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High-temperature oxidation behavior of a cast Ti-47.5Al-2.5V-1.0Cr-0.2Zr alloy 被引量:1
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作者 Xue-jian Lin Hong-jun Huang +4 位作者 Xiao-guang Yuan Yin-xiao Wang Bo-wen Zheng Xiao-jiao Zuo Ge Zhou 《China Foundry》 SCIE CAS 2022年第5期443-454,共12页
The oxidation behavior of the Ti-47.5Al-2.5V-1.0Cr-0.2Zr alloy at 900℃ was investigated at different oxidation times(5,20,60 and 100 h).The results show that the total weight gain of the alloy after 100 h at 900℃ ox... The oxidation behavior of the Ti-47.5Al-2.5V-1.0Cr-0.2Zr alloy at 900℃ was investigated at different oxidation times(5,20,60 and 100 h).The results show that the total weight gain of the alloy after 100 h at 900℃ oxidation is 9.1 g·m^(-2),and the oxidation rate decreases with oxidation time.The oxides on the alloy surface are mainly TiO_(2) and Al_(2)O_(3).At the beginning of oxidation(5 h),the oxide film is relatively complete,thin,and the interface between the oxide layer and the matrix is virtually flat.At the end of oxidation(100 h),the thickness of the oxide film is expanded,cracking and spalling occur,and the spalling form is intra-film spalling.At the same time,oxygen is mainly distributed in the oxide film and the oxygen content in the alloy substrate is reduced,confirming that the TiAl alloy has a certain oxidation stability at 900℃.From the outer surface of the oxide layer to the matrix,the TiO_(2) content increases and the Al_(2)O_(3) content decreases.Oxidation proceeds to completion in this system via the dissolution and diffusion of O atom. 展开更多
关键词 cast TiAl alloy high temperature oxidation oxidation film oxidation behavior
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Effect of doping aluminum and yttrium on high-temperature oxidation behavior of Ni-11Fe-10Cu alloy 被引量:4
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作者 程新华 范磊 +2 位作者 刘莉 杜开发 汪的华 《Journal of Rare Earths》 SCIE EI CAS CSCD 2016年第11期1139-1147,共9页
Aiming to develop materials for construction of the set-up and electrode of high-temperature molten salt reactors, the effect of Al and Y on the high-temperature oxidation behavior of Ni-11Fe-10Cu at 750 and 950 °... Aiming to develop materials for construction of the set-up and electrode of high-temperature molten salt reactors, the effect of Al and Y on the high-temperature oxidation behavior of Ni-11Fe-10Cu at 750 and 950 °C in air were investigated. The oxidation kinetics of Ni-11Fe-10Cu alloy followed parabolic law at 750 °C without spallation and linear law at 950 °C with severe spallation, while that of Ni-11Fe-10Cu-6Al-3Y alloy followed parabolic law at 750 and 950 °C without spallation. The parabolic rate constant (kp) of Ni-11Fe-10Cu was smaller than that of Ni-11Fe-10Cu-6Al-3Y at 750 °C. The oxide scale formed on Ni-11Fe-10Cu at 750 °C was composed of a CuO outer layer, a NiFe2O4 middle layer and a NiO inner layer. The oxide scale formed on Ni-11Fe-10Cu-6Al-3Y at 750 °C was also composed of the similar triplex layers in addition to an internal oxidation zone containing Al, Ni and Cu oxide and the microstructure of the scale changed with increasing temperature. Although the doping Al and Y could improve the adherence of oxide scale, it could aggravate the extent of internal oxidation. Based on the combination of X-ray diffraction (XRD), scanning electron mi-croscopy/energy dispersive spectroscopy (SEM/EDX) analysis, the microstructure and growth mechanism of the multi-layer oxide scale was studied and the effect of doping Al and Y on the oxidation behavior of Ni-11Fe-10Cu alloy was also discussed. 展开更多
关键词 Ni-Fe-Cu alloy DOPING rare earths high-temperature oxidation behavior multi-layer oxide scale
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High-temperature oxidation behavior of CeO_2-SiO_2/Ni-W-P composites 被引量:3
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作者 徐瑞东 王军丽 +1 位作者 郭忠诚 王华 《中国有色金属学会会刊:英文版》 EI CSCD 2009年第5期1190-1195,共6页
