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31.
S. W. Ma 《International Journal of Fracture》1989,39(4):323-329
This paper discusses the general solution, by use of the Fourier transform and Fourier series, of the stress intensity factor in a rectangular sheet containing a central crack of mode III, where its boundary is constrained, but its crack surface is subjected to an arbitrary anti-plane load. As examples of numerical computing, consider three circumstances: (1) the boundary parallel to a central crack is fixed; (2) the boundary perpendicular to a central crack is fixed; (3) all of the boundaries around a central crack are fixed but the crack surface is subjected to a constant load.En faisant appel à une transformation de Fourier et aux séries de Fourier, on discute dans cet article de la solution générale au facteur d'intensité de contraintes existant dans une tôle rectangulaire comportant une fissure centrale de mode III, lorsque les bords sont fixés mais que la surface de la fissure est soumise à une charge antiplanaire arbitraire. Comme exemple de calcul numérique, on envisage trois cas distincts:
相似文献
(1) | les bords parallèles à la fissure sont fixés; |
(2) | les bords perpendiculaires à la fissure sont fixés; |
(3) | tous les bords de la tôle sont fixés, mais la surface de la fissure est soumise à une charge constante. |
32.
Predicting phase equilibrium,phase transformation,and microstructure evolution in titanium alloys 总被引:3,自引:0,他引:3
Y. -Z. Wang N. Ma Q. Chen F. Zhang S. L. Chen Y. A. Chang 《JOM Journal of the Minerals, Metals and Materials Society》2005,57(9):32-39
Phase transformation and microstructural evolution in commercial titanium alloys are extremely complex. Traditional models
that characterize microstructural features by average values without capturing the anisotropy and spatially varying aspects
may not be sufficient to quantitatively define the microstructure and hence to allow for establishing a robust microstructure-property
relationship. This article discusses recent efforts in integrating thermodynamic modeling and phase-field simulation to develop
computational tools for quantitative prediction of phase equilibrium and spatiotemporal evolution of microstructures during
thermal processing that account explicitly for precipitate morphology, spatial arrangement, and anisotropy. The rendering
of the predictive capabilities of the phase-field models as fast-acting design tools through the development of constitutive
equations is also demonstrated.
For more information, contact Y.-Z. Wang, Department of Materials Science & Engineering, Ohio State University, 2041 College
Road, Columbus, OH 43221, USA; (614) 292-0682; fax (614) 292-1537; e-mail wang.363@osu.edu. 相似文献
33.
Chemical looping combustion (CLC) is a clean and efficient flame-free combustion technology,which combust the fuels by lattice oxygen from a solid oxygen carrier with inherent CO2 capture.The develop-ment of oxygen carriers with low cost and high redox performance is crucial to the whole efficiency of CLC process.As the solid by-product from the sulfuric acid production,pyrite cinder presented excellent redox performance as an oxygen carrier in CLC process.The main components in pyrite cinder are Fe2O3,CaSO4,Al2O3 and SiO2 in which Fe2O3 is the active component to provide lattice oxygen.In order to sys-tematic investigate the functions of supports (CaSO4,Al2O3 and SiO2) in pyrite cinder,three oxygen car-riers (Fe2O3-CaSO4,Fe2O3-Al2O3 and Fe2O3-SiO2) were prepared and evaluated in this study.The results showed that Fe2O3-CaSO4 displayed high redox activity and cycling stability in the multiple redox cycles.However,both Fe2O3-Al2O3 and Fe2O3-SiO2 experienced serious deactivation during redox reactions.It indicated that the inert Fe-Si solid solution (Fe2SiO4) was formed in the spent Fe2O3-SiO2 sample,which decreased the oxygen carrying capacity of this sample.The XPS results showed that the oxygen species on the surface of Fe2O3-CaSO4 could be fully recovered after the 20 redox cycles.It can be concluded that CaSO4 is the key to the high redox activity and cycling stability of pyrite cinder. 相似文献
34.
和优质Ib型宝石级金刚石单晶生长相比,作为当今高温高压晶体生长的一种高精尖技术,优质1/a型宝石级金刚石单晶对合成技术提出了更高更苛刻的要求:枢研究从晶体的生长速度出发,发现一开始阶段(大约几个小时)的晶体生长速度对优质宝石级金刚石单晶的后期生长争关重要。埘Fe-Al-C系统(Al含量不大于2.5wt%)来说,采用多品种法将晶体开始阶段的晶体生长速度由1.5mg/h降至0.5mg/h后,对生长过程中金属包裹体的进入有了明显的抑制作用,晶体的质量有了很大提高。从晶体中包裹体的存任形式来看,为了获得优质Ⅱa型宝石级金刚石单晶,在触媒中人为地添加除氮剂给晶体生长过程中的排杂过程带来了很大的难度:为了更好的实现排杂,必须很好的处理晶体表面的径向平铺生长速度和晶体轴向的堆积生长速度之间的火系。 相似文献
35.
36.
LD7铝合金时效工艺的研究 总被引:5,自引:3,他引:5
通过试验系统地研究了LD7铝合金的单级和两级时效工艺。结果表明,与传统的单级时效相比,两级时效在不降低室温强度,硬度的前提下,可显著提高合金的电导率及高温性能。 相似文献
37.
38.
Soap‐free emulsion copolymerization of perfluoroalkyl acrylate (FA)/methyl methacrylate (MMA)/n‐butyl acrylate (n‐BA) was carried out in the presence of sodium 2‐acrylamide‐2‐methyl propanesulfonate (AMPSNa) as a reactive surfactant and potassium persulfate (KPS) as an initiator. An analysis of the effects of concentration of AMPSNa, KPS, FA as well as polymerization temperature on the kinetic features (rate of polymerization) and colloidal characteristics (mean particle diameter, particle disperse index, particle numbers, and surface charge density) was followed. NMR, FTIR, AFM, and fluorine‐selective electrode analysis were used to characterize the composition and morphology of the FA copolymers. Both AFM analysis and contact angle measurements strongly implied that the fluorinated segments migrated to the outmost surface and created films with lower surface energy. © 2007 Wiley Periodicals, Inc. J Appl Polym Sci 104: 2438–2444, 2007 相似文献
39.
Centimeter-size multi-branched tree-like carbon structures have been generated by the catalytic chemical vapor deposition of toluene using ferrocene as the catalyst precursor and investigated by means of SEM, TEM, and EDX. It is found that a temperature of 1000-1200 °C and a carrier gas flow rate of 1000-2500 ml/min are necessary for the generation of the carbon trees. Their morphologies and microstructures change greatly with the changing reaction conditions. The fractal dimensions of the trees are calculated to quantitatively investigate the influence of different reaction temperatures on the morphologies. 相似文献
40.
The confined etchant layer technique has been applied to fabricate complex three-dimensional microstructures on nitinol for the first time. HF and HNO3 were locally and simultaneously electrogenerated at the mold surface to etch a nitinol workpiece. NaOH was used as an efficient scavenger to confine the etchant close to the mold. Cyclic voltammetry was employed to study the electrochemical behavior of a Pt electrode in the etching solution in order to choose an appropriate potential for etchant generation on the mold. The thickness of the confined etchant layer was estimated to be several micrometers by inspecting the deviation of the sizes of the etched spots from the sizes of those on the microelectrode. Thus, the composition of the electrolyte could be optimized for better etching precision. By optimizing the composition of the electrolyte, complex microstructures on a Pt-Ir mold bearing the logo “XMU” of Xiamen University were successfully fabricated on nitinol. The etched patterns were approximately negative copies of the mold, and the precision of duplication could easily reach the micrometer scale. 相似文献