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Novel Method for Evaluating the Aging of Aviation Turbine Engine Oils via High-Temperature Bearing Deposit Tests
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作者 Hao Lichun Yang He +3 位作者 Song Haiqing Zhou Yunfan He Jingjian Liang Yuxiang 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS CSCD 2024年第1期67-77,共11页
Aviation turbine engine oils require excellent thermal-oxidative stability because of their high-temperature environments.High-temperature bearing deposit testing is a mandatory method for measuring the thermal-oxidat... Aviation turbine engine oils require excellent thermal-oxidative stability because of their high-temperature environments.High-temperature bearing deposit testing is a mandatory method for measuring the thermal-oxidative performance of aviation lubricant oils,and the relevant apparatus was improved in the present study.Two different commercial aviation turbine engine oils were tested,one with standard performance(known as the SL oil)and the other with high thermal stability,and their thermal-oxidative stability characteristics were evaluated.After 100 h of high-temperature bearing testing,the SL oil was analyzed by using various analytical techniques to investigate its thermal-oxidative process in the bearing test,with its thermal-oxidative degradation mechanism also being discussed.The results indicate that the developed high-temperature bearing apparatus easily meets the test requirements of method 3410.1 in standard FED-STD-791D.The viscosity and total acid number(TAN)of the SL oil increased with the bearing test time,and various deposits were produced in the bearing test,with the micro-particles of the carbon deposits being sphere-like,rod-like,and sheet-like in appearance.The antioxidant additives in the oil were consumed very rapidly in the first 30 h of the bearing test,with N-phenyl-1-naphthylamine being consumed faster than dioctyldiphenylamine.Overall,the oil thermal-oxidative process involves very complex physical and chemical mechanisms. 展开更多
关键词 aviation turbine engine oil high-temperature bearing deposit test thermal-oxidative degradation antioxidant additives
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A thermal stress loading technique for large-sized hot dry rock mechanical tests
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作者 Huiling Ci Bing Bai +2 位作者 Hongwu Lei Yan Zou Jianfeng Liu 《Deep Underground Science and Engineering》 2024年第3期326-337,共12页
Testing of large-sized specimens is becoming increasingly important in deep underground rock mechanics and engineering.In traditional mechanical loading,stresses on large-sized specimens are achieved by large host fra... Testing of large-sized specimens is becoming increasingly important in deep underground rock mechanics and engineering.In traditional mechanical loading,stresses on large-sized specimens are achieved by large host frames and hydraulic pumps,which could lead to great investment.Low-cost testing machines clearly always have great appeal.In this study,a new approach is proposed using thermal expansion stress to load rock specimens,which may be particularly suitable for tests of deep hot dry rock with high temperatures.This is a different technical route from traditional mechanical loading through hydraulic pressure.For the rock mechanics test system of hot dry rock that already has an investment in heating systems,this technology may reduce the cost of the loading subsystem by fully utilizing the temperature changes.This paper presents the basic principle and a typical design of this technical solution.Preliminary feasibility analysis is then conducted based on numerical simulations.Although some technical details still need to be resolved,the feasibility of this loading approach has been preliminarily confirmed. 展开更多
