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The Negative Thermal Expansion Property of NdMnO_(3) Based on Pores Effect and Phase Transition
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作者 李玉成 张扬 +2 位作者 ZHANG Muqun DUAN Rong LIU Xiteng 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第1期39-43,共5页
A novel negative thermal expansion(NTE) material NdMnO_(3) was synthesized by solid-state method at 1 523 K. The crystal structure, phase transition, pores effect and negative expansion properties of NdMnO_(3) were in... A novel negative thermal expansion(NTE) material NdMnO_(3) was synthesized by solid-state method at 1 523 K. The crystal structure, phase transition, pores effect and negative expansion properties of NdMnO_(3) were investigated by variable temperature X-ray diffraction(XRD), scanning electron microscope(SEM) and variable temperature Raman spectra. The compound exhibits NTE properties in the orderly O' phase crystal structure. When the temperature is from 293 to 759 K, the ceramic NdMnO_(3) shows negative thermal expansion of-4.7×10^(-6)/K. As temperature increases, the ceramic NdMnO_(3) presents NTE property range from 759 to 1 007 K. The average linear expansion coefficient is-18.88×10^(-6)/K. The physical mechanism of NTE is discussed and clarified through experiments. 展开更多
关键词 negative thermal expansion NdMnO_(3) pores effect phase transition
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Multi-scale Modeling and Finite Element Analyses of Thermal Conductivity of 3D C/SiC Composites Fabricating by Flexible-Oriented Woven Process
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作者 Zheng Sun Zhongde Shan +5 位作者 Hao Huang Dong Wang Wang Wang Jiale Liu Chenchen Tan Chaozhong Chen 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2024年第3期275-288,共14页
Thermal conductivity is one of the most significant criterion of three-dimensional carbon fiber-reinforced SiC matrix composites(3D C/SiC).Represent volume element(RVE)models of microscale,void/matrix and mesoscale pr... Thermal conductivity is one of the most significant criterion of three-dimensional carbon fiber-reinforced SiC matrix composites(3D C/SiC).Represent volume element(RVE)models of microscale,void/matrix and mesoscale proposed in this work are used to simulate the thermal conductivity behaviors of the 3D C/SiC composites.An entirely new process is introduced to weave the preform with three-dimensional orthogonal architecture.The 3D steady-state analysis step is created for assessing the thermal conductivity behaviors of the composites by applying periodic temperature boundary conditions.Three RVE models of cuboid,hexagonal and fiber random distribution are respectively developed to comparatively study the influence of fiber package pattern on the thermal conductivities at the microscale.Besides,the effect of void morphology on the thermal conductivity of the matrix is analyzed by the void/matrix models.The prediction results at the mesoscale correspond closely to the experimental values.The effect of the porosities and fiber volume fractions on the thermal conductivities is also taken into consideration.The multi-scale models mentioned in this paper can be used to predict the thermal conductivity behaviors of other composites with complex structures. 展开更多
关键词 3D C/SiC composites Finite element analyses Multi-scale modeling thermal conductivity
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Lattice Boltzmann method formulation for simulation of thermal radiation effects on non-Newtonian Al_(2)O_(3) free convection in entropy determination
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作者 M.NEMATI M.SEFID +1 位作者 A.KARIMIPOUR A.J.CHAMKHA 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2024年第6期1085-1106,共22页
