Semantic Scholar extracted view of "Challenges and Solutions of Automated Disassembly and Condition-Based Remanufacturing of Lithium-Ion Battery Modules for a Circular Economy" by J. Schäfer et al. DOI: 10.1016/j.promfg.2020.02.145 Corpus ID: 213309503 ...
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AKE technologies represents the system partner in the field of assembly of e-mobility components for its customers. We offer our customers experience in the development and manufacture of assembly-testing lines for complete battery systems in various degrees of automation, from the prototype line to fully automated series production. We advise our …
This dynamic display demonstrates automated mechanical disassembly of the battery housing into modules, battery cells, and other components. Automation companies must anticipate the future of battery technology while developing current solutions. They aim for precision, efficiency, and sustainability in their automation …
To improve the sorting of the battery pack components to achieve high-quality recycling after the disassembly, a labeling system containing the relevant data (e.g., cathode chemistry) about the ...
Disassembly process activity based on IDEF0 language As shown in Fig. 5, disassembly process activity is decomposed into four parts, namely battery pack discharge (A1), external structure removal (A2), disassembly battery module (A3), and disassembly
The surge in the development and adoption of Electric Vehicles (EVs) globally is a trend many countries are paying close attention to. This inevitably means that a significant number of EV batteries will soon reach their End-of-Life (EoL). This looming issue reveals a notable challenge: there''s currently a lack of sustainable strategies for …
Turnkey lithium-ion battery production from a single source. Together with our strategic partners GROB and Dürr, we act as a European system provider for fully automated battery production systems. Through this cooperation, battery producers are offered complete solutions for the entire value chain from a single source.
Disassembly technologies for end-of-life LIBs are reviewed, mainly including disassembly sequencing, manual experimental disassembly, and automatic disassembly …
Rapid advances in the use of lithium-ion batteries (LIBs) in consumer electronics, electric vehicles, and electric grid storage have led to a large number of end-of-life (EOL) LIBs awaiting recycling to reclaim critical materials and eliminate environmental hazards. This article studies automatic mechanical separation methodology for EOL …
In the context of current societal challenges, such as climate neutrality, industry digitization, and circular economy, this paper addresses the importance of improving recycling practices for electric vehicle (EV) battery packs, with a specific focus on lithium–ion batteries (LIBs). To achieve this, the paper conducts a systematic review …
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Move battery manufacturing forward – fast. From pacemakers to smartphones to EVs, the electric battery has become undeniably essential to modern life. Battery manufacturers are seeking smart, adaptable …
DOI: 10.1109/ETFA54631.2023.10275389 Corpus ID: 264041367; Challenges in the Automated Disassembly Process of Electric Vehicle Battery Packs @article{Miloradovic2023ChallengesIT, title={Challenges in the Automated Disassembly Process of Electric Vehicle Battery Packs}, author={Branko Miloradovic and Eduard Marti …
Such fine disassembly enables recovering the cathode/anode at the cell level and reclaiming all the other components in the pack and modules. Because of the tremendous amount of soon-to-be retired EV-LIBs, automated disassembly is a natural development to improve handling efficiency and quality.
MASTER''S THESIS 2019 Design for Assembly and Disassembly of Battery Packs A collaboration between Chalmers University of Technology and Volvo Group Trucks Technology MIKAELA COLLIJN EMMA JOHANSSON Department of Industrial and …
MTC developed and demonstrated a machine vision led, autonomous task planner deployed on an industrial robot for the automatic detection and unfastening of …
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The identified challenges for automated disassembly are twofold: process-related and product-related. ... the vast number of electric vehicle suppliers and large variety of battery modules hinders a standardized utilization of automated disassembly concepts. ... (2019) 75â€"86. [14] J. Warner, The handbook of lithium-ion battery pack ...
As part of this project, Liebherr is developing strategies and processes for the automated disassembly of battery packs. The aim is to recover and recycle the …
Current electric vehicle battery recycling processes often begin with the manual dismantling of the battery packs. In consideration of occupational safety and in view of the increasing sales of electric vehicles, an automated dismantling of …
This article presents an approach to estimate the potential for an automated dismantling process required to initiate the subsequent recycling process as efficiently as …
Retired electric-vehicle lithium-ion battery (EV-LIB) packs pose severe environmental hazards. Efficient recovery of these spent batteries is a significant way to achieve closed-loop lifecycle management and a green circular economy. It …
Battery Cell, Module, and Pack Cycler Test Equipment < ...
It can take more than seven hours to manually disassemble a battery pack, which consists of numerous modules that need to be disassembled further into individual cells. ... an energy management system to optimise energy usage of the line, and a modular set-up supported by automated guided vehicles (AGVs) to increase flexibility …
A large number of battery pack returns from electric vehicles (EV) is expected for the next years, which requires economically efficient disassembly capacities. This cannot be met ...
Lithium-Ion Rechargeable Battery Solution:Manufacturing ...
This paper analyses the use of robotics for EVs'' battery pack disassembly to enable the extraction of the battery modules preserving their integrity for …
Electric vehicle production is subjected to high manufacturing cost and environmental impact. Disassembling and remanufacturing the lithium-ion power packs can highly promote electric vehicle market penetration by procuring and regrouping reusable modules as stationary energy storage devices and cut life cycle cost and environmental …
Design for Assembly and Disassembly of Battery Packs Master''s Thesis in Product Development Mikaela Collijn 931215 Emma Johansson 920728
Researchers at the Department of Energy''s Oak Ridge National Laboratory have developed a robotic disassembly system for spent electric vehicle …
4) Difficulties for robotic disassembly. An EV-LIB pack comprises multiple modules with numerous cells connected in various configurations with different mechanical, electrical, and chemical joining techniques. In addition, there are also different functional systems in a pack, e.g., battery management system (BMS) and thermal management …
The rapidly growing deployment of Electric Vehicles (EV) put strong demands on the development of Lithium-Ion Batteries (LIBs) but also into its dismantling process, a necessary step for circular economy. The aim of this study is therefore to develop an autonomous task planner for the dismantling of EV Lithium-Ion Battery pack to a …
In this paper, a robotic disassembly platform using four industrial robots is proposed to automate the non-destructive disassembly of a plug-in hybrid electric …
Turnkey Lithium-ion Battery Manufacturing Complete Lines and Supplier of Lithium-ion Manufacturing Materials. Located in the USA, with our network extending to over 15 countries worldwide; DJA® is focusing …
Disassembly is necessary for echelon utilization and resource regeneration of power batteries. In the manufacturing process of power battery, bolt fastening connection is widely used in many circumstances, such as fastening of power battery shells (Fig. 2a), fastening of bus plates (Fig. 2b), and fastening of battery modules (Fig. 2c).
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With second-life battery repurposing, on the other hand, the fully automated manipulation of low-charge batteries minimizes risks to both operators and the dismantling equipment. Unlike the materials recovery and recycling process, in which the battery is completely discharged and destroyed, second-life battery repurposing is done …
1/3 Press release Liebherr automates disassembly of battery packs In 2030, the batteries of an estimated four million electric vehicles will reach the end of their useful life. The lithium-ion batteries contain valuable raw …