nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
A comparative LCA method for environmentally friendly manufacturing: Additive manufacturing versus Machining case
|
Lunetto, Vincenzo |
|
|
98 |
C |
p. 406-411 |
artikel |
2 |
A comparative study on environmental impact analysis of synthetic and ESR flux used for refining of steel
|
Kamaraj, Ashok |
|
|
98 |
C |
p. 448-451 |
artikel |
3 |
A Concept for Blockchain-Based LCA and its Application in the Context of Aircraft MRO
|
Rolinck, Maximilian |
|
|
98 |
C |
p. 394-399 |
artikel |
4 |
A concept for low-emission production using Distributed Ledger Technology
|
Mayer, Johannes |
|
|
98 |
C |
p. 619-624 |
artikel |
5 |
Adaptive decision-making method of life cycle options by using process data collected over multiple life cycle stages
|
Kondoh, Shinsuke |
|
|
98 |
C |
p. 382-387 |
artikel |
6 |
Adaptive Remanufacturing – Methodology towards an intelligent maintenance strategy for production resources
|
Burggräf, Peter |
|
|
98 |
C |
p. 330-335 |
artikel |
7 |
Additive manufacturing in the process industry: A process-based cost model to study life cycle cost and the viability of additive manufacturing spare parts.
|
Cardeal, Gonçalo |
|
|
98 |
C |
p. 211-216 |
artikel |
8 |
A framework to assess circularity across product-life cycle stages – A case study
|
K.E.K, Vimal |
|
|
98 |
C |
p. 442-447 |
artikel |
9 |
AI-enhanced Identification, Inspection and Sorting for Reverse Logistics in Remanufacturing
|
Schlüter, Marian |
|
|
98 |
C |
p. 300-305 |
artikel |
10 |
AI-LCE: Adaptive and Intelligent Life Cycle Engineering by applying digitalization and AI methods – An emerging paradigm shift in Life Cycle Engineering
|
Sakao, Tomohiko |
|
|
98 |
C |
p. 571-576 |
artikel |
11 |
A Life Cycle Oriented Data-Driven Architecture for an Advanced Circular Economy
|
Kintscher, Lars |
|
|
98 |
C |
p. 318-323 |
artikel |
12 |
A Machine Vision-based Cyber-Physical Production System for Energy Efficiency and Enhanced Teaching-Learning Using a Learning Factory
|
Kumar, Rishi |
|
|
98 |
C |
p. 424-429 |
artikel |
13 |
A memetic algorithm for mixed-model two-sided disassembly line balancing problem
|
Mutlu, Serkan |
|
|
98 |
C |
p. 67-72 |
artikel |
14 |
A modular LCA/LCC-modelling concept for evaluating material and process innovations in carbon fibre manufacturing
|
Groetsch, Thomas |
|
|
98 |
C |
p. 529-534 |
artikel |
15 |
Analysis of Barriers to Industry 4.0 adoption in Manufacturing Organizations: an ISM Approach
|
Kumar, Pramod |
|
|
98 |
C |
p. 85-90 |
artikel |
16 |
Analyzing the Environmental Burden of an Aquaponics System using LCA
|
Bhakar, Vikrant |
|
|
98 |
C |
p. 223-228 |
artikel |
17 |
Analyzing the Environmental Consequences of Production Processes from a System of Systems Perspective: A Case of Gear Manufacturing in the Automotive Industry
|
Abdoli, Shiva |
|
|
98 |
C |
p. 376-381 |
artikel |
18 |
An Investigation of Energy Efficiency in Finish Turning of EN 353 Alloy Steel
|
Kumar, Raman |
|
|
98 |
C |
p. 654-659 |
artikel |
19 |
Application of multi grade fuzzy approach to compute the circularity index of manufacturing organizations
|
K.E.K, Vimal |
|
|
98 |
C |
p. 476-481 |
artikel |
20 |
A quantitative framework for Industry 4.0 enabled Circular Economy
|
Spaltini, Marco |
|
|
98 |
C |
p. 115-120 |
artikel |
21 |
Artificial intelligence system for enhancing product’s performance during its life cycle in a railcar industry
|
Daniyan, Ilesanmi |
|
|
98 |
C |
p. 482-487 |
artikel |
22 |
Assembly model of mechanical products for their life cycle simulation
|
Hiraoka, Hiroyuki |
|
|
98 |
C |
p. 553-558 |
artikel |
23 |