Ni-W-P matrix composites containing CeO2 and SiO2 nano-particles were prepared on common carbon steel surface by means of pulse electrodeposition,and the high-temperature oxidation behavior was investigated.The result... Ni-W-P matrix composites containing CeO2 and SiO2 nano-particles were prepared on common carbon steel surface by means of pulse electrodeposition,and the high-temperature oxidation behavior was investigated.The results show that when the oxidation time is controlled in 1 h,oxidation kinetics curve between oxidation mass gain rate and oxidation temperature of CeO2-SiO2/Ni-W-P composites accords with the index increasing law.When the oxidation temperature is controlled at 300℃,the kinetics curve between oxidation mass gain rate and oxidation time accords with the linear increasing law.The composites as-deposited are in the amorphous state and turn into the crystal state at 400℃.The microstructures of oxidation film on the composites will change from the compact state to the loose state with increasing oxidation temperature to 800℃.They are still continuous and compact,and there are no crackle,strip and falling-out.CeO2 and SiO2 nano-particles co-deposited into Ni-W-P alloy can improve the high-temperature oxidation resistance. 展开更多
关键词 高温氧化行为 纳米复合材料 SIO2纳米粒子 高温抗氧化性能 脉冲电沉积 CeO2 氧化时间 温度控制
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Interfacial Behavior of Sulfur and Yttrium in Yttrium Modified Ni _3Al Based Alloy IC6 during High Temperature Oxidation Process 被引量:2
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作者 肖程波 韩雅芳 《Journal of Rare Earths》 SCIE EI CAS CSCD 2000年第2期124-127,共4页
The interfacial behavior of sulfur and yttrium in the yttrium modified Ni 3Al based alloy IC6 during oxidation at 1100 ℃ was analyzed by X ray line scan of electron probe microstructural analysis(EPMA). The resul... The interfacial behavior of sulfur and yttrium in the yttrium modified Ni 3Al based alloy IC6 during oxidation at 1100 ℃ was analyzed by X ray line scan of electron probe microstructural analysis(EPMA). The results show that the migration and segregation of sulfur to the interface between oxide scale and the substrate at high temperature is retarded owing to the presence of yttrium. This is attributed to the desulfurization by yttrium in the melt and the trapping of sulfur by yttrium rich phases during oxidation, which leads to improving the coherence between oxide scale and substrate. Another reason of increasing the high temperature oxidation resistance of alloy IC6 by the addition of yttrium is that yttrium migrates to the grain boundaries of oxides during oxidation and hence improve their strength. This results in the transformation of the oxide scale spallation cracks from intergranular cracks for alloy without yttrium to transgranular ones for yttrium modified alloy. 展开更多
关键词 rare earths SULFUR YTTRIUM Ni 3Al high temperature oxidation interfacial behavior
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Simultaneously improving mechanical properties and oxidation resistance of Ti-bearing high-entropy superalloys at intermediate temperature via silicon addition
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作者 Shaofei Liu Weicheng Xiao +9 位作者 Bo Xiao Jiang Ju Yinghao Zhou Yilu Zhao Zengbao Jiao Junhua Luan Qian Li Jinxiong Hou Ji-jung Kai Tao Yang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第26期30-41,共12页
Ti-bearing high-entropy superalloys(HESAs)often suffer from severe intergranular embrittlement and terrible oxidation degradation at intermediate temperatures.Here we showcase that minor Si addition can effectively mi... Ti-bearing high-entropy superalloys(HESAs)often suffer from severe intergranular embrittlement and terrible oxidation degradation at intermediate temperatures.Here we showcase that minor Si addition can effectively mitigate the intergranular embrittlement and improve the oxidation resistance of the a(Ni_(2)Co_(2)FeCr)_(92) Ti_(4)Al_(4) HESA at 700℃ simultaneously.Experimental analysis revealed that the intergranu-lar G phase induced by 2 at%Si addition can effectively suppress the inward diffusion of oxygen along grain boundaries at 700℃,thus enhancing the tensile ductility of the alloy from∼8.3%to∼13.4%.Be-sides,the 2 at%Si addition facilitated the formation of a continuous Al_(2)O_(3) layer during oxidation,con-tributing to a remarkable reduction in the growth rate of the oxide scale to a quarter of the Si-free HESA.Our results demonstrate that Si can be a favorable alloying element to design advanced HESAs with syn-ergistically improved thermal-mechanical performance. 展开更多
