Citation: | CHEN Chen, ZHOU Fangzheng, LI Chenglong, LIU Xinfeng, JIA Chuanbao, XU Yao. Prediction method of plasma arc welding molten pool melting state based on spatial and channel characteristics[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2023, 44(4): 30-38. DOI: 10.12073/j.hjxb.20220516001 |
陈健, 苏金花, 张毅梅. 《中国制造2025》与先进焊接工艺及装备发展[J]. 焊接, 2016(3): 1 − 5. doi: 10.3969/j.issn.1001-1382.2016.03.001
Chen Jian, Su Jinhua, Zhang Yimei. 《Made in China 2025》and the development of advanced welding technology and equipment[J]. Welding & Joining, 2016(3): 1 − 5. doi: 10.3969/j.issn.1001-1382.2016.03.001
|
忻建文, 吴东升, 李芳, 等. 小孔型等离子弧焊条形气孔形成机理[J]. 焊接学报, 2021, 42(12): 54 − 61,86. doi: 10.12073/j.hjxb.20210414003
Xin Jianwen, Wu Dongsheng, Li Fang, et al. Formation mechanism of strip porosity in small hole plasma arc welding[J]. Transactions of the China Welding Institution, 2021, 42(12): 54 − 61,86. doi: 10.12073/j.hjxb.20210414003
|
武传松, 赵晨昱, 贾传宝. 穿孔等离子弧焊接工艺研究进展[J]. 航空制造技术, 2015, 58(20): 34 − 39.
Wu Chuansong, Zhao Chenyu, Jia Chuanbao. Research progress of piercing plasma arc welding process[J]. Aeronautical Manufacturing Technology, 2015, 58(20): 34 − 39.
|
何建萍, 吴鑫, 吉永丰, 等. 100 μm超薄不锈钢板脉冲微束等离子弧焊成形机理[J]. 焊接学报, 2021, 42(6): 77 − 84.
He Jianping, Wu Xin, Ji Yongfeng, et al. 100 μm forming mechanism of pulsed micro beam plasma arc welding of ultra-thin stainless steel plate[J]. Transactions of the China Welding Institution, 2021, 42(6): 77 − 84.
|
李挺, 黄健康, 陈秀娟, 等. 旁路耦合微束等离子弧热特性及焊缝成形特点[J]. 焊接学报, 2018, 39(9): 55 − 60.
Li Ting, Huang Jiankang, Chen Xiujuan, et al. Thermal characteristics and weld forming characteristics of bypass coupled micro beam plasma arc[J]. Transactions of the China Welding Institution, 2018, 39(9): 55 − 60.
|
刘建伟, 刘媛, 罗雄麟. 深度学习研究进展[J]. 计算机应用研究, 2014, 31(7): 1921 − 1942. doi: 10.3969/j.issn.1001-3695.2014.07.001
Liu Jianwei, Liu Yuan, Luo Xionglin. Research progress of deep learning[J]. Application Research of Computers, 2014, 31(7): 1921 − 1942. doi: 10.3969/j.issn.1001-3695.2014.07.001
|
覃科, 刘晓刚, 丁立新. 基于卷积神经网络的CO2焊接熔池图像状态识别方法[J]. 焊接, 2017(6): 21 − 26.
Tan Ke, Liu Xiaogang, Ding Lixin. State recognition method of CO2 welding pool image based on convolution neural network[J]. Welding & Joining, 2017(6): 21 − 26.
|
李海超, 刘景风, 谢吉兵, 等. 基于卷积神经网络的GTAW熔透预测[J]. 机械工程学报, 2019, 55(17): 22 − 28. doi: 10.3901/JME.2019.17.022
Li Haichao, Liu Jingfeng, Xie Jibing et al. GTAW penetration prediction based on convolutional neural networks[J]. Journal of Mechanical Engineering, 2019, 55(17): 22 − 28. doi: 10.3901/JME.2019.17.022
|
Li C, Wang Q, Jiao W, et al. Deep learning-based detection of penetration from weld pool reflection images[J]. Welding Journal, 2020, 99(9): 239s − 245s. doi: 10.29391/2020.99.022
|
刘新锋. 基于正面熔池图像和深度学习算法的PAW穿孔/熔透状态预测[D]. 济南: 山东大学, 2017.
