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双深度多层穿梭车仓储系统倒货策略与作业调度方法
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作者 周丰旭 刘飞 范国良 《机电工程》 北大核心 2026年第2期370-381,共12页
双深度多层穿梭车仓储系统普遍存在倒货作业,导致出入库作业时间增加,系统作业效率降低。随着货位占用率的上升,倒货作业调度的难度和复杂度持续增加。针对这一问题,提出了一种双深度多层穿梭车仓储系统倒货策略与作业调度方法。首先,... 双深度多层穿梭车仓储系统普遍存在倒货作业,导致出入库作业时间增加,系统作业效率降低。随着货位占用率的上升,倒货作业调度的难度和复杂度持续增加。针对这一问题,提出了一种双深度多层穿梭车仓储系统倒货策略与作业调度方法。首先,分析了倒货作业过程,提出了随机点倒货策略、最近点倒货策略和固定点倒货策略三种倒货作业策略,建立了倒货作业时间模型和任务调度出库作业时间模型;然后,以出库作业时间最小为目标,建立了出库作业调度优化模型;接着,设计了双种群遗传算法对模型进行了求解,引入了变邻域搜索及双种群重组和协作优化策略,增加了算法寻优能力,提升了算法搜索性能;最后,采用案例分析了倒货策略和作业调度方法的有效性,开展了算法对比分析以验证算法的优越性。研究结果表明:调度任务规模从35提高到100时,算法优化效率从13.28%提升到24.26%,双种群遗传算法的优化效率更高,能够有效缩短出库作业时间。集成倒货策略的调度优化方法能够准确评估倒货作业时间,进而提升双深度多层穿梭车仓储系统作业效率。 展开更多
关键词 双深度多层穿梭车仓储系统 倒货作业 变邻域搜索 遗传算法 随机点倒货策略 最近点倒货策略 固定点倒货策略
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Fabrication and Microstructural Control of Nano-structured Bulk Steels: A Review 被引量:1
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作者 Linxiu Du Shengjie Yao +3 位作者 Jun Hu Huifang Lan Hui Xie Guodong Wang 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2014年第3期508-520,共13页
There exist strong interests of developing nano-grained steels because of the outstanding properties including high strength/weight ratio, wear resistance, excellent toughness, and favorable cellular activity. This ar... There exist strong interests of developing nano-grained steels because of the outstanding properties including high strength/weight ratio, wear resistance, excellent toughness, and favorable cellular activity. This article reviews the main fabrication process and microstructural control of nano-structured steels over the last decades. Severe plastic deformation is considered as an effective route of obtaining the nano-grained microstructures. The process of cold-rolling and annealing of martensitic steel is a viable method to obtain bulk nano-structured low carbon steel, while the final thickness of the cold-rolling plate is limited. According to the theoretical results of the thermal simulation studies, a novel alloy design combined with the rapid transformation and rolling process is proposed to successfully fabricate nano-grained high strength bulk steel. The refinement mechanisms are expected to be taking advantage of increase in the transformation nucleation sites and inhibiting the grain coarsening. Moreover, corresponding mechanical properties are summarized. 展开更多
关键词 Nano-structured steel SPD Cold-rolling and annealing martensite rtrp Transformation mechanism Mechanical properties
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