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A Piston, like the one shown in the 3D graphic on the right, is often found in machines - Leaving Cert DCG - Question C-4 - 2014

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Question C-4

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A Piston, like the one shown in the 3D graphic on the right, is often found in machines. Fig. C-4(a) below is a line-diagram representation of a piston mechanism, c... show full transcript

Worked Solution & Example Answer:A Piston, like the one shown in the 3D graphic on the right, is often found in machines - Leaving Cert DCG - Question C-4 - 2014

Step 1

Set up line diagram (O, P, Q & R)

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Begin by sketching the line diagram that includes points O, P, Q, and R. Place O at the origin and sketch the crank OP and connecting rod PR, with Q as the point on the connecting rod.

Step 2

Draw circle about O

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Draw a circle centered at point O with a radius equal to the length OP. This circle represents the path that point P will take as the crank rotates.

Step 3

Division of circle

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Divide the circle into equal sections, such as 10-degree increments, to assist in establishing the positions of point P as it rotates around O. Label these points clearly.

Step 4

Con rod PR in rotated positions

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For each division, draw the connecting rod PR extending at an angle from the end of OP. This will create multiple positions for point R along the horizontal axis.

Step 5

Points on locus

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Mark the location of point Q for each position of the connecting rod PR. Q will be constructed based on the angle and length from O to P to the position of R.

Step 6

Draw locus

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Connect the marked points of Q to visualize the locus traced by point Q as the crank rotates. This should create a smooth curve that represents the path taken by Q.

Step 7

Draw the given plan

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Illustrate the top view of the helix moving from point S to T, ensuring to include any necessary projection lines to aid in understanding the heights and angles involved.

Step 8

Draw the outline elevation

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Create the outline elevation of the helical sculpture, showing sequential points of elevation as the helix ascends from point S to point T.

Step 9

Complete divisions of plan

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Incorporate horizontal divisions within the elevation to show varying heights of the helix at different segments from S to T.

Step 10

Complete projections from plan to helix

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Ensure that projections from the top plan view accurately correspond to their respective height in the elevation view, depicting how the helix spirals upwards.

Step 11

Locate points in elevation

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Identify and mark all significant points on the elevation view, including where the helix intersects with the cylinder.

Step 12

Draw the helix in elevation

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Sketch the actual representation of the helical structure in the elevation based on the projected points and heights. Maintain a consistent spiral nature in the drawing.

Step 13

Presentation

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Ensure that the final drawings are neat, well-labeled, and clear. Use proper line weights and styles to enhance understanding and visibility of the diagrams.

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