关键词 high-entropy superalloy Mechanical property oxidation behavior Intermediate temperature Silicon addition
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Effect of temperature on leaching behavior of copper minerals with different occurrence states in complex copper oxide ores 被引量:7
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作者 Gai-rong WANG Yuan-yuan LIU +3 位作者 Lin-lin TONG Zhe-nan JIN Guo-bao CHEN Hong-ying YANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第10期2192-2201,共10页
The effect of temperature on leaching behavior of copper minerals with different occurrence states in complex copper oxide ores was carried out by phase analysis means of XRD, optical microscopy and SEM-EDS. The resul... The effect of temperature on leaching behavior of copper minerals with different occurrence states in complex copper oxide ores was carried out by phase analysis means of XRD, optical microscopy and SEM-EDS. The results indicated that at ambient temperature, the easily leached copper oxide minerals were completely dissolved, while the bonded copper minerals were insoluble. At lukewarm temperature of 40℃, it was mainly the dissolution of copper in isomorphism state. With increasing temperature to 60℃, the copper leaching rate in the adsorbed state was significantly accelerated. In addition, when the temperature increased to 80℃, the isomorphic copper was completely leached, leaving 11.2% adsorbed copper un-leached. However, the copper in feldspar-quartz-copper-iron colloid state was not dissolved throughout the leaching process. Overall, the leaching rates of copper in different copper minerals decreased in the order: malachite, pseudo-malachite > chrysocolla > copper-bearing chlorite > copper-bearing muscovite > copper-bearing biotite > copper-bearing limonite > feldspar-quartz-copper-iron colloid. 展开更多
关键词 complex copper oxide ores occurrence state temperature leaching behavior copper minerals
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Exploring the Low-Temperature Oxidation Chemistry of Cyclohexane in a Jet-Stirred Reactor:an Experimental and Kinetic Modeling Study 被引量:4
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作者 Jia-biao Zou Wei Li +4 位作者 Li-li Ye Xiao-yuan Zhang Yu-yang Li Jiu-zhong Yang Fei Qi 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2018年第4期537-546,615,共11页
We report the investigation on the low-temperature oxidation of cyclohexane in a jet-stirred reactor over 500-742 K. Synchrotron vacuum ultraviolet photoionization mass spectrometry (SVUV-PIMS) was used for identify... We report the investigation on the low-temperature oxidation of cyclohexane in a jet-stirred reactor over 500-742 K. Synchrotron vacuum ultraviolet photoionization mass spectrometry (SVUV-PIMS) was used for identifying and quantifying the oxidation species. Major products, cyclic olefins, and oxygenated products including reactive hydroperoxides and high oxygen compounds were detected. Compared with n-alkanes, a narrow low-temperature window (-80 K) was observed in the low-temperature oxidation of cyclohexane. Besides, a kinetic model for cyclohexane oxidation was developed based on the CNRS model [Combust. Flame 160, 2319 (2013)], which can better capture the experimental results than previous models. Based on the modeling analysis, the 1,5-H shift dominates the crucial isomerization steps of the first and second O2 addition products in the low-temperature chain branching process of cyclohexane. The negative temperature coefficient behavior of cyclohexane oxidation results from the reduced chain branching due to the competition from chain inhibition and propagation reactions, i.e. the reaction between cyclohexyl radical and O2 and the de- composition of cyclohexylperoxy radical, both producing cyclohexene and HO2 radical, as well as the decomposition of cyclohexylhydroperoxy radical producing hex-5-en-l-al and OH radical. 展开更多
关键词 CYCLOHEXANE Low-temperature oxidation Synchrotron vacuum ultravioletphotoionization mass spectrometry Kinetic rnodel Negative temperature coefficient behavior
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Microstructure and Oxidation Behavior of ZrB_(2)-SiC Ceramics Fabricated by Tape Casting and Reactive Melt Infiltration 被引量:2
