the heating system parameters have significant effects on the characteristics of the hardened surface. To appropriately exploit the benefits presented by the laser surface hardening, it is necessary to develop a comprehensive strategy to control the process variables in order to produce desired hardened surface attributes without being forced to use the traditional and fastidious trial and error procedures. The paper presents a study of hardness profile predictive modeling and experimental validation for spline shafts using a 3D model. The proposed approach is based on thermal and metallurgical simulations, experimental investigations and statistical analysis to build the prediction model. The simulation of the hardening process is carried out using 3D finite element model on commercial software. The model is used to estimate the temperature distribution and the hardness profile attributes for various hardening parameters, such as laser power, shaft rotation speed and scanning speed. The experimental calibration and validation of the model are performed on a 3 kW Nd:Yag laser system using a structured experimental design and confirmed statistical analysis tools. The results reveal that the model can provide not only a consistent and accurate prediction of temperature distribution and hardness profile characteristics under variable hardening parameters and conditions but also a comprehensive and quantitative analysis of process parameters effects. The modelling results show a great concordance between predicted and measured values for the dimensions of hardened zones. 展开更多
关键词 heat treatment Laser surface Transformation Hardening Finite Element Method Hardness Profile Prediction AISI 4340 Nd:Yag Laser System ANOVA
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响应曲面法优化二次镍渣微晶玻璃热处理制度
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作者 李小明 张欣华 邢相栋 《有色金属(冶炼部分)》 CAS 北大核心 2024年第7期116-123,共8页
镍渣作为有色冶炼过程产生的冶金废渣,以堆存形式处理,环境影响突出,但含铁量高,是一种极具开发前景的二次利用资源。以二次镍渣为原料制备微晶玻璃,采用响应曲面法并结合Box-Behnke原理设计探讨了核化温度、核化时间、晶化温度、晶化... 镍渣作为有色冶炼过程产生的冶金废渣,以堆存形式处理,环境影响突出,但含铁量高,是一种极具开发前景的二次利用资源。以二次镍渣为原料制备微晶玻璃,采用响应曲面法并结合Box-Behnke原理设计探讨了核化温度、核化时间、晶化温度、晶化时间及其交互作用对微晶玻璃抗折性能的影响,建立了抗折强度与各因子间的模型。通过模拟优化,确定了最佳热处理工艺参数:核化温度和晶化温度分别为845℃和955℃、核化时间和晶化时间均为80 min。采用最优工艺参数试验验证发现,微晶玻璃主晶相为铁硅灰石和钙长石,抗折强度均值达到126.78 MPa,与模型预测值偏差较小,表明该预测模型可靠有效及工艺优化合理可行。 展开更多