The simultaneous investigation on the parameters affecting the flow of electrically conductive fluids such as volumetric radiation,heat absorption,heat generation,and magnetic field(MF)is very vital due to its existen... The simultaneous investigation on the parameters affecting the flow of electrically conductive fluids such as volumetric radiation,heat absorption,heat generation,and magnetic field(MF)is very vital due to its existence in various sectors of industry and engineering.The present research focuses on mathematical modeling to simulate the cooling of a hot component through power-law(PL)nanofluid convection flow.The temperature reduction of the hot component inside a two-dimensional(2D)inclined chamber with two different cold wall shapes is evaluated.The formulation of the problem is derived with the lattice Boltzmann method(LBM)by code writing via the FORTRAN language.The variables such as the radiation parameter(0–1),the Hartmann number(0–75),the heat absorption/generation coefficient(−5–5),the fluid behavioral index(0.8–1.2),the Rayleigh number(103–105),the imposed MF angle(0°–90°),the chamber inclination angle(−90°–90°),and the cavity cold wall shape(smooth and curved)are investigated.The findings indicate that the presence of radiation increases the mean Nusselt number value for the shear-thickening,Newtonian,and shear thinning fluids by about 6.2%,4%,and 2%,respectively.In most cases,the presence of nanoparticles improves the heat transfer(HT)rate,especially in the cases where thermal conduction dominates convection.There is the lowest cooling performance index and MF effect for the cavity placed at an angle of 90°.The application in the design of electronic coolers and solar collectors is one of the practical cases of this numerical research. 展开更多
关键词 thermal performance analysis heat absorption/generation power-law(PL)Al_(2)O_(3)nanofluid magnetohydrodynamics natural convection volumetric radiation inclined cavity
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CMAS、CMAS+NaVO_(3)、CMAS+海盐作用下热障涂层的腐蚀行为与机理 被引量:2
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作者 郭磊 张馨木 杨硕 《中国表面工程》 EI CAS CSCD 北大核心 2024年第1期75-86,共12页
环境沉积物(CaO-MgO-Al_(2)O_(3)-SiO_(2),CMAS)的高温腐蚀已成为航空发动机涡轮叶片热障涂层过早失效的重要原因之一。然而涡轮叶片工作环境复杂,熔盐、海盐常与CMAS耦合,一起对热障涂层造成多元复杂腐蚀,但目前关于CMAS与盐类的多元... 环境沉积物(CaO-MgO-Al_(2)O_(3)-SiO_(2),CMAS)的高温腐蚀已成为航空发动机涡轮叶片热障涂层过早失效的重要原因之一。然而涡轮叶片工作环境复杂,熔盐、海盐常与CMAS耦合,一起对热障涂层造成多元复杂腐蚀,但目前关于CMAS与盐类的多元耦合腐蚀行为鲜有报道。针对Y2O_(3)部分稳定ZrO_(2)(YSZ)热障涂层在CMAS、CMAS+NaVO_(3)、CMAS+海盐作用下的腐蚀行为进行对比研究。通过XRD、SEM等方法对不同条件下腐蚀后的涂层进行表征,并分析热处理温度、腐蚀物种类对腐蚀行为的影响。结果表明:与CMAS相比,CMAS+NaVO_(3)、CMAS+海盐会在更低的温度下损伤涂层(1200℃)。当三种腐蚀物均能完全熔化时(1250℃),CMAS+NaVO_(3)、CMAS+海盐熔体则由于更大的流动性而大量渗入,腐蚀内部涂层。其中,CMAS+海盐熔体在涂层内的渗透性最强,1250℃热处理4 h后,渗透深度超过400μm。盐类的共存会改变CMAS的性质,增强熔体的渗透能力,增加涂层内部甚至底部失效的倾向。研究结果有助于理解盐类与CMAS耦合时混合熔体对热障涂层的破坏机理及潜在威胁。 展开更多
关键词 热障涂层 CMAS+海盐 CMAS+NaVO_(3) 耦合腐蚀 腐蚀机理
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半乳糖凝集素3及血小板与淋巴细胞比值与75岁以上急性心肌梗死患者术后心室重构的关系
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作者 张新贵 王长虹 王进 《中华老年心脑血管病杂志》 CAS 北大核心 2024年第5期504-507,共4页
目的探讨外周血半乳糖凝集素3(Gal-3)、血小板与淋巴细胞比值(PLR)水平变化及其与75岁以上急性心肌梗死(AMI)患者经皮冠状动脉介入治疗(PCI)术后发生心室重构的关系。方法选择2021年3月至2023年9月在南阳市第一人民医院择期行PCI术的75... 目的探讨外周血半乳糖凝集素3(Gal-3)、血小板与淋巴细胞比值(PLR)水平变化及其与75岁以上急性心肌梗死(AMI)患者经皮冠状动脉介入治疗(PCI)术后发生心室重构的关系。方法选择2021年3月至2023年9月在南阳市第一人民医院择期行PCI术的75岁以上老年AMI患者86例,根据PCI术后是否发生心室重构将患者分为心室重构组39例和非心室重构组47例。于PCI术前、术后3d、术后5d检测Gal-3、PLR水平,比较2组外周血Gal-3、PLR水平,用多因素logistic回归分析外周血Gal-3、PLR水平与老年AMI患者PCI术后发生心室重构的关系,用ROC曲线分析外周血Gal-3、PLR水平对老年AMI患者PCI术后发生心室重构的预测价值。结果2组患者术后3d、术后5d外周血Gal-3、PLR水平均较术前降低,且术后5d外周血Gal-3、PLR水平低于术后3d(P<0.05);心室重构组术前、术后3d、术后5d的外周血Gal-3、PLR水平均高于非心室重构组(P<0.05,P<0.01)。多因素logistic回归分析显示,术前Gal-3(OR=1.986,95%CI:1.017~2.875,P=0.007)、术前PLR(OR=1.774,95%CI:1.132~2.428,P=0.014)均是AMI患者PCI术后发生心室重构的危险因素。ROC曲线显示,术前外周血Gal-3和PLR联合预测AMI患者PCI术后发生心室重构的曲线下面积为0.882(95%CI:0.824~0.941),优于二者单独检测(P<0.05)。结论AMI患者PCI术后外周血Gal-3、PLR水平较术前降低,术前外周血Gal-3、PLR均是PCI术后发生心室重构的危险因素,联合检测对AMI患者PCI术后发生心室重构有较高预测价值。 展开更多
