期刊文献+
共找到111,697篇文章
< 1 2 250 >
每页显示 20 50 100
Effect of Current Density and Strain Rate on Deformation Resistance During Electrically-Assisted Compression of AlCr_(1.3)TiNi_(2) Eutectic High-Entropy Alloys
1
作者 Wang Fanghui Li Hushan +6 位作者 Zhang Hao Ding Ziheng Bao Jianxing Ding Chaogang Shan Debin Guo Bin Xu Jie 《稀有金属材料与工程》 北大核心 2025年第5期1121-1126,共6页
The effect of deformation resistance of AlCr_(1.3)TiNi_(2) eutectic high-entropy alloys under various current densities and strain rates was investigated during electrically-assisted compression.Results show that at c... The effect of deformation resistance of AlCr_(1.3)TiNi_(2) eutectic high-entropy alloys under various current densities and strain rates was investigated during electrically-assisted compression.Results show that at current density of 60 A/mm^(2) and strain rate of 0.1 s^(−1),the ultimate tensile stress shows a significant decrease from approximately 3000 MPa to 1900 MPa with reduction ratio of about 36.7%.However,as current density increases,elongation decreases due to intermediate temperature embrittlement.This is because the current induces Joule effect,which then leads to stress concentration and more defect formation.Moreover,the flow stress is decreased with the increase in strain rate at constant current density. 展开更多
关键词 eutectic high-entropy alloy electrically-assisted compression deformation resistance flow stress
原文传递
CeO_(2)对WC-Co-Cr基涂层组织及摩擦学性能的影响研究
2
作者 徐瑞 张帅 +4 位作者 尹高天 李飞 李慧 刘树峰 鲁飞 《表面技术》 北大核心 2026年第1期208-216,共9页
目的采用热喷涂工艺制备WC基硬质涂层,是基材表面强化领域的一种高效技术手段。传统WC基涂层存在高温脱碳问题,耐磨损性能不足,亟需开发新的材料组分及技术手段以提升涂层的综合性能。方法通过机械混合制备不同稀土添加量的稀土复合WC-1... 目的采用热喷涂工艺制备WC基硬质涂层,是基材表面强化领域的一种高效技术手段。传统WC基涂层存在高温脱碳问题,耐磨损性能不足,亟需开发新的材料组分及技术手段以提升涂层的综合性能。方法通过机械混合制备不同稀土添加量的稀土复合WC-10Co-4Cr-xCeO_(2)(x=0%、1.0%、2.0%、3.0%、4.0%,质量分数)喷涂粉体。采用等离子喷涂技术,制备稀土改性WC-Co-Cr基涂层,系统研究了CeO_(2)对复合涂层微观结构、硬度、结合强度及耐磨损性能的影响,分析了CeO_(2)加入对喷涂涂层高温脱碳行为的影响规律。结果试验结果表明,引入CeO_(2)并未改变涂层的物相组成,当CeO_(2)添加量为2.0%时,WC-10Co-4Cr-2.0%CeO_(2)涂层硬度达到1464HV0.5,相较未添加稀土的WC-10Co-4Cr涂层提升了42%,改性WC涂层的结合强度较原始涂层提升了28.9%。此外,稀土改性形成的CeO_(2)-Cr-WC连续包覆结构,并辅以热处理,通过降低局部氧分压和物理阻隔的共同作用,有效抑制了WC的高温脱碳。经热处理后,WC-10Co-4Cr-2.0%CeO_(2)涂层的磨损量最低达1.8 mg,摩擦系数同步降低至0.547,表现出最佳的耐磨损性能。结论CeO_(2)加入可以有效提升涂层的硬度和耐磨损性能,稀土CeO_(2)复合WC涂层可替代传统WC基涂层进行基材表面强化。 展开更多
关键词 WC-Co-cr CeO_(2)改性 等离子喷涂 热处理 耐磨性能
在线阅读 下载PDF
Effect of Temperature on Interface Microstructure and Mechanical Properties of AZ31/Al/Ta Composites Prepared by Vacuum Hot Compression Bonding
3
作者 Yu Zhilei Li Jingli +2 位作者 Han Xiuzhu Li Bairui Xue Zhiyong 《稀有金属材料与工程》 北大核心 2025年第11期2749-2756,共8页
AZ31/Al/Ta composites were prepared using the vacuum hot compression bonding(VHCB)method.The effect of hot compressing temperature on the interface microstructure evolution,phase constitution,and shear strength at the... AZ31/Al/Ta composites were prepared using the vacuum hot compression bonding(VHCB)method.The effect of hot compressing temperature on the interface microstructure evolution,phase constitution,and shear strength at the interface was investigated.Moreover,the interface bonding mechanisms of the AZ31/Al/Ta composites during the VHCB process were explored.The results demonstrate that as the VHCB temperature increases,the phase composition of the interface between Mg and Al changes from the Mg-Al brittle intermetallic compounds(Al_(12)Mg_(17)and Al_(3)Mg_(2))to the Al-Mg solid solution.Meanwhile,the width of the Al/Ta interface diffusion layer at 450℃increases compared to that at 400℃.The shear strengths are 24 and 46 MPa at 400 and 450℃,respectively.The interfacial bonding mechanism of AZ31/Al/Ta composites involves the coexistence of diffusion and mechanical meshing.Avoiding the formation of brittle phases at the interface can significantly improve interfacial bonding strength. 展开更多