Assessing an EEE manufacturer’s economic benefit with remanufacturing
|
Duberg, Johan Vogt |
|
|
98 |
C |
p. 103-108 |
artikel |
24 |
A Sustainable Reverse Engineering Process
|
Saiga, Katsuhiro |
|
|
98 |
C |
p. 517-522 |
artikel |
25 |
A tool for aircraft eco-design based on streamlined Life Cycle Assessment and Uncertainty Analysis
|
Parolin, Giácomo |
|
|
98 |
C |
p. 565-570 |
artikel |
26 |
Bridging product life cycle gaps in LCA & LCC towards a circular economy
|
Dieterle, Michael |
|
|
98 |
C |
p. 354-357 |
artikel |
27 |
Business Sustainability in Post COVID-19 Era by Integrated LSS-AM Model in Manufacturing: A Structural Equation Modeling
|
Mundra, Nidhi |
|
|
98 |
C |
p. 535-540 |
artikel |
28 |
Case Study for an Operation-based Topology Optimization Using the Digital Twin Approach
|
Bellalouna, Fahmi |
|
|
98 |
C |
p. 342-347 |
artikel |
29 |
Combining bio-inspiration and ecodesign
|
Willocx, M. |
|
|
98 |
C |
p. 595-600 |
artikel |
30 |
Comparative LCA of Municipal Solid Waste Collection and Sorting Schemes Considering Regional Variability
|
Erkisi-Arici, Selin |
|
|
98 |
C |
p. 235-240 |
artikel |
31 |
Comparing the environmental performance of industrial recycling routes for lithium nickel-cobalt-manganese oxide 111 vehicle batteries
|
Abdelbaky, Mohammad |
|
|
98 |
C |
p. 97-102 |
artikel |
32 |
Comparison of the environmental impacts of online and classical conferences: the case of LCE 2020 and perspectives regarding the planetary boundaries
|
Evrard, D. |
|
|
98 |
C |
p. 205-210 |
artikel |
33 |
Complexity of self-engineering systems across the life cycle – Biological and engineering systems
|
Brooks, Sam |
|
|
98 |
C |
p. 121-126 |
artikel |
34 |
Concepts and Requirements for Flexible Disassembly Systems for Drive Train Components of Electric Vehicles
|
Fleischer, Jürgen |
|
|
98 |
C |
p. 577-582 |
artikel |
35 |
Conducting Personalization Design Workshops — Designing Personalization Procedures
|
Kaneko, Kazuki |
|
|
98 |
C |
p. 494-499 |
artikel |
36 |
Coordinated Planning in Closed-loop Supply Chains and its Implications on the Production and Recycling of Lithium-ion Batteries
|
Scheller, Christian |
|
|
98 |
C |
p. 464-469 |
artikel |
37 |
Copyright Page
|
|
|
|
98 |
C |
p. ii |
artikel |
38 |
Data-driven energy analysis of supermarkets: a multi-level approach for different stakeholders
|
Uhlig, Benjamin |
|
|
98 |
C |
p. 61-66 |
artikel |
39 |
Definition and Reference Framework for Life Cycle Technologies in Life Cycle Engineering - a Case Study on All Solid State Traction Batteries
|
Dilger, Nikolas |
|
|
98 |
C |
p. 217-222 |
artikel |
40 |
Design of a Methodological Framework for Adaptive Remanufacturing-based Business Models
|
Burggräf, Peter |
|
|
98 |
C |
p. 547-552 |
artikel |
41 |
Developing A sustainability framework for Industry 4.0
|
Jamwal, Anbesh |
|
|
98 |
C |
p. 430-435 |
artikel |
42 |
Development of a Decision Support System for 3D Printing Processes based on Cyber Physical Production Systems
|
Kumar, Rishi |
|
|
98 |
C |
p. 348-353 |
artikel |
43 |
Development of a Machine Learning based model for Damage Detection, Localization and Quantification to extend Structure Life
|
Dhiraj, |
|
|
98 |
C |
p. 199-204 |
artikel |
44 |
Development of a Model for Total Productive Maintenance Barriers to Enhance the Life Cycle of Productive Equipment
|
Mishra, Rajesh P. |
|
|
98 |
C |
p. 241-246 |
artikel |
45 |
Development of a Transient Energy Prediction Model for Machine Tools
|
Pawanr, Shailendra |
|
|
98 |
C |
p. 678-683 |
artikel |
46 |
Digital technologies, methods and tools towards sustainable manufacturing: does Industry 4.0 support to reach environmental targets?