关键词 心肌梗死 心室重构 半乳糖凝集素3 血小板与淋巴细胞比值
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LaNi_(0.6)Fe_(0.4)O_(3)阴极接触材料导电特性调控及其对SOFC电化学性能的影响
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作者 张琨 王宇 +3 位作者 朱腾龙 孙凯华 韩敏芳 钟秦 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2024年第4期367-373,共7页
鉴于平板式固体氧化物燃料电池(SOFC)电堆对低面电阻、高稳定性阴极接触材料的需求,本研究阐明了LaNi_(0.6)Fe_(0.4)O_(3)(LNF)颗粒尺寸调控对导电和SOFC单电池性能演变的影响机制,优化了LNF预处理工艺,降低了接触组件面电阻,提升了SOF... 鉴于平板式固体氧化物燃料电池(SOFC)电堆对低面电阻、高稳定性阴极接触材料的需求,本研究阐明了LaNi_(0.6)Fe_(0.4)O_(3)(LNF)颗粒尺寸调控对导电和SOFC单电池性能演变的影响机制,优化了LNF预处理工艺,降低了接触组件面电阻,提升了SOFC单电池性能及热循环稳定性。结果表明:预压造粒的样品(LNF-2)与高温烧结预处理的样品(LNF-3)的面电阻更小,分别为0.074和0.076Ω·cm^(2);在750℃施加1 A/cm^(2)电流负载后,能够更快地进入稳态,并保持颗粒尺寸稳定。其中,LNF-2单电池在750℃下的峰值功率密度0.94 W/cm^(2)较未处理的LNF的0.66 W/cm^(2)高,但在热循环过程中性能衰减较大,下降了20%;而LNF-3单电池在20次热循环后峰值功率密度仅下降了4%。本研究对高可靠SOFC电堆装配及其长寿命稳定运行具有指导及参考价值。 展开更多
关键词 固体氧化物燃料电池(SOFC) 阴极接触材料 LaNi_(0.6)Fe_(0.4)O_(3) 热循环
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B/KNO_(3)点火药装药的烤燃特性研究
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作者 伍俊英 尚伊平 +4 位作者 郑富德 杜皓杰 姚雨乐 李钧剑 陈朗 《兵工学报》 EI CAS CSCD 北大核心 2024年第8期2828-2836,共9页
为研究B/KNO_(3)点火药的热安全性,建立多点测温烤燃实验装置,对不同升温速率、不同装药密度条件下的B/KNO_(3)点火药装药进行多点测温烤燃实验,以获得点火药装药发生点火的准确时间与烤燃过程中不同监测点的温度历程。建立B/KNO_(3)点... 为研究B/KNO_(3)点火药的热安全性,建立多点测温烤燃实验装置,对不同升温速率、不同装药密度条件下的B/KNO_(3)点火药装药进行多点测温烤燃实验,以获得点火药装药发生点火的准确时间与烤燃过程中不同监测点的温度历程。建立B/KNO_(3)点火药装药烤燃实验的数值计算模型并进行了数值模拟,计算中考虑了点火药的自热分解反应与相变吸热。通过与实验结果的对比,标定B/KNO_(3)点火药装药的热物性参数和反应动力学参数。研究结果表明:B/KNO_(3)点火药的指前因子为7.763×10^(13)s^(-1),活化能为2.0787×10^(5)J/mol;在点火药装药的烤燃过程中,随着升温速率的减小,点火延期时间逐渐增加,点火区域逐渐向中心移动,点火环境温度逐渐降低;在装药密度变化不太大的情况下,点火药的点火特征差别不大。 展开更多
关键词 B/KNO_(3)点火药 烤燃实验 热安全性 点火特性
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NLRP3炎性小体在治疗性浅低温后处理大鼠心肌缺血-再灌注中的作用
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作者 李亚琦 陈祎轩 +1 位作者 张静 余树春 《临床麻醉学杂志》 CAS CSCD 北大核心 2024年第2期178-184,共7页
目的 分析NOD样受体热蛋白结构域相关蛋白3(NLRP3)炎性小体在治疗性浅低温(34℃)后处理的大鼠离体心肌缺血-再灌注模型中的作用并探讨其机制。方法 选择清洁级成年雄性SD大鼠60只,7~10周龄,体重250~300 g。采用随机数字表法将大鼠分为五... 目的 分析NOD样受体热蛋白结构域相关蛋白3(NLRP3)炎性小体在治疗性浅低温(34℃)后处理的大鼠离体心肌缺血-再灌注模型中的作用并探讨其机制。方法 选择清洁级成年雄性SD大鼠60只,7~10周龄,体重250~300 g。采用随机数字表法将大鼠分为五组:空白对照组(S组)、心肌缺血-再灌注组(IR组)、34℃浅低温后处理心肌缺血-再灌注组(MH组)、34℃浅低温后处理心肌缺血-再灌注+3-TYP组(HT组)和34℃浅低温后处理心肌缺血-再灌注+3-TYP+MCC950组(HTM组),每组12只。S组在37℃灌流液平衡灌流大鼠心脏180 min;IR组在37℃灌流液平衡灌流大鼠心脏30 min后,缺血30 min, 37℃灌注液再灌注120 min;MH组在37℃灌流液平衡灌流大鼠心脏30 min后,缺血30 min, 34℃灌注液再灌注120 min;HT组在37℃灌流液平衡灌流大鼠心脏30 min后,缺血30 min,在灌注液中加入沉默信息调节因子2同源蛋白3(sirt3)抑制剂3-TYP后行34℃灌注液再灌注120 min;HTM组在37℃灌流液平衡灌流大鼠心脏30 min后,缺血30 min,在灌注液中加入sirt3抑制剂3-TYP和NLRP3抑制剂MCC950后行34℃灌注液再灌注120 min。再灌注120 min后取离体心脏,采用ELISA法测定灌注后心脏漏液中IL-1β、IL-6浓度,Western blot法检测心肌组织中NLRP3和sirt3蛋白相对含量,1%氯化三苯基四氮唑染色计算心肌梗死面积,HE染色观察心肌病理变化。结果 与S组比较,IR组、MH组、HT组和HTM组再灌注30、60、90、120 min时HR明显减慢,LVSP、dp/dt_(max)明显降低,LVEDP明显升高;心脏漏液中IL-6和IL-1β浓度、心肌梗死面积百分比明显升高(P<0.05);IR组、HT组和HTM组心肌组织中sirt3蛋白含量明显降低,NLRP3蛋白含量明显升高(P<0.05);MH组心肌组织中sirt3和NLRP3蛋白含量明显升高(P<0.05)。与IR组比较,MH组和HTM组再灌注30、60、90、120 min时HR明显增快,LVSP、±dp/dt_(max)明显升高,LVEDP明显降低;心脏漏液中IL-6和IL-1β浓度、心肌梗死面积百分比明显降低(P<0.05);MH组心肌组织中sirt3蛋白含量明显升高,NLRP3蛋白含量明显降低(P<0.05);HTM组心肌组织中NLRP3蛋白含量明显降低(P<0.05)。与MH组比较,HT组再灌注30、60、90、120 min时HR明显减慢,LVSP、±dp/dt_(max)明显降低,LVEDP明显升高;心脏漏液中IL-6和IL-1β浓度、心肌梗死面积百分比、心肌组织中NLRP3蛋白含量明显升高(P<0.05);HT组和HTM组心肌组织中sirt3蛋白含量明显降低(P<0.05)。与HT组比较,HTM组再灌注30、60、90、120 min时HR明显增快,LVSP、±dp/dt_(max)明显升高,LVEDP明显降低;心脏漏液中IL-6和IL-1β浓度、心肌梗死面积百分比、心肌组织中NLRP3蛋白含量明显降低(P<0.05)。结论 治疗性浅低温(34℃)可通过改善离体心脏血流动力学参数、降低IL-6、IL-1β浓度、心肌组织中NLRP3蛋白含量、心肌梗死面积百分比、改善心肌病理学改变,减轻大鼠心肌缺血-再灌注损伤,其机制可能与线粒体介导sirt3通路抑制炎性小体NLRP3的高表达有关。 展开更多
关键词 心肌 缺血-再灌注 治疗性浅低温 NOD样受体热蛋白结构域相关蛋白3 沉默信息调节因子2同源蛋白3 炎性小体 线粒体
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CT动脉增强分数、甲胎蛋白异质体3、中性粒细胞与淋巴细胞比值联合检测对肝癌患者介入化疗疗效的评估价值
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作者 王兴龙 冯坤鹏 +1 位作者 袁牧 孟令武 《癌症进展》 2024年第10期1146-1150,共5页
