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different O
sharpness O
and O
were O
manufactured S-CONPRI
( O
flat O
on O
the O
build B-MACEQ
plate E-MACEQ
) O
by O
changing O
the O
printing O
direction O
. O
Being O
supported O
by O
the O
experimental S-CONPRI
evidence O
, O
the O
hypothesis O
was O
formed O
that O
the O
mechanical B-CONPRI
response E-CONPRI
of O
3D-printed S-MANP
ABS O
can O
be S-MATE
modelled O
effectively O
by O
treating O
it O
as S-MATE
a O
material S-MATE
that O
is O
linear-elastic O
, O
brittle S-PRO
, O
homogenous O
and O
isotropic S-PRO
. O
This O
simplifying O
hypothesis O
allowed O
the O
Theory O
of O
Critical O
Distances O
to O
be S-MATE
employed O
also O
to O
assess O
static O
strength S-PRO
of O
3D-printed S-MANP
ABS O
containing O
geometrical B-FEAT
features E-FEAT
. O
The O
validation S-CONPRI
exercise O
based O
on O
the O
experimental S-CONPRI
results O
being O
generated O
demonstrates O
that O
this O
theory O