部分代表性学术论文:
[1] Deng Xiaolin, Lu Qi, Liu Fuyun, Huang Jiale*. Energy
absorption comparison of conventional and dual gradient hierarchical
multicellular tubes under axial impact[J]. Journal of the Brazilian Society of
Mechanical Sciences and Engineering, 2023, 45(3):182. (SCI,IF:2.361)
[2] Xiaolin Deng,
Qi Lu, Fuyun Liu, Mei Liang*, Qiuyun Wei, Jiale Huang*. Crushing analysis of
hierarchical multicellular tubes with gradient character along axial and radial
directions under oblique loads[J].heliyon,2023.2.E13595 (SCI,IF:3.776)
[3] Huang Jiale, Yang Yuhan,
Zhou Feng, Deng Xiaolin*(通信作者). Biomechanical stability
variation of rice stem during maturation and wilting[J]. Journal of the
Brazilian Society of Mechanical Sciences and Engineering, 2023, 45:74. (SCI,IF:2.361)
[4] Deng Xiaolin,
Qin Shangan, Huang Jiale*. Crashworthiness analysis of gradient
hierarchical multicellular columns evolved from the spatial folding[J].
Materials & Design, 2022, 215: 110435. (SCI,IF:9.417)
[5] Qin Shangan, Deng
Xiaolin*(通信作者), Liu Xinyan. Crashworthiness
analysis of bioinspired hierarchical gradient multicell tubes under axial
impact[J]. Thin-Walled Structures, 2022, 179: 109591. (SCI,IF:5.881)
[6] Deng Xiaolin,
Liu Fuyun, Huang Guangwen, Huang Jiale*. Multiobjective optimization for the
crashworthiness design of bioinspired sinusoidal honeycombs[J]. Applied Physics
A, 2022, 128(5):1-18. (SCI,IF:2.983)
[7] Huang Jiale, Zheng
Ziyu, Deng Xiaolin *(通信作者), Wang Yafei. Crashworthiness analysis of gradient
fractal thin-walled structure[J]. Thin-Walled Structures,2022, 181: 110102.(SCI,IF:5.881)
[8] Shangan Qin, Xiaolin
Deng *(通信作者), Fuyun Liu. Energy absorption
characteristics and crashworthiness of rhombic hierarchical gradient
multicellular hexagonal tubes[J] Mechanics of Advanced Materials and
Structures,2022.2122640(SCI,IF:3.338)
[9] Xiaolin Deng,
Fuyun Liu, Libo Cao*, Guangwen Huang, Jiale Huang*.Energy-absorption
characteristics of sandwich corrugated square tubes under axial crushing[J].
Journal of the Brazilian Society of Mechanical Sciences and Engineering,
2022,44:458(SCI,IF:2.361)
[10] Deng X,
Qin S, Huang J*. Energy absorption characteristics of axially varying
thickness lateral corrugated tubes under axial impact loading. Thin-Walled
Structures. 2021, 163: 1-27. (SCI, IF:5.881)
[11] Deng X,
Qin S, Huang J*. Multiobjective optimization of axially varying
thickness lateral corrugated tubes for energy absorption. Mechanics of Advanced
Materials and Structures. 2021, 28(5): 1-14. (SCI,IF:3.338)
[12] Huang J, Deng
X*(通信作者), Liu W*. Bionic design
of bend-twist coupled thin-walled beam based on the structure of rice stem.
Mechanics of Advanced Materials and Structures. 2021,28(7):1-14. (SCI,IF:3.338)
[13] Deng Xiaolin,
Qin Shangan, Huang Jiale. Out-of-plane impact analysis for a bioinspired
sinusoidal honeycomb[J]. Mechanics of Advanced Materials and Structures, 2021.
