Photo AI

5.1 A taper with a length of 60 mm and a large diameter of 40 mm and a small diameter of 31.6 mm needs to be cut on a lathe using the compound slide method - NSC Mechanical Technology Fitting and Machining - Question 5 - 2020 - Paper 1

Question icon

Question 5

5.1-A-taper-with-a-length-of-60-mm-and-a-large-diameter-of-40-mm-and-a-small-diameter-of-31.6-mm-needs-to-be-cut-on-a-lathe-using-the-compound-slide-method-NSC Mechanical Technology Fitting and Machining-Question 5-2020-Paper 1.png

5.1 A taper with a length of 60 mm and a large diameter of 40 mm and a small diameter of 31.6 mm needs to be cut on a lathe using the compound slide method. 5.1.1 Dr... show full transcript

Worked Solution & Example Answer:5.1 A taper with a length of 60 mm and a large diameter of 40 mm and a small diameter of 31.6 mm needs to be cut on a lathe using the compound slide method - NSC Mechanical Technology Fitting and Machining - Question 5 - 2020 - Paper 1

Step 1

5.1.1 Draw a neat sketch of the taper and label it.

96%

114 rated

Answer

To draw the taper sketch, start with a line representing the length of the taper which is 60 mm. At one end of this line, draw a larger circle with a diameter of 40 mm and at the other end, a smaller circle with a diameter of 31.6 mm. Connect the two circles with straight lines to illustrate the tapering shape. Label the parts clearly with the diameters and the length of the taper.

Step 2

5.1.2 Calculate the included angle.

99%

104 rated

Answer

To calculate the included angle, we use the formula:

anθ=Dd2L an\theta = \frac{D - d}{2L}

where:

  • D = 40 mm (larger diameter)
  • d = 31.6 mm (smaller diameter)
  • L = 60 mm (length of the taper)

Substituting the values:

tanθ=4031.62×60=8.4120=0.07\tan\theta = \frac{40 - 31.6}{2 \times 60} = \frac{8.4}{120} = 0.07

Now, to find the angle, take the inverse tangent:

θ=tan1(0.07)4.004\theta = \tan^{-1}(0.07) \approx 4.004^\circ

Step 3

5.1.3 At what degree do you need to set the compound slide to cut this taper?

96%

101 rated

Answer

The angle to set the compound slide is half the included angle calculated previously. Therefore:

Angle of compound slide=θ2=4.0042=2.002\text{Angle of compound slide} = \frac{\theta}{2} = \frac{4.004^\circ}{2} = 2.002^\circ

Step 4

5.2 Calculate the width and length of a parallel key suitable for a 30 mm diameter shaft.

98%

120 rated

Answer

For a 30 mm diameter shaft, the width (W) of the parallel key is calculated as:

W=D4=304=7.5 mmW = \frac{D}{4} = \frac{30}{4} = 7.5 \text{ mm}

The length (L) of the key is given by:

L=1.5×D=1.5×30=45 mmL = 1.5 \times D = 1.5 \times 30 = 45 \text{ mm}

Step 5

5.3 Calculate the distance X shown in FIGURE 5.3.

97%

117 rated

Answer

To calculate the distance X, use the formula:

X=diameter of workpiecethickness of cutter2X = \frac{\text{diameter of workpiece} - \text{thickness of cutter}}{2}

Substituting the given values:

X=60152=452=22.5 mmX = \frac{60 - 15}{2} = \frac{45}{2} = 22.5 \text{ mm}

Step 6

5.4 Use a neat, labelled sketch to explain straddle milling.

97%

121 rated

Answer

To explain straddle milling, draw a horizontal line representing the workpiece and mark two milling cutters on either side of the workpiece, showing that they are positioned parallel to each other. Label the components clearly, including the arbour which holds the milling cutters in place. Indicate how straddle milling allows for the machining of two parallel surfaces simultaneously.

Join the NSC students using SimpleStudy...

97% of Students

Report Improved Results

98% of Students

Recommend to friends

100,000+

Students Supported

1 Million+

Questions answered

;