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Synergistic enhancement of load-bearing and energy-absorbing performance in additively manufactured lattice structures through modifications to conventional unit cells
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作者 Yi Ren Yu Nie +5 位作者 Bowen Xue Yucheng Zhao lulu liu Chao Lou Yongxun Li Wei Chen 《Defence Technology(防务技术)》 2025年第10期116-130,共15页
The unit cell configuration of lattice structures critically influences their load-bearing and energy absorption performance.In this study,three novel lattice structures were developed by modifying the conventional FB... The unit cell configuration of lattice structures critically influences their load-bearing and energy absorption performance.In this study,three novel lattice structures were developed by modifying the conventional FBCCZ unit cell through reversing,combining,and turning strategies.The designed lattices were fabricated via laser powder bed fusion(LPBF)using Ti-6Al-4V powder,and the mechanical properties,energy absorption capacity,and deformation behaviors were systematically investigated through quasi-static compression tests and finite element simulations.The results demonstrate that the three modified lattices exhibit superior performance over the conventional FBCCZ structure in terms of fracture strain,specific yield strength,specific ultimate strength,specific energy absorption,and energy absorption efficiency,thereby validating the efficacy of unit cell modifications in enhancing lattice performance.Notably,the CFBCCZ and TFBCCZ lattices significantly outperform both the FBCCZ and RFBCCZ lattice structures in load-bearing and energy absorption.While TFBCCZ shows marginally higher specific elastic modulus and energy absorption efficiency than CFBCCZ,the latter achieves superior energy absorption due to its highest ultimate strength and densification strain.Finite element simulations further reveal that the modified lattices,through optimized redistribution and adjustment of internal nodes and struts,effectively alleviate stress concentration during loading.This structural modification enhances the structural integrity and deformation stability under external loads,enabling a synergistic enhancement of load-bearing capacity and energy absorption performance. 展开更多
关键词 Load-bearing Energy absorption Additive manufacturing Lattice structure Unit cell modification
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晚期肝癌综合治疗进展 被引量:8
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作者 颜葱 涂晓璇 +7 位作者 吴伟 童舟 张航瑜 刘璐璐 郑怡 赵鹏 蒋微琴 方维佳 《中国肿瘤临床》 CAS CSCD 北大核心 2018年第21期1100-1103,共4页
近年来,肝癌的发病率逐年上升,死亡率也位居前列。目前,手术治疗是肝癌唯一可能治愈的手段,但多数肝癌诊断时已属晚期,由于肝癌的异质性及对药物的敏感性各异,使得晚期肝癌的疗效较差。本文主要针对晚期肝癌治疗及晚期肝癌个体化治疗的... 近年来,肝癌的发病率逐年上升,死亡率也位居前列。目前,手术治疗是肝癌唯一可能治愈的手段,但多数肝癌诊断时已属晚期,由于肝癌的异质性及对药物的敏感性各异,使得晚期肝癌的疗效较差。本文主要针对晚期肝癌治疗及晚期肝癌个体化治疗的重要进展进行综述,为临床进一步改善肝癌总生存提供新的思路。 展开更多
关键词 肝癌 综合治疗 靶向治疗 免疫治疗
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