关键词 deep rock engineering high-temperature and high-stress conditions hot dry rock large-sized model test thermal stress loading
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High-Temperature Corrosion of Protective Coatings for Boiler Tubes in Thermal Power Plants 被引量:2
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作者 徐连勇 荆洪阳 霍立兴 《Transactions of Tianjin University》 EI CAS 2005年第3期183-189,共7页
High-temperature corrosion is a serious problem for the water-wall tubes of boilers used in thermal power plants. Oxidation, sulfidation and molten salt corrosion are main corrosion ways.Thereinto, the most severe cor... High-temperature corrosion is a serious problem for the water-wall tubes of boilers used in thermal power plants. Oxidation, sulfidation and molten salt corrosion are main corrosion ways.Thereinto, the most severe corrosion occurs in molten salt corrosion environment. Materials rich in oxides formers, such as chromium and aluminum, are needed to resist corrosion in high-temperature and corrosive environment, but processability of such bulk alloys is very limited. High velocity electric arc spraying (HVAS) technology is adopted to produce coatings with high corrosion resistance. By comparison, NiCr (Ni-45Cr-4Ti) is recommended as a promising alloy coating for the water-wall tubes, which can even resist molten salt corrosion attack. In the study of corrosion mechanism, the modern material analysis methods, such as scanning electron microscopy (SEM), X-ray diffractometry (XRD) and energy dispersive spectrometry (EDS), are used. It is found that the corrosion resistances of NiCr and FeCrAI coatings are much better than that of 20g steel, that the NiCr coatings have the best anti-corrosion properties, and that the NiCr coatings have slightly lower pores than FeCrAI coatings.It is testified that corrosion resistance of coatings is mainly determined by chromium content, and the microstructure of a coating is as important as the chemical composition of the material. In addition, the fracture mechanisms of coatings in the cycle of heating and cooling are put forward. The difference of the thermal physical properties between coatings and base metals results in the thermal stress inside the coatings. Consequently, the coatings spall from the base metal. 展开更多
关键词 high-temperature corrosion high velocity electric arc spraying (HVAS) COATING boiler tubes thermal shock test
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Optimization of technical measures for improving high-temperature performance of asphalt-rubber mixture 被引量:2
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作者 Chuan Xiao Tianqing Ling Yanjun Qiu 《Journal of Modern Transportation》 2013年第4期273-280,共8页
