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61.
为探索磷石膏大掺量、规模化、资源化利用路径,分别以自制固化剂和水泥为胶凝材制备大掺量磷石膏路基填料,开展大掺量磷石膏混合料的击实试验、无侧限抗压强度试验及疏水改性试验,分析大掺量磷石膏与自制固化剂和水泥的适配性、击实特性、强度特性、耐水性能。结果表明,采用水泥或自制固化剂改性磷石膏击实曲线呈单峰变化趋势,且含水率偏低时对大掺量磷石膏混合料的干密度影响较小;相同配比时,固化剂体系大掺量磷石膏混合料7d无侧限抗压强度是水泥体系的1.5倍以上,磷尾砂与自制固化剂的适配性优于黏土,且配比为90%磷石膏+10%固化剂的大掺量磷石膏混合料7d无侧限抗压强度度达3.4MPa,经疏水改性后强度提升至4.2MPa,疏水剂与自制固化剂的复配较好地改善了磷石膏自身亲水特性,提升了其水稳性能。 相似文献
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66.
本文针对为能更好的运行CAD软件,对所需要的配件系统进行分析比较,以达到合理配置硬件系统,提高工作效率的目的。 相似文献
67.
本文以连通片检测器无性模板的设计为例,给出了细胞神经网络中无性模板的设计方法及连通片检测器无性模板中各元素的数值范围。 相似文献
68.
Jian-zhong Wang Xuan-hui Qu Hai-qing Yin Ming-jun Yi Xian-jie Yuan 《Frontiers of Materials Science in China》2008,2(4):392-396
Iron powders with two different particle size distributions were compacted by high velocity compaction. The influences of
particle size distribution and impact velocity on green properties, including green density, springback, tensile strength
and bending strength etc., were studied with scanning electron microscopy (SEM) and a computer controlled universal testing
machine. The results show that the particle size distribution and the impact velocity strongly affect its properties. Wider
size distribution results in green compact with higher density and better strength. Furthermore, springback of compacts is
lower produced by the powder with wider size distribution, especially for radial springback. As impact velocity increases,
its green density and green strength gradually increases, but the increasing rate of density decreases gradually. No special
relation is found between springback and impact velocity. In addition, the axial springback and the bending strength are higher
than the radial springback and the tensile strength, respectively. 相似文献
69.
Artificial Protection Film on Lithium Metal Anode toward Long‐Cycle‐Life Lithium‐Oxygen Batteries 下载免费PDF全文
70.
Dianxiang Xu Jianwen Yin Yi Deng Junhua Ding 《IEEE transactions on pattern analysis and machine intelligence》2003,29(1):31-45
The process of agent migration is the major difference between logical code mobility of software agents and physical mobility of mobile nodes in ad hoc networks. Without considering agent transfer, it would make little sense to mention the modeling of strong code mobility, which aims to make a migrated agent restarted exactly from the state when it was stopped before migration. From the perspective of system's architecture, this paper proposes a two-layer approach for the formal modeling of logical agent mobility (LAM) using predicate/transition (PrT) nets. We view a mobile agent system as a set of agent spaces and agents could migrate from one space to another. Each agent space is explicitly abstracted to be a component, consisting of an environmental part and an internal connector dynamically binding agents with their environment. We use a system net, agent nets, and a connector net to model the environment, agents, and the connector, respectively. In particular, agent nets are packed up as parts of tokens in system nets, so that agent transfer and location change are naturally captured by transition firing (token game) in Petri nets. Agent nets themselves are active only at specific places and disabled at all the other places in a system net. The semantics of such a two-layer LAM model is defined by transforming it into a PrT net. This facilitates the analysis of several properties about location, state, and connection. In addition, this paper also presents a case study of modeling and analyzing an information retrieval system with mobile agents. 相似文献