1995547. (SCI,IF:3.338)
[14] Deng X*,
Cao L. Crushing analysis and crashworthiness optimisation for a novel
bioinspired multicell filled tubular structure [J]. International Journal of
Crashworthiness, 2020, 1-16. (SCI, IF:2.055)
[15] Liu W*, Jin L,
Luo Y, Deng X. Multi-objective crashworthiness optimisation
of tapered star-shaped tubes under oblique impact [J]. International Journal of
Crashworthiness, 2020, 1: 1-15.(SCI,IF:2.055)
[16] Deng X, Liu W*. Experimental and numerical
investigation of a novel sandwich sinusoidal lateral corrugated tubular
structure under axial compression [J]. International Journal of Mechanical
Sciences, 2019, 151: 274-287.(SCI,IF:6.772)
[17] Deng X, Liu W*.
Multi-objective optimization of thin-walled sandwich tubes with lateral
corrugated tubes in the middle for energy absorption [J]. Thin-Walled
Structures, 2019, 137: 303-317. (SCI,IF:5.881)
[18] Deng X,
Liu W*. Crushing analysis and multi-objective crashworthiness
optimization of multi-cell conical tube subjected to oblique loading [J].
Advances in Mechanical Engineering, 2019, 11(1): 1-20.(SCI,IF:1.316)
[19] Deng X, Liu W*, Jin L. On the
crashworthiness analysis and design of a lateral corrugated tube with a
sinusoidal cross-section [J]. International Journal of Mechanical Sciences,
2018, 141: 330-340. (SCI,IF:6.772)
[20] Deng X, Liu W*, Lin Z.
Experimental and theoretical study on crashworthiness of star-shaped tubes
under axial compression [J]. Thin-Walled Structures, 2018, 130: 321-331. (SCI,IF:5.881)
[21] Liu W*, Huang J, Deng
X, Lin Z, Zhang L. Crashworthiness analysis of cylindrical tubes filled
with conventional and negative Poisson's ratio foams [J]. Thin-Walled
Structures, 2018, 131: 297-308. (SCI,IF:5.881)
[22] Liu W*, Lin Z, Wang
N, Deng X. Dynamic performances of thin-walled tubes with
star-shaped cross section under axial impact [J]. Thin-Walled Structures, 2016,
100: 25-37. (SCI,IF:5.881)
[23] Liu W*, Lin Z, He
J, Wang N, Deng X. Crushing behavior and
multi-objective optimization on the crashworthiness of sandwich structure with
star-shaped tube in the center [J]. Thin-Walled Structures, 2016, 108: 205-214. (SCI,IF:5.881)
[24] Deng X,
Liu W*. Crashworthiness research and optimisation design of sandwich
multi-cell conical tube under axial impact [J]. International Journal of
Materials and Structural Integrity, 2017, 11(1/2/3): 82-105.(EI收录)
[25] 邓小林,杨馥模,覃善甘. 新型仿竹六边形梯度层级多胞管耐撞性对比研究[J].吉林大学学报(工学版).2022.11网络首发(EI源刊)
[26] 邓小林,刘旺玉*. 一种负泊松比正弦曲线蜂窝结构的面内冲击动力学分析[J]. 振动与冲击,2017,36(13):103-109+154. (EI收录)
[27]邓小林,黄家乐*. 轴向变厚度星形管吸能特征及多目标优化研究[J].振动与冲击2021, 41(8): 287-296。(EI收录)
[28] 刘夫云*,邓小林.配置产品尺寸参数修改与变型设计方法研究[J].计算机集成制造系统,2008,(11):2092-2096+2198.(EI收录)
[29] Liu F*, Song
S, Deng X. Research on evolving rule of part relation network of
product family [J]. International Journal of Materials & Structural
Integrity, 2008, 1(4):334-343.(EI收录)
[30] Deng X.
Sensibility Analysis and Structural Optimization Design of Vehicle Frame [J].
Applied Mechanics & Materials, 2013, 401-403:276-281.(EI 收录)
[31] Deng X*, Wei H.
Design and Simulation Analysis of the Manipulator Used to Feed Gems [J].
