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GATE ME 2013 | Question: 10
piyag476
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Materials, Manufacturing and Industrial Engineering
Feb 19, 2017
recategorized
Mar 3, 2021
by
Lakshman Patel RJIT
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In a rolling process, the state of stress of the material undergoing deformation is
pure compression
pure shear
compression and shear
tension and shear
gateme-2013
materials-manufacturing-and-industrial-engineering
casting-forming-and-joining-process
load
-estimation-for-bulk-rolling
piyag476
asked
in
Materials, Manufacturing and Industrial Engineering
Feb 19, 2017
recategorized
Mar 3, 2021
by
Lakshman Patel RJIT
by
piyag476
1.4k
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Answer:
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piyag476
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Materials, Manufacturing and Industrial Engineering
Feb 19, 2017
GATE ME 2013 | Question: 11
Match the CORRECT pairs: ... $P-4; Q-2; R-3; S-1$ $P-2; Q-3; R-4; S-1$ $P-2; Q-4; R-1; S-3$
piyag476
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Feb 19, 2017
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piyag476
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gateme-2013
materials-manufacturing-and-industrial-engineering
casting-forming-and-joining-process
principles-of-welding
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piyag476
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Casting, Forming and Joining Processes
Feb 19, 2017
GATE ME 2013 | Question: 16
A cube shaped casting solidifies in $5$ $min$. The solidification time in min for a cube of the same material, which is $8$ times heavier than the original casting, will be $10$ $20$ $24$ $40$
piyag476
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Casting, Forming and Joining Processes
Feb 19, 2017
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piyag476
1.4k
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gateme-2013
materials-manufacturing-and-industrial-engineering
casting-forming-and-joining-process
solidification
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piyag476
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Materials, Manufacturing and Industrial Engineering
Feb 19, 2017
GATE ME 2013 | Question: 53
In orthogonal turning of a bar of $100$ $mm$ diameter with a feed of $0.25$ $mm$/$rev$, depth of cut of $4$ $mm$ and cutting velocity of $90$ $m$/$min$, it is observed that the main (tangential) cutting force is perpendicular to the friction force ... ) cutting force is $1500$ $N$. The normal force acting at the chip-tool interface in $N$ is $1000$ $1500$ $2000$ $2500$
piyag476
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Feb 19, 2017
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piyag476
1.4k
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gateme-2013
materials-manufacturing-and-industrial-engineering
machining-and-machine-tools-operations
tool-geometry-and-materials
0
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0
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0
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piyag476
asked
in
Materials, Manufacturing and Industrial Engineering
Feb 19, 2017
GATE ME 2013 | Question: 52
In orthogonal turning of a bar of $100$ $mm$ diameter with a feed of $0.25$ $mm$/$rev$, depth of cut of $4$ $mm$ and cutting velocity of $90$ $m$/$min$, it is observed that the main (tangential) cutting force is perpendicular to the friction ... tangential) cutting force is $1500$ $N$. The orthogonal rake angle of the cutting tool in degree is zero $3.58$ $5$ $7.16$
piyag476
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in
Materials, Manufacturing and Industrial Engineering
Feb 19, 2017
by
piyag476
1.4k
points
gateme-2013
materials-manufacturing-and-industrial-engineering
machining-and-machine-tools-operations
tool-geometry-and-materials
0
answers
0
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0
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piyag476
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in
Materials, Manufacturing and Industrial Engineering
Feb 19, 2017
GATE ME 2013 | Question: 38
During the electrochemical machining $(ECM)$ of iron (atomic weight $= 56$, valency $= 2$) at current of $1000$ $A$ with $90\%$ current efficiency, the material removal rate was observed to be $0.26 gm/s$. If Titanium (atomic weight $= 48$, valency $= 3$) ... with $90\%$ current efficiency, the expected material removal rate in $gm/s$ will be $0.11$ $0.23$ $0.30$ $0.52$
piyag476
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Materials, Manufacturing and Industrial Engineering
Feb 19, 2017
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piyag476
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gateme-2013
materials-manufacturing-and-industrial-engineering
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