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151.
Rafael Gallego Lucia Comino Alberto Ruiz‐Cabello 《International journal for numerical methods in engineering》2006,66(12):1913-1933
In this paper, the material constant sensitivity boundary integral equation is presented, and its numerical solution proposed, based on boundary element techniques. The formulation deals with plane problems with general rectilinear anisotropy. Expressions for the computation of sensitivities for displacements, tractions, strains and stresses are derived, both for boundary and interior points. The sensitivities can be computed with respect to the bulk material properties or to the properties of part of the domain (inclusions, coatings, etc.). To assess the accuracy of the proposed approach, the computed results are compared to analytical ones derived from exact solutions obtained by complex potential theory, when possible, or finite difference derivatives otherwise. Copyright © 2005 John Wiley & Sons, Ltd. 相似文献
152.
让住户满意的物业管理职能研究 总被引:1,自引:0,他引:1
从使住户满意的角度研究了物业管理中的计划、组织、领导、控制和创新五项职能,以指导物业管理企业提高管理水平和服务质量. 相似文献
153.
广西某矿区的脉石矿物——黄玉分三个世代,其中第三世代的黄玉晶体无色透明,重量大于0.9克拉,瑕疵不明显,密度(3.50)、硬度(7.8430)和折射率(1.6330)等特征均达宝石级,经系统研究测试,可以命名为托帕石(Topaz)。 相似文献
154.
屈服损伤对高压容器用Ni3V钢力学性能的影响 总被引:4,自引:1,他引:3
对高压容器用Ni3V钢进行了屈服极限Rp0 .2 损伤的单向拉伸试验 ,分析其在损伤后对常规力学性能的影响 相似文献
155.
未来地震检波器理论分析 总被引:8,自引:2,他引:6
本文通过对各类地震检波器工作原理的阐述,指出了适合高分辨率地震勘探的未来地震检波器可能采用的方法。分析检波器特性,阐明新型地震检波器可能实现的途径。 相似文献
156.
157.
黄原胶接枝共聚物降滤失剂应用性能评价 总被引:12,自引:0,他引:12
黄原胶(XG)具有优良的耐盐性和增稠降滤失性能,但耐温性较差。对XG分子结构的分析认为,可利用XG链上的活泼基团接枝丙烯酰胺等乙烯基单体,增强其耐温性能,用作耐温抗盐钻井液处理剂。对比了合成的黄原胶丙烯酰胺等接枝共聚物(XGG)降滤失剂与XG在淡水、4%盐水和饱和盐水钻井液中的增粘降滤失性能和抗温性能,并通过岩心膨胀试验对比了XGG、XG和KCl对页岩的抑制性能。试验结果表明,在淡水钻井液中XGG具有极强的增粘效果和降滤失能力,远远超过XG1随着钻井液矿化度的提高,XGG的性能有一定下降,但XGG在各种钻井液中均具有比XG更好的高温增稠和控制失水的能力;XG已具有优良的抑制性,XGG的抑制性得到进一步提高。 相似文献
158.
The long‐term thermal‐oxidative aging behavior of polyamide 6 (PA6) was studied by comparison with the stabilized sample in this work. The variation of mechanical properties of the pure and the stabilized samples of PA6 with aging time at 110°C, 130°C, and 150°C were investigated, respectively. The aging mechanism of PA6 under heat and oxygen was studied in terms of the reduced viscosity, crystallization behavior, dynamic mechanical behavior, and chemical composition through the methods of polarized light microscopy (PLM), differential scanning calorimetry (DSC), dynamic mechanical analysis (DMA), X‐ray photoelectron energy spectrum (XPS), and so on. The results indicated that at the initial stage of aging, the molecular crosslinking reaction of PA6 dominated resulting in the increase of the mechanical strength, reduced viscosity, and the glass transition temperature of the sample. And the molecular degradation dominated in the subsequent aging process resulting in the decrease of the melting temperature, the increase of the crystallinity, and the formation of the oxides and peroxides products. © 2008 Wiley Periodicals, Inc. J Appl Polym Sci, 2008 相似文献
159.
If a low weight percentage of crude fine fillers can improve properties of polymer materials directly without complicated chemical treatment process involved, it will be significant for many industrial applications. Our previous study indicated that a kind of Cancun natural sand could be an effective filler material for polymer composites. In this current work, the epoxy composites reinforced by this kind of natural sand particles were prepared and thermal and mechanical properties of the composites containing up to 5 wt % of the sand particles were characterized. Results showed that the highest flexural strength appears in the epoxy composite containing 1 wt % sand particles. A damage model was used to interpret the flexural properties, which showed an acceptable agreement with the experimental results. The glass transition temperature, high temperature storage modulus, and dimensional stability of the sand/epoxy composites monotonically increased with the addition of the sand particles. The sand particle/epoxy composites also displayed a noticeable enhancement in thermal conductivity. Theoretical analysis showed that in addition to conduction, other heat transport mechanisms played roles in the improved heat transmission through the composites. As a natural porous micron-scale material, Cancun sand has the potential for applications in cost-effective composites with enhanced mechanical and thermal properties. © 2008 Wiley Periodicals, Inc. J Appl Polym Sci, 2008 相似文献
160.
Yongxian Zhao Baochen Huang Wei Yao Hailin Cong Huafeng Shao Aihua Du 《应用聚合物科学杂志》2008,107(5):2986-2993
A new organic‐solvent‐free water‐phase suspension method was used to synthesize partially epoxidized high trans‐1,4‐polyisoprene (TPI) to improve its properties, including oil resistance and wet‐skid resistance. The epoxidation was conducted in an aqueous peracetic acid solution and on the TPI granules prepared by a bulk precipitation method with supported titanium catalyst. The effects of the synthesis conditions, including reaction temperature, reaction time, and pH value, on the epoxy content were investigated. Epoxidized trans‐1,4‐polyisoprene (ETPI) with epoxy contents between 10 and 80% were obtained within 4 h. Both the amorphous and crystalline regions of TPI were epoxidized. The crystallization properties decreased with increasing epoxy content. ETPIs possessed lower mechanical properties than TPI but could be enhanced by vulcanization. The oil resistance and wet‐skid resistance were significantly improved after epoxidation. © 2007 Wiley Periodicals, Inc. J Appl Polym Sci, 2008 相似文献