|
Thiede, Sebastian |
|
|
98 |
C |
p. 1-6 |
artikel |
47 |
Eco−efficiency limits of product technologies towards achieving science-based targets
|
Moshrefi, Sepideh |
|
|
98 |
C |
p. 488-493 |
artikel |
48 |
Edge-based Digital Twin to trace and ensure sustainability in cross-company production networks
|
Glatt, Moritz |
|
|
98 |
C |
p. 276-281 |
artikel |
49 |
Effects of CO2-Penalty Costs on the Production and Recycling Planning of Lithium-Ion Batteries
|
Scheller, Christian |
|
|
98 |
C |
p. 643-647 |
artikel |
50 |
Energy Consumption and Lifecycle Assessment Comparison of Cutting Fluids for Drilling Titanium Alloy
|
Khanna, Navneet |
|
|
98 |
C |
p. 175-180 |
artikel |
51 |
Energy Efficiency Assessment of Cryogenic Minimum Quantity Lubrication Cooling for Milling Operations
|
Gross, Daniel |
|
|
98 |
C |
p. 523-528 |
artikel |
52 |
Enhancing Energy Flexibility through the Integration of Variable Renewable Energy in the Process Industry
|
Pierri, Erika |
|
|
98 |
C |
p. 7-12 |
artikel |
53 |
Environmental and buckling performance analysis of 3D printed composite isogrid structures
|
Forcellese, Archimede |
|
|
98 |
C |
p. 458-463 |
artikel |
54 |
Environmental Impact Allocation of Agri-food Co-products
|
Ijassi, Walid |
|
|
98 |
C |
p. 252-257 |
artikel |
55 |
Environmental Impact Minimization via Production Planning for Aluminum Billet Molding Process
|
Wang, Yiming |
|
|
98 |
C |
p. 169-174 |
artikel |
56 |
Environmental impact of recycling spent lithium-ion batteries
|
Sambamurthy, Shrinidhi |
|
|
98 |
C |
p. 631-636 |
artikel |
57 |
Environmental impacts assessment during sand casting of Aluminium LM04 product: A case of Indian manufacturing industry
|
Yadav, Ankit |
|
|
98 |
C |
p. 181-186 |
artikel |
58 |
Environmental impacts of brass melting: an Indian case study
|
Meshram, Rohit B. |
|
|
98 |
C |
p. 500-504 |
artikel |
59 |
Environmental implication of personal protection equipment in the pandemic era: LCA comparison of face masks typologies
|
Rodríguez, Núria Boix |
|
|
98 |
C |
p. 306-311 |
artikel |
60 |
Evaluation of Factors for Sustainable Manufacturing of Electric Vehicles in India
|
Digalwar, Abhijeet K. |
|
|
98 |
C |
p. 505-510 |
artikel |
61 |
E-waste Management for Environmental Sustainability: an Exploratory Study
|
Mor, Rahul S |
|
|
98 |
C |
p. 193-198 |
artikel |
62 |
Exploration of decision-contexts for circular economy in automotive industry
|
Schulz, Magnus |
|
|
98 |
C |
p. 19-24 |
artikel |
63 |
Exploring the three dimensions of sustainability related to clay cups
|
Sangwan, Kuldip Singh |
|
|
98 |
C |
p. 139-144 |
artikel |
64 |
Factory life cycle evaluation through integrated analysis of factory elements
|
Dér, Antal |
|
|
98 |
C |
p. 418-423 |
artikel |
65 |
Fostering End-of-Life Utilization by Information-driven Robotic Disassembly
|
Poschmann, Hendrik |
|
|
98 |
C |
p. 282-287 |
artikel |
66 |
FOUNDRY 4.0: An innovative technology for sustainable and flexible process design in foundries
|
Scharf, Stefan |
|
|
98 |
C |
p. 73-78 |
artikel |
67 |
Framework for the integration of Process Mining into Life Cycle Assessment
|
Ortmeier, Christian |
|
|
98 |
C |
p. 163-168 |
artikel |
68 |
Framework for the Life Cycle Assessment of non-permanent process units in volatile chemical recycling process chains
|
Hagen, Johanna |
|
|
98 |
C |
p. 55-60 |
artikel |
69 |
GreenTrail – A Sustainable Mobility Concept Advisor (SMCA) Tool
|
Kaspar, Jerome |
|
|
98 |
C |
p. 648-653 |
artikel |
70 |
Hybrid virtual metering points – a low-cost, near real-time energy and resource flow monitoring approach for production machines without PLC data connection
|
Sossenheimer, Johannes |
|
|
98 |
C |
p. 452-457 |
artikel |
71 |
Identifying and Analyzing the Factors Affecting Disassembly of Products in Remanufacturing Organizations
|
Singh, Prashant Kumar |
|
|
98 |
C |
p. 312-317 |
artikel |
72 |
