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111.
Observations are reported on isotactic polypropylene (i) in a series of tensile tests with a constant strain rate on specimens annealed for 24 h at various temperatures in the range from 110 to 150 °C, (ii) in two series of creep tests in the subyield region of deformations on samples not subjected to thermal treatment and on specimens annealed at 140 °C, and (iii) in a series of tensile relaxation tests on non-annealed specimens. Constitutive equations are derived for the elastoplastic and non-linear viscoelastic responses of semicrystalline polymers. A polymer is treated as an equivalent transient network of macro-molecules bridged by junctions (physical cross-links, entanglements and lamellar blocks). The network is assumed to be highly heterogeneous, and it is thought of as an ensemble of meso-regions with different activation energies for separation of strands from temporary nodes. The elastoplastic behavior is modelled as sliding of junctions in meso-domains with respect to their reference positions driven by macro-deformation. The viscoelastic response is attributed to detachment of active strands from temporary junctions and attachment of dangling chains to the network. Constitutive equations for isothermal deformations with small strains are derived by using the laws of thermodynamics. Adjustable parameters in the stress–strain relations are found by fitting the experimental data. 相似文献
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J. Gegner 《Materialwissenschaft und Werkstofftechnik》2003,34(3):290-297
Chemical Composition and Microstructure of Polymer‐Derived Glasses and Ceramics in the Si–C–O System. Part 2: Characterization of microstructure formation by means of high‐resolution transmission electron microscopy and selected area diffraction Liquid or solid silicone resins represent the economically most interesting class of organic precursors for the pyrolytic production of glass and ceramics materials on silicon basis. As dense, dimensionally stable components can be cost‐effectively achieved by admixing reactive filler powders, chemical composition and microstructure development of the polymer‐derived residues must be exactly known during thermal decomposition. Thus, in the present work, glasses and ceramics produced by pyrolysis of the model precursor polymethylsiloxane at temperatures from 525 to 1550 °C are investigated. In part 1, by means of analytical electron microscopy, the bonding state of silicon was determined on a nanometre scale and the phase separation of the metastable Si–C–O matrix into SiO2, C and SiC was proved. The in‐situ crystallization could be considerably accelerated by adding fine‐grained powder of inert fillers, such as Al2O3 or SiC, which permits effective process control. In part 2, the microstructure is characterized by high‐resolution transmission electron microscopy and selected area diffraction. Turbostratic carbon and cubic β‐SiC precipitate as crystallization products. Theses phases are embedded in an amorphous matrix. Inert fillers reduce the crystallization temperature by several hundred °C. In this case, the polymer‐derived Si–C–O material acts as a binding agent between the powder particles. Reaction layer formation does not occur. On the investigated pyrolysis conditions, no crystallization of SiO2 was observed. 相似文献
114.
As we approach 100 nm technology the interconnect issues are becoming one of the main concerns in the testing of gigahertz system-on-chips. Voltage distortion (noise) and delay violations (skew) contribute to the signal integrity loss and ultimately functional error, performance degradation and reliability problems. In this paper, we first define a model for integrity faults on the high-speed interconnects. Then, we present a BIST-based test methodology that includes two special cells to detect and measure noise and skew occurring on the interconnects of the gigahertz system-on-chips. Using an inexpensive test architecture the integrity information accumulated by these special cells can be scanned out for final test and reliability analysis. 相似文献
115.
改性双马来酰亚胺的研究 总被引:2,自引:0,他引:2
本文研究了双马来酰亚胺与烯丙基化合物形成的改性树脂体系的固化和热性能,讨论了单体配比、增韧剂、催化剂对性能的影响。 相似文献
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盐浓度对交联聚合物线团形态的影响 总被引:16,自引:1,他引:15
用核孔膜过滤法 (过滤体积对过滤时间作图 )、动态光散射法 (DLS)和扫描电镜法 (SEM )研究了交联反应前后盐 (NaCl)浓度变化对低浓度HPAM与AlCit形成的交联聚合物溶液 (LPS)中交联聚合物线团 (LPC)形态的影响。所用HPAM相对分子质量 1.1× 10 7~ 1.4× 10 7,LPS中HPAM与Al的质量比 2 0∶1,HPAM浓度 0 .1或 0 .2 g/L ,交联反应温度 40℃ ,时间 7天。实验结果表明 :①LPC的平均水力半径Rh(DLS测定值 )随交联反应时盐浓度的增大先减小后增大 ,盐浓度由 0 .5 g/L增加到 2 g/L时Rh 由 45 0nm迅速减小到 2 5 0nm ,盐浓度增加到 2 0 g/L时Rh达到最小值 16 0nm ,此后随盐浓度的继续增加Rh 有所增大 ;盐浓度 0 .5和 2 .0 g/L时Rh 的SEM测定值分别为45 0和 2 5 0nm ,与DLS结果一致。②交联反应完成后改变LPS的盐浓度 ,也可改变LPC的Rh 值 ,但改变幅度较小 ;盐浓度 0 .5 g/L时形成的LPS ,当盐浓度增加至 2 g/L时 ,Rh 值由 45 0nm减小至 35 9nm ,大于盐浓度 2 g/L时形成的LPS的Rh 值 (2 46nm) ;盐浓度 2 g/L时形成的LPS ,当盐浓度减少至 0 .5 g/L时 ,Rh 值由 2 46nm增大至32 6nm ,小于盐浓度 0 .5g/L时形成的LPS的Rh 值 (4 5 0nm)。用盐浓度改变引起LPC水化层厚度改变 ,线团收缩或舒张解释盐浓度改变时Rh 测定值的 相似文献
119.
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相干源二维波达方向估计 总被引:4,自引:0,他引:4
本文分析了平面阵接收信号的协方差矩阵,发现它可分解为一个广义对称矩阵与一个非广义对称矩阵之和,利用信号协方差矩阵的这一结构特征,重点研究了相干源二维波达方向(DOA)估计.该方法通过构造一个差矩阵,求出其本特征值对应的任一特征向量,利用谱函数估计相干源二维DOA.简要分析了二维DOA估计的分维处理。 相似文献