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本文应用多属性目标决策的方法,评判不同规格毛织面料的"满意度",客观地提供一个重要的优选辅助依据。 相似文献
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Tear Resistance of Orthogonal Kevlar-PWF-reinforced TPU Film 总被引:1,自引:0,他引:1
This work seeks to investigate the notch sensitivity and fracture behaviour of orthogonal Kevlar-plain woven fabric (PWF)-reinforced thermoplastic polyurethanes (TPU) film applied to high altitude balloon. Four types of specimens are implemented to measure notched strength and fracture toughness by conducting static tension and tear tests on an MTS system respectively. The damage and failure mechanisms are discussed and the results for notched strength and tear resistance are evaluated and compared with each other. From the experiments, it is found that the notch sensitivity of the film increases with the increase in the size of the hole, but the notch sensitivity and the stress concentration of the notch are insignificant and there is a decrease of only about 4%-10% in tensile strength for the notched specimens with different hole sizes in diameter compared with the unnotched specimen. In contrast, the tear resistance containing a central slit with only 1 mm length is about half of tensile strength of the unnotched film, which implies that the tear resistance exists an significant notch sensitivity. The results of this study provide an insight into notch sensitivity and fracture behaviour of the Kevlar-PWF-reinforced TPU film and constitute a fundamental basis for the design of high altitude balloon. 相似文献
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RapidIO技术以交换机为核心构建互连拓扑系统,基于交换机的RapidIO互连与配置管理是整个RapidIO互连系统实现的关键技术。介绍了基于RapidIO交换的互连技术,阐述了RapidIO交换网络JTAG接口、I2C接口和RapidIO维护包等三种配置管理方法和具体的实现方式,可以完成系统的动态流量调节、容错重构等特性。 相似文献
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以碳纤维单轴向缝编织物为研究对象,开展了树脂体系及其复合工艺、织物结构参数和碳纤维种类对碳纤维单轴向缝编织物使用工艺性及其复合材料主要力学性能的影响研究。结果表明:经向碳纤维和衬纬材料的种类及其面密度等结构参数对织物弯曲硬挺度和织物单向渗透率的影响规律基本相似;无论是碳纤维缝编织物单向渗透率还是复合材料的主要力学强度,真空吸附工艺中,基于TDE-85环氧树脂的自制6#环氧树脂体系均明显优于市售用基于双酚A环氧树脂的环氧树脂体系;采用610A树脂预浸料工艺、或经向碳纤维的适当展纱、或干喷湿法纺丝技术制备的碳纤维,均有利于进一步提高碳纤维单轴向缝编织物复合材料的主要力学性能。这为碳纤维缝编织物结构设计、主要原材料选择、制备工艺、配套树脂体系及其复合工艺等选择优化提供一些参考,为碳纤维缝编织物、尤其是为国产碳纤维缝编织物的制备和推广应用奠定了良好基础。 相似文献
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以T-300平纹炭布和聚丙烯睛(PAN)预氧化纤维网胎叠层针刺,经炭化后制备成准三维结构的圆筒复合织物,在化学气相沉积至一定密度后,用两种不同工艺制备了C/C复合材料。在金相显微镜下对材料的增强结构进行了分析,并对材料热物理性能进行了测定。结果表明,网胎纤维沿径向的针刺导入明显增强了材料的整体结构,导入的径向纤维以纤维簇的形式存在,并不完全与层间垂直,工艺过程对分布形式影响显著。800℃时,化学气相沉积(CVD)和树脂炭混合基体,中间经1 800℃高温处理的C/C复合材料其轴向和径向热扩散系数分别为0.064 cm2/s和0.026 7 cm2/s,比热容分别为1.928×103J/(kg.K)和2.278×103J/(kg.K);CVD和沥青炭混合基体,中间经2 500℃高温处理的C/C复合材料,其轴向和径向热扩散系数分别为0.159 cm2/s和0.067 cm2/s,比热容分别为1.597×103J/(kg.K)和1.713×103J/(kg.K)。对两种工艺造成热性能差异的原因进行了分析。 相似文献
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