[1]BJRN A, CHANDRAKUMAR C, BOULAY A, et al. Review of Life-cycle Based Methods for Absolute Environmental Sustainability Assessment and Their Applications[J]. Environmental Research Letters, 2020,15(8):83001.
[2]黄和平.生命周期管理研究述评[J]. 生态学报, 2017,37(13):4587-4598.
HUANG Heping. Critical Review of Life Cycle Management[J]. Acta Ecologica Sinica, 2017,37(13):4587-4598.
[3]顾复,顾新建,张武杰,等.透明公平的产品生命周期评价方法[J]. 中国机械工程, 2018,29(21):2539-2545.
GU Fu, GU Xinjian, ZHANG Wujie, et al. Transparent and Fair LCA Method for Products[J]. China Mechanical Engineering, 2018,29(21):2539-2545.
[4]吕锦,铁铎,李育锋,等.绝热层制备工艺的环境影响分析[J]. 南京航空航天大学学报, 2020,52(1):79-86.
LYU Jin,TIE Duo,LI Yufeng,et al. Environmental Impact Assessment of Thermal Insulation Layer Preparation Process[J]. Journal of Nanjing University of Aeronautics & Astronautics, 2020,52(1):79-86.
[5]YILMAZ O, ANCTIL A, KARANFIL T. LCA as a Decision Support Tool for Evaluation of Best Available Techniques(BATs) for Cleaner Production of Iron Casting[J]. Journal of Cleaner Production, 2015,105:337-347.
[6]YADAV A, JAMWAL A, AGRAWAL R, et al. Environmental Impacts Assessment during Sand Casting of Aluminium LM04 Product:a Case of Indian Manufacturing Industry[J]. Procedia CIRP, 2021,98:181-186.
[7]吴玉珍.基于生命周期评价的污水生化处理工艺对比及选择研究[D]. 吉林:东北电力大学, 2018.
WU Yuzhen. Research on the Comparison and Selection of Wastewater Biochemical Treatment Processes Based on Life Cycle Assessment[D]. Jilin:Northeast Electric Power University, 2018.
[8]MLLER A, WRNER P. Impact of Dynamic CO2 Emission Factors for the Public Electricity Supply on the Life-cycle Assessment of Energy Efficient Residential Buildings[J]. IOP Conference Series:Earth and Environmental Science, 2019,323(1):012036.
[9]FERRARI A M, VOLPI L, SETTEMBRE-BLUNDO D, et al. Dynamic Life Cycle Assessment(LCA) Integrating Life Cycle Inventory(LCI) and Enterprise Resource Planning(ERP) in an Industry 4.0 Environment[J]. Journal of Cleaner Production, 2021,286:125314.
[10]NEGISHI K, LEBERT A, ALMEIDA D, et al. Evaluating Climate Change Pathways through a Buildings Lifecycle Based on Dynamic Life Cycle Assessment[J]. Building and Environment, 2019,164:106377.
[11]GHITA M, SIHAM B, HICHAM M, et al. Digital Twins Based LCA and ISO 20140 for Smart and Sustainable Manufacturing Systems[M]. Singapore:Springer Singapore, 2021:101-145.
[12]田富君,田锡天,耿俊浩,等.基于模型定义的工艺信息建模及应用[J]. 计算机集成制造系统, 2012,18(5):913-919.
TIAN Fujun, TIAN Xitian,GENG Junhao, et al. Model-based Definition Process Information Modeling and Application[J]. Computer Integrated Manufacturing Systems, 2012,18(5):913-919.
[13]靳江艳,黄翔,刘希平,等.基于模型定义的飞机装配工艺信息建模[J]. 中国机械工程, 2014,25(5):569-576.
JIN Jiangyan, HUANG Xiang, LIU Xiping, et al. Model-based Definition Assembly Process Information Modeling for Aircrafts[J]. China Mechanical Engineering, 2014, 25(5):569-576.
[14]SCHROEDER G N, STEINMETZ C, PEREIRA C E, et al. Digital Twin Data Modeling with Automation ML and a Communication Methodology for Data Exchange[J]. IFAC-PapersOnLine, 2016,49(30):12-17.
[15]刘金锋,王鹏军,景旭文,等.面向含有辅助特征的工艺模型创建方法[J]. 计算机集成制造系统, 2019,25(8):1956-1964.
LIU Jinfeng, WANG Pengjun, JING Xuwen, et al. Method of Modeling for Process Model with Process Auxiliary Features[J]. Computer Integrated Manufacturing Systems, 2019,25(8):1956-1964.
[16]PEREVERZEV P P, AKINTSEVA A V, ALSIGAR M K, et al. Designing Optimal Automatic Cycles of Round Grinding Based on the Synthesis of Digital Twin Technologies and Dynamic Programming Method[J]. Mechanical Sciences(Gttingen), 2019,10(1):331-341.
[17]ZHU W, HU T, LUO W, et al. A STEP-based Machining Data Model for Autonomous Process Generation of Intelligent CNC Controller[J]. International Journal of Advanced Manufacturing Technology, 2018,96(1/4):271-285.
[18]PEREVERZEV P P, AKINTSEVA A V, ALSIGAR M K, et al. Designing Optimal Automatic Cycles of Round Grinding Based on the Synthesis of Digital Twin Technologies and Dynamic Programming Method[J]. Mechanical Sciences(Gttingen), 2019,10(1):331-341.
[19]SUN X, BAO J, LI J, et al. A Digital Twin-driven Approach for the Assembly-commissioning of High Precision Products[J]. Robotics and Computer-integrated Manufacturing, 2020,61:101839.
[20]刘金锋,赵鹏,周宏根,等.数字孪生驱动的机械加工工艺评价方法[J]. 计算机集成制造系统, 2019,25(6):1600-1610.
LIU Jinfeng, ZHAO Peng, ZHOU Honggen, et al. Digital Twin-driven Machining Process Evaluation Method[J]. Computer Integrated Manufacturing Systems, 2019,25(6):1600-1610.
[21]LIU J, ZHOU H, LIU X, et al. Dynamic Evaluation Method of Machining Process Planning Based on Digital Twin[J]. IEEE Access, 2019,7:19312-19323.
|