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作者 TAN Min CHEN Xiaowu +5 位作者 YANG Jinshan ZHANG Xiangyu KAN Yanmei ZHOU Haijun XUE Yudong DONG Shaoming 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2024年第8期955-964,共10页
ZrB_(2)-based ceramics typically necessitate high temperature and pressure for sintering,whereas ZrB_(2)-SiC ceramics can be fabricated at 1500℃using the process of reactive melt infiltration with Si.In comparison to... ZrB_(2)-based ceramics typically necessitate high temperature and pressure for sintering,whereas ZrB_(2)-SiC ceramics can be fabricated at 1500℃using the process of reactive melt infiltration with Si.In comparison to the conventional preparation method,reactive synthesis allows for the more facile production of ultra-high temperature ceramics with fine particle size and homogeneous composition.In this work,ZrSi_(2),B4C,and C were used as raw materials to prepare ZrB_(2)-SiC via combination of tape casting and reactive melt infiltration herein referred to as ZBC ceramics.Control sample of ZrB_(2)-SiC was also prepared using ZrB_(2)and SiC as raw materials through an identical process designated as ZS ceramics.Microscopic analysis of both ceramic groups revealed smaller and more uniformly distributed particles of the ZrB_(2)phase in ZBC ceramics compared to the larger particles in ZS ceramics.Both sets of ceramics underwent cyclic oxidation testing in the air at 1600℃for a cumulative duration of 5 cycles,each cycle lasting 2 h.Analysis of the oxidation behavior showed that both ZBC ceramics and ZS ceramics developed a glassy SiO_(2)-ZrO_(2)oxide layer on their surfaces during the oxidation.This layer severed as a barrier against oxygen.In ZBC ceramics,ZrO_(2)is finely distributed in SiO_(2),whereas in ZS ceramics,larger ZrO_(2)particles coexist with glassy SiO_(2).The surface oxide layer of ZBC ceramics maintains a dense structure because the well-dispersed ZrO_(2)increases the viscosity of glassy SiO_(2),preventing its crystallization during the cooling.Conversely,some SiO_(2)in the oxide layer of ZS ceramics may crystallize and form a eutectic with ZrO_(2),leading to the formation of ZrSiO_(4).This leads to cracking of the oxide layer due to differences in thermal expansion coefficients,weakening its barrier effect.An analysis of the oxidation resistance shows that ZBC ceramics exhibit less increase in oxide layer thickness and mass compared to ZS ceramics,suggesting superior oxidation resistance of ZBC ceramics. 展开更多
关键词 ultra-high temperature ceramic ZrB_(2)-SiC oxidation behavior reactive melt infiltration
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Insight into the effect of Ti substitutions on the static oxidation behavior of (Hf,Ti)C at 2500℃ 被引量:2
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作者 Shiyan Chen Zhaoke Chen +6 位作者 Jinming Wang Yi Zeng Weilong Song Xiang Xiong Xingchao Li Tongqi Li Yichen Wang 《Advanced Powder Materials》 2024年第2期36-46,共11页
Hf-based carbides are highly desirable candidate materials for oxidizing environments above 2000℃.However,the static oxidation behavior at their potential service temperatures remains unclear.To fill this gap,the sta... Hf-based carbides are highly desirable candidate materials for oxidizing environments above 2000℃.However,the static oxidation behavior at their potential service temperatures remains unclear.To fill this gap,the static oxidation behavior of(Hf,Ti)C and the effect of Ti substitutions were investigated in air at 2500℃ under an oxygen partial pressure of 4.2 kPa.After oxidation for 2000 s,the thickness of the oxide layer on the surface of(Hf,Ti)C bulk ceramic is reduced by 62.29%compared with that on the HfC monocarbide surface.The dramatic improvement in oxidation resistance is attributed to the unique oxide layer structure consisting of various crystalline oxycarbides,HfO_(2),and carbon.The Ti-rich oxycarbide((Ti,Hf)C_(x)O_(y))dispersed within HfO_(2) formed the major structure of the oxide layer.A coherent boundary with lattice distortion existed at the HfO2/(Ti,Hf)C_(x)O_(y) interface along the(111)crystal plane direction,which served as an effective oxygen diffusion barrier.The Hfrich oxycarbide((Hf,Ti)CxOy)together with(Ti,Hf)C_(x)O_(y),HfO_(2),and precipitated carbon constituted a dense transition layer,ensuring favorable bonding between the oxide layer and the matrix.The Ti content affects the oxidation resistance of(Hf,Ti)C by determining the oxide layer's phase distribution and integrity. 展开更多