关键词 AZ31/Al/Ta composites microstructure mechanical properties vacuum hot compression bonding
原文传递
IDCE:Integrated Data Compression and Encryption for Enhanced Security and Efficiency
4
作者 Muhammad Usama Arshad Aziz +2 位作者 Suliman A.Alsuhibany Imtiaz Hassan Farrukh Yuldashev 《Computer Modeling in Engineering & Sciences》 2025年第4期1029-1048,共20页
Data compression plays a vital role in datamanagement and information theory by reducing redundancy.However,it lacks built-in security features such as secret keys or password-based access control,leaving sensitive da... Data compression plays a vital role in datamanagement and information theory by reducing redundancy.However,it lacks built-in security features such as secret keys or password-based access control,leaving sensitive data vulnerable to unauthorized access and misuse.With the exponential growth of digital data,robust security measures are essential.Data encryption,a widely used approach,ensures data confidentiality by making it unreadable and unalterable through secret key control.Despite their individual benefits,both require significant computational resources.Additionally,performing them separately for the same data increases complexity and processing time.Recognizing the need for integrated approaches that balance compression ratios and security levels,this research proposes an integrated data compression and encryption algorithm,named IDCE,for enhanced security and efficiency.Thealgorithmoperates on 128-bit block sizes and a 256-bit secret key length.It combines Huffman coding for compression and a Tent map for encryption.Additionally,an iterative Arnold cat map further enhances cryptographic confusion properties.Experimental analysis validates the effectiveness of the proposed algorithm,showcasing competitive performance in terms of compression ratio,security,and overall efficiency when compared to prior algorithms in the field. 展开更多
关键词 Chaotic maps SECURITY data compression data encryption integrated compression and encryption
在线阅读 下载PDF
铸态00Cr25Ni7Mo4N的热变形行为及其微观组织研究
5
作者 郭旭军 田继红 +3 位作者 陈慧琴 陈国豪 刘利军 温凯 《塑性工程学报》 北大核心 2026年第1期180-189,共10页
为探究铸态超级双相不锈钢00Cr25Ni7Mo4N的高温变形行为,采用Gleeble-3800热/力模拟试验机进行热压缩实验,研究了铸态超级双相不锈钢00Cr25Ni7Mo4N在变形温度为1000~1200℃、应变速率为0.001~1 s^(-1)、真应变为0.916条件下的热变形行为... 为探究铸态超级双相不锈钢00Cr25Ni7Mo4N的高温变形行为,采用Gleeble-3800热/力模拟试验机进行热压缩实验,研究了铸态超级双相不锈钢00Cr25Ni7Mo4N在变形温度为1000~1200℃、应变速率为0.001~1 s^(-1)、真应变为0.916条件下的热变形行为,并绘制真应力-真应变曲线。实验结果表明,00Cr25Ni7Mo4N不锈钢在高变形温度和低应变速率下更容易发生动态再结晶。通过对实验数据进行多元线性拟合计算,得到了00Cr25Ni7Mo4N不锈钢的热变形激活能,建立了00Cr25Ni7Mo4N不锈钢的高温塑性本构方程。使用电子背散射衍射技术观察到铁素体在各种变形条件下均发生了动态再结晶,其动态软化机制为连续动态再结晶;而奥氏体的动态软化机制受变形温度的影响,当变形温度较低时,动态回复是奥氏体相的主要软化机制,伴随着变形温度的升高,又呈现出非连续动态再结晶。 展开更多
关键词 00cr25Ni7Mo4N不锈钢 本构方程 动态回复 连续动态再结晶 非连续动态再结晶
原文传递
20Cr2Ni4A齿轮钢热变形行为及组织演变
6
作者 范英琦 吴晓东 +1 位作者 周少荣 王忠英 《热加工工艺》 北大核心 2026年第2期76-82,共7页
采用等温压缩实验研究了20Cr2Ni4A钢在变形温度为900~1100℃、应变速率为0.01~10 s^(-1)、真应变为0.8条件下的热变形行为和显微组织演变。真应力-应变曲线表明,流变应力随应变速率的增大和变形温度的降低而增大。在950~1100℃、0.01~0.... 采用等温压缩实验研究了20Cr2Ni4A钢在变形温度为900~1100℃、应变速率为0.01~10 s^(-1)、真应变为0.8条件下的热变形行为和显微组织演变。真应力-应变曲线表明,流变应力随应变速率的增大和变形温度的降低而增大。在950~1100℃、0.01~0.10 s^(-1)变形条件下,流变曲线有明显峰值,软化效果明显。根据峰值应力建立了20Cr2Ni4A钢的本构方程,计算出变形激活能为489.24 kJ/mol。基于动态材料模型,构建0.8真应变下热加工图并结合显微组织得出:高应变率和低变形温度更容易导致流变不稳定。在低温和高应变速率下变形的组织主要是伸长的变形晶粒,在975~1030℃、0.07~0.20 s^(-1)变形条件下,动态再结晶完全,组织细小且均匀,有效改善了原始晶粒大小不均匀的现象。 展开更多
