Theoretical Assessment of the Environmental Impact of the Preheating Stage in Thermoplastic Composite Processing: A Step toward Sustainable Manufacturing DOI Creative Commons
Seyed Abbas Hosseini

Journal of Manufacturing and Materials Processing, Journal Year: 2024, Volume and Issue: 8(3), P. 120 - 120

Published: June 7, 2024

Manufacturing processes have always played a pivotal role in the life cycle assessment of products, necessitating focused efforts to minimize their impact on environment. Thermoplastic composite manufacturing is no exception this concern. Within thermoplastic manufacturing, preheating process stands out as one most energy-intensive stages, significantly affecting In study, theoretical analysis conducted compare three modes preheating: conductive, radiative, and convective modes, considering energy consumption environmental impact. The reveals potential for substantial savings emissions reduction through selection proper mode. Since used study theoretical, it facilitates parametric different assess how parameters Moreover, includes comparison between from material production process, highlighting contribution overall product assessment.

Language: Английский

Preparation and performance of sugarcane bagasse ash pavement repair mortars DOI Creative Commons
Natividad García-Troncoso, Samantha Hidalgo-Astudillo, Ken Tello-Ayala

et al.

Case Studies in Construction Materials, Journal Year: 2023, Volume and Issue: 19, P. e02563 - e02563

Published: Oct. 10, 2023

Pavement rehabilitation is typically required to ensure the service life of road and safety traffic. Due various environmental loading factors, pavements can present degradation or failures along their length, such as cracks, fissures, deformations, disintegration wearing course. One way reapair these defects by using sealant materials. The objective this research design mortars with sugarcane bagasse ash a substitute for sand repair cracks in pavements. Compression, tensile, shrinkage, fluidity adherence tests were carried out on mortar samples that varied dosage 0%, 50% 75% content sand. These allowed evaluation physical mechanical properties samples, determining compressive strength values 16.65 MPa, adhesion 0.52 among others. control mix 5 replacement (M5-50%), obtained best results under criteria each performed. This article also evaluates impact construction materials established procedures, finding considering waste, recycled polypropylene fibers, incorporating zeolite carbon capture reduce footprint concrete up compared baseline mixes.

Language: Английский

Citations

4

Theoretical Assessment of the Environmental Impact of the Preheating Stage in Thermoplastic Composite Processing: A Step toward Sustainable Manufacturing DOI Creative Commons
Seyed Abbas Hosseini

Journal of Manufacturing and Materials Processing, Journal Year: 2024, Volume and Issue: 8(3), P. 120 - 120

Published: June 7, 2024

Manufacturing processes have always played a pivotal role in the life cycle assessment of products, necessitating focused efforts to minimize their impact on environment. Thermoplastic composite manufacturing is no exception this concern. Within thermoplastic manufacturing, preheating process stands out as one most energy-intensive stages, significantly affecting In study, theoretical analysis conducted compare three modes preheating: conductive, radiative, and convective modes, considering energy consumption environmental impact. The reveals potential for substantial savings emissions reduction through selection proper mode. Since used study theoretical, it facilitates parametric different assess how parameters Moreover, includes comparison between from material production process, highlighting contribution overall product assessment.

Language: Английский

Citations

0