关键词 Ultra-high temperature ceramics(UHTCs) (Hf Ti)C Static oxidation behavior Hf-based carbides oxidation mechanism
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Microwave absorbing characteristics and temperature increasing behavior of basic cobalt carbonate in microwave field
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作者 刘秉国 彭金辉 +4 位作者 张利波 SRINIVASAKANNAN C 黄铭 张泽彪 郭胜惠 《Journal of Central South University》 SCIE EI CAS 2010年第6期1211-1215,共5页
The microwave absorbing characteristics of basic cobalt carbonate,cobalt oxide(Co3O4),and the mixture of basic cobalt carbonate and cobalt oxide were investigated by means of microwave cavity perturbation,their temper... The microwave absorbing characteristics of basic cobalt carbonate,cobalt oxide(Co3O4),and the mixture of basic cobalt carbonate and cobalt oxide were investigated by means of microwave cavity perturbation,their temperature increasing curves were measured,and their ability to absorb microwave energy was also assessed based on the temperature increasing behavior of the material exposed to microwave field.Analyses of spectrum attenuation and relative frequency shift show that basic cobalt carbonate has weak capability to absorb microwave energy,while cobalt oxide has very strong capability to absorb microwave energy.It is feasible to thermally decompose basic cobalt carbonate though addition of small amount of cobalt oxide in microwave fields.The capability to absorb microwave energy of sample increases with an increase in mixing ratio of Co3O4. 展开更多
关键词 basic cobalt carbonate cobalt oxide (Co3O4) MICROWAVE temperature increasing behavior absorption
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High Temperature Properties of Discontinuously Reinforced Titanium Matrix Composites:A Review 被引量:4
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作者 Lin Geng Lujun Huang 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2014年第5期787-797,共11页
Further improvement on high temperature durability is one of the most important aims except for high specific strength, high specific stiffness, and excellent wear resistance, to design and fabricate discontinuously r... Further improvement on high temperature durability is one of the most important aims except for high specific strength, high specific stiffness, and excellent wear resistance, to design and fabricate discontinuously reinforced titanium matrix composites (DRTMCs). Their superior properties render them extensive application potential in aerospace and military industries due to the urgent demand for the materials with characteristics of lightweight, high strength, high stiffness and high temperature durability. With development on fabrication methods and room temperature properties, testing, characterizing, evaluating and further increasing high temperature properties of DRTMCs are becoming more and more important to promote their applications. This review provides insights and comprehensions on the high temperature tensile properties, superplastic tensile properties, creep behaviors, and high temperature oxidation behaviors of DRTMCs, 展开更多
关键词 Titanium matrix composites High temperature tensile properties Creep behaviors oxidation behaviors SUPERPLASTICITY
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Improvement in oxidation resistance of Cantor alloy through microstructure tailoring
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作者 Bao-lin Pang Man Wang +2 位作者 Yue-gang Shen Xiao-li Xi Zuo-ren Nie 《China Foundry》 SCIE CAS 2022年第6期503-510,共8页
A method of improving the oxidation resistance of Cantor alloy through microstructure tailoring was revealed.Samples with distinctive microstructures were achieved by different annealing treatments on the cold-rolled ... A method of improving the oxidation resistance of Cantor alloy through microstructure tailoring was revealed.Samples with distinctive microstructures were achieved by different annealing treatments on the cold-rolled Cantor alloy.Oxidation test was then carried out on the various annealed samples at 800°C for 24 h in air.The oxidation behavior was evaluated in terms of oxidation rate,surface and cross-section microstructure characterization.Although stratified oxide layers including outer Mn_(2)O_(3) and inner Cr_(2)O_(3) were observed in all the annealed samples,the thickness of Mn_(2)O_(3) and Cr_(2)O_(3) layers was different.Also,the samples exhibited different oxidation rates.The results indicate that the oxidation resistance of various annealed samples is closely related with grain size as well as twin density. 展开更多