目的 探讨CT动脉增强分数(AEF)、甲胎蛋白异质体3(AFP-L3)、中性粒细胞与淋巴细胞比值(NLR)联合检测对肝癌患者介入化疗疗效的评估价值。方法 选取94例肝癌介入化疗患者,所有患者均于术前1天、术后30天行CT增强扫描,并检测AFP-L3、中性... 目的 探讨CT动脉增强分数(AEF)、甲胎蛋白异质体3(AFP-L3)、中性粒细胞与淋巴细胞比值(NLR)联合检测对肝癌患者介入化疗疗效的评估价值。方法 选取94例肝癌介入化疗患者,所有患者均于术前1天、术后30天行CT增强扫描,并检测AFP-L3、中性粒细胞计数和淋巴细胞计数。根据临床疗效将患者分为治疗有效组[完全缓解(CR)+部分缓解(PR)]和治疗无效组[疾病稳定(SD)+疾病进展(PD)],比较两组患者的临床资料,采用Logistic回归模型分析肝癌患者介入化疗疗效的影响因素。绘制受试者工作特征(ROC)曲线,计算曲线下面积(AUC),分析AEF、AFP-L3、NLR单独及联合检测对肝癌患者介入化疗疗效的评估价值。结果 94例肝癌患者中,治疗有效组37例(CR 10例,PR 27例),治疗无效组57例(SD 34例,PD 23例)。治疗有效组中肿瘤直径﹤5 cm、肿瘤数目为单发、TNM分期为Ⅱb期的患者比例均高于治疗无效组,差异均有统计学意义(P﹤0.05);治疗有效组患者术后30天AEF、AFP-L3、NLR均明显低于治疗无效组,差异均有统计学意义(P﹤0.01)。多因素Logistic回归分析结果显示,术后30天AEF、AFP-L3、NLR较高均是肝癌患者介入化疗疗效的独立危险因素(P﹤0.05)。ROC曲线显示,AEF、AFP-L3、NLR联合检测评估肝癌患者介入化疗疗效的AUC为0.963,灵敏度为92.98%,均高于各指标单独检测。结论 术后30天AEF、AFP-L3、NLR较高均是肝癌患者介入化疗疗效的独立危险因素,三者联合检测可有效评估肝癌患者介入化疗疗效,为后续治疗提供参考。 展开更多
关键词 CT动脉增强分数 甲胎蛋白异质体3 中性粒细胞与淋巴细胞比值 肝癌 介入化疗 疗效
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Thermally insulating and fire-retardant bio-mimic structural composites with a negative Poisson's ratio for battery protection 被引量:2
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作者 Fengyin Du Zuquan Jin +9 位作者 Ruizhe Yang Menglong Hao Jiawei Wang Gang Xu Wenqiang Zuo Zifan Geng Hao Pan Tian Li Wei Zhang Wei She 《Carbon Energy》 SCIE EI CAS CSCD 2023年第12期83-96,共14页
Battery safety has attracted considerable attention worldwide due to the rapid development of wearable electronics and the steady increase in the production and use of electric vehicles.As battery failures are often a... Battery safety has attracted considerable attention worldwide due to the rapid development of wearable electronics and the steady increase in the production and use of electric vehicles.As battery failures are often associated with mechanical-thermal coupled behaviors,protective shielding materials with excellent mechanical robustness and flame-retardant properties are highly desired to mitigate thermal runaway.However,most of the thermal insulating materials are not strong enough to protect batteries from mechanical abuse,which is one of the most critical scenarios with catastrophic consequences.Here,inspired by wood,we have developed an effective approach to engineer a hierarchical nanocomposite via self-assembly of calcium silicate hydrate and polyvinyl alcohol polymer chains(referred as CSH wood).The versatile protective material CSH wood demonstrates an unprecedented combination of light weight(0.018 g cm-3),high stiffness(204 MPa in the axial direction),negative Poisson's ratio(-0.15),remarkable toughness(6.67×105 J m-3),superior thermal insulation(0.0204 W m-1 K-1 in the radial direction),and excellent fire retardancy(UL94-V0).When applied as a protective cover or a protective layer within battery packages,the tough CSH wood can resist high-impact load and block heat diffusion to block or delay the spread of fire,therefore significantly reducing the risk of property damage or bodily injuries caused by battery explosions.This work provides new pathways for fabricating advanced thermal insulating materials with large scalability and demonstrates great potential for the protection of electronic devices. 展开更多
关键词 battery protection negative Poisson's ratio thermal insulation TOUGHNESS wood-inspired materials
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Ca_(2)MgTeO_(6)∶Bi^(3+),Mn^(4+)材料的发光性能和温度探测 被引量:1
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作者 祝冰心 朱肖 +5 位作者 王磊 时秋峰 郭海洁 乔建伟 崔彩娥 黄平 《发光学报》 EI CAS CSCD 北大核心 2024年第4期579-590,共12页
通过高温固相法成功制备了一系列Ca_(2)MgTeO_(6)∶Bi^(3+),Mn^(4+)荧光粉,对其微观结构、形貌、发光特性和温敏特性进行了表征。Ca_(2)MgTeO_(6)∶Bi^(3+),Mn^(4+)荧光粉具有不同温度敏感性的双发射中心,分别来自于Bi^(3+)离子^(3)P_(1... 通过高温固相法成功制备了一系列Ca_(2)MgTeO_(6)∶Bi^(3+),Mn^(4+)荧光粉,对其微观结构、形貌、发光特性和温敏特性进行了表征。Ca_(2)MgTeO_(6)∶Bi^(3+),Mn^(4+)荧光粉具有不同温度敏感性的双发射中心,分别来自于Bi^(3+)离子^(3)P_(1)→^(1)S_(0)跃迁和Mn^(4+)离子的^(2)E_(g)→^(4)A_(2g)跃迁。由于Bi^(3+)、Mn^(4+)离子的发光强度随温度变化的规律不同,利用该特性进行测温研究,在200~500 K范围内,该荧光粉的最大绝对灵敏度和相对灵敏度分别达到0.027 K^(-1)和1.83%·K^(-1),并且观察到荧光粉的发光颜色由橙黄色逐渐变为紫红色。实验结果表明,Ca_(2)MgTeO_(6)∶Bi^(3+),Mn^(4+)荧光粉作为光学测温材料在温度探测方面有一定的潜力。 展开更多
