期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
单颗磨粒切削TC4钛合金过程摩擦行为仿真与研究
1
作者 陈振 赵盼 +1 位作者 闫蕊 路丹妮 《钛工业进展》 CAS 2024年第2期35-40,共6页
通过有限元仿真软件研究了单颗磨粒在切削TC4钛合金过程中的摩擦行为及其对抛光加工的影响。利用Abaqus软件建立了单颗磨粒切削TC4钛合金过程中材料的塑性变形模型,并应用迭代自适应网格重划分技术,准确模拟了不同摩擦系数下单颗磨粒切... 通过有限元仿真软件研究了单颗磨粒在切削TC4钛合金过程中的摩擦行为及其对抛光加工的影响。利用Abaqus软件建立了单颗磨粒切削TC4钛合金过程中材料的塑性变形模型,并应用迭代自适应网格重划分技术,准确模拟了不同摩擦系数下单颗磨粒切削TC4钛合金表面时的接触应力分布和塑性变形,为优化TC4钛合金叶片抛光工艺提供了理论依据。研究表明,摩擦系数对切削深度和材料堆积率有影响,特别是在磨粒切出阶段,摩擦系数的增加会显著促进材料在磨粒前端和两侧的堆积,故在实际抛光加工中应合理控制摩擦系数。 展开更多
关键词 单颗磨粒 有限元仿真 塑性变形 材料堆积率 摩擦行为
下载PDF
Furan-based liquid-crystalline small-molecule donor guest improving the photovoltaic performance of organic solar cells with amorphous packing 被引量:1
2
作者 Yuchen Yue Bing Zheng +4 位作者 Mengdi Liu Yujie Chen Lijun Huo Jingxia Wang Lei Jiang 《Science China Materials》 SCIE EI CAS CSCD 2022年第12期3402-3410,共9页
Introducing liquid-crystalline small-molecule donors(SMDs)into binary systems based on the strong intermolecular interactions of SMDs is a facile and effective strategy to tune the active layer morphology and improve ... Introducing liquid-crystalline small-molecule donors(SMDs)into binary systems based on the strong intermolecular interactions of SMDs is a facile and effective strategy to tune the active layer morphology and improve the performance of organic solar cells(OSCs).Contrary to conventional understanding,this research proposes a new strategy for ternary OSCs implicating that"weakly crystalline materials can also optimize the morphology of the active layer and improve the OSCs performance".Herein,we designed and synthesized two liquid-crystalline SMDs,Z1 and Z2,based on benzodifuran(BDF)units.The amorphous Z2-incorporated ternary devices present an unexpectedly improved power conversion efficiency(PCE)>18%with good stability.By contrast,the highly ordered Z1-based ternary devices possess a significantly depressed efficiency.Multiple characterizations reveal that the Z2-based ternary blend films possess improved miscibility and efficient charge transport.This novel strategy for the selection of the third component is significant for the fabrication of high-efficiency ternary OSCs. 展开更多
关键词 small-molecule donor organic solar cells liquid crystal active layer morphology
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部