Plasma spraying is a process used for coating a material surface with a protective layer to prevent the material from degradation. In a plasma spraying process, the protective layer in powder form is injected into a plasma jet. The powder is then heated to molten droplets and propelled onto the material surface. Once deposited on the material surface, the molten droplets solidi1y and form a layer of protective coating. Consider a plasma spraying process using alumina ( k = 30 W/m .K, p = 3970 kg/m 3 , a n d c p = 800 J/kg .K) and powder that is injected into a plasma jet at T ∞ = 15,000 o C and h =10,000 W/m 2 .K . . The alumina powder is made of spherical particles with an average diameter of 60 μ m and a melting point at 2300°C. Determine the amount of time it would take for the particles, with an initial temperature of 20°C, to reach their melting point from the moment they are injected into the plasma jet.
Plasma spraying is a process used for coating a material surface with a protective layer to prevent the material from degradation. In a plasma spraying process, the protective layer in powder form is injected into a plasma jet. The powder is then heated to molten droplets and propelled onto the material surface. Once deposited on the material surface, the molten droplets solidi1y and form a layer of protective coating. Consider a plasma spraying process using alumina ( k = 30 W/m .K, p = 3970 kg/m 3 , a n d c p = 800 J/kg .K) and powder that is injected into a plasma jet at T ∞ = 15,000 o C and h =10,000 W/m 2 .K . . The alumina powder is made of spherical particles with an average diameter of 60 μ m and a melting point at 2300°C. Determine the amount of time it would take for the particles, with an initial temperature of 20°C, to reach their melting point from the moment they are injected into the plasma jet.
Plasma spraying is a process used for coating a material surface with a protective layer to prevent the material from degradation. In a plasma spraying process, the protective layer in powder form is injected into a plasma jet. The powder is then heated to molten droplets and propelled onto the material surface. Once deposited on the material surface, the molten droplets solidi1y and form a layer of protective coating. Consider a plasma spraying process using alumina
(
k
=
30
W/m
.K,
p
=
3970
kg/m
3
,
a
n
d
c
p
=
800
J/kg
.K)
and powder that is injected into a plasma jet at
T
∞
= 15,000
o
C and h =10,000 W/m
2
.K
.
. The alumina powder is made of spherical particles with an average diameter of 60
μ
m
and a melting point at 2300°C. Determine the amount of time it would take for the particles, with an initial temperature of 20°C, to reach their melting point from the moment they are injected into the plasma jet.
Qu. 15 What are the indices for the Plane 1 drawn in the following sketch?
Qu. 16 What are the Miller indices for the Plane shown in the following cubic unit cell?
this is material engineering please show all work
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