关键词 二次镍渣 微晶玻璃 热处理制度 响应曲面法
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H13热作模具钢表面强化层耐磨性能研究进展
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作者 张越 谭慎路 商剑 《热加工工艺》 北大核心 2024年第8期1-5,共5页
H13钢被广泛用于铝合金、镁合金等金属的热挤压模和压铸模,服役环境恶劣,常规处理淬、回火后,耐磨性严重不足,易导致热疲劳裂纹的产生,从而影响模具使用寿命和产品质量。对H13热作模具钢表面进行强化是提高耐磨性及服役寿命的有效手段... H13钢被广泛用于铝合金、镁合金等金属的热挤压模和压铸模,服役环境恶劣,常规处理淬、回火后,耐磨性严重不足,易导致热疲劳裂纹的产生,从而影响模具使用寿命和产品质量。对H13热作模具钢表面进行强化是提高耐磨性及服役寿命的有效手段。综述了国内外关于H13热作模具钢表面强化的研究现状及进展,并对H13模具钢表面改性技术发展方向做出展望。 展开更多
关键词 H13钢 化学热处理 表面强化 耐磨性 研究进展
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Mechanical properties,microstructure and surface quality of Al-1.2Mg-0.6Si-0.2Cu alloy after solution heat treatment 被引量:3
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作者 Li-Zhen Yan Yong-An Zhang +5 位作者 Bai-Qing Xiong Xi-Wu Li Zhi-Hui Li Hong-Wei Liu Shu-Hui Huang Gang Zhao 《Rare Metals》 SCIE EI CAS CSCD 2017年第7期550-555,共6页
The effect of solution heat treatment (SHT) on mechanical properties, microstructure and surface quality of Al-1.2Mg-0.6Si-0.2Cu-0.6Zn alloy was investigated by tensile test, Erichsen test, surface topography, scann... The effect of solution heat treatment (SHT) on mechanical properties, microstructure and surface quality of Al-1.2Mg-0.6Si-0.2Cu-0.6Zn alloy was investigated by tensile test, Erichsen test, surface topography, scanning electron microscope (SEM) and electron back-scattered diffraction (EBSD). The results indicate that with the increase in SHT temperature, yield strength and cupping test value (IE) of the sheets increase greatly and reach a peak value, then decrease. Meanwhile, intermetallic com- pounds dissolve into matrix gradually. The grains grow up as SHT temperature increases, and abnormal grain growth leads to the surface defects after solution-treated above 560 ~C. Considering mechanical properties, IE value, residual phases, grain size and surface quality of the sheets, SHT temperature for the alloy should not be higher than 550 ℃. 展开更多
关键词 AI-Mg-Si alloy Solution heat treatment surface defects Mechanical properties MICROSTRUCTURE
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H13堆焊修复组织与性能研究
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作者 丁立红 雷卫宁 +2 位作者 陈菊芳 曹健 陈国炎 《江苏理工学院学报》 2024年第2期19-26,共8页