关键词 光学测温 荧光强度比 Bi^(3+) Mn^(4+) 温敏特性
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2型糖尿病下肢血管病变患者介入治疗后血清NLRP3及sVCAM-1水平对再狭窄的意义
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作者 张继光 杨贤达 靳开星 《中国循证心血管医学杂志》 2024年第5期573-576,582,共5页
目的探讨2型糖尿病下肢血管病变患者介入治疗后血清NOD样受体蛋白3(NLRP3)及可溶性血管细胞黏附分子-1(sVCAM-1)水平对再狭窄的意义。方法回顾性分析2022年1月~2023年1月于河北省邯郸市中心医院血管介入科104例成功行血管介入治疗的2型... 目的探讨2型糖尿病下肢血管病变患者介入治疗后血清NOD样受体蛋白3(NLRP3)及可溶性血管细胞黏附分子-1(sVCAM-1)水平对再狭窄的意义。方法回顾性分析2022年1月~2023年1月于河北省邯郸市中心医院血管介入科104例成功行血管介入治疗的2型糖尿病下肢血管病变患者的临床资料。根据介入后再狭窄发生情况分为再狭窄组(n=20)和无再狭窄组(n=84),比较两组患者一般资料及介入后24 h血清NLRP3、sVCAM-1水平,采用多因素Logistic回归模型分析再狭窄发生的影响因素;创建受试者工作特征(ROC)曲线,分析血清NLRP3、sVCAM-1检测对再狭窄的预测价值。结果与无再狭窄组相比,再狭窄组患者2型糖尿病病程、下肢动脉病变长度更长,Fontaine分期Ⅳ期占比、下肢动脉完全闭塞占比及血清糖化血红蛋白(HbA1c)、超敏C反应蛋白(hs-CRP)、NLRP3、sVCAM-1水平更高(P<0.05);多因素Logistic回归分析显示,下肢动脉完全闭塞、下肢动脉病变长度、HbA1c、NLRP3及sVCAM-1是2型糖尿病下肢血管病变患者介入后再狭窄发生的影响因素(P<0.05);ROC曲线显示,血清NLRP3、sVCAM-1联合检测对2型糖尿病下肢血管病变患者介入后再狭窄发生的预测价值较高,敏感度为95.00%,特异度为71.43%,ROC曲线下面积为0.929。结论血清NLRP3、sVCAM-1水平高表达均是2型糖尿病下肢血管病变患者介入治疗后再狭窄发生的危险因素,二者联合检测能提高2型糖尿病下肢血管病变患者介入治疗后再狭窄预测的准确性。 展开更多
关键词 2型糖尿病 下肢血管病变 介入治疗 NOD样受体蛋白3 可溶性血管细胞黏附分子-1
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Controllable rectification on the thermal conductivity of porous YBa_(2)Cu_(3)O_(7−x) superconductors from 3D-printing 被引量:1
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作者 Yanbin Ma Baoqiang Zhang +1 位作者 Xingyi Zhang You-He Zhou 《International Journal of Extreme Manufacturing》 SCIE EI CAS CSCD 2023年第1期182-191,共10页
Superconducting YBa_(2)Cu_(3)O_(7−x)(YBCO)bulks have promising applications in quasi-permanent magnets,levitation,etc.Recently,a new way of fabricating porous YBCO bulks,named direct-ink-writing(DIW)3D-printing method... Superconducting YBa_(2)Cu_(3)O_(7−x)(YBCO)bulks have promising applications in quasi-permanent magnets,levitation,etc.Recently,a new way of fabricating porous YBCO bulks,named direct-ink-writing(DIW)3D-printing method,has been reported.In this method,the customized precursor paste and programmable shape are two main advantages.Here,we have put forward a new way to customize the YBCO 3D-printing precursor paste which is doped with Al_(2)O_(3)nanoparticles to obtain YBCO with higher thermal conductivity.The great rheological properties of precursor paste after being doped with Al_(2)O_(3)nanoparticles can help the macroscopic YBCO samples with high thermal conductivity fabricated stably with high crystalline and lightweight properties.Test results show that the peak thermal conductivity of Al_(2)O_(3)-doped YBCO can reach twice as much as pure YBCO,which makes a great effort to reduce the quench propagation speed.Based on the microstructure analysis,one can find that the thermal conductivity of Al_(2)O_(3)-doped YBCO has been determined by its components and microstructures.In addition,a macroscopic theoretical model has been proposed to assess the thermal conductivity of different microstructures,whose calculated results take good agreement with the experimental results.Meanwhile,a microstructure with high thermal conductivity has been found.Finally,a macroscopic YBCO bulk with the presented high thermal conductivity microstructure has been fabricated by the Al_(2)O_(3)-doped method.Compared with YBCO fabricated by the traditional 3D-printed,the Al_(2)O_(3)-doped structural YBCO bulks present excellent heat transfer performances.Our customized design of 3D-printing precursor pastes and novel concept of structural design for enhancing the thermal conductivity of YBCO superconducting material can be widely used in other DIW 3D-printing materials. 展开更多
关键词 Al_(2)O_(3)-doped YBCO thermal conductivity theoretical model controllable design DIW 3D-printing
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急性脑梗死患者血清miR-22-3p、NLRP3水平与炎性因子及预后不良的关系 被引量:1
