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build B-PARA
orientation E-PARA
, O
layer B-PARA
thickness E-PARA
, O
strain B-CONPRI
rate E-CONPRI
and O
size B-CONPRI
effect E-CONPRI
on O
the O
Young O
’ O
s S-MATE
modulus O
, O
ultimate B-PRO
tensile I-PRO
strength E-PRO
and O
fracture S-CONPRI
strains O
in O
vat B-MANP
photopolymerization E-MANP
based O
additively B-MANP
manufactured E-MANP
specimens O
is O
investigated O
. O
Mechanical B-CHAR
testing E-CHAR
and O
subsequent O
scanning B-CHAR
electron I-CHAR
microscopy E-CHAR
tests O
on O
additively B-MANP
manufactured E-MANP
specimens O
are O
conducted O
. O
Anisotropy S-PRO
in O
mechanical S-APPL
behavior O
is O
only O
observed O
in O
specimens O
fabricated S-CONPRI
in O
different O
planes O
. O
An O
increase O
in O
layer B-PARA
thickness E-PARA
and O
decrease O
in O
strain B-CONPRI
rate E-CONPRI
resulted O
in O
lower O
strength S-PRO
, O
stiffness S-PRO
and O
higher O
fracture S-CONPRI
strains O
. O
No O
significant O
size B-CONPRI
effect E-CONPRI
on O
strength S-PRO
and O
failure S-CONPRI