Industrial suitable and digitally recordable application of ultrasound for the enviromentally friendly degassing of aluminium melts before tilt casting
|
Riedel, E. |
|
|
98 |
C |
p. 589-594 |
artikel |
73 |
Influence of mechanical properties and CO2 emissions on the optimization of self-compacting based hybrid fiber reinforced concrete
|
Mahapatra, Chinmaya Kumar |
|
|
98 |
C |
p. 145-150 |
artikel |
74 |
Integrated LCA-MFA Framework for Gold Production from Primary and Secondary Sources
|
Farjana, Shahjadi Hisan |
|
|
98 |
C |
p. 511-516 |
artikel |
75 |
Integrated Material-Energy-Quality Assessment for Lithium-ion Battery Cell Manufacturing
|
Wessel, Jacob |
|
|
98 |
C |
p. 388-393 |
artikel |
76 |
Investigation of the potential for an automated disassembly process of BEV batteries
|
Blankemeyer, Sebastian |
|
|
98 |
C |
p. 559-564 |
artikel |
77 |
Irreversible entropy to account for environmental impacts and sustainability
|
Rapf, Matthias |
|
|
98 |
C |
p. 601-606 |
artikel |
78 |
Is it all about Information? The Role of the Information Gap between Stakeholders in the Context of the Circular Economy
|
Lawrenz, Sebastian |
|
|
98 |
C |
p. 364-369 |
artikel |
79 |
LCA of laser surface activation and traditional pre-treatments for adhesive bonding of engineering polymers
|
Favi, Claudio |
|
|
98 |
C |
p. 541-546 |
artikel |
80 |
Library of facility models for structural and graphical definition of recycling system simulation considering information flows
|
Komoto, Hitohi |
|
|
98 |
C |
p. 187-192 |
artikel |
81 |
Life cycle assessment for milling of Ti- and Ni-based alloy aero engine components
|
Bergs, Thomas |
|
|
98 |
C |
p. 625-630 |
artikel |
82 |
Life Cycle Primary Energy Demand and Greenhouse Gas Emission benefits of vehicle lightweighting with recycled carbon fibre
|
He, Di |
|
|
98 |
C |
p. 43-48 |
artikel |
83 |
Life cycle sustainability assessment of potential battery systems for electric aircraft
|
Barke, Alexander |
|
|
98 |
C |
p. 660-665 |
artikel |
84 |
Machine learning based approach for process supervision to predict tool wear during machining
|
Parwal, Vedant |
|
|
98 |
C |
p. 133-138 |
artikel |
85 |
Measures for Energy-Efficient Process Chains
|
Denkena, B. |
|
|
98 |
C |
p. 288-293 |
artikel |
86 |
Method for continuous evaluation of industrial heating network emissions
|
Kohne, Thomas |
|
|
98 |
C |
p. 31-36 |
artikel |
87 |
Methodology to develop Digital Twins for energy efficient customizable IoT-Products
|
Riedelsheimer, Theresa |
|
|
98 |
C |
p. 258-263 |
artikel |
88 |
Method to increase resource efficiency in production with the use of MFCA
|
Weyand, Astrid |
|
|
98 |
C |
p. 264-269 |
artikel |
89 |
Model-based energy analysis of a dry room HVAC system in battery cell production
|
Vogt, Marcus |
|
|
98 |
C |
p. 157-162 |
artikel |
90 |
Modeling energy and resource use in additive manufacturing of automotive series parts with multi-jet fusion and selective laser sintering
|
Wiese, Mathias |
|
|
98 |
C |
p. 358-363 |
artikel |
91 |
Modelling of Energy Consumption for Milling of Circular Geometry
|
Pawar, S.S. |
|
|
98 |
C |
p. 470-475 |
artikel |
92 |
Modelling of Variable Energy Consumption for CNC Machine Tools
|
Pawanr, Shailendra |
|
|
98 |
C |
p. 247-251 |
artikel |
93 |
Modelling Supply Chain Agility Antecedents Using Fuzzy DEMATEL
|
Jindal, Anil |
|
|
98 |
C |
p. 436-441 |
artikel |
94 |
Multi-objective hybrid genetic algorithm for energy adaptive production scheduling in job shops
|
Grosch, Benedikt |
|
|
98 |
C |
p. 294-299 |
artikel |
95 |
On Remanufacturing Readiness Level - An introduction to a Remometer™
|
Kurilova-Palisaitiene, Jelena |
|
|
98 |
C |
p. 91-96 |
artikel |
96 |
Packaging Plastic Waste Management for a Circular Economy and Identifying a better Waste Collection System using Analytical Hierarchy Process (AHP)
|
Balwada, Jaideep |
|
|
98 |
C |
p. 270-275 |
artikel |
97 |
Potential for Nd and Dy Recovery from End-of-Life Products to Meet Future Electric Vehicle Demand in the U.S.