关键词 Cantor alloy annealing temperature grain size TWINS oxidation behavior
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Development and characterization of a high-Cr-content Co–Ni–Al–V–Ta–Cr superalloy:Microstructure,mechanical properties and oxidation resistance
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作者 Xiang Yu Yuechao Chen +7 位作者 Yong Lu Yihui Guo Jinbin Zhang Yixiong Huang Yupeng Zhang Jiajia Han Cuiping Wang Xingjun Liu 《International Journal of Minerals,Metallurgy and Materials》 2026年第3期908-920,共13页
Enhancing the oxidation resistance of Co-based superalloys by adding a high content of Cr,while simultaneously ensuring the stability of theγ/γ′phases,presents a significant challenge.This study evaluated the alloy... Enhancing the oxidation resistance of Co-based superalloys by adding a high content of Cr,while simultaneously ensuring the stability of theγ/γ′phases,presents a significant challenge.This study evaluated the alloying potential of Co–30Ni–10Al–5V–4Ta using the CALPHAD method,revealing promising characteristics.The developed Co–30Ni–10Al–5V–4Ta–12Cr alloy characterized by high Cr content andγ/γ′two-phase structure,demonstrating highγ′solvus temperature of 1139℃,low density of 8.48 g/cm^(3),minimalγ/γ′lattice misfit of +0.28%,high compressive yield strength of 651 MPa at 800℃,and excellent oxidation resistance with a weight gain of 6.5 mg/cm^(3)after 200 h at 1000℃.Examination of the oxidation behavior at 1000℃ revealed an oxide layer consisting of a porous outer CoO,NiO,and V_(3)O_(4)(CNV)oxide and a denser inner mixed oxide layer comprising CoO,NiO,and V_(3)O_(4)(CNV)oxide,Al_(2)O_(3),Cr_(2)O_(3),CoO,and NiO(CNAC)oxide,and TaO_(2),CoO,and NiO(CNT)oxide. 展开更多
关键词 Co-based superalloys compressive yield strength γ′solvus temperature γ′phase stability oxidation behavior
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High temperature mechanical retention characteristics and oxidation behaviors of the MoSi2(Cr5Si3)–RSiC composites prepared via a PIP-AAMI combined process 被引量:3
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作者 Peng-zhao GAO Lei CHENG +2 位作者 Zheng YUAN Xiao-pan LIU Han-ning XIAO 《Journal of Advanced Ceramics》 SCIE CSCD 2019年第2期196-208,共13页
In the present paper,MoSi2(Cr5Si3)–RSiC composites were prepared via a combination of precursor impregnation pyrolysis(PIP) and MoSi2-Si-Cr alloy active melt infiltration(AAMI) process. Composition, microstructure, m... In the present paper,MoSi2(Cr5Si3)–RSiC composites were prepared via a combination of precursor impregnation pyrolysis(PIP) and MoSi2-Si-Cr alloy active melt infiltration(AAMI) process. Composition, microstructure, mechanical retention characteristics, and oxidation behaviors of the composites at elevated temperature were studied. X-ray diffraction(XRD) pattern confirms that the composites mainly compose of 6 H–SiC, hexagonal MoSi2, and tetragonal Cr5Si3. Scanning electron microscopy(SEM) image reveals that nearly denseMoSi2(Cr5Si3)–RSiC composites exhibiting three-dimensionally(3D) interpenetrated network structure are obtained when infiltrated at 2173 K, and the interface combination of the composites mainly depends on the composition ratio of infiltrated phases. Oxidation weight gain rate of the composites is much lower than that of RSiC matrix, where MoSiCr2 possesses the lowest value of 0.1630 mg×cm-2, about 78% lower than that of RSiC after oxidation at 1773 K for 100 h. Also, it possesses the highest mechanical values of 139.54 MPa(flexural strength σf and RT) and 276.77 GPa(elastic modulus Ef and RT), improvement of 73.73% and 29.77% as compared with that of RSiC, respectively. Mechanical properties of the composites increase first and then decrease with the extension of oxidation time at 1773 K, due to the cooperation effect of surface defect reduction via oxidation reaction and thermal stress relaxation in the composites, crystal growth, and thickness increase of the oxide film. Fracture toughness of MoSiCr2 reaches 2.24 MPa·m1/2(1673 K), showing the highest improvement of 31.70% as compared to the RT value. 展开更多