关键词 20cr2NI4A钢 热变形 动态软化 本构方程 热加工图
原文传递
Loess compaction at different water contents:Effects on hydraulic conductivity,compression behavior,microstructure,and water distribution
7
作者 Kangze Yuan Wankui Ni +3 位作者 Xiangfei Lü Haiman Wang Yongpeng Nie Gabriele Della Vecchia 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第8期5307-5317,共11页
In this study,compacted loess samples with varying compaction water content but identical dry density were prepared to investigate the evolution of their hydraulic conductivity and compression behavior.Additionally,en... In this study,compacted loess samples with varying compaction water content but identical dry density were prepared to investigate the evolution of their hydraulic conductivity and compression behavior.Additionally,environmental scanning electron microscopy(ESEM)and nuclear magnetic resonance(NMR)analyses were conducted to gain microstructural insights into loess behavior at the laboratory scale.The results indicate that the maximum saturated hydraulic conductivity is observed at the lowest compaction water content,particularly in the early stage of permeability tests.In particular,for loess compacted at water contents below the optimum(as determined by the modified Proctor compaction test),the hydraulic conductivity decreases throughout the permeability tests.Conversely,when the water content exceeds the optimum level,the hydraulic conductivity shows an increasing trend.In terms of compression behavior,when the as-compacted samples are loaded in oedometer conditions,an increase in material compressibility is observed with increasing compaction water content.Again,a different phenomenological behavior was observed when the compaction water content exceeded the optimum,i.e.an abrupt increase in loess compressibility.ESEM tests provide microstructural confirmation of this evidence,as the surface morphology of the compacted loess changes significantly with increasing compaction water content.The microstructural evolution was also quantified in terms of area ratio using image processing software.Finally,NMR was used to quantify the intra-and inter-aggregate water at different compaction water contents,once again highlighting a threshold for the presence or absence of inter-aggregate water similar to the optimum water content. 展开更多
关键词 Compacted loess Water content COMPRESSIBILITY Hydraulic conductivity MIcrOSTRUCTURE
在线阅读 下载PDF
Experimental study and creep constitutive modeling for 2219 aluminum alloy under tension and compression conditions
8
作者 LI Shuang-bo MAO Xiao-bo +3 位作者 ZHAN Li-hua YANG You-liang LIU Chun-hui ZENG Quan-qing 《Journal of Central South University》 2025年第11期4196-4209,共14页
The creep deformation and mechanical properties of 2219 aluminum alloy were experimentally investigated under both tension and compression at the temperature of 165℃for different time.The results indicated that the c... The creep deformation and mechanical properties of 2219 aluminum alloy were experimentally investigated under both tension and compression at the temperature of 165℃for different time.The results indicated that the creep deformation under tensile stress was greater than that under compressive stress.As the stress level increases,the compressive creep rate showed more significant increase.The yield strength after compressive stress creep-ageing