[1]張建軍,劉曉玲,楊沛然.單粗糙峰的時變等溫線接觸彈流潤滑分析,《潤滑與密封》,2005, (1): 67-71. (EI)
[2]張建軍,賀治成,王龍,鄒桂燕,車清論.非穩(wěn)態(tài)熱彈流潤滑中黏壓系數(shù)的影響,《煤礦機械》,2006,(12):70-72. (中文核心)
[3]張建軍,楊沛然. 潤滑油環(huán)境粘度對非穩(wěn)態(tài)熱彈流潤滑的影響,《潤滑與密封》,2007, (2): 79-84. (中文核心)
[4] 張建軍,楊沛然.變卷吸速度的點接觸熱彈流潤滑分析,《潤滑與密封》,2007, (7): 930-935. (中文核心)
[5]張建軍,楊沛然. 時變熱彈流潤滑點接觸區(qū)內(nèi)表面凹陷移動現(xiàn)象研究,《自然科學(xué)進(jìn)展》,2007, (7): 930-935.
[6]賀治成,張建軍,王優(yōu)強.考慮沖擊載荷的直齒圓柱齒輪彈流潤滑數(shù)值分析,《煤礦機械》,2007,(7):59-60. (中文核心)
[7]張建軍.大學(xué)生綜合素質(zhì)的模糊綜合評價.青島理工大學(xué)學(xué)報,2008(1):103-106
[8]張建軍.理工科高校創(chuàng)業(yè)教育模式的探索與構(gòu)建.中國冶金教育,2011(1):89-92
[9]張建軍.青島理工大學(xué)學(xué)生創(chuàng)業(yè)成功案例研究.中國冶金教育,2012(2):83-85
[10]張建軍,劉成龍 接觸固體曲率半徑對非穩(wěn)態(tài)熱彈流潤滑的影響.機械設(shè)計與研究,2014(5):91-93. (中文核心)
[11]張建軍,楊沛然,郭峰,王靜.考慮橫向振動的熱彈流潤滑分析.潤滑與密封,2014(8):1-7. (中文核心)
[12]張建軍,王靜.郭峰.法向簡諧振動對熱彈流潤滑的影響分析.機械設(shè)計與制造,2014(8): 234-235,239. (中文核心)
[13]張建軍,郭峰.振動沖擊下接觸固體滑動方向?qū)櫥挠绊?潤滑與密封,2014(9):30-35. (中文核心)
[14]張建軍,郭峰*,Kaneta M,Omasta M. 卷吸與滑動正交的熱彈流潤滑研究.《摩擦學(xué)學(xué)報》2015,35(4): 477-484. (EI)
[15]Jianjun Zhang,Peiran Yang,Jing Wang,F(xiàn)eng Guo*. The effect of an oscillatory entrainment velocity on the film thickness in thermal EHL point contact, Tribology International, 2015,(90):519–532.
(SCI)
[16]張建軍,楊沛然,郭峰,王靜. 偏心輪機構(gòu)時變點接觸熱彈流潤滑分析.《內(nèi)燃機學(xué)報》, 2015(3): 279-287. (EI)
[17]Jianjun Zhang*,Liu Chenglong, Feng Guo. Numerical Simulation on Variable Load EHL Problems with Single Asperities. Key Engineering Materials ,2015,642:89-93 (EI)
[18]Jianjun Zhang, Qibo Ni,Jing Wang , Feng Guo. Transient thermal elastohydrodynamic lubrication of point contacts subjected to normal vibration, Industrial Lubrication and Tribology, 2016, 68(5):536–547.(SCI)
[19] Qinglun Che; Hao Li; Ligang Zhang; Yufeng Guo; Jianjun Zhang; Ga Zhang; Role of Carbon Nanotubes on Growth of a Nanostructured Double-deck Tribofilm Yielding Excellent Self-Lubrication Performance, Carbon, 2020,https://doi.org/10.1016/j.carbon.2020.01.091. .(SCI)