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41.
《Information and Software Technology》2014,56(1):40-53
ContextThe dependencies between individual requirements have an important influence on software engineering activities e.g., project planning, architecture design, and change impact analysis. Although dozens of requirement dependency types were suggested in the literature from different points of interest, there still lacks an evaluation of the applicability of these dependency types in requirements engineering.ObjectiveUnderstanding the effect of these requirement dependencies to software engineering activities is useful but not trivial. In this study, we aimed to first investigate whether the existing dependency types are useful in practise, in particular for change propagation analysis, and then suggest improvements for dependency classification and definition.MethodWe conducted a case study that evaluated the usefulness and applicability of two well-known generic dependency models covering 25 dependency types. The case study was conducted in a real-world industry project with three participants who offered different perspectives.ResultsOur initial evaluation found that there exist a number of overlapping and/or ambiguous dependency types among the current models; five dependency types are particularly useful in change propagation analysis; and practitioners with different backgrounds possess various viewpoints on change propagation. To improve the state-of-the-art, a new dependency model is proposed to tackle the problems identified from the case study and the related literature. The new model classifies dependencies into intrinsic and additional dependencies on the top level, and suggests nine dependency types with precise definitions as its initial set.ConclusionsOur case study provides insights into requirement dependencies and their effects on change propagation analysis for both research and practise. The resulting new dependency model needs further evaluation and improvement. 相似文献
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Factors influencing the impact toughness of two impact polypropylene copolymers (IPC) with almost the same ethylene content, molecular weight and molecular weight distribution were studied by temperature gradient extraction fractionation (TGEF), scanning electron microscopy (SEM), nuclear magnetic resonance (NMR) and differential scanning calorimetry (DSC). The results indicate that poor interfacial adhesion between the disperse phase and the continuous matrix, larger dimensions and non-uniform distribution of disperse phases are main reasons for the low impact toughness of IPC B that possesses of a low content of ethylene-propylene segmented copolymer with long crystallizable PE and PP sequences as a compatibilizer between the disperse phase and the matrix. 相似文献
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45.
无卤阻燃高抗冲聚苯乙烯的研制 总被引:1,自引:0,他引:1
研究了纳米改性氢氧化铝(CG-ATH)、改性聚苯醚(MPPO)和红磷母料对高抗冲聚苯乙烯(HIPS)的阻燃作用及SBS对所得阻燃材料的增韧作用,得到了具有良好阻燃性能和物理机械性能的复合材料。结果表明,CG-ATH和MPPO与红磷母料之间有很好的协效阻燃作用,配合使用可以使HIPS的垂直燃烧达到FV-0级,氧指数达到27.5%,但是所得复合材料的冲击强度较低。SBS对复合材料有很好的增韧作用,可以使冲击强度提高一倍以上,并且不影响复合材料的阻燃性能。 相似文献
46.
高流动、高韧性阻燃ABS的研制 总被引:3,自引:0,他引:3
采用熔融挤出的方法制备了高流动、高韧性阻燃ABS。研究了阻燃剂、热塑性弹性体(SBS)、氯化聚乙烯(CPE)、聚氯乙烯(PVC)和纳米SiO2对ABS树脂力学性能和阻燃性能的影响。结果表明:溴-锑阻燃剂的用量在13.5%~18%时,ABS树脂可以达到很好的阻燃效果,但它同时也使ABS树脂的冲击强度下降很多;在阻燃ABS体系中加入SBS或CPE或PVC以及CPE与PVC的混合物,可以提高ABS树脂的冲击强度;采用CPE和PVC以及纳米SiO2等材料组成的配方体系,可以制得高流动、高韧性阻燃ABS树脂,该树脂具有良好的力学性能和阻燃性能。 相似文献
47.
聚合物纳米复合材料韧性和破坏行为 总被引:1,自引:0,他引:1
在总结高分子材料增韧机理、高分子纳米复合材料冲击破坏行为的基础上,探讨了高分子纳米复合材料的增韧机理。纳米无机粒子起应力集中的作用导致界面脱黏、空化与基体屈服是其增韧高分子材料的主要原因,而碳纳米管则起桥联裂纹、偏转裂纹方向、传递界面应力使聚合物基体屈服而增韧高分子材料。对聚合物/层状填料纳米复合材料而言,分散在聚合物基体中的插层或剥离的无机纳米片层对复合材料银纹的形成有抑制作用,其二维几何结构不利于片层周围基体的屈服与界面脱黏、空化,因而不能增韧高分子材料,反而还导致了聚合物/层状填料纳米复合材料抗冲击强度的降低。高分子材料的纳米复合目前很难达到橡胶增韧的效果,若同时采用纳米复合技术与官能化弹性体增韧技术,可望设计、制备出一系列高强度、高韧性的高分子纳米复合材料。 相似文献
48.
通过在聚丙烯中添加纳米蒙脱土的改性方法,开发了高模量聚丙烯专用料。着重研究了蒙脱土活化处理及加工条件等对专用料性能的影响。结果表明,在采用蒙脱石质量分数为75%的普通蒙脱土时,专用料弯曲模量提高60%以上,冲击强度提高一倍,回缩率降低35%,并且加工性能良好。 相似文献
49.
High strain rate tensile impact properties of aliphatic polyketone terpolymers were investigated and related to the polymer chain structure. Aliphatic polyketones were used as a model system, by changing the termonomer content and type. Aliphatic polyketone is a perfectly alternating copolymer and the structure was changed with the addition of a few mol% of termonomer: propylene, hexylene and dodecene. Studied were the thermal properties with DSC and DMTA, tensile behaviour, notched tensile impact behaviour, notched Izod properties and the temperature development during deformation. The perfectly alternating copolymer had a melting point of 257 °C, a Tg at 15 °C, a high crystallinity (48%), a high yield stress (77 MPa) and yield strain (31%) but a relatively low fracture strain (85%) and an impact strength (notched Izod) of 13 kJ/m2. Increasing the propylene content to 6%, lowered the melting temperature to 224 °C, without changing the Tg. The modulus and yield stress were lowered but the impact strength improved. Increasing the length of the termonomer while keeping the Tm at 224 °C lowered the Tg, the modulus, the yield stress but strongly improved the impact resistance. The longer termonomers, with a lower yield stress, reduced the necking behaviour. The temperature increase in front of the notch was about 85 °C. By adding termonomers to aliphatic ketones, the notched impact behaviour improved significantly at the cost of modulus and yield stress. 相似文献
50.
胡世静 《江汉石油职工大学学报》2010,23(6):86-88
企业ERP管理系统的运用,决定了油田内审工作的发展方向。阐述了ERP管理系统对油田内部审计工作的影响,分析了在ERP环境下油田内部审计工作面临的困难及其原因,提出了ERP环境下油田内部审计工作对应之策。 相似文献