was higher than that after stress-free ageing,with the lowest strength observed in the tensile-aged sample.Overall,the average phase length after compressive stress creep-ageing was larger than after tensile stress ageing.Under tensile stress,the number and size of precipitates at small angles to the stress direction were larger than those perpendicular to the stress direction.In contrast,under compressive stress,this relationship was reversed,and the preferential orientation of phases became more pronounced with ageing time.A unified,physics-based creep-ageing constitutive model,accounting for the orientation of precipitation,was developed for both tensile and compressive stress conditions.The predicted results were in good agreement with the experimental data.These findings,along with the developed model,provide a theoretical and simulation basis for precise creep-ageing forming of components under complex stresses. 展开更多
关键词 2219 aluminum alloy creep ageing tension compression mechanical properties constitutive modeling
在线阅读 下载PDF
Permeability evolution mechanism in deep coalbed methane extraction:Considering the competitive effects of adsorption-induced swelling,creep,and aperture compression
9
作者 Yanhui Yang Tao Zhang +7 位作者 Jianchun Guo Xiuqin Lu Zongyuan Li Jie Zeng Zhihong Zhao Yiqun Wang Dan Guo Jingwen Li 《Natural Gas Industry B》 2025年第4期416-431,共16页
During gas extraction from deep coal,the rock endures high effective stress,with both the time-dependent deformation and anisotropic structure of the rock controlling the permeability evolution.To reveal this phenomen... During gas extraction from deep coal,the rock endures high effective stress,with both the time-dependent deformation and anisotropic structure of the rock controlling the permeability evolution.To reveal this phenomenon,a numerical simulation framework of the finite volume method and transient embedded discrete fracture model is proposed to establish a new constitutive model that links poroelastoplastic deformation,adsorption-induced swelling,and aperture compression.From this model,anisotropic permeability tensors were derived to further achieve the simulation of coevolution.Meanwhile,our permeability model was verified against the measured permeability data,and the history match of the numerical model showed better results where the mismatch was less than 5%.The results indicate that(1)the long-term permeability evolution clearly showed the competitive effects of multiple deformation mechanisms,which involves three stages:compaction-dominated decline,adsorption-dominated rebound,and creep-controlled loss.(2)The increased number of compressible cleats/fractures accelerated the initial permeability decline,while the increased desorption-induced strain promoted faster rebound and enhancement and higher viscosity coefficients enhanced the creep effect,which led to significant long-term permeability loss.(3)Massive hydraulic fracturing created a larger drainage area,accelerating methane desorption and causing sharp permeability rebound with reduced residual gas,which shows that the permeability remained higher than the initial values even after the extensive extraction via the fractured horizontal wells.The permeability evolution mechanisms displayed varying properties,such as coal rank and burial depth,and distinct characteristics.A precise understanding of multiple competitive stress effects is crucial for optimizing coalbed methane extraction techniques and improving recovery efficiency. 展开更多