Applied Mechanics & Materials, 2013, 364:365-369.(EI 收录)
[32] 邓小林. 分层梯变负泊松比蜂窝结构的面内冲击动力学分析[J]. 机械设计与制造,2016(04):219-223.(全国中文核心期刊)
[33] 邓小林. 连续梯变拉胀蜂窝面内冲击动力学性能研究[J].机械设计与制造,2021(04):195-200. (全国中文核心期刊)
[34] 邓小林,刘夫云*,黄美发,刘鑫炎,汪明天.基于复杂网络的产品变型设计方法[J].机械科学与技术,2009,28(04):505-509.(全国中文核心期刊)
[35] 邓小林, 刘夫云*.基于参数化技术的零件变型设计方法[J]. 机械设计与研究,2008,(04):47-49.(全国中文核心期刊)
[36] 邓小林*, 韦衡冰. 基于ADAMS的液压挖掘机工作装置仿真研究[J]. 机床与液压,2013,41(21):129-133+69.(全国中文核心期刊)
[37] 邓小林*,梁仪瑜,沈柱林.并联机械手结构设计与分析[J].组合机床与自动化加工技术,2015,(05):17-20.( 全国中文核心期刊)
[38] 邓小林, 刘夫云*, 韦衡冰.产品尺寸参数分析方法及其应用研究[J]. 制造业自动化,2009,31(07):118-120+134.(全国中文核心期刊)
[39] 邓小林*, 韦衡冰.基于参数化技术的装配件变型设计方法[J]. 制造业自动化,2010,32(08):125-129.(全国中文核心期刊)
[40] 邓小林*,韦衡冰,梁眉.行为建模技术在扑翼机构优化设计中的应用[J].制造业自动化,2014,36(01):132-134+142.(全国中文核心期刊)
[41] 邓小林,刘夫云*,黄美发,刘鑫炎.基于行为建模技术的变型设计方法[J].计算机应用研究,2009,26(S1) :792-794.(全国中文核心期刊)
[42] Deng X. Product Structure Analysis
Method Based on the Interpretive Structural Modeling[C]. Proceedings of 2012
International Conference on Mechanical Engineering and Material Science, 2012.
340-343.(国际会议)
[43] Deng X. Research on Applying
Interpretive Structural Modeling in Mechanical Specialty Teaching
Program[C].Selected Papers from the 2013 Conference on Education and Teaching
in Colleges and Universities,2013,18-21.(国际会议)
[44] Deng X. Crashworthiness Research of
Sandwich Multi-cell Conical Tube UnderAxial Impact[C].2016 International
Workshop on Materials Science and Engineering, 2016,849-856.(国际会议)
[45]韦衡冰,邓小林.基于Pro/E二次开发的工程图快速生成技术研究[J].煤矿机械,2010,31(11):227-229.(全国中文核心期刊)
[46] 刘鑫炎,黄美发,刘夫云,邓小林.基于复杂网络的产品族结构树的研究与实现[J]. 微电子学与计算机,2009,26(11):177-180.(全国中文核心期刊)
[47] 刘鑫炎,刘夫云,黄美发,邓小林. 配置产品零部件分析方法及其应用研究[J]. 制造业自动化,2009,31(06):99-101+135.(全国中文核心期刊)
[48] 刘鑫炎,黄美发,刘夫云,匡兵,邓小林.面向产品配置的相对相似度计算方法及其应用[J].机械设计,2009,26(02):3-6.(全国中文核心期刊)
[49] 黄翠萍,邓小林*(通信作者),蔡珍珍. 自相似嵌套金属多胞管耐撞性研究[J].机械强度.2022,已录用(全国中文核心期刊)
[50] 覃善甘,邓小林*(通信作者),刘鑫炎, 刘夫云. 新型层级梯度六边形管的耐撞性多目标优化[J].塑性工程学报.2022,已录用(全国中文核心期刊)
[51] 钱利国,陈挺,邓小林*(通信作者),李业荣,邓佳. 双层双路磁保持继电器结构设计及测试研究[J].制造业自动化.2022,已录用(全国中文核心期刊)