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Design optimization of cast Cu-Al-Be-B alloys for high damping capacity 被引量:8
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作者 s.lu W.H.Miao +1 位作者 J.Chen P.H.Lin 《China Foundry》 SCIE CAS 2004年第S1期32-37,共6页
This paper investigated high-damping Cu-Al-Be-B cast alloys using metallographic analysis, X-ray diffraction (XRD) and electrical resistance measurements for transformation temperatures. The results showed that beryll... This paper investigated high-damping Cu-Al-Be-B cast alloys using metallographic analysis, X-ray diffraction (XRD) and electrical resistance measurements for transformation temperatures. The results showed that beryllium can stabilize β phase, resulting in a thermo-elastic martensite microstructure leading to high-damping capacity in cast Cu-Al-Be-B alloys. Trace additions of boron to Cu-Al-Be alloys can significantly refine the grains, providing high strength and ductility to the alloys. A factorial design of experiment method was used to optimize the composition and properties of cast Cu-Al-Be-B alloys. The optimal microstructure for thermo-elastic martensite can be obtained by adjusting the amounts of aluminum and beryllium to eutectoid or pseudo-eutectoid compositions. An optimized cast Cu-Al-Be-B alloy was developed to provide excellent mechanical properties, tensile strength σ_b=767MPa, elongation δ=7.62%, and damping capacity S. D. C=18.70%. 展开更多
关键词 Cu-Al-Be-B alloys damping capacity mechanical property thermo-elastic martensite grain refining shape memory alloys(SMA)
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Soil Microbial Activities in Beech Forests Under Natural Incubation Conditions as Affected by Global Warming 被引量:3
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作者 s.lu Q.WANG +2 位作者 S.KATAHATA M.NARAMOTO H.MIZUNAGA 《Pedosphere》 SCIE CAS CSCD 2014年第6期709-721,共13页
Microbial activity in soil is known to be controlled by various factors. However, the operating mechanisms have not yet been clearly identified, particularly under climate change conditions, although they are crucial ... Microbial activity in soil is known to be controlled by various factors. However, the operating mechanisms have not yet been clearly identified, particularly under climate change conditions, although they are crucial for understanding carbon dynamics in terrestrial ecosystems. In this study, a natural incubation experiment was carried out using intact soil cores transferred from high altitude(1 500 m) to low(900 m) altitude to mimic climate change scenarios in a typical cold-temperate mountainous area in Japan. Soil microbial activities, indicated by substrate-induced respiration(SIR) and metabolic quotient(q CO2), together with soil physicalchemical properties(abiotic factors) and soil functional enzyme and microbial properties(biotic factors), were investigated throughout the growing season in 2013. Results of principal component analysis(PCA) indicated that soil microbial biomass carbon(MBC) andβ-glucosidase activity were the most important factors characterizing the responses of soil microbes to global warming. Although there was a statistical difference of 2.82 ℃ between the two altitudes, such variations in soil physical-chemical properties did not show any remarkable effect on soil microbial activities, suggesting that they might indirectly impact carbon dynamics through biotic factors such as soil functional enzymes. It was also found that the biotic factors mainly controlled soil microbial activities at elevated temperature,which might trigger the inner soil dynamics to respond to the changing environment. Future studies should hence take more biotic variables into account for accurately projecting the responses of soil metabolic activities to climate change. 展开更多
关键词 biotic factors carbon dynamics metabolic quotient microbial biomass soil enzymes soil respiration
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Solid solution strengthening of high-entropy alloys from first-principles study 被引量:1
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作者 H.L.Zhang D.D.Cai +6 位作者 X.Sun H.Huang s.lu Y.Z.Wang Q.M.Hu L.Vitos X.D.Ding 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第26期105-116,共12页
Solid solution strengthening(SSS)is one kind of strengthening mechanisms and plays an important role in alloy design,in particular for single-phase alloys including high-entropy alloys(HEAs).The classical Labusch–Nab... Solid solution strengthening(SSS)is one kind of strengthening mechanisms and plays an important role in alloy design,in particular for single-phase alloys including high-entropy alloys(HEAs).The classical Labusch–Nabarro model and its expansions are most widely applicable to treating SSS of solid solution alloys including both conventional alloys(CAs)and HEAs.In this study,the SSS effects in a series of Febased CAs and HEAs are investigated by using the classical Labusch–Nabarro model and its expansions.The size misfit and shear modulus misfit parameters are derived from first-principles calculations.Based on available experimental data in combination with empirical SSS model,we propose fitting constants(i.e.,the ratio between experimental hardness and predicted SSS effect)for these two families of alloys.The predicted host/alloy family-dependent fitting constants can be used to estimate the hardness of these SSS alloys.General agreement between predicted and measured hardness values is satisfactory for both CAs and HEAs,implying that the proposed approach is reliable and successful. 展开更多
关键词 ALLOYS Solid solution strengthening HARDNESS Size misfit parameter Shear modulus misfit parameter First-principles calculations
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彩色超声多普勒在肝硬变和门脉高压症疹治中的应用 被引量:1
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作者 K.Haag s.lu 卢实春 《普外基础与临床杂志》 1995年第4期229-230,共2页
彩色超声多普勒在肝硬变和门脉高压症疹治中的应用近二十年来,腹部超声在胃肠道疾病和肝脏疾病的诊断方面显示出重要作用。随着超声多普勒在神经病学、血管病学、心脏病学以及妇产科学中的成功应用,正越来越多地被用于腹部血管疾病的... 彩色超声多普勒在肝硬变和门脉高压症疹治中的应用近二十年来,腹部超声在胃肠道疾病和肝脏疾病的诊断方面显示出重要作用。随着超声多普勒在神经病学、血管病学、心脏病学以及妇产科学中的成功应用,正越来越多地被用于腹部血管疾病的诊治。多普勒超声是结合常用的B超成... 展开更多
关键词 彩色超声多普勒 门脉高压症 肝硬变 诊断 心脏病学 腹部超声 胃肠道疾病 肝脏疾病 血管病 血管疾病
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