关键词 Deep coalbed methane Adsorption-induced swelling Unsteady creep Aperture compression FVM-tEDFM Permeability evolution
在线阅读 下载PDF
Tension and compression creep aging asymmetry of a pre-treated Al-Zn-Mg-Cu alloy
10
作者 LAO Shan-feng XU Ke-ren +6 位作者 WANG Tao ZHAN Li-hua XU Yong-qian HUANG Ming-hui MA Bo-lin YANG You-liang GUO Wen-xing 《Journal of Central South University》 2025年第1期1-20,共20页
The asymmetric creep aging behaviors of a pre-treated Al-Zn-Mg-Cu alloy under high and low stresses have been investigated for high precision creep age forming application of aluminum integral panels.With the increase... The asymmetric creep aging behaviors of a pre-treated Al-Zn-Mg-Cu alloy under high and low stresses have been investigated for high precision creep age forming application of aluminum integral panels.With the increase of applied stress,the creep strains under the tensile stresses are higher than those of compressive stresses and the asymmetry of creep strain is more obvious.However,the mechanical properties of tensile stress creep aged samples are lower than those of compressive stress creep aged samples.Dislocation density,dislocation moving velocity and the proportion of precipitates directly lead to the asymmetry of creep strain and mechanical properties after tensile-compressive creep aging process.In addition,the tensile and compressive stresses have little effect on the width of the precipitate-free zone(PFZ).It indicates that in the high stress creep age forming process of the pretreated Al-Zn-Mg-Cu alloy,the tensile stress promotes the dislocation motion to obtain a better creep strain but weakens its mechanical properties compared with the compressive stress.In the field of civil aviation aircraft component manufacturing,the introduction of tension and compression stress asymmetry into the creep constitutive model may improve the accuracy of creep age forming components. 展开更多
关键词 Al-Zn-Mg-Cu alloy mechanical properties creep ageing tension and compression asymmetry dislocation density
在线阅读 下载PDF
Crashworthiness design of concave polygonal CFRP tubes for eVTOL applications under multi-angle compression loading
11
作者 Jie Fu Qiang Liu +1 位作者 Xiao Liu Yanqin Zhang 《Defence Technology(防务技术)》 2025年第10期100-115,共16页
The electric vertical takeoff and landing(e VTOL)aircraft shows great potential for rapid military personnel deployment on the battlefield.However,its susceptibility to control loss,complex crashes,and extremely limit... The electric vertical takeoff and landing(e VTOL)aircraft shows great potential for rapid military personnel deployment on the battlefield.However,its susceptibility to control loss,complex crashes,and extremely limited bottom energy-absorbing space demands higher comprehensive crashworthiness of its subfloor thin-walled structures.This study investigated the energy absorption capacity of novel concave polygonal carbon fiber reinforced plastics(CFRP)tubes under multi-angle collisions.Quasistatic compression experiments and finite element simulations were conducted to assess the failure mode and energy absorption.The influences of cross-section shapes,loading conditions,and geometry parameters on crashworthiness metrics were further analyzed.The results revealed that,under the similar weight,concave polygonal tubes exhibited superior energy absorption under axial loads compared to regular polygonal and circular tubes,attributed to the