关键词 MoSi2(Cr5Si3)–RSiC composites precursor IMPREGNATION pyrolysis and MoSi2-Si-Cr alloy active melt infiltration (PIP-AAMI) high temperature MECHANICAL characteristic oxidation behavior
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Design and preparation of an ultra-high temperature ceramic by in-situ introduction of Zr_(2)[Al(Si)]_(4)C_(5) into ZrB_(2)-SiC:Investigation on the mechanical properties and oxidation behavior
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作者 Lei YU Hui LIU +6 位作者 Yaohui FU Weijiang HU Zhefei WANG Quan LIU Bo WEI Jian YANG Tai QIU 《Journal of Advanced Ceramics》 SCIE CAS CSCD 2021年第5期1082-1094,共13页
Novel ZrB_(2)-matrix composites were designed and prepared by in-situ introducing SiC and Zr_(2)[Al(Si)]_(4)C_(5) simultaneously for the first time.The obtained composites were dense and showed good mechanical propert... Novel ZrB_(2)-matrix composites were designed and prepared by in-situ introducing SiC and Zr_(2)[Al(Si)]_(4)C_(5) simultaneously for the first time.The obtained composites were dense and showed good mechanical properties,especially the strength and toughness,706 MPa and 7.33 MPa·m^(1/2),respectively,coupled with high hardness of 21.3 GPa,and stiffness of 452 GPa.SiC and Zr_(2)[Al(Si)]_(4)C_(5) constituted a reinforcing system with synergistic effects including grain refinement,grain pull-out as well as crack branching,bridging,and deflection.Besides,the oxidation results of the composites showed that the oxidation kinetics followed the parabolic law at 1600℃,and the oxidation rate constants increased with the increase of Zr_(2)[Al(Si)]_(4)C_(5) content.The formation and evolution model of the oxidation structure was also investigated,and the oxide scale of the composite exhibited a three-layer structure. 展开更多
关键词 ZrB_(2)-matrix composites ultra-high temperature ceramics(UHTCs) mechanical properties strengthening and toughening mechanism oxidation behavior
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Composition design of oxidation resistant non-equimolar high-entropy ceramic materials:An example of(Zr–Hf–Ta–Ti)B_(2) ultra-high temperature ceramics
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作者 Yixiang Xu Leyangyang Yu +5 位作者 Tao Zhao Xin Zhong Ji-Xuan Liu Guo-Jun Zhang Yaran Niu Xuebin Zheng 《Journal of Advanced Ceramics》 CSCD 2024年第12期2087-2100,共14页
High-entropy borides(HEBs)are unable to serve in environments above 1800℃because of their poor oxidation resistance,which severely limits the application of these materials in ultra-high temperature environments.To s... High-entropy borides(HEBs)are unable to serve in environments above 1800℃because of their poor oxidation resistance,which severely limits the application of these materials in ultra-high temperature environments.To solve this problem,a series of HEBs with different ratios of metal elements were designed and prepared in this work,and their oxidation behavior above 1800℃was investigated.The results showed that non-equimolar HEBs possessed excellent oxidation ablation resistance relative to equimolar HEBs.The oxidized surface of(Zr_(1/4)Hf_(1/4)Ta_(1/4)Ti_(1/4))B_(2) formed craters due to excessive liquid products and violent volatilization,while(Hf_(4/5)Zr_(1/15)Ta_(1/15)Ti_(1/15))B_(2) formed a dense oxide layer after oxidation,which had the best antioxidant performance.The content and type of different metal elements significantly affect the oxidative behavior and products,and the ratio of liquid oxidation products plays a critical role in the antioxidant ability.An appropriate amount of liquid that fills the pores of the solid not only better blocks the diffusion channels of oxygen but also promotes the densification of the oxide layer through flow mass transfer.The oxidation of HEBs to generate corresponding high-entropy oxides avoids thermal mismatch between different oxides,reduces cracks and thermal stresses caused by phase transitions or grain growth,and further promotes the formation of a dense scale.This work provides a first look at the oxidation behaviors of non-equimolar HEBs in an ultra-high-temperature environment and proposes guiding rules for the design of HEB components(limiting the ratio of liquid oxidation products to the range of 10–27 mol%). 展开更多