|
Maani, Thomas |
|
|
98 |
C |
p. 109-114 |
artikel |
98 |
Potentials of Hydrogen Technologies for Sustainable Factory Systems
|
Imdahl, Christoph |
|
|
98 |
C |
p. 583-588 |
artikel |
99 |
Prioritizing drivers to creating traceability in the food supply chain
|
Patidar, Akshay |
|
|
98 |
C |
p. 690-695 |
artikel |
100 |
Process Chain Analysis of Directed Energy Deposition: Energy flows and their influencing factors
|
Ehmsen, Svenja |
|
|
98 |
C |
p. 607-612 |
artikel |
101 |
Proposal for a procedure to design multipurpose urban factories
|
Moerlen, Déborah |
|
|
98 |
C |
p. 412-417 |
artikel |
102 |
Quantifying Life Cycle Inventories for Machining Processes at Detailed Design
|
Bernstein, William Z. |
|
|
98 |
C |
p. 370-375 |
artikel |
103 |
Quantitative Assessment Method for Supporting Scenario Workshops toward Sustainable Consumption and Production
|
Onozuka, Sota |
|
|
98 |
C |
p. 49-54 |
artikel |
104 |
Reducing Lifecycle Costs due to Profile Scanning of the Powder Bed in Metal Printing
|
Wehnert, Kira Kristin |
|
|
98 |
C |
p. 684-689 |
artikel |
105 |
Scale-Up of Pilot Line Battery Cell Manufacturing Life Cycle Inventory Models for Life Cycle Assessment
|
von Drachenfels, Nicolas |
|
|
98 |
C |
p. 13-18 |
artikel |
106 |
Screw detection for disassembly of electronic waste using reasoning and re-training of a deep learning model
|
Foo, Gwendolyn |
|
|
98 |
C |
p. 666-671 |
artikel |
107 |
Self-Assessment and Improvement Tool for a Sustainability Excellence Framework in Singapore
|
Hsien, Cadence |
|
|
98 |
C |
p. 672-677 |
artikel |
108 |
Sustainability assessment of methods to prevent progressive collapse of RC flat slab buildings
|
Garg, Suyash |
|
|
98 |
C |
p. 25-30 |
artikel |
109 |
Sustainable Aspects of a Metal Printing Process Chain with Laser Powder Bed Fusion (LPBF)
|
Ochs, Dennis |
|
|
98 |
C |
p. 613-618 |
artikel |
110 |
Sustainable Machining of Cf/SiC Ceramic Matrix Composite Using Green Cutting Fluids
|
Shyam, |
|
|
98 |
C |
p. 151-156 |
artikel |
111 |
Sustainable Production System Critical Success Factors: an Interpretive Structural Modelling approach
|
Kota, Srinivas |
|
|
98 |
C |
p. 324-329 |
artikel |
112 |
Symbiotic loss-free industrial production in ultra-efficient urban industrial parks
|
Hertwig, Michael |
|
|
98 |
C |
p. 637-642 |
artikel |
113 |
Techno-economic Assessment of a Novel SmCo Permanent Magnet Manufacturing Method
|
Zhou, Xiaoyu |
|
|
98 |
C |
p. 127-132 |
artikel |
114 |
The Augmented Reality Technology as Enabler for the Digitization of Industrial Business Processes: Case Studies
|
Bellalouna, Fahmi |
|
|
98 |
C |
p. 400-405 |
artikel |
115 |
The Effects of Technological Changes on Material Circularity
|
Soo, Vi Kie |
|
|
98 |
C |
p. 37-42 |
artikel |
116 |
The International Dimension of Electrical Energy Derived Emissions for Machine Tools
|
Alswat, Haitham M. |
|
|
98 |
C |
p. 696-701 |
artikel |
117 |
Towards an interdisciplinary framework for effective sustainability assessment in manufacturing
|
Kumar, Manish |
|
|
98 |
C |
p. 79-84 |
artikel |
118 |
Towards collaborative life cycle specification of digital twins in manufacturing value chains
|
Rasor, Rik |
|
|
98 |
C |
p. 229-234 |
artikel |
119 |
Unsupervised Learning Based Diagnosis Model for Anomaly Detection of Motor Bearing with Current Data
|
Hiruta, Tomoaki |
|
|
98 |
C |
p. 336-341 |
artikel |