increased number of axial splits.However,both regular and concave polygonal tubes,particularly the latter,demonstrated reduced oblique energy absorption compared to traditional square tubes with the increasing ratio of SEA value decreased from 20%-16%.Notably,this reduction in energy absorption can be compensated for by the implementation of inward and outward crusher plugs,and with them,the concave polygonal tubes demonstrated outstanding overall crashworthiness performance under multiple loading conditions.This concave cross-sectional design methods could serve as a guidance for the development of the eVTOL subfloor. 展开更多
关键词 Carbon fiber reinforced plastics Concave polygonal tubes Multi-angle compression loading Energy absorption performance
在线阅读 下载PDF
Microstructure evolution and bonding mechanism of hot compression bonding joint of reduced activation ferritic/martensitic steel
12
作者 Rui-jiang Chang Guo-wang Liu +3 位作者 Qian-ying Guo Ran Ding Chen-xi Liu Yong-chang Liu 《Journal of Iron and Steel Research International》 2025年第7期2027-2038,共12页
Interfacial evolution and bonding mechanism of reduced activation ferritic/martensitic(RAFM)steel were systematically investigated through a series of hot compression tests conducted at various strains(0.15-0.8),strai... Interfacial evolution and bonding mechanism of reduced activation ferritic/martensitic(RAFM)steel were systematically investigated through a series of hot compression tests conducted at various strains(0.15-0.8),strain rates(0.001-1 s^(-1)),and temperatures(950-1050℃).Interfacial microstructural analysis revealed that plastic deformation of surface asperities effectively removes interfacial voids,and the evolution of dynamic recrystallization(DRX)aids in achieving a joint characterized by homogeneously refined microstructure and adequate interfacial grain boundary(IGB)migration.Electron backscattered diffraction analysis demonstrated that the continuous dynamic recrystallization,characterized by progressive subgrain rotation,is the prevailing DRX nucleation mechanism in RAFM steel during hot compression bonding.During DRX evolution,emerging DRX grains in the interfacial region expand into adjacent areas,transforming T-type triple junction grain boundaries into equal form,and resulting in a serrated and intricate interface.Elevated temperatures and strains,coupled with reduced strain rates,augment DRX grain nucleation and IGB migration,thus enhancing RAFM joint quality with regard to the interface bonding ratio and the interface migration ratio. 展开更多
关键词 Hot compression bonding Reduced activation ferritic/martensitic steel Dynamic recrystallization Interfacial microstructure Bonding mechanism
原文传递
Hot compression bonding of a 9Cr oxide dispersion strengthened alloy and a 9Cr re duce d-activation ferritic/martensitic alloy
13
作者 Jianqiang Wang Bin Xu +2 位作者 Mingyue Sun Xiang Liu Dianzhong Li 《Journal of Materials Science & Technology》 2025年第4期225-237,共13页