Asphalt-rubber pavements often become dam-aged in high-temperature regions and appear rutted or wavy, and experience slippage. To improve the high-temperature performance of the asphalt-rubber mixture, technical measu... Asphalt-rubber pavements often become dam-aged in high-temperature regions and appear rutted or wavy, and experience slippage. To improve the high-temperature performance of the asphalt-rubber mixture, technical measurements, such as, the optimal adjustment of gradation, technique of composite modification, and control of compaction were investigated. An optimal adjustment of aggregate gradation based on stone matrix asphalt improves the high-temperature stability of the asphaltrubber mixture significantly. Through composite modifi- cation, the effect of asphalt-rubber modification was enhanced, and the dynamic stability and relative defor- mation indices of the asphalt-rubber mixture were improved significantly. Furthermore, compaction parame- ters had a significant influence on the high-temperature stability of the asphalt-rubber mixture. The rolling times for compacting the asphalt-rubber mixture should be controlled to within 18-20 round-trips at a molding temperature at 180℃; if the rolling time is a 12 round-trip, the compaction temperature of the asphalt-rubber mixture should be controlled between 180 and 190℃. 展开更多
关键词 Road engineering test Asphalt-rubber mixture performance Optimization Laboratory high-temperature
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Experimental Evaluation of the Mechanical Properties of Cement Sheath under High-Temperature Conditions 被引量:1
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作者 Pei Zou Zhiqiang Huang +4 位作者 Yian Tong Leichuan Tan Rui Li Kai Wei Deng Qiao 《Fluid Dynamics & Materials Processing》 EI 2022年第3期689-699,共11页
The sealing integrity of cement sheath in offshore wells is seriously threatened under high-temperature conditions,resulting in gas channeling and other problems.Given the lack of experimental results,in this study re... The sealing integrity of cement sheath in offshore wells is seriously threatened under high-temperature conditions,resulting in gas channeling and other problems.Given the lack of experimental results,in this study relevant samples of a cement slurry sealing section of a typical offshore high-temperature well have been prepared and analyzed.In particular,the mechanical properties have been assessed with a triaxial pressure servo instrument and a high-temperature curing kettle.The density and the Poisson’s ratio of the samples have also been tested.The stress-strain curve has been drawn to obtain the elastic modulus and the compressive strength.The rock brittleness index has been calculated according to the measured elastic modulus and the Poisson’s ratio,together with the brittleness and the compressibility of the cement samples.The test results show that the mechanical properties and bonding strength of the cement samples are optimal at 130°C,medium at 150°C,and poor at 180°C. 展开更多
关键词 high-temperature wells cement sheath mechanical properties triaxial test brittleness index
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Graphene/carbon structured catalyst layer to enhance the performance and durability of the high-temperature proton exchange membrane fuel cells 被引量:1
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作者 Zhaoqi Ji Jianuo Chen +7 位作者 Zunmin Guo Ziyu Zhao Rongsheng Cai Maxwell T.P.Rigby Sarah J.Haigh Maria Perez-Page Yitao Shen Stuart M.Holmes 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第12期399-407,I0011,共10页