Liu Xinfeng. Prediction of PAW perforation/penetration state based on frontal molten pool image and depth learning algorithm[D]. Jinan: Shandong University, 2017.
|
Gu J, Wang Z, Kuen J, et al. Recent advances in convolutional neural networks[J]. Pattern Recognition, 2015, doi: 10.48550/arXiv.1512.07108.
|
He K, Zhang X, Ren S, et al. Deep residual learning for image recognition[C]//IEEE Conference on Computer Vision and Pattern Recognition. Las Vegas, USA, 2016: 770 − 778.
|
Hu J, Shen L, Sun G. Squeeze-and-excitation networks[C]//2018 IEEE/CVF Conference on Computer Vision and Pattern Recognition. Salt Lake City, USA, 2018: 7132 − 7141.
|
He T, Zhang Z, Zhang H, et al. Bag of tricks for image classification with convolutional neural networks[C]//2019 IEEE/CVF Conference on Computer Vision and Pattern Recognition. Los Angeles, USA, 2019: 558 − 567.
|
Han S, Jeff P, John T, et al. Learning both weights and connections for efficient neural networks[C]//NIPS'15: 28th International Conference on Neural Information Processing Systems. MIT Press Cambridge,USA,2015: 1135 − 1143.
|
Pham H, Guan MY, Zoph B, et al. Efficient neural architecture search via parameters sharing[C]//International Conference on Machine Learning. PMLR, Stockholm, Sweden, 2018: 4095 − 4104.
|
吕国豪, 罗四维, 黄雅平, 等. 基于卷积神经网络的正则化方法[J]. 计算机研究与发展, 2014, 51(9): 1891 − 1900. doi: 10.7544/issn1000-1239.2014.20140266
Lyu Guohao, Luo Siwei, Huang Yaquan, et al. Regularization method based on convolution neural network[J]. Journal of Computer Research and Development, 2014, 51(9): 1891 − 1900. doi: 10.7544/issn1000-1239.2014.20140266
|
Szegedy C, Vanhoucke V, Ioffe S, et al. Rethinking the inception architecture for computer vision[C]//IEEE Conference on Computer Vision and Pattern Recognition. Las Vegas, USA, 2016: 2818 − 2826.
|
Jia C B, Liu X F, Zhang G K, et al. Penetration/keyhole status prediction and model visualization based on deep learning algorithm in plasma arc welding[J]. The International Journal of Advanced Manufacturing Technology, 2021, 117(11): 3577 − 3597.
|
Selvaraju R R, Cogswell M, Das A, et al. Grad-CAM: Visual explanations from deep networks via gradient-based localization[C]//IEEE International Conference on Computer Vision and Pattem Recognition. Hawaii, USA, 2017: 618 − 626.
|
[1] | YIN Yan, KANG Ping, LU Chao, ZHANG Yuan, ZHANG Ruihua. Microstructure and microhardness analysis of laser welded dissimilar steel[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2020, 41(7): 71-77. DOI: 10.12073/j.hjxb.20191227002 |
[2] | YIN Yan, PAN Cunliang, ZHAO Chao, ZHANG Ruihua, QU Yuebo. Formation mechanism of microstructure of laser cladding high chromium Fe-based alloy and its effect on microhardness[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2019, 40(7): 114-120. DOI: 10.12073/j.hjxb.2019400192 |
[3] | CHANG Chuanchuan, ZHANG Tiancang, LI Ju. Study on microstructure and microhardness of linear friction welded joints of Ti-22Al-27Nb alloy[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2019, 40(3): 140-144. DOI: 10.12073/j.hjxb.2019400087 |
[4] | YANG Shuo, CHANG Baohua, XING Bin, DU Dong. Influences of forced cooling on the microstructure and microhardness in laser metal deposition of IC10 super alloy[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2018, 39(3): 31-35. DOI: 10.12073/j.hjxb.2018390063 |
[5] | YIN Yan, LI Zilin, XU Guangwei, ZHANG Ruihua, QU Yuebo. Microhardness and microstructure of laser cladding layer on 3Cr13 kitchen knife by disc laser coaxial powder[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2016, 37(10): 85-88. |
[6] | ZHAO Zhili, WANG Guanglin, ZHANG Yuanjian, FANG Hongyuan. Influence of residual stress on static load strength of under-matching butt joint of high strength steel[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2016, 37(6): 114-117. |
[7] | QIN Chun, YAO Zekun, ZHOU Wei, GUO Hongzhen, CAO Jingxia. Effect of thermal exposure on microhardness and element distribution in welding interface of Ti-24Al-15Nb-1.5Mo/TC11 dual alloys[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2012, (8): 33-36. |
[8] | JIANG Zhizhong, HUANG Jihua, CHEN Shuhai, JU Xin. Microstructure transformation and mechanical properties of electron beam welded joints of fusion CLAM steel[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2011, (3): 45-48. |
[9] | ZHAO Zhili, YANG Jianguo, FANG Hongyuan, WU Fangbin. Optimum design of undermatching butt joints with equal load-carrying ability under static load stress for high strength steel[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2009, (6): 103-106. |
[10] | Zhou Haosen, Shi Zhongxian, Wang Min. DISCUSSIONS ON STATIC STRENGTH OF END FILLET WELDS AND RELATED CALCULATING FORMULAE[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 1987, (3): 141-152. |