[1] Wang J, Wang X, Wang Y et al. Effects of Forming Parameters on Fatigue Life in Incremental Sheet Punching. Materials. 2021,14(9):2308 (SCI)
[2] Wang J, Wang M, Wang Y et al. Effect of the N2/Ar flow ratio on the microstructure and mechanical properties of TiSiCN coatings. Materiali in tehnologije. 2021,55(6):789-798 (SCI)
[3] Wang J, Wang X, Li L et al. Feasibility of non-lubricated incremental sheet punching with sinusoidal tool path. Journal of the Brazilian Society of Mechanical Sciences and Engineering. 2020,42(5):234 (SCI)
[4] Wang J, Li L, Zhou P et al. Improving formability of sheet metals in incremental forming by equal diameter spiral tool path. The International Journal of Advanced Manufacturing Technology. 2019,101(1-4):225-234 (SCI)
[5] Wang J, Ma D, Liu Q et al. Effect of an electromagnetic field on the microstructure and properties of Cr(Ti)AlN hard coatings prepared with arc-ion plating. Materiali in tehnologije. 2019,53(6):833-838 (SCI)
[6] Wang J, Zhang Y, Liu D et al. Automated spectra analysis of in situ radioactivity measurements in the marine environment using NaI(Tl) detector. Applied Radiation and Isotopes. 2018,141:88-94 (SCI)
[7] Wang J, Li L, Jiang H. Effects of forming parameters on temperature in frictional stir incremental sheet forming. Journal of Mechanical Science and Technology. 2016,30(5):2163-2169 (SCI)
[8] Wang J, Li L, Jiang H et al. Incremental sheet punching on the base of sinusoidal tool path. The International Journal of Advanced Manufacturing Technology. 2017,89(9):3527-3534 (SCI)
[9] Wang J, Wang H, Li L-h et al. Microstructure and Mechanical Properties of Magnesium Alloy Sheet by Friction Heating Single Point Incremental Forming. Journal of Donghua University (English Edition). 2015,32(04):654-657+671 (EI)
[10] Wang J, Wen-long M, Chu Z et al. Constitutive model for F45V microalloyed forging steel at high temperature. Journal of Iron and Steel Research, International. 2014,21(4):464-468 (SCI)
[11] 王进, 褚忠, 李君飞,等. F35MnVN非调质钢高温本构模型对比研究. 材料科学与工艺. 2012,(05):143-148 (EI)
[12] 王进, 褚忠, 张琦. 用Arrhenius方程预测F40MnV非调质钢高温流动应力. 材料热处理学报. 2013,(01):182-186 (EI)
[13] 王进, 褚忠, 张琦. 38MnVS6非调质钢两种高温本构模型的对比. 材料工程. 2014,(02):81-86 (EI)
[14] Li L, Wang J. Equivalent heating tool method for numerical simulation for sheet temperature in frictional stir incremental forming. The International Journal of Advanced Manufacturing Technology. 2020,107(3):1251-1263 (SCI)
[15] Li L, Wang J, Gao S. Microstructure and mechanical properties of high-purity aluminum deformed with equal-channel angular pressing. Materiali in tehnologije. 2018,52(6):723-729 (SCI)
[16] Li L, Wang J, Wang BP. Geometric accuracy of incremental sheet forming for TRIP590. Journal of Mechanical Science and Technology. 2017,31(11):5257-5264 (SCI)
[17] Li L, Wang J, Zhang S. Numerical simulation for deformation characteristics and fracture prediction of perforated sheet in incremental sheet punching. The International Journal of Advanced Manufacturing Technology. 2020,110(5-6):1415-1427 (SCI)
[18] 高波,王进, 高松松,等. 纯铜表面机械扭压处理工艺参数对其显微硬度的影响. 中国有色金属学报. 2015,25(12):3390-3396 (EI)
[19] 李君飞, 王进, 安钰坤. F35MnVN非调质钢热变形中流动应力模型. 材料热处理学报. 2012,(S1):121-124 (EI)
[20] 秦威广, 王进, 纪文杰,等. 液-液驱替动力学研究. 物理学报. 2022,71(06):359-364 (SCI)
[21] 赵文景, 王进, 秦威广,等 基于Marangoni效应的液液驱动铺展过程研究. 物理学报. 2021,70(18):184701 (SCI)