In this study,nitrogen doped electrochemically exfoliated reduced graphene oxide and carbon black supported platinum(Pt/Nr EGO_(2)-CB_(3))has been prepared to enhance the performance and durability of hightemperature ... In this study,nitrogen doped electrochemically exfoliated reduced graphene oxide and carbon black supported platinum(Pt/Nr EGO_(2)-CB_(3))has been prepared to enhance the performance and durability of hightemperature PEMFCs with lower Pt loading.On the one hand,Pt/Nr EGO_(2)-CB_(3)with the strong interaction between the Pt and nitrogen(N)prevent agglomeration of Pt particles and Pt particles is 5.46±1.46 nm,which is smaller than that of 6.78±1.34 nm in Pt/C.Meanwhile,ECSA of Pt/Nr EGO_(2)-CB_(3)decrease 13.65%after AST,which is much lower than that of 97.99%in Pt/C.On the other hand,the Nr EGO flakes in MEAac act as a barrier to mitigate phosphoric acid redistribution,which improves the formation of triple-phase boundaries(TPBs)and gives stable operation of the MEAacwith a lower decay rate of 0.02 mV h^(-1)within100 h.After steady-state operation,the maximum power density of Pt/Nr EGO_(2)-CB_(3)(0.411 W cm^(-2))is three times higher than that of conventional Pt/C(0.134 W cm^(-2))in high-temperature PEMFCs.After AST,the mass transfer resistance of Pt/Nr EGO_(2)-CB_(3)electrode(0.560Ωcm^(2))is lower than that in Pt/C(0.728Ωcm^(2)). 展开更多
关键词 high-temperature proton exchange membrane fuel cell Phosphoric acid loss Pt catalyst degradation Accelerated stress test DURABILITY
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Evaluation on High-temperature Adhesion Performance of Hot-applied Sealant for Asphalt Pavement 被引量:2
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作者 李峰 LI Tinggang SHI Xiaopei 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2014年第6期1237-1241,共5页
In order to investigate the high-temperature performances of the asphalt pavement hot-applied sealant, as well as to reduce failures of the sealant pullout, the softening point test and the flow test(two existing met... In order to investigate the high-temperature performances of the asphalt pavement hot-applied sealant, as well as to reduce failures of the sealant pullout, the softening point test and the flow test(two existing methods for evaluating high-temperature performances) were conducted. It was found that both tests could not accurately reflect the adhesion performances of the sealant at high temperatures. For this purpose, the adhesion test for PSAT(pressure sensitive adhesive tape) has been taken as a reference to develop a device that is suitable for evaluating the adhesion performances, by modifying relevant test parameters according to the road conditions at high temperatures. Thirteen common sealants were tested in the modified adhesion test, softening point test and f low test. The experimental results show that no significant correlation(p〉0.05) exists between the adhesion value, softening point, adhesion value and flow value; while a significant correlation(p〈0.05) exists between the softening point and flow value. The modified adhesion test is efficient in distinguishing the hightemperature adhesion performances of different sealants, and can be used as a standard method for evaluating such performances. 展开更多
关键词 hot-applied sealant pullout high-temperature performance adhesion performance modified adhesion test
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High-temperature performance study of chromium-containing stuffing sand for ladles 被引量:1
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作者 JIN Congjin DENG Chengji HE pingxian 《Baosteel Technical Research》 CAS 2015年第4期16-19,共4页