An innovative method of hot compression bonding is proposed in this work for the joining of 9Cr oxide dispersion strengthened(ODS)alloy and 9Cr reduced-activation ferritic/martensitic(RAFM)alloy.The microstructural ev... An innovative method of hot compression bonding is proposed in this work for the joining of 9Cr oxide dispersion strengthened(ODS)alloy and 9Cr reduced-activation ferritic/martensitic(RAFM)alloy.The microstructural evolution of the bonding interface was investigated by scanning electron microscopy(SEM),electron back-scattered diffraction(EBSD),and transmission electron microscopy(TEM).The results verify that the pinning effect of nano-oxides particles(NPs)in 9Cr ODS alloy significantly enhances its dynamic recrystallization(DRX)temperature and deformation resistance.Continuous DRX(CDRX)first occurred on the 9Cr RAFM alloy side,and the areas near the bonding interface were composed of recrystallized grains.With increasing strain,CDRX also showed up on the 9Cr ODS alloy side.Inevitable slight oxidation occurred at the bonding interface during the hot compression bonding(HCB)process,and the interfacial oxides transformed from initial coarse CrO to TiO and finally to Y-Ti-O nanoparticles with sizes comparable to pre-existing NPs dispersed in the 9Cr ODS alloy matrix.It is believed that interfacial oxide transformation and grain structure consistency contributed to the excellent interface healing of the two dissimilar alloy pieces.The effectiveness of the bonding was tested by tensile tests and fractography analysis,revealing that ideal metallurgical bonding could be achieved under a controlled strain level of 10%at 800℃ followed by soaking at 1000℃ for 4 h. 展开更多
关键词 Hot compression bonding Oxide dispersion strengthened alloy Reduced-activation ferritic/martensitic alloy Dynamic recrystallization Interfacial oxides
原文传递
钒含量对磨片用7Cr17不锈钢组织及力学性能的影响研究
14
作者 候丽悦 牛江廷 +3 位作者 汪会秋 孙震兆 牟相忠 赵平 《中国造纸》 北大核心 2026年第1期157-164,共8页
本研究探究了钒(V)含量对磨片用7Cr17不锈钢显微组织、析出碳化物、力学性能的影响。通过金相显微镜、扫描电子显微镜、洛氏硬度计等对试样进行检测和分析,确定了适宜的V添加量。结果表明,不锈钢组织由板条马氏体、碳化物和残余奥氏体... 本研究探究了钒(V)含量对磨片用7Cr17不锈钢显微组织、析出碳化物、力学性能的影响。通过金相显微镜、扫描电子显微镜、洛氏硬度计等对试样进行检测和分析,确定了适宜的V添加量。结果表明,不锈钢组织由板条马氏体、碳化物和残余奥氏体构成。随着V的添加,组织中碳化钒(VC)含量增加,弥散程度增大,但当V含量增至0.5%后,碳化物出现聚集长大现象。细小弥散的VC碳化物可有效阻碍位错运动,提升不锈钢的洛氏硬度;添加少量V时,细小弥散的VC可以钉扎位错,延缓裂纹萌生,提高试样的冲击韧性;然而,过量添加V会导致碳化物在晶界或晶内大量析出,造成应力集中,使材料脆化。加入0.15%~0.3%的V时,VC弥散程度高,不锈钢综合性能最好。 展开更多
关键词 7cr17不锈钢 VC碳化物 微观组织 冲击韧性
在线阅读 下载PDF
淬火介质对1Cr17Ni2调质钢组织与性能的影响
15
作者 王军 李智勇 +4 位作者 巢昺轩 王豪 郭楠 应俊龙 张韶佳 《金属热处理》 北大核心 2026年第1期95-102,共8页
采用光学显微镜(OM)、扫描电镜(SEM)等表征手段,结合拉伸试验及冲击试验,系统研究了不同淬火介质(油、水、5%、10%和15%浓度NaCl水溶液)对1Cr17Ni2马氏体不锈钢调质处理(1030℃×80 min+500℃×80 min)后组织演变及力学性能的... 采用光学显微镜(OM)、扫描电镜(SEM)等表征手段,结合拉伸试验及冲击试验,系统研究了不同淬火介质(油、水、5%、10%和15%浓度NaCl水溶液)对1Cr17Ni2马氏体不锈钢调质处理(1030℃×80 min+500℃×80 min)后组织演变及力学性能的影响。结果表明,不同淬火介质处理试样的显微组织均由回火马氏体基体、弥散分布的细小碳化物及少量高温铁素体构成,其中NaCl水溶液淬火试样的马氏体板条更细小。与传统油淬相比,NaCl水溶液淬火试样的强度更高,但冲击性能较差。当采用15%NaCl水溶液作为淬火介质时,力学性能数据离散度显著降低,1Cr17Ni2钢表现出更优异的性能稳定性。 展开更多
关键词 1cr17NI2钢 淬火介质 力学性能 微观组织
原文传递
Unanticipated strengthening of Cu−19Ni−6Cr−7Mn alloy achieved by synergistic effect of spinodal decomposition and multiscale precipitation
16
作者 Shao-lin LI Ying-ying ZHU +3 位作者 Xiu-hua GUO Qiang-song WANG Wen-ming SUN Ke-xing SONG 《Transactions of Nonferrous Metals Society of China》 2026年第1期183-202,共20页
The microstructural evolution of Cu−19Ni−6Cr−7Mn alloy during aging treatment was investigated.After aging for 120 min at 500℃,the alloy exhibited excellent mechanical properties,including a tensile strength of 978 M... The microstructural evolution of Cu−19Ni−6Cr−7Mn alloy during aging treatment was investigated.After aging for 120 min at 500℃,the alloy exhibited excellent mechanical properties,including a tensile strength of 978 MPa and an elastic modulus of 145.8 GPa.After aging for 240 min at 500℃,the elastic modulus of the alloy reached 149.5 GPa,which was among the highest values reported for Cu alloys.It was worth mentioning that the tensile strength increased rapidly from 740 