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processing O
conditions O
. O
The O
Additive B-MANP
manufacturing E-MANP
technologies O
familiarize O
many O
innovative O
and O
monetary O
gains O
when O
compared O
to O
conservative O
subtractive B-MANP
manufacturing E-MANP
methods O
in O
rapid B-ENAT
prototyping E-ENAT
( O
RP S-ENAT
) O
and O
small O
production B-CHAR
capacity E-CHAR
. O
In O
other O
exceedingly O
industrialized O
fields O
including O
aerospace S-APPL
, O
automobile S-APPL
, O
and O
bio-medical B-APPL
industries E-APPL
, O
additive B-MANP
manufacturing E-MANP
has O
turned O
out O
to O
be S-MATE
a O
subject O
of O
high O
interest O
. O
Nowadays O
, O
Additive B-MANP
manufacturing E-MANP
( O
AM S-MANP
) O
of O
Titanium B-MATE
alloys E-MATE
has O
grown O
into O
an O
imperative O
field O
of O
study O
. O
The O
foremost O
prominence O
of O
Titanium B-MATE
alloys E-MATE
is O
excellent O
strength B-PRO
to I-PRO
weight I-PRO
ratio E-PRO
, O
high O
weathering B-PRO