High-temperature performance tests of chromium-containing stuffing sand for a steel ladle w ith different ratios w ere performed. A high-temperature simulation test furnace w as used to analyze the influence of the co... High-temperature performance tests of chromium-containing stuffing sand for a steel ladle w ith different ratios w ere performed. A high-temperature simulation test furnace w as used to analyze the influence of the composition ratio of ladle filler sand and sintering time on the high-temperature compression resistance of chromium-containing stuffing sand in the temperature range of 1 500- 1 600 ℃. The results show that the refractoriness of ladle filler sand w as the low est( only 1 610 ℃) w hen the composition ratio of chromite sand and silica sand w as 6∶ 4. M oreover,the high-temperature compression resistance w as high w hen the content of chromite sand w as at 70%; the resistance increased w ith increasing sintering time. When the sintering time w as extended at a temperature of 1 600 ℃,the high-temperature compression resistance of ladle filler sand first increased and then decreased after being overburnt. 展开更多
关键词 chromium-containing stuffing sand chromite sand simulation test furnace high-temperature compression resistance
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Surface destructive mechanism on high-temperature ablation, supersonic-erosion, dreg-adherence and corrosion
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作者 XIAO Jun CHEN Jian-min ZHOU Hui-di LI Tie-hu ZHANG Qiu-yu 《中国有色金属学会会刊:英文版》 CSCD 2004年第z1期429-434,共6页
The exhaust and flame from a supersonic airborne missile high-energy smoke-born engine (SAMHSE) may lead to high-temperature ablation, supersonic-erosion, dreg-adherence (HTASED) and corrosion on the launcher slide tr... The exhaust and flame from a supersonic airborne missile high-energy smoke-born engine (SAMHSE) may lead to high-temperature ablation, supersonic-erosion, dreg-adherence (HTASED) and corrosion on the launcher slide track, causing serious problems to the operation and decreasing the lifetime of the launcher. Therefore, it is imperative to study the destructive mechanism so as to guarantee the smooth operation and increase the lifetime of military equipments. Accordingly, HTASED and corrosion were systematically observed and analyzed with the emphasis placed on the mechanism investigations making use of a series evaluation tests, typical missile engine simulation tests, national military standard methods, scanning electron microscopy and electrochemical corrosion tests. It is found that the thermal impact of high-temperature flame and supersonic erosion of corrosive melting particle jet of the SAMHSE lead to surface defects of micro-cracks, denudation and corrosive residue. Some defects reach to metal base becoming to "corrosive channels". Repetitive HTASED may cause ablation-adhesion fatigue stress, which enhances the surface corrosion and destruction. HTASED and corrosion are related to the type of a SAMHSE fuel and experience of the launcher. Surface destruction is related to synergistic effects of the HTASED. The ablated and failed Al or steel surface is liable to electrochemical corrosion characterized by pitting in humid and salt-spray environment. 展开更多
关键词 high-temperature ablation supersonic-erosion dreg-adherence SIMULATING test SUPERSONIC AIRBORNE MISSILE HIGH-ENERGY smoke-born engine CORROSION
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装配式蒸压加气混凝土底板叠合楼板力学性能研究
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作者 郝际平 王敬华 +2 位作者 宁树哲 刘振丰 李军奇 《建筑结构》 北大核心 2024年第19期147-156,共10页