to 934 MPa after aging for 5 min at 500℃,which was close to the maximum tensile strength(978 MPa).Analysis of the underlying strengthening mechanisms and phase transformation behavior revealed that the Cu−19Ni−6Cr−7Mn alloy underwent spinodal decomposition and DO_(22) ordering during the first 5 min of aging at 500℃,and L1_(2) ordered phases and bcc-Cr precipitates appeared.Therefore,the enhanced mechanical properties of the Cu−19Ni−6Cr−7Mn alloy can be attributed to the stress field generated by spinodal decomposition and the presence of nanoscale ordered phase and Cr precipitates. 展开更多
关键词 Cu−Ni−cr−Mn alloy mechanical properties nanoscale precipitates spinodal decomposition elastic modulus
在线阅读 下载PDF
热处理工艺对3D打印20Cr13Mo模具钢组织与性能的影响
17
作者 潘诗良 刘庆冬 +1 位作者 王泽民 许媛媛 《金属热处理》 北大核心 2026年第1期236-240,共5页
利用选择性激光熔化(SLM)技术,即3D打印技术,制备了20Cr13Mo模具钢,并对其进行不同工艺的热处理。利用扫描电镜、硬度测试和冲击测试对其组织与性能进行表征。结果表明,打印态20Cr13Mo模具钢组织主要为针片状高碳马氏体和残留奥氏体,回... 利用选择性激光熔化(SLM)技术,即3D打印技术,制备了20Cr13Mo模具钢,并对其进行不同工艺的热处理。利用扫描电镜、硬度测试和冲击测试对其组织与性能进行表征。结果表明,打印态20Cr13Mo模具钢组织主要为针片状高碳马氏体和残留奥氏体,回火后马氏体组织相对较粗,奥氏体组织比例增大。淬火和深冷处理结合后,钢的组织为板条马氏体。打印态20Cr13Mo模具钢硬度以及冲击吸收能量均较低,增加回火后其硬度略微降低,但冲击吸收能量大幅提升。淬火处理后,钢的硬度大幅提升,但冲击吸收能量最低。相对打印态,淬火后增加深冷处理,不仅能提高硬度,还可提升冲击吸收能量。经1030℃淬火+-196℃深冷+250℃回火后,20Cr13Mo模具钢具有最佳的综合力学性能。 展开更多
关键词 选择性激光熔化 20cr13Mo模具钢 淬火 深冷处理 回火 组织 力学性能
原文传递
系统性红斑狼疮患者血清CX3CR1、CCL20表达及其与病情程度的关系
18
作者 尹秀杉 张兵 +2 位作者 朱凤丹 谭雪玲 何仁栋 《河北医科大学学报》 2026年第1期118-124,共7页
目的探讨系统性红斑狼疮(systemic lupus erythematosus,SLE)患者血清CX3C趋化因子受体1(CX3C chemokine receptor 1,CX3CR1)、趋化因子配体20[chemokine(c-cmotif)ligand 20,CCL20]表达及其与病情程度的关系。方法纳入2020年8月—2024... 目的探讨系统性红斑狼疮(systemic lupus erythematosus,SLE)患者血清CX3C趋化因子受体1(CX3C chemokine receptor 1,CX3CR1)、趋化因子配体20[chemokine(c-cmotif)ligand 20,CCL20]表达及其与病情程度的关系。方法纳入2020年8月—2024年8月期间于首都医科大学附属北京安贞医院南充医院确诊的SLE患者150例作为研究组,按照系统性红斑狼疮疾病活动指数(systemic lupus erythematosus disease activity index,SLEDAI)评分,分为轻度活动组(5分≤SLEDAI≤9分)53例、中度活动组(9分14分)47例;另选择同期于健康管理中心进行全面体检的健康受试者150名作为对照组。采用酶联免疫吸附测定法(enzyme-linked immunosorbent assay,ELISA)检测血清CX3CR1和CCL20的表达水平,比较研究组和对照组血清CX3CR1、CCL20表达水平及临床指标;比较不同病情程度SLE患者血清CX3CR1、CCL20表达水平;Pearson法分析SLE患者血清CX3CR1、CCL20与临床指标间的关系;采用Logistic回归分析SLE疾病严重程度的影响因素;受试者工作特征曲线(receiver operating characteristic curve,ROC)曲线评估血清CX3CR1、CCL20单独及联合检测对SLE病情程度的预测效能。结果研究组白细胞计数(3.24±0.51)×10^(9)/L、血红蛋白(92.75±10.68)g/L、淋巴细胞计数(0.82±0.17)×10^(9)/L、血小板(109.56±20.03)×10^(9)/L、补体C3(0.65±0.14)g/L及补体C4(0.24±0.04)g/L水平均低于对照组(P<0.05);血清CX3CR1(7.11±1.62)μg/L、CCL20(18.17±2.42)ng/L、红细胞沉降率(5.41±1.22)mm/1 h及抗dsDNA抗体(1.58±0.47)U/L表达水平均显著高于对照组(P<0.05)。重度活动组血清CX3CR1(13.78±3.39)μg/L、CCL20(43.47±7.06)ng/L表达水平均显著高于轻度活动组[(7.31±1.54)μg/L、(27.96±4.15)ng/L]和中度活动组[(9.19±2.18)μg/L、(38.68±6.96)ng/L](P<0.05),中度活动组血清CX3CR1及CCL20表达水平均显著高于轻度活动组(P<0.05)。Pearson相关性结果显示,血清CX3CR1、CCL20与红细胞沉降率(r=0.408、0.510,均P<0.05)、抗dsDNA抗体(r=0.435、0.423,均P<0.05)呈正相关,与白细胞计数(r=―0.417、―0.502,均P<0.05)、血红蛋白(r=―0.435、―0.406,均P<0.05)、淋巴细胞计数(r=―0.610、―0.421,均P<0.05)、血小板(r=―0.636、―0.464,均P<0.05)、补体C3(r=―0.406、―0.624,均P<0.05)及补体C4(r=―0.421、均P<0.05)呈负相关。Logistic回归分析显示,抗dsDNA抗体、补体C3、补体C4、CX3CR1及CCL20均为SLE患者病情严重程度的影响因素(P<0.05)。ROC曲线结果显示,血清CX3CR1、CCL20评估SLE病情程度的曲线下面积(area under curve,AUC)分别为0.785(95%CI:0.733~0.837)、0.761(95%CI:0.707~0.816),敏感度分别为72.09%、68.72%,特异度分别为72.73%、76.04%,CX3CR1、CCL20联合评估SLE病情程度的AUC为0.856(95%CI:0.814~0.898),敏感度为80.72%,特异度为81.75%。结论SLE患者血清CX3CR1、CCL20表达上调,CX3CR1、CCL20与SLE疾病严重程度有关,且二者上升是影响SLE患者病情程度的独立危险因素,CX3CR1、CCL20评估SLE的AUC均较高,血清CX3CR1、CCL20可作为评估SLE的辅助指标。 展开更多
关键词 红斑狼疮 系统性 CX3cr1 CCL20
暂未订购
上一页 1 2 250 下一页 到第
使用帮助 返回顶部