Remanufacturing closed-loop supply chain can effectively deal with the deterioration of environmental resources and the limited supply of resources as a part of circular economy. Government subsidies are an important factor to promote its development. In this paper, we consider a two-stage remanufacturing closed-loop supply chain, where the retailer is responsible for recycling, and the manufacturer will innovate in remanufacturing technology based on the extended producer responsibility system. The study constructs a Stackelberg game model with the manufacturer as a leader, and compares the different impacts of the two subsidy strategies on supply chain decisions (i.e., subsidies for investment in remanufacturing technology innovation and subsidies for the cost of remanufactured products). Numerical analyses are conducted to visualize the effects of subsidies on the decision-making of closed-loop supply chain members, environmental benefits, and social welfare. The findings indicate that when the level of subsidy is low, government subsidies for investment in remanufacturing technology innovation can accelerate the upgrading of remanufacturing technology, leading to higher environmental benefits and social welfare compared to subsidising the cost of remanufactured products. The results show that when the level of subsidy is high, government subsidies for remanufactured product costs, while yielding greater environmental benefits and social welfare compared to subsidies for investment in remanufacturing technology innovation, have a lesser impact on the advancement of remanufacturing technology.
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http://dx.doi.org/10.1016/j.heliyon.2024.e38487 | DOI Listing |
Materials (Basel)
January 2025
Department of Equipment Maintenance and Remanufacturing Engineering, Academy of Army Armored Forces, Beijing 100072, China.
Tactile sensing is currently a research hotspot in the fields of intelligent perception and robotics. The method of converting external stimuli into electrical signals for sensing is a very effective strategy. Herein, we proposed a self-powered, flexible, transparent tactile sensor integrating sliding and proximity sensing (SFTTS).
View Article and Find Full Text PDFJ Environ Manage
January 2025
Shaanxi University of Science & Technology, Xi'an, 710021, China. Electronic address:
The implementation of circular economy (CE) policies in the management of urban policies have become essential for improving overall quality of life, development of green energy, and environmental management hence improving the image of cities. This research focuses on uncovering the core concepts of CE within urban environments, emphasizing actions that can improve green energy and environmental management. The CE aims to create a closed-loop system by prioritizing practices like remanufacturing, reusing, and recycling, which collectively help decrease resource usage and limit environmental damage.
View Article and Find Full Text PDFPolymers (Basel)
December 2024
Fraunhofer Institute for Manufacturing Engineering and Automation IPA, Universitaetsstrasse 9, 95447 Bayreuth, Germany.
High Speed Sintering (HSS) is an additive manufacturing process with great potential to produce complex, high-quality polymer parts on an industrial scale. However, little information is currently available on the characteristics of the powder materials used and the part properties that can be achieved. This is also the case for the standard material polyamide 12 (PA 12) and the first commercially available HSS machine, the VX200 HSS.
View Article and Find Full Text PDFAdv Mater
January 2025
State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an, 710049, China.
An elastocaloric thermal battery based on generative learning-designed phase-change alloys is developed to facilitate the efficient recycling of low-temperature waste heat. This battery stores thermal energy as latent heat in a phase-change alloy and releases it on demand through applied stress at ambient temperature. Alloy compositions and corresponding processing parameters, tailored to desired transformation characteristics, are efficiently discovered through a generative learning-enabled inverse design framework, which converts the hand-drawn target heat flow curve into tangible compositional and processing designs.
View Article and Find Full Text PDFSci Prog
January 2024
College of Mechanical Engineering, Zhejiang University of Technology, Hangzhou, China.
As the critical components in hydrogen refueling, storage, and transportation systems, the degradation and failure of rubber O-ring seals under a high-pressure (HP) hydrogen environment (up to 100 MPa) directly affect hydrogen energy safety. Clarifying the interaction mechanism of hydrogen diffusion and the mechanical properties of rubber seals is essential for HP hydrogen infrastructure. A hydrogen diffusion-mechanical sequential numerical model is built to investigate the sealing performance and hydrogen diffusion behaviors of rubber seals using ABAQUS software.
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