关键词 high-entropy borides(HEBs) oxidation behavior ultra-high temperature environment component design
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Elucidating the role of preferential oxidation during ablation:Insights on the design and optimization of multicomponent ultra-high temperature ceramics 被引量:14
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作者 Ziming YE Yi ZENG +2 位作者 Xiang XIONG Qingbo WEN Huilin LUN 《Journal of Advanced Ceramics》 SCIE EI CAS CSCD 2022年第12期1956-1975,共20页
Multicomponent ultra-high temperature ceramics(UHTCs)are promising candidates for thermal protection materials(TPMs)used in aerospace field.However,finding out desirable compositions from an enormous number of possibl... Multicomponent ultra-high temperature ceramics(UHTCs)are promising candidates for thermal protection materials(TPMs)used in aerospace field.However,finding out desirable compositions from an enormous number of possible compositions remains challenging.Here,through elucidating the role of preferential oxidation in ablation behavior of multicomponent UHTCs via the thermodynamic analysis and experimental verification,the correlation between the composition and ablation performance of multicomponent UHTCs was revealed from the aspect of thermodynamics.We found that the metal components in UHTCs can be thermodynamically divided into preferentially oxidized component(denoted as MP),which builds up a skeleton in oxide layer,and laggingly oxidized component(denoted as ML),which fills the oxide skeleton.Meanwhile,a thermodynamically driven gradient in the concentration of MP and ML forms in the oxide layer.Based on these findings,a strategy for pre-evaluating the ablation performance of multicomponent UHTCs was developed,which provides a preliminary basis for the composition design of multicomponent UHTCs. 展开更多
关键词 multicomponent ceramics ultra-high temperature ceramics(UHTCs) preferential oxidation oxidation behavior ablation resistance
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AlWCrNiMo高熵涂层的阻扩散性能研究
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作者 张浩 李小亚 +5 位作者 王禄越 苏一凡 唐鹏 任耀 黄宏军 石倩 《表面技术》 北大核心 2025年第2期127-136,共10页
目的解决NiAlHf涂层和镍基高温合金元素互扩散造成的抗氧化性能衰减问题。方法采用磁控溅射技术在NiAlHf涂层与镍基高温合金N5之间沉积一层AlWCrNiMo高熵涂层作为扩散阻挡层,通过静态高温氧化测试和表征分析来评估涂层性能。结果AlWCrN... 目的解决NiAlHf涂层和镍基高温合金元素互扩散造成的抗氧化性能衰减问题。方法采用磁控溅射技术在NiAlHf涂层与镍基高温合金N5之间沉积一层AlWCrNiMo高熵涂层作为扩散阻挡层,通过静态高温氧化测试和表征分析来评估涂层性能。结果AlWCrNiMo具有单一的面心立方晶体结构,结构致密且与N5基体、NiAlHf面层结合良好。在1100℃恒温氧化25 h后,无扩散障试样(NN)出现了连续的γ'-Ni3Al贫铝区,而有扩散障试样(NAN)的扩散阻挡层较好地抑制了这种扩散现象。NAN试样的互扩散区+二次反应区(IDZ+SRZ)宽度为19.2μm,远小于NN试样的30μm。然而随着氧化时间的延长,NAN试样的阻挡性能发生衰减。50 h之后NAN试样的二次反应区(SRZ)宽度大于NN试样;100 h后扩散障被逐渐消耗变薄,200 h时彻底分解。结论1100℃恒温氧化25 h后,AlWCrNiMo高熵扩散障明显减缓了元素扩散,氧化50 h后,高熵合金中分解的W和Mo元素在一定程度上促进了TCP相的析出。在氧化初期,NAN试样优先实现了暂态氧化铝到稳态氧化铝的转变,为基体提供了良好的保护,其增重明显小于单一NN试样。 展开更多
关键词 抗高温氧化涂层 AlWCrNiMo高熵涂层 阻扩散行为 抗氧化性能 氧化增重 元素互扩散
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提高WC-Co硬质合金高温性能的研究进展
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作者 胡泽艺 肖银春 +2 位作者 范才河 林孝良 卢益玲 《包装学报》 2025年第5期11-23,共13页
WC-Co硬质合金凭借其卓越的硬度、耐磨性和高温力学性能,被广泛应用于航空航天、矿山开采及装备制造等对材料要求极为苛刻的领域。然而,随着高端制造业的不断进步,对材料性能的要求日益提高,WC-Co硬质合金在高温环境下的服役稳定性、抗... WC-Co硬质合金凭借其卓越的硬度、耐磨性和高温力学性能,被广泛应用于航空航天、矿山开采及装备制造等对材料要求极为苛刻的领域。然而,随着高端制造业的不断进步,对材料性能的要求日益提高,WC-Co硬质合金在高温环境下的服役稳定性、抗氧化性及高温力学性能面临严峻挑战。本文系统综述了影响WC-Co硬质合金高温性能的诸多因素,涵盖合金成分、高温氧化行为及力学性能退化机制等方面,详细分析了这些因素对材料组织稳定性和性能的具体影响规律。同时,重点探讨了提升硬质合金高温性能的主要研究方法与最新进展,包括热处理与烧结工艺的优化、晶粒细化技术的应用、黏结相的优化替代,以及添加稀有金属碳化物等策略。此外,还简要介绍了分子动力学模拟技术在WC-Co硬质合金研究中的实际应用。 展开更多
关键词 WC-CO硬质合金 氧化行为 高温性能 分子动力学
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N04400蒙乃尔合金热加工工艺研究
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作者 钱张信 《甘肃冶金》 2025年第6期118-122,共5页
N04400蒙乃尔合金在热加工过程中存在高温强度高、易氧化、导热性能特殊等问题,导致其热加工窗口窄、工艺控制难度大。基于热力学模拟软件系统计算了N04400合金的相图、析出相行为及导热系数,结合中试轧制试验,系统研究了其热加工特性... N04400蒙乃尔合金在热加工过程中存在高温强度高、易氧化、导热性能特殊等问题,导致其热加工窗口窄、工艺控制难度大。基于热力学模拟软件系统计算了N04400合金的相图、析出相行为及导热系数,结合中试轧制试验,系统研究了其热加工特性。研究结果表明,N04400合金的凝固模式为全奥氏体凝固,主要析出相为碳化物,未发现σ相等有害金属间化合物;其导热性能显著优于常规不锈钢,高温强度约为430不锈钢的1.5倍。基于上述研究,提出了控制加热温度(≤1200℃)、合理匹配低温钢种排产、优化轧制工艺参数等关键工艺措施,最终实现了N04400合金卷板的批量稳定生产,产品表面质量良好,为国内该合金的工业化热加工提供了重要技术支撑。 展开更多
关键词 蒙乃尔合金 相图 高温强度 导热性能 热轧工艺 氧化行为
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