提出了一种装配式蒸压加气混凝土(AAC)底板叠合楼板,该叠合楼板采用带凹槽的预制AAC板作为底板,在凹槽中布设肋梁钢筋,再现浇混凝土形成。通过静力试验和数值模拟研究了该叠合楼板的破坏机理、裂缝分布、承载能力、变形能力和整体工作性... 提出了一种装配式蒸压加气混凝土(AAC)底板叠合楼板,该叠合楼板采用带凹槽的预制AAC板作为底板,在凹槽中布设肋梁钢筋,再现浇混凝土形成。通过静力试验和数值模拟研究了该叠合楼板的破坏机理、裂缝分布、承载能力、变形能力和整体工作性能,分析了跨度、配筋率和构造形式等因素对楼板力学性能的影响。对该叠合楼板进行数值分析,验证了有限元模型的合理性。结果表明:叠合楼板试件的破坏形态分为受压混凝土压碎和底板裂缝超限;预制AAC板侧开槽的构造形式能提高楼板的整体工作性能;试件的延性均值在2.5左右,具有较好的变形能力,且试件开裂后刚度变化不大;预制底板配筋率对叠合楼板的极限承载力和刚度影响显著,提高底板的配筋率可以明显提高叠合楼板的承载力和刚度。最后提出了装配式AAC叠合楼板的设计方法。 展开更多
关键词 装配式蒸压加气混凝土底板叠合楼板 预制蒸压加气混凝土底板 静力加载试验 数值模拟
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基于正交试验的免蒸压加气混凝土的制备与性能优化
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作者 刘小荟 彭晓彤 +2 位作者 汪洪伟 李维海 王鹏 《中国粉体技术》 CAS CSCD 2024年第6期74-84,共11页
【目的】制备轻质高强、节能保温的免蒸压加气混凝土,寻找最优制备配合比,提高固体废弃物的利用率。【方法】基于正交试验采用极差分析和矩阵关联分析的方法确定免蒸压加气混凝土的基础最优配比,优化玻璃粉的掺入量来实现加气混凝土性... 【目的】制备轻质高强、节能保温的免蒸压加气混凝土,寻找最优制备配合比,提高固体废弃物的利用率。【方法】基于正交试验采用极差分析和矩阵关联分析的方法确定免蒸压加气混凝土的基础最优配比,优化玻璃粉的掺入量来实现加气混凝土性能的提升。【结果】各因素对免蒸压加气混凝土的表观干密度和抗压强度的影响程度由大到小为铝粉掺量(质量分数,下同)、水泥掺量、水料比、聚丙烯纤维(PP纤维)掺量,加气混凝土的基础最优配比为水泥掺量为24%,水料比为0.44,铝粉掺量为0.13%,PP纤维掺量为0.4%;当玻璃粉质量替代率达到25%时,混凝土的综合性能达到最优。【结论】玻璃粉作为粉煤灰的替代材料,在改善免蒸压加气混凝土干密度、抗压强度、导热系数方面效果显著。 展开更多
关键词 免蒸压加气混凝土 玻璃粉 干密度 抗压强度 导热系数 正交试验
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流动条件下X65钢在含氧体系下的腐蚀行为及腐蚀预测模型
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作者 张金龙 江潘 +1 位作者 廖柯熹 何国玺 《材料保护》 CAS CSCD 2024年第4期70-79,共10页
X65钢注水海管介质含有溶解氧,导致管道内发生严重腐蚀。针对该问题,基于现场注水海管基础数据,考虑流速、温度、溶解氧浓度和Cl^(-)浓度对X65钢腐蚀行为的影响,设计9组正交试验,采用高温高压反应釜、扫描电子显微镜和X射线衍射仪进行... X65钢注水海管介质含有溶解氧,导致管道内发生严重腐蚀。针对该问题,基于现场注水海管基础数据,考虑流速、温度、溶解氧浓度和Cl^(-)浓度对X65钢腐蚀行为的影响,设计9组正交试验,采用高温高压反应釜、扫描电子显微镜和X射线衍射仪进行失重测试和腐蚀产物表征;结合多元线性回归法,建立腐蚀预测模型。结果表明:4种影响因素对腐蚀速率的影响程度由大到小排序为:溶解氧浓度>温度>流速>Cl^(-)浓度,溶解氧浓度是腐蚀主控因素;随着流速、温度、溶解氧浓度和Cl^(-)浓度的增大,腐蚀速率增大;腐蚀产物表征结果表明,腐蚀产物主要为Fe3O4和Fe2O3;考虑上述4个因素的影响,基于7组均匀腐蚀速率值,建立腐蚀预测模型;采用剩余2组均匀腐蚀速率值对腐蚀预测模型进行验证,误差最大为8.9%,表明该腐蚀速率预测模型的准确性较高。 展开更多
关键词 注水海底管道 含氧体系 高温高压反应釜试验 腐蚀行为 腐蚀预测模型
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基于村镇建筑的新型沙漠砂混凝土砌块墙体的抗震性能研究
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作者 吴楠 王玉山 +2 位作者 王锐 牛爱宏 王迪 《应用力学学报》 CAS CSCD 北大核心 2024年第2期372-381,共10页
利用沙漠砂研发的蒸压加气混凝土砌块是一种新型砌体材料。为了研究这种新型砌块在村镇建筑中的应用,考虑在不同竖向压应力和构造柱的约束作用下,对4片沙漠砂蒸压加气混凝土砌块墙体开展拟静力试验,通过对比分析4片墙体在低周反复荷载... 利用沙漠砂研发的蒸压加气混凝土砌块是一种新型砌体材料。为了研究这种新型砌块在村镇建筑中的应用,考虑在不同竖向压应力和构造柱的约束作用下,对4片沙漠砂蒸压加气混凝土砌块墙体开展拟静力试验,通过对比分析4片墙体在低周反复荷载作用下的破坏特性、力-位移曲线、骨架曲线、刚度退化曲线及延性等性能指标。结果表明:1)墙体主要以剪切破坏为主,未设置构造柱墙体主裂缝沿约45°贯彻整个墙体,设置构造柱墙体主裂缝呈“倒八”字型,且当竖向压应力增大时,墙体的抗震承载力也随之增大,抗侧刚度有所提高,但延性随之减小;2)竖向压应力相同情况下,对比分析表明设置构造柱墙体的极限承载力约是素墙体的2.22倍,延性提高了约60%,且刚度也有所提升;3)基于主拉应力理论和库仑破坏理论分别建立了适用于该新型砌块墙体的抗震承载力计算公式,且库仑破坏理论建立的抗震承载力计算公式应用更合理;4)建立了恢复力模型骨架曲线,能够较好地反映沙漠砂蒸压加气混凝土砌块墙体的试验特点。 展开更多
关键词 沙漠砂蒸压加气混凝土砌块 构造柱 拟静力试验 抗震性能 承载力 恢复力模型
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Regulation of Pore Structure and Hightemperature Fracture Behavior of CACbonded Alumina-Spinel Castables Based on Hydration Design
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作者 Wenjing LIU Ning LIAO Yawei LI 《China's Refractories》 CAS 2024年第3期22-29,共8页
The lamellar hydrates of CAC were designed with the introduction of nano CaCO_(3)or Mg-Al hydrotalcite(M-A-H),and the effects on the green strength,pore structures,and high-temperature fracture behavior of alumina-spi... The lamellar hydrates of CAC were designed with the introduction of nano CaCO_(3)or Mg-Al hydrotalcite(M-A-H),and the effects on the green strength,pore structures,and high-temperature fracture behavior of alumina-spinel castables were investigated.The results show that nano CaCO_(3)or M-A-H stimulates rapidly the hydration of CAC and the formation of lamellar C_(4)AcH_(11)or coexistence of C_(2)AH_(8)and C_(4)AcH_(11)at 25℃.The formation of lamellar hydrates can contribute to a more complicated pore structure,especially in the range of 400-2000 nm.Meanwhile,the incorporation of well-distributed CaO or MgO sources from nano CaCO_(3)or M-A-H also regulates the distribution of CA_(6)and spinel(pre-formed and in-situ).Consequently,the optimized microstructure and complicated pore structure can induce the deflection and bridging of cracks,thus facilitating the consumption of fracture energy and enhancing the resistance to thermal stress damage. 展开更多
