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Previous year question hub

Casting - Manufacturing Processes I - Production & Industrial Engineering Previous Year Questions

Practice Casting - Manufacturing Processes I - Production & Industrial Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

21Papers
19Years
54Questions
1Topics

Casting question pattern

Every graph below is calculated only from this selection.

Questions by year

Compare question counts across years.

Difficulty distribution

How the classified questions are distributed by difficulty.

Medium 30 55.6%
Easy 23 42.6%
Hard 1 1.9%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

MCQ 43 79.6%
Numerical Answer Type (NAT) 8 14.8%
MSQ 3 5.6%

Subject weightage

Top subjects by unique question coverage.

Production & Industrial Engineering
54 Qs

Most asked topics

Top topics across the included previous year papers.

Manufacturing Processes I
54 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Casting
54 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

Production and Industrial Engineering (PI) 2026
3 Qs
Production & Industrial Engineering (PI) 2025
3 Qs
Production & Industrial Engineering (PI) 2024
3 Qs
Production & Industrial Engineering (PI) 2023
2 Qs
Production & Industrial Engineering (PI) 2022
1 Qs
Production & Industrial Engineering (PI) 2021
2 Qs
Production & Industrial Engineering (PI) 2020
1 Qs
Production & Industrial Engineering (PI) 2019
1 Qs
Production & Industrial Engineering (PI) 2018
2 Qs
Production & Industrial Engineering (PI) 2017
2 Qs
Production & Industrial Engineering (PI) 2016
1 Qs
Production & Industrial Engineering (PI) 2014
3 Qs
Production & Industrial Engineering (PI) 2013 [Session 2]
2 Qs
Production & Industrial Engineering (PI) 2013 [Session 4]
2 Qs
Production & Industrial Engineering (PI) 2013 [Session 1]
1 Qs
Production & Industrial Engineering (PI) 2012
1 Qs
Production & Industrial Engineering (PI) 2011
6 Qs
Production & Industrial Engineering (PI) 2010
4 Qs
Production & Industrial Engineering (PI) 2009
6 Qs
Production & Industrial Engineering (PI) 2008
5 Qs
Production & Industrial Engineering (PI) 2007
3 Qs

Included previous year papers

Newest papers appear first. Search these papers or sort by year and name.

Paper nameYearPDFAttempt
Production and Industrial Engineering (PI) 20262026
3 questions in this view
2026
Production & Industrial Engineering (PI) 20252025
3 questions in this view
2025
Production & Industrial Engineering (PI) 20242024
3 questions in this view
2024
Production & Industrial Engineering (PI) 20232023
2 questions in this view
2023
Production & Industrial Engineering (PI) 20222022
1 questions in this view
2022
Production & Industrial Engineering (PI) 20212021
2 questions in this view
2021
Production & Industrial Engineering (PI) 20202020
1 questions in this view
2020
Production & Industrial Engineering (PI) 20192019
1 questions in this view
2019
Production & Industrial Engineering (PI) 20182018
2 questions in this view
2018
Production & Industrial Engineering (PI) 20172017
2 questions in this view
2017
Production & Industrial Engineering (PI) 20162016
1 questions in this view
2016
Production & Industrial Engineering (PI) 20142014
3 questions in this view
2014
Production & Industrial Engineering (PI) 2013 [Session 1]2013
1 questions in this view
2013
Production & Industrial Engineering (PI) 2013 [Session 2]2013
2 questions in this view
2013
Production & Industrial Engineering (PI) 2013 [Session 4]2013
2 questions in this view
2013
Production & Industrial Engineering (PI) 20122012
1 questions in this view
2012
Production & Industrial Engineering (PI) 20112011
6 questions in this view
2011
Production & Industrial Engineering (PI) 20102010
4 questions in this view
2010
Production & Industrial Engineering (PI) 20092009
6 questions in this view
2009
Production & Industrial Engineering (PI) 20082008
5 questions in this view
2008
Production & Industrial Engineering (PI) 20072007
3 questions in this view
2007

All Casting previous year questions

Practice every matching question in batches of 20, with every available option.

1
2007 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2007
Which one of the following cooling methods is best suited for converting Austenite steel into very fine Pearlite steel?
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2
2007 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2007
The volume flow rate (in mm³/s) is
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3
2007 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2007
The mould filling time (in seconds) is
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4
2008 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2008
In hollow cylindrical parts, made by centrifugal casting, the density of the part is
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5
2008 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2008
In sand casting of a hollow part of lead, a cylindrical core of diameter 120 mm and height 180 mm is placed inside the mould cavity. The densities of core material and lead are 1600 kg/m³ and 11,300 kg/m³ respectively. The net force (in N) that tends to lift the core during pouring of molten metal will be
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6
2008 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2008
Match the following:
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7
2009 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2009
Hot chamber die casting process is NOT suited for
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8
2009 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2009
Autogenous gas tungsten arc welding of a steel plate is carried out with welding current of 500 A, voltage of 20 V, and weld speed of 20 mm/min. Consider the heat transfer efficiency from the arc to the weld pool as 90%. The heat input per unit length (in kJ/mm) is
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9
2009 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2009
A solid cylinder of diameter D and height equal to D, and a solid cube of side L are being sand cast by using the same material. Assuming there is no superheat in both the cases, the ratio of solidification time of the cylinder to the solidification time of the cube is
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10
2010 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2010
During the filling process of a given sand mould cavity by molten metal through a horizontal runner of circular cross-section, the frictional head loss of the molten metal in the runner will increase with the
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11
2010 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2010

Solidification time of a metallic alloy casting is

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12
2011 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2011
In sand casting, fluidity of the molten metal increases with
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13
2011 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2011
Which of the following casting processes uses expendable pattern and expendable mould?
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14
2011 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2011
In a sand casting process, a sphere and a cylinder of equal volumes are separately cast from the same molten metal under identical conditions. The height and diameter of the cylinder are equal. The ratio of the solidification time of the sphere to that of the cylinder is
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15
2012 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2012
A mould having dimensions \(100 mm \times 90 mm \times 20 mm\) is filled with molten metal through a gate as shown in the figure. For height \(h\) and cross-sectional area \(A\), the mould filling time is \(t_1\). The height is now quadrupled and the cross-sectional area is halved. The corresponding filling time is \(t_2\). The ratio \(t_2/t_1\) is
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16
2013 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2013 [Session 1]

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

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17
2013 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2013 [Session 2]
Match the CORRECT pairs.
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18
2014 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2014

Chills are used in casting moulds to

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19
2014 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2014

For a given volume of a riser, if the solidification time of the molten metal in riser needs to be quadrupled, the surface area of the riser should be made

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20
2016 · Production & Industrial Engineering · Manufacturing Processes I · Casting
Production & Industrial Engineering (PI) 2016

Two cast iron blocks P and Q, each of 500 mm length, have the same cross-sectional area. Block P has rectangular cross-section of 100 mm × 200 mm. Block Q is of square cross-section. Both P and Q were cast under the same conditions with all their surfaces enclosed within the mould. The solidification time of a casting is proportional to the square of the ratio of its volume to its surface area. The ratio of solidification time of the block P to that of the block Q is ______.

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Showing 20 of 40 questions