Question: - How does cooing rate artect the microstructure ? Faster results in grains with strength - The first level of shrinkage during solidification is called

-How does cooing rate artect the microstructure ?
Faster results in grains with strength
-The first level of shrinkage during solidification is called shrinkage. This shrinkage mostly affects the q, dimension of our part. This is followed by
shrinkage which affects all dimensions of our cast part
are used to control the solidification pattern in casting and this type of solidification is referred to as solidification
When analyzing the cope, Wc= where Wc= weight of cope and =pghA
-When analyzing the Core, Wm=
-Find the volume after volumetric shrinkage of 6.3% for a 750 cm 3 volume
-Find the new height for a square base of 17.517.5cm
Find the new dimensions for tiins casting after thermal linear contraction/shrinkage of 1.3%
-Find the buoyancy force due to cylinder of diameter 300 mm and h=300mm if p=8000
-Find the clamping force due to weight of cope if density of sand =1600 and volume =700**700**300
-Find the weight of core if volume of core =325 and p**g=0.058
-Find weight of displaced fluid due to the same core p**g=0.313
Find the buoyancy force and suggest appropriate chaplets if each chaplet can take a force of 10(ignore units)
4
-How does cooing rate artect the microstructure ?
Faster results in grains with strength
-The first level of shrinkage during solidification is called shrinkage. This shrinkage mostly affects the q, dimension of our part. This is followed by
shrinkage which affects all dimensions of our cast part
are used to control the solidification pattern in casting and this type of solidification is referred to as solidification
When analyzing the cope, Wc= where Wc= weight of cope and =pghA
-When analyzing the Core, Wm=
-Find the volume after volumetric shrinkage of 6.3% for a 750 cm 3 volume
-Find the new height for a square base of 17.517.5cm
Find the new dimensions for tiins casting after thermal linear contraction/shrinkage of 1.3%
-Find the buoyancy force due to cylinder of diameter 300 mm and h=300mm if p=8000
-Find the clamping force due to weight of cope if density of sand =1600 and volume =700**700**300
-Find the weight of core if volume of core =325 and p**g=0.058
-Find weight of displaced fluid due to the same core p**g=0.313
Find the buoyancy force and suggest appropriate chaplets if each chaplet can take a force of 10(ignore units)
4
- How does cooing rate artect the microstructure

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