文章对损坏的热作模具钢H13进行堆焊修复研究,选用化学成分相近的焊条Cr12MoV对模具的失效部位进行堆焊修复,然后,对堆焊后的试样进行不同温度的回火热处理,并研究其组织和性能。分析可知,热处理温度550℃时,组织为索氏体、铁素体、马... 文章对损坏的热作模具钢H13进行堆焊修复研究,选用化学成分相近的焊条Cr12MoV对模具的失效部位进行堆焊修复,然后,对堆焊后的试样进行不同温度的回火热处理,并研究其组织和性能。分析可知,热处理温度550℃时,组织为索氏体、铁素体、马氏体和颗粒碳化物等,组织不均匀,而且堆焊层硬度较高,消除应力不彻底;热处理温度为600℃时,组织为均匀分布的索氏体和细小碳化颗粒物,细小颗粒碳化物对材料有弥散强化的作用,硬度分布均匀,韧性较好,综合性能佳;热处理温度为650℃时,冲击韧性较好,但硬度分布不均匀,组织存在高温聚集长大的颗粒碳化物,弥散强化作用降低。综合分析可知,采用焊条Cr12MoV对热作模具钢H13进行堆焊修复,堆焊后采用600℃温度进行2次回火处理较为合理,能够获得较好的综合性能,可以满足工程应用需求。 展开更多
关键词 堆焊 焊条 热处理 颗粒物
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12Cr2Mo1VR在电站辅机产品中的应用及制造工艺优化
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作者 刘俊 廉松松 刘振 《锅炉制造》 2024年第4期47-49,共3页
本文主要介绍采用12Cr2Mo1VR材料短筒身的高压加热器,在制造过程中出现裂纹问题,针对此材料进行研究并采取措施,包括优化工艺、改进设计结构等,从而规避风险,保证产品质量。
关键词 高压加热器 堆焊 焊接应力 热处理
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基于热处理的选区激光烧结PA12力学性能调控研究(特邀)
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作者 韩壮 李猛 +2 位作者 曾勇 陈继民 刘秀斌 《光子学报》 EI CAS CSCD 北大核心 2024年第10期51-63,共13页
为解决选区激光烧结技术在聚酰胺12(PA12)材料成形时机械性能较差的问题,自主研制了一种均热-速冷装置。旨在通过改善材料内部的组织缺陷,使其达到材料本征机械性能。经过热处理后的样品常温下性能得到了极大改善,其最大拉伸强度为(57.6... 为解决选区激光烧结技术在聚酰胺12(PA12)材料成形时机械性能较差的问题,自主研制了一种均热-速冷装置。旨在通过改善材料内部的组织缺陷,使其达到材料本征机械性能。经过热处理后的样品常温下性能得到了极大改善,其最大拉伸强度为(57.6±1.9)MPa,断裂伸长率介于293%至297%之间。此外,该材料在高、低温环境中依然保持了良好的拉伸性能,在-80℃时的拉伸强度最高达110.5 MPa,断裂伸长率为22%至25%;+80℃时的拉伸强度则为(53.1±3.3)MPa,断裂伸长率最高达578.6%。经过热处理的具有三周期极小曲面结构样品,在弹性阶段的承载能力均有所提升,增幅最高达19%。其中,热处理后的D型TPMS表现出色,其弹性阶段的最大承载力达7.3 kN,且具有出色的能量吸收性能。 展开更多
关键词 增材制造 PA12 三周期极小曲面 热处理 力学性能
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基于微波加热路面表层材料性能研究
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作者 陈彦军 孟建党 +5 位作者 吕寻博 王永红 王爱鹏 关博文 盛燕萍 何锐 《武汉理工大学学报(交通科学与工程版)》 2024年第2期342-346,共5页
文中利用四种不同集料进行高摩擦道路表面处治(HFST),测试了不同集料组成的HFST微波加热效果,利用摩擦摆值测定评价了其相应的抗滑性能.结果表明:铁矿石和钢渣集料的升温速率分别为1.580 3和1.276 3,而玄武岩和煅烧铝矾土集料的升温速... 文中利用四种不同集料进行高摩擦道路表面处治(HFST),测试了不同集料组成的HFST微波加热效果,利用摩擦摆值测定评价了其相应的抗滑性能.结果表明:铁矿石和钢渣集料的升温速率分别为1.580 3和1.276 3,而玄武岩和煅烧铝矾土集料的升温速率分别为0.886 1和1.114 3,因此,钢渣和磁铁矿可作为吸波材料代替传统铝矾土集料用于HFST的材料组成设计.HFST试件的微波加热性能与钢渣和磁铁矿对铝矾土集料的取代率成正比.而随着钢渣和磁铁矿替代率的增加,二元体系试件的摩擦摆值均呈现降低趋势,磁铁矿-煅烧铝矾土体系表现出较为稳定的摩擦表现,钢渣-煅烧铝矾土体系的摩擦表现波动较大. 展开更多
关键词 微波加热 表面处治材料 耐磨集料 抗滑性能
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循环流化床锅炉屏式受热面变形原因分析及治理策略
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作者 杜佳军 冯玉鹏 +5 位作者 曹培庆 张鹏 王虎 张双庆 张缦 杨海瑞 《锅炉技术》 北大核心 2024年第2期39-44,共6页