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作者 凌雪辉 许文杰 +1 位作者 秦勇 王枫 《疑难病杂志》 CAS 2024年第1期86-92,共7页
目的探讨急性脑梗死(ACI)患者血清微小核糖核酸-22-3p(miR-22-3p)、NOD样受体热蛋白结构域相关蛋白3(NLRP3)水平与炎性因子及预后不良的关系。方法选取2021年1月—2022年12月上海中医药大学附属第七人民医院神经内科收治ACI患者106例为... 目的探讨急性脑梗死(ACI)患者血清微小核糖核酸-22-3p(miR-22-3p)、NOD样受体热蛋白结构域相关蛋白3(NLRP3)水平与炎性因子及预后不良的关系。方法选取2021年1月—2022年12月上海中医药大学附属第七人民医院神经内科收治ACI患者106例为ACI组,根据预后情况分为预后不良亚组37例和预后良好亚组69例,另选取同期体检健康者60例为健康对照组。采用实时荧光定量聚合酶链式反应检测血清miR-22-3p水平,酶联免疫吸附法检测血清NLRP3和炎性因子[白介素(IL)-1β、IL-18、肿瘤坏死因子-α(TNF-α)]水平。通过Pearson相关性分析ACI患者血清miR-22-3p、NLRP3与IL-1β、IL-18、TNF-α的相关性。分析ACI患者预后不良的影响因素,绘制2项指标的受试者工作特征(ROC)曲线分析其预测预后的价值。结果与健康对照组比较,ACI组血清miR-22-3p水平降低,NLRP3、IL-1β、IL-18、TNF-α水平显著升高(t/P=18.698/<0.001、27.091/<0.001、30.154/<0.001、35.104/<0.001、39.834/<0.001)。Pearson相关性分析显示,ACI患者血清miR-22-3p与NLRP3、IL-1β、IL-18、TNF-α水平呈负相关(r/P=-0.733/<0.001、-0.719/<0.001、-0.683/<0.001、-0.680/<0.001),血清NLRP3与IL-1β、IL-18、TNF-α水平呈正相关(r/P=0.716/<0.001、0.715/<0.001、0.707/<0.001)。多因素Logistic回归分析显示,NIHSS评分、IL-1β、IL-18、TNF-α、NLRP3升高为ACI患者预后不良的独立危险因素[OR(95%CI)=1.244(1.034~1.497)、1.373(1.067~1.767)、1.047(1.011~1.086)、1.577(1.061~2.343)、1.084(1.022~1.149)],miR-22-3p升高为独立保护因素[OR(95%CI)=0.933(0.888~0.980)]。ROC曲线分析显示,血清miR-22-3p、NLRP3水平联合预测ACI患者预后不良的曲线下面积为0.875,大于两者单独预测的0.786、0.759(Z/P=2.405/0.016、2.517/0.012)。结论ACI患者血清miR-22-3p水平降低和NLRP3水平升高,与炎性因子水平升高和预后不良密切相关,血清miR-22-3p、NLRP3水平联合对ACI患者预后不良的预测价值较高。 展开更多
关键词 脑梗死 急性 微小核糖核酸-22-3p NOD样受体热蛋白结构域相关蛋白3 炎性因子 预后不良
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Statics, vibration, and buckling of sandwich plates with metamaterial cores characterized by negative thermal expansion and negative Poisson's ratio
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作者 Qiao ZHANG Yuxin SUN 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2023年第9期1457-1486,共30页
This paper proposes a three-dimensional(3D)Maltese cross metamaterial with negative Poisson’s ratio(NPR)and negative thermal expansion(NTE)adopted as the core layers in sandwich plates,and aims to explore the relatio... This paper proposes a three-dimensional(3D)Maltese cross metamaterial with negative Poisson’s ratio(NPR)and negative thermal expansion(NTE)adopted as the core layers in sandwich plates,and aims to explore the relations between the mechanical responses of sandwich composites and the NPR or NTE of the metamaterial.First,the NPR and NTE of the metamaterial are derived analytically based on energy conservation.The effective elastic modulus and mass density of the 3D metamaterial are obtained and validated by the finite element method(FEM).Subsequently,the general governing equation of the 3D sandwich plate under thermal environments is established based on Hamilton’s principle with the consideration of the von Kármán nonlinearity.The differential quadrature(DQ)FEM(DQFEM)is utilized to obtain the numerical solutions.It is shown that NPR and NTE can enhance the global stiffness of sandwich structures.The geometric parameters of the Maltese cross metamaterial significantly affect the responses of the thermal stress,natural frequency,and critical buckling load. 展开更多
关键词 negative Poisson's ratio(NPR) negative thermal expansion(NTE) sand-wich plate VIBratioN BUCKLING
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前驱体转化陶瓷法制备Ti_(3)SiC_(2)陶瓷及其热稳定性研究
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作者 郑斌 康凯 +5 位作者 张青 叶昉 解静 贾研 孙国栋 成来飞 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2024年第6期733-740,共8页