关键词 alumina-spinel castables lamellar hydrates pore structure high-temperature wedge splitting test fracture behavior
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Thermal fatigue behaviors of SiC power module by Ag sinter joining under harsh thermal shock test 被引量:4
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作者 Chen Chuantong Zhang Hao +2 位作者 Jiu Jinting Long Xu Suganuma Katsuaki 《China Welding》 CAS 2022年第1期15-21,共7页
The excellent properties of SiC bring new challenges for the device packaging.In this study,the bonding strength,fracture behaviors and microstructural evolution of micron-porous Ag joint were elevated during thermal ... The excellent properties of SiC bring new challenges for the device packaging.In this study,the bonding strength,fracture behaviors and microstructural evolution of micron-porous Ag joint were elevated during thermal cycling(–50 ℃–250 ℃) in SiC/DBC(direct bonding copper) die attachment structure for different time.During harsh thermal shock test,the strength of sintered joint deceased gradually with the increase of cycling number,and the value just was half of the value of as-sintered after 1 000 cycles.Coarsening of Ag grains was observed in micron-porous joint with the structure inhomogeneity and defects increasing,which were the reasons of the strength decease.In addition,it was also found that the fracture behavior of sintered joints was changed from ductile deformation of Ag grain to brittle fracture of crack propagation after 1 000 cycles.This study will add the understanding in the mechanical properties of Ag sinter joining and its applications at high temperature. 展开更多
关键词 power module high-temperature reliability Ag sinter joining low stress structure thermal shock test
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装配式构造柱约束沙漠砂蒸压加气混凝土砌块墙体的抗震性能试验研究 被引量:1
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作者 郑锦涛 朱文星 +2 位作者 王玉山 王锐 牛爱宏 《石河子大学学报(自然科学版)》 CAS 北大核心 2023年第6期678-683,共6页
随着低层砌体结构被广泛应用于新疆村镇的庭院经济,本文依据村镇建筑传统的施工工艺,将预制耐水石膏基构造柱和沙漠砂蒸压加气混凝土砌块通过砌筑的方式结合起来,提出一种新型的装配式构造柱约束沙漠砂蒸压加气混凝土砌块墙体,并对其进... 随着低层砌体结构被广泛应用于新疆村镇的庭院经济,本文依据村镇建筑传统的施工工艺,将预制耐水石膏基构造柱和沙漠砂蒸压加气混凝土砌块通过砌筑的方式结合起来,提出一种新型的装配式构造柱约束沙漠砂蒸压加气混凝土砌块墙体,并对其进行低周反复荷载试验,研究其破坏特征、承载能力及滞回性能等抗震能力。试验结果表明:随着竖向压应力的增加,墙体的承载能力随之增加,延性减小。基于上述试验结果提出了地震作用下装配式构造柱约束沙漠砂蒸压加气混凝土砌块墙体的抗剪承载力计算方法,对比结果表明计算值与试验值吻合较好,可为该新型砌块村镇建筑的工程应用提供理论依据。 展开更多
关键词 装配式构造柱 沙漠砂蒸压加气混凝土砌块 拟静力试验 抗剪承载力计算公式
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水平荷载作用下不同连接方式ALC墙板抗裂与滞回性能试验研究 被引量:1
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作者 黄瑞桦 陈杰 +4 位作者 王玉银 许航 刘发起 卫辉雨 杨冬冬 《建筑科学与工程学报》 CAS 北大核心 2023年第6期72-82,共11页
为研究水平荷载作用下蒸压加气混凝土(ALC)板的抗侧刚度、承载力以及墙体与装饰层的抗裂性能,采用管卡、U型卡和直角钢件3种连接方式和不同饰面做法对三榀ALC墙板-铰接钢框架进行了滞回试验。结果表明:3种连接方式的墙体滞回曲线均捏缩... 为研究水平荷载作用下蒸压加气混凝土(ALC)板的抗侧刚度、承载力以及墙体与装饰层的抗裂性能,采用管卡、U型卡和直角钢件3种连接方式和不同饰面做法对三榀ALC墙板-铰接钢框架进行了滞回试验。结果表明:3种连接方式的墙体滞回曲线均捏缩严重,即ALC墙体自身耗能能力较差;连接件的刚度对于ALC墙板的受力性能影响显著,连接件刚度越大,墙体抗侧刚度和承载力越大,但墙体开裂情况也越严重,其中直角钢件墙体抗侧承载力最大,分别比管卡墙体和U型卡墙体高14.9%和131.4%,直角钢件墙体与管卡墙体抗侧刚度接近,比U型卡墙体高52.1%;墙板抗裂性能方面,U型卡墙体最好,管卡墙体最差;3种连接方式的墙体与钢框架接缝位置饰面层在层间位移角为1/2 000~1/1 000时即出现开裂,该处为饰面抗裂的薄弱位置;饰面勾缝处理方法对饰面抗裂性能影响较大,弹性材料可显著改善饰面的抗裂性能;墙板与墙板接缝处的饰面抗裂性能良好,管卡墙体与U型卡墙体分别在层间位移角为1/50和1/60时板缝位置饰面层出现开裂,而直角钢件试件层间位移角达到1/33时板缝处饰面仍未开裂。 展开更多