为了掌握循环流化床(CFB)锅炉屏式受热面变形原因和治理因其导致的受热面爆管泄漏等问题,在探讨分析设备结构特征、工质流动特性、传热效果影响等基础上,结合国内现役CFB锅炉存在的屏式受热面变形问题,得到了工质流量不均匀、工质流量... 为了掌握循环流化床(CFB)锅炉屏式受热面变形原因和治理因其导致的受热面爆管泄漏等问题,在探讨分析设备结构特征、工质流动特性、传热效果影响等基础上,结合国内现役CFB锅炉存在的屏式受热面变形问题,得到了工质流量不均匀、工质流量与热负荷不匹配、传热效果差异等是导致屏式受热面产生较大热偏差的主要原因,由此进一步诱发屏式受热面出现应力偏差造成了管屏变形现象,而屏式受热面竖直方向膨胀受阻也会导致不可逆的管屏变形。提出了屏式受热面“割管+分屏+扩径”管屏改造措施以减小管屏热偏差,“双吊架+密封改进”膨胀改造措施以实现管屏自由膨胀;从运行管理角度提出了CFB锅炉启动阶段运行控制技术措施,以减小该阶段屏式受热面的壁温偏差和热应力等。治理措施已取得良好实践改造效果,能有效解决屏式受热面的变形严重问题,具有普遍推广性。 展开更多
关键词 CFB锅炉 屏式受热面 热偏差 变形 治理
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渗碳热处理后18CrNiMo7–6合金钢表面变质层J–C损伤失效参数研究
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作者 陈雷 张建伟 王冰冰 《航空制造技术》 CSCD 北大核心 2024年第18期66-72,共7页
合金钢在经过渗碳热处理后会在表面形成变质层。在表面变质层内,材料的力学性能沿深度方向发生变化。针对渗碳热处理后的18CrNiMo7-6合金钢的表面变质层,提出了确定Johnson-Cook损伤参数分层测试方法。通过对材料变质层进行分层线切割,... 合金钢在经过渗碳热处理后会在表面形成变质层。在表面变质层内,材料的力学性能沿深度方向发生变化。针对渗碳热处理后的18CrNiMo7-6合金钢的表面变质层,提出了确定Johnson-Cook损伤参数分层测试方法。通过对材料变质层进行分层线切割,得到不同变质层深度下的薄板试样;为获得不同应力三轴度下的拉伸结果,预制了不同断裂方向的拉伸剪切试样,通过试验与仿真相结合的方法,确定了考虑应变累积效应的应力三轴度并测定了材料失效应变与应力三轴度的关系;采用宽脉冲拉伸系统测定了拉伸试样的失效应变与应变率的关系。研究结果表明,同一层材料的失效应变随应力三轴度的增大而减小,在同一应力三轴度水平下,失效应变随层深增大而增大;不同层深处的试样均具有明显的应变率弱化效应,且在同一应变率水平下,失效应变随层深增大而增大;基于测量参数的拉伸过程数值仿真与试验数据的对比验证了所测定参数的准确性。 展开更多
关键词 渗碳热处理 18CrNiMo7-6合金钢 表面变质层 Johnson-Cook损伤模型 数字图像相关技术
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碱热处理纯钛表面纳米改性后对成骨细胞早期黏附生长的影响 被引量:1
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作者 高岩 林曦 刘影 《中国组织工程研究》 CAS 北大核心 2024年第15期2302-2306,共5页
背景:纯钛表面纳米结构改性是钛种植体表面处理研究的热点领域。目的:评价碱热处理纯钛表面纳米改性后对成骨细胞早期黏附生长的影响。方法:取直径15 mm、厚度1.5 mm的四级纯钛片,分3组处理:光滑处理组经250目、800目、1500目碳化硅砂... 背景:纯钛表面纳米结构改性是钛种植体表面处理研究的热点领域。目的:评价碱热处理纯钛表面纳米改性后对成骨细胞早期黏附生长的影响。方法:取直径15 mm、厚度1.5 mm的四级纯钛片,分3组处理:光滑处理组经250目、800目、1500目碳化硅砂纸逐级打磨抛光;喷砂酸蚀处理组在0.45 MPa气压下用100μm的Al2O3颗粒对光滑处理后的钛片进行喷砂处理,然后进行酸蚀处理;碱热处理组将经过光滑处理的钛片置于反应釜内,加入10 mol/L NaOH溶液浸没钛片,置于100℃烘箱中加热12 h。检测3组钛片的表面形貌、粗糙度及亲水性。将成骨细胞MG63分别接种于3组钛片表面,免疫荧光染色观察细胞黏附情况。结果与结论:①扫描电镜显示,光滑处理组钛片表面带有均匀的划痕,喷砂酸蚀处理组钛片表面凹凸不平,碱热处理组钛片表面形成均匀一致的纳米级三维孔洞形貌;喷砂酸蚀处理组、碱热处理组钛片的粗糙度值大于光滑组(P<0.05),水接触角低于光滑处理组(P<0.05);②MG63细胞接种3,6 h后的免疫荧光染色显示,喷砂酸蚀处理组、碱热处理组钛片表面的黏附细胞数量高于光滑处理组(P<0.05);接种12 h后的免疫荧光染色显示,相对于光滑处理组,喷砂酸蚀处理组和碱热处理组钛片表面的细胞肌动蛋白骨架更加伸展,大部分细胞伸出较粗壮的伪足,利于后续细胞间信号传导和细胞间相互作用;③结果表明,碱热处理可在钛片表面制备出具有一定生物活性的纳米结构,有利于成骨细胞的早期黏附。 展开更多
关键词 钛片 纳米结构 碱热处理 喷砂酸蚀 成骨细胞 生物材料
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