G an Ag eemen numbe : 101058371
P ojec ac onym: ESTELLA
P ojec i le: Design o bio-
based he mose polyme
wi h ecycling capabili y by dynamic
bonds o bio-composi e manu ac u ing
G an Ag eemen numbe : 101058371
P ojec ac onym: ESTELLA
P ojec i le: Design o bio-
based he mose
polyme wi h ecycling capabili y by
dynamic bonds o bio-
composi e
manu ac u ing
DELIVERABLE 3.3
Manu ac u e o bio-
composi es p o ypes
Con ac ual Da e o Deli e y: 31-05-2025
Ac ual Da e o Deli e y: 27-06-2025
Lead con ac o o his deli e able: FUNDACIÓN CIDAUT
Au ho (s):
CID
Pa icipan s(s):
CID
WP con ibu ing o he deli e able:
WP 3
Na u e: SEN
Ve sion V. 2
G an Ag eemen 101058371 P ojec ESTELLA
Deli e able T3.3
©ESTELLA - This is he p ope y o ESTELLA Pa ies: shall no be dis ibu ed/ ep oduced wi hou o mal app o al o ESTELLA
Gene al
Assembly.
he ein.
Execu i e Summa y
This deli e able desc ibes he app oach o he manu ac u ing o bo h
composi e p o o ypes as i was seen in Tasks 2.4 and 3.2, and ela ed o
he ecyclabili y assessmen in WP4 and composi es selec ed in Task 3.1.
The wo k ca ied ou in his ask ocuses on he de ini ion, simula ion, and
alida ion o he ou -o -au ocla e (OOA) manu ac u ing p ocess using
he inal composi es. The ini ial simula ion-based me hodology o he
p ocess has been used he same om Task 3.2, wi h some imp o emen s
made o inco po a e he ma e ial cha ac e iza ion and ooling
de elopmen s. Key ac i i ies and ou comes:
Expe imen al alida ion: The simula ed pa ame e s we e alida ed
expe imen ally o con i m p ocess easibili y and ep oducibili y
using he selec ed OOA p ocess.
Mould ool manu ac u ing: Based on he ool designs de eloped in
Task 3.2, moulds o bo h composi es we e ab ica ed.
Tes specimen manu ac u ing: Fla es specimens we e
manu ac u ed om he p o o ypes ob ained wi h he alida ed
OOA p ocess. These specimens we e es ed o e alua e he
dec ease o mechanical p ope ies o e ime a e imme sion in
wa e in Task 3.4.
P o o ype manu ac u ing: The inal composi e p o o ypes we e
manu ac u ed using he con en ional ou o au ocla e p ocess. In
pa allel, p edic i e models we e de eloped using he in o ma ion
om he ma e ials cha ac e iza ion. These inal composi es we e
used also o s udying he ecyclabili y p ocess o he WP4.
In his deli e able i was co obo a e he simula ion wi h he expe imen al
manu ac u e o he p o o ypes including he design o he p ocess,
moulds and p o o ypes manu ac u ed.