关键词 蒸压加气混凝土墙板 抗侧性能 抗裂性能 滞回试验 连接类型
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沙漠砂蒸压加气混凝土砌块砌体恢复力模型的研究 被引量:2
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作者 肖迪 陈康 +3 位作者 王玉山 赵易 牛爱宏 王迪 《世界地震工程》 北大核心 2023年第4期169-176,共8页
为研究沙漠砂蒸压加气混凝土砌块砌体恢复力模型,对10片采用低周反复加载方式的试件的试验现象及数据进行分析。基于试验结果和现有恢复力模型理论,采用三折线模型对沙漠砂蒸压加气混凝土砌块砌体的荷载位移曲线进行回归分析,建立了沙... 为研究沙漠砂蒸压加气混凝土砌块砌体恢复力模型,对10片采用低周反复加载方式的试件的试验现象及数据进行分析。基于试验结果和现有恢复力模型理论,采用三折线模型对沙漠砂蒸压加气混凝土砌块砌体的荷载位移曲线进行回归分析,建立了沙漠砂蒸压加气混凝土砌块砌体的恢复力模型,并确定了相应的滞回规则。结果表明:三折线恢复力模型与试验结果吻合较好,能够较好地反应沙漠砂蒸压加气混凝土砌块砌体的恢复力特性,其成果可为该结构在新疆村镇建筑抗震分析提供技术支撑。 展开更多
关键词 沙漠砂蒸压加气混凝土砌块 恢复力模型 拟静力试验 骨架曲线
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免蒸养超高性能混凝土-既有混凝土界面粘结性能试验研究 被引量:1
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作者 吴琛 储福玮 +1 位作者 龚明子 曾志攀 《材料导报》 CSCD 北大核心 2023年第24期159-166,共8页
免蒸养超高性能混凝土(Ultra-high performance concrete,UHPC)在常温养护下具有超高强、超耐久等优异性能,其与普通混凝土(Normal concrete,NC)界面的粘结性能是保证免蒸养UHPC加固NC结构获得良好性能的重要因素。为研究免蒸养UHPC-NC... 免蒸养超高性能混凝土(Ultra-high performance concrete,UHPC)在常温养护下具有超高强、超耐久等优异性能,其与普通混凝土(Normal concrete,NC)界面的粘结性能是保证免蒸养UHPC加固NC结构获得良好性能的重要因素。为研究免蒸养UHPC-NC界面粘结性能,设计直剪试验,分析免蒸养UHPC龄期、NC强度、NC表面处理方式和界面粘结剂对界面粘结性能的影响,提出了免蒸养UHPC-NC界面粘结-滑移本构模型,并给出相关刚度系数建议值。结果表明:免蒸养UHPC-NC试件界面破坏模式主要分为粘结界面破坏、粘结界面和NC破坏、NC破坏及NC和UHPC破坏;刻槽组较凿毛组试件具有明显的开裂阶段,表现出一定的延性且具有更高的粘结强度,最大提高量为183.7%;界面使用SiKa 32LP结构胶时,其粘结强度为4.91 MPa,是其他界面粘结剂试件粘结强度的两倍以上。因此,当采用免蒸养UHPC加固NC构件时建议NC表面刻槽和采用SiKa 32LP结构胶。 展开更多
关键词 免蒸养超高性能混凝土(免蒸养UHPC) 粘结性能 直剪试验 荷载-滑移曲线 粘结-滑移本构模型
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Application of ultrasonic fatigue technology in very-high-cycle fatigue testing of aviation gas turbine engine blade materials:A review
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作者 ZHAO JiuCheng WAN Jie +2 位作者 ZHANG ShiZhong YAN ChuLiang ZHAO HongWei 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2024年第5期1317-1363,共47页
The need for very-high-cycle fatigue(VHCF)testing up to 1010cycles of aviation gas turbine engine blade materials under combined mechanical loads and complex environments has encouraged the development of VHCF testing... The need for very-high-cycle fatigue(VHCF)testing up to 1010cycles of aviation gas turbine engine blade materials under combined mechanical loads and complex environments has encouraged the development of VHCF testing instrumentation and technology.This article begins with a comprehensive review of the existing available techniques that enable VHCF testing.Recent advances in ultrasonic fatigue testing(UFT)techniques are highlighted,containing their new capabilities and methods for single load,multiaxial load,variable amplitude fatigue,and combined cycle fatigue.New techniques for conducting UFT in high-temperature,humid environments,and corrosive environments are summarized.These developments in mechanical loading and environmental building techniques provide the possibility of laboratory construction for real service conditions of blade materials.New techniques that can be used for in situ monitoring of VHCF damage are summarized.Key issues in the UFT field are presented,and countermeasures are collated.Finally,the existing problems and future trends in the field are briefly described. 展开更多
关键词 aviation gas turbine engine blade materials ultrasonic fatigue very-high-cycle fatigue high-temperature complex stress in situ testing
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