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.
Plot the displacement diagram for a cam with roller follower of diameter 10 mm. The required
motion is as follows;
1- Rising 60 mm in 135° with uniform acceleration and retardation motion.
2- Dwell 90°
3- Falling 60 mm for 135° with Uniform acceleration-retardation motion.
Then design the cam profile to give the above displacement diagram if the minimum circle
diameter of the cam is 50 mm.
Q1/ A vertical, circular gate with water on one side as shown. Determine
the total resultant force acting on the gate and the location of the center of
pressure, use water specific weight 9.81 kN/m³
1 m
4 m
I need handwritten solution with sketches for each
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