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基于光谱的多级多色打印系统基础线性化模型
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作者 方恩印 杨晟炜 李春梅 《包装工程》 CAS CSCD 北大核心 2016年第17期196-201,共6页
目的 研究一种新的基础线性化算法,优化多级多色打印系统模型。方法 分析现有的用于多级多色打印系统基础线性化算法存在的问题,并针对这些问题从多级墨量比例系数的确定、单通道控制、总墨量控制、网点级别转换和线性化等5个方面提出... 目的 研究一种新的基础线性化算法,优化多级多色打印系统模型。方法 分析现有的用于多级多色打印系统基础线性化算法存在的问题,并针对这些问题从多级墨量比例系数的确定、单通道控制、总墨量控制、网点级别转换和线性化等5个方面提出一种基于光谱的多级多色打印系统基础线性化模型。结果 该方法的色域体积约为EFI流程控制的109%,在色域空间中的分布更加均匀,喷墨量约为EFI流程的50%~85%。结论 新基础线性化算法在保证打印设备色域最大化的同时,可实现各基色墨水的最佳利用。 展开更多
关键词 基础线性化 多级多色 颜色再现
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Design parameter optimization of beam foundation on soft soil layer with nonlinear finite element 被引量:2
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作者 魏红卫 吴亚中 喻泽红 《Journal of Central South University》 SCIE EI CAS 2012年第6期1753-1763,共11页
Finite element method was performed to investigate the influences of beam stiffness, foundation width and cushion thickness on the beating capacity of beam foundation on underlying weak laminated clay. The comparison ... Finite element method was performed to investigate the influences of beam stiffness, foundation width and cushion thickness on the beating capacity of beam foundation on underlying weak laminated clay. The comparison between numerical results and results from field test including plate-bearing test and foundation settlement observation shows reasonable agreement. According to the numerical results, the beam width, length, cross section and cushion thickness were optimized. The results show that the stresses in subgrade soil decrease greatly with increasing the cushion thickness and width of foundation. However, the foundation settlement and influencing depth of displacement also increase correspondingly under conditions of relatively thinner cushion thickness. For the foundations on underlying weak layer, increasing foundation width merely might be inadequate for improving the bearing capacity, and the appropriate width and cushion thickness depend on the response of subgrade. A comparison between rigid and flexible beams was also discussed. The influence of a flexible beam foundation on subgrade is relatively smaller under the same loading conditions, and the flexible beam foundation appears more adaptable to various subgrades. The proposed flexible beam foundation was adopted in engineering. According to the calculation results, beam width of 2.4 m and cushion thickness of 0.8 m are proposed, and a flexible beam foundation is applied in the optimized design, which is confirmed reasonable by the actual engineering. 展开更多
关键词 beam foundation design optimization soft soil soil-beam interaction nonlinear analysis
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