Ti_(3)SiC_(2)具有良好的高温稳定性,可作为改性材料来提高C/C复合材料的抗氧化性能,应用潜力巨大。本工作以钛粉和液态聚碳硅烷(Liquid Polycarbosilane,LPCS)作为原料,采用前驱体转化陶瓷(Polymer Derived Ceramics,PDC)法在1200、130... Ti_(3)SiC_(2)具有良好的高温稳定性,可作为改性材料来提高C/C复合材料的抗氧化性能,应用潜力巨大。本工作以钛粉和液态聚碳硅烷(Liquid Polycarbosilane,LPCS)作为原料,采用前驱体转化陶瓷(Polymer Derived Ceramics,PDC)法在1200、1300、1400、1500℃下制备了四种相含量的Ti_(3)SiC_(2)陶瓷,研究了烧结温度对其物相组成及形貌的影响,以及不同Ti_(3)SiC_(2)相含量对陶瓷材料的抗氧化和抗热震性能的影响。结果表明,在Ti:Si物质的量比为3:1.5,烧结温度为1300、1400、1500℃条件下,均有层状结构的Ti_(3)SiC_(2)生成。当烧结温度为1400℃时,陶瓷产物中Ti_(3)SiC_(2)质量分数达到92.10%,抗弯强度达172.68 MPa。在1300℃静态空气环境下氧化7 h,陶瓷氧化增重随Ti_(3)SiC_(2)相含量增大而逐渐降低,这是由于氧化过程中材料表面生成了以TiO_(2)为主相的保护膜,有效延缓了氧气向内部扩散。对试样进行1300℃空气热震和抗弯强度测试发现,随着热震次数的增加,所有材料的残余强度均有所下降;但随着Ti_(3)SiC_(2)相含量增大,试样的抗热震性能和残余强度均提高。Ti_(3)SiC_(2)相质量分数为92.10%的试样经过30次热震后失重30.66%,残余强度为120.18 MPa,这主要归因于层状结构的Ti_(3)SiC_(2)大幅增加了裂纹扩展路径及其良好的抗氧化性能。 展开更多
关键词 Ti_(3)SiC_(2) 无压烧结 抗氧化性能 抗热震性能
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Thermo-hydro-mechanical (THM) coupled simulation of the land subsidence due to aquifer thermal energy storage (ATES) system in soft soils 被引量:1
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作者 Yang Wang Fengshou Zhang Fang Liu 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第6期1952-1966,共15页
Aquifer thermal energy storage(ATES)system has received attention for heating or cooling buildings.However,it is well known that land subsidence becomes a major environmental concern for ATES projects.Yet,the effect o... Aquifer thermal energy storage(ATES)system has received attention for heating or cooling buildings.However,it is well known that land subsidence becomes a major environmental concern for ATES projects.Yet,the effect of temperature on land subsidence has received practically no attention in the past.This paper presents a thermo-hydro-mechanical(THM)coupled numerical study on an ATES system in Shanghai,China.Four water wells were installed for seasonal heating and cooling of an agriculture greenhouse.The target aquifer at a depth of 74e104.5 m consisted of alternating layers of sand and silty sand and was covered with clay.Groundwater level,temperature,and land subsidence data from 2015 to 2017 were collected using field monitoring instruments.Constrained by data,we constructed a field scale three-dimensional(3D)model using TOUGH(Transport of Unsaturated Groundwater and Heat)and FLAC3D(Fast Lagrangian Analysis of Continua)equipped with a thermo-elastoplastic constitutive model.The effectiveness of the numerical model was validated by field data.The model was used to reproduce groundwater flow,heat transfer,and mechanical responses in porous media over three years and capture the thermo-and pressure-induced land subsidence.The results show that the maximum thermoinduced land subsidence accounts for about 60%of the total subsidence.The thermo-induced subsidence is slightly greater in winter than that in summer,and more pronounced near the cold well area than the hot well area.This study provides some valuable guidelines for controlling land subsidence caused by ATES systems installed in soft soils. 展开更多
关键词 Aquifer thermal energy storage(ATES) Land subsidence TOUGH-FLAC3D Thermo-elastoplastic constitutive model
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Robust and high-sensitivity thermal probing at the nanoscale based on resonance Raman ratio (R3) 被引量:2
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作者 Hamidreza Zobeiri Nicholas Hunter +2 位作者 Shen Xu Yangsu Xie Xinwei Wang 《International Journal of Extreme Manufacturing》 SCIE EI CAS 2022年第3期150-161,共12页
Raman spectroscopy-based temperature sensing usually tracks the change of Raman wavenumber,linewidth and intensity,and has found very broad applications in characterizing the energy and charge transport in nanomateria... Raman spectroscopy-based temperature sensing usually tracks the change of Raman wavenumber,linewidth and intensity,and has found very broad applications in characterizing the energy and charge transport in nanomaterials over the last decade.The temperature coefficients of these Raman properties are highly material-dependent,and are subjected to local optical scattering influence.As a result,Raman-based temperature sensing usually suffers quite large uncertainties and has low sensitivity.Here,a novel method based on dual resonance Raman phenomenon is developed to precisely measure the absolute temperature rise of nanomaterial(nm WS_(2) film in this work)from 170 to 470 K.A 532 nm laser(2.33 eV photon energy)is used to conduct the Raman experiment.Its photon energy is very close to the excitonic transition energy of WS_(2) at temperatures close to room temperature.A parameter,termed resonance Raman ratio(R3)Ω=I_(A1g)/IE_(2g) is introduced to combine the temperature effects on resonance Raman scattering for the A_(1g) and E_(2g) modes.