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Multi objective optimization of a multi-material carbon fibre automotive demonstrator: An integrated predictive life-cycle assessment and costing framework
KTH, School of Engineering Sciences (SCI), Engineering Mechanics, Material and Structural Mechanics.
2025 (English)Independent thesis Advanced level (degree of Master (Two Years)), 20 credits / 30 HE creditsStudent thesisAlternative title
Flermålsoptimering av en fordonsdemonstrator i kolfiber med flera material: Ett integrerat ramverk för förutsägande livscykelanalys och kostnadsberäkning (Swedish)
Abstract [en]

Designing a sustainable and cost-effective composite structure is a complex challengebecause key factors like energy consumption and cost often conflict with each other.Additionally, most of a product’s lifetime energy use and expenses are determined earlyin the design process. This means that being able to predict both environmental andfinancial impacts during these initial stages can significantly reduce overall energy con-sumption and costs. This study explores how these competing objectives influence theoptimization of a carbon fiber-reinforced polymer (CFRP) demonstrator. The study ex-amines different design configurations, including variations with and without stiffeners.The findings reveal significant differences in energy consumption among the optimizeddesigns, with energy-focused optimization leading to the most efficient outcome.

Abstract [sv]

Att designa en hållbar och kostnadseffektiv kompositstruktur är en komplex utmaning eftersom viktiga faktorer som energiförbrukning och kostnad ofta står i konflikt med varandra. Dessutom bestäms en stor del av en produkts livscykelrelaterade energianvändning och kostnader tidigt i designprocessen. Det innebär att förmågan att förutsäga både miljömässiga och ekonomiska konsekvenser under dessa inledande faser kan minska den totala energiförbrukningen och kostnaderna avsevärt. Denna studie undersöker hur dessa motstridiga mål påverkar optimeringen av en demonstrator tillverkad av kolfiberarmerad polymer (CFRP). Studien analyserar olika designkonfigurationer, inklusive variationer med och utan förstärkningar. Resultaten visar på betydande skillnader i energiförbrukning mellan de optimerade designerna, där energifokuserad optimering leder till det mest effektiva utfallet.

Place, publisher, year, edition, pages
2025.
Series
TRITA-SCI-GRU ; 2025:035
Keywords [en]
Carbon fibre composites, Sustainable design, Predictive life-cycle assessment, Life-cycle costing, Light-weight design, Design for circularity
Keywords [sv]
Kolfiberkomposit, Hållbar design, Prediktiv livscykelanalys, Livscykelkostnad, Lättviktsdesign, Design för cirkularitet
National Category
Vehicle and Aerospace Engineering
Identifiers
URN: urn:nbn:se:kth:diva-363254OAI: oai:DiVA.org:kth-363254DiVA, id: diva2:1957380
Subject / course
Lightweight Structures
Educational program
Master of Science - Aerospace Engineering
Supervisors
Examiners
Available from: 2025-05-09 Created: 2025-05-09 Last updated: 2025-05-09Bibliographically approved

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