Ω has a change of more than two orders of magnitude from 177 to 477 K,and such change is independent of film thickness and local optical scattering.It is shown that when Ω is varied by 1%,the temperature probing sensitivity is 0.42 K and 1.16 K at low and high temperatures,respectively.Based on Ω,the in-plane thermal conductivity(k)of a∼25 nm-thick suspended WS_(2) film is measured using our energy transport state-resolved Raman(ET-Raman).k is found decreasing from 50.0 to 20.0 Wm^(−1) K^(−1) when temperature increases from 170 to 470 K.This agrees with previous experimental and theoretical results and the measurement data using our FET-Raman.The R3 technique provides a very robust and high-sensitivity method for temperature probing of nanomaterials and will have broad applications in nanoscale thermal transport characterization,non-destructive evaluation,and manufacturing monitoring. 展开更多
关键词 resonant Raman scattering two-dimensional(2D)materials Raman intensity ratio ET-Raman thermal conductivity
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氧化钪(Sc_(2)O_(3))的热漫散射强度解析
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作者 王瑞刚 刘泽朋 +1 位作者 香莲 孙勇 《物理学报》 SCIE EI CAS CSCD 北大核心 2024年第6期193-200,共8页
热漫散射分析在凝聚态物理和材料科学研究中具有巨大潜力与实用性.氧化钪(Sc_(2)O_(3))独特的物理化学性质,使其具有较高的研究和应用价值.在室温26℃下对Sc_(2)O_(3)进行了X射线衍射实验.其热漫散射强度呈明显的振动形状,将Sc_(2)O_(3... 热漫散射分析在凝聚态物理和材料科学研究中具有巨大潜力与实用性.氧化钪(Sc_(2)O_(3))独特的物理化学性质,使其具有较高的研究和应用价值.在室温26℃下对Sc_(2)O_(3)进行了X射线衍射实验.其热漫散射强度呈明显的振动形状,将Sc_(2)O_(3)的全衍射背底强度方程展开,并计算热漫散射强度的理论值,直至计算到第14近邻原子(r为0.3816 nm)全衍射背底强度图谱.将理论值与实验值拟合,得到了最近邻原子至第7近邻原子所对应的原子间热振动相关效应值μ,最近邻原子到第7近邻原子距离r的值分别为0.2067,0.2148,0.2161,0.2671,0.2945,0.3229和0.3265 nm,所对应的原子间热振动相关效应值μ分别为0.64,0.63,0.62,0.61,0.60,0.58和0.57.研究发现Sc_(2)O_(3)热漫散射强度大小与原子的热振动密切相关,对热漫散射强度振动形状影响最大的是第7近邻原子Sc_(1)-Sc_(2)间的热振动相关效应μ,原子间热振动相关效应值μ对研究材料的力热性质提供很重要的参数,为下一步计算比热和原子间力常数打下基础,其对于材料的力热方面的用途与发展有着至关重要的作用. 展开更多
关键词 Sc_(2)O_(3) 热漫散射 原子间热振动相关效应值
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Synthesis of ultralong Si_3N_4 nanowires by a simple thermal evaporation method 被引量:2
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作者 Wen-Qi Wang Xiao-Ping Zou +3 位作者 Nan-Jia Zhou Guang Zhu Gui-Ying Wang Zhen-Sheng Peng 《Rare Metals》 SCIE EI CAS CSCD 2013年第2期186-190,共5页
Largescale vaporsolid synthesis of ultralong silicon nitride (Si3N4) nanowires was achieved by using simple thermal evaporation of mixture powders of active carbon and monoxide silicon. The products were charac teri... Largescale vaporsolid synthesis of ultralong silicon nitride (Si3N4) nanowires was achieved by using simple thermal evaporation of mixture powders of active carbon and monoxide silicon. The products were charac terized by Xray diffraction, scanning electron microscopy, energydispersive Xray spectroscopy, and transmission electron microscopy. The results suggest that the silicon nitride nanowires have a smooth surface, with lengths of up to several hundreds of microns and diameters of 100300 nm. A detailed study of both the chemical and structural composition was performed. Such ultralong sil icon nitride nanowires demonstrate potential applications as materials for constructing nanoscale devices and as reinforcement in advanced composites. 展开更多
关键词 Si3N4 nanowires Ultralong thermal evaporation
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