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5.1 A parallel key must be machined to fit onto an 84 mm diameter shaft - NSC Mechanical Technology Fitting and Machining - Question 5 - 2018 - Paper 1

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5.1 A parallel key must be machined to fit onto an 84 mm diameter shaft. Calculate the following: 5.1.1 The width of the key 5.1.2 The thickness of the key 5.1.3 ... show full transcript

Worked Solution & Example Answer:5.1 A parallel key must be machined to fit onto an 84 mm diameter shaft - NSC Mechanical Technology Fitting and Machining - Question 5 - 2018 - Paper 1

Step 1

5.1.1 The width of the key

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Answer

To calculate the width of the key, use the formula:

extWidth=D4 ext{Width} = \frac{D}{4}

Substituting the diameter (D = 84 mm):

extWidth=844=21extmm ext{Width} = \frac{84}{4} = 21 \, ext{mm}

Step 2

5.1.2 The thickness of the key

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Answer

The thickness of the key is calculated using the formula:

extThickness=D6 ext{Thickness} = \frac{D}{6}

Substituting the diameter:

extThickness=846=14extmm ext{Thickness} = \frac{84}{6} = 14 \, ext{mm}

Step 3

5.1.3 The length of the key

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Answer

The length of the key is determined using the following formula:

extLength=D×1.5 ext{Length} = D \times 1.5

Substituting the diameter:

extLength=84×1.5=126extmm ext{Length} = 84 \times 1.5 = 126 \, ext{mm}

Step 4

5.2 Calculate the simple indexing

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Answer

For simple indexing, we use:

extIndexing=40n ext{Indexing} = \frac{40}{n}

Where n is the number of teeth (n = 106):

Indexing=402=20\text{Indexing} = \frac{40}{2} = 20

So, no full turns and 20 holes on the 53-hole circle.

Step 5

5.3 Calculate the depth of the screw thread

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Answer

Using the given hint, the depth of the screw thread can be calculated as follows:

extDepth=0.866P ext{Depth} = 0.866 P

Given P = 2 mm:

extDepth=0.866×2=1.732extmm(approximately1.73mm) ext{Depth} = 0.866 \times 2 = 1.732 \, ext{mm} (approximately \, 1.73 \, mm)

Step 6

5.4.1 Addendum

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Answer

The addendum is equal to the module (m):

extAddendum=m=3extmm ext{Addendum} = m = 3 \, ext{mm}

Step 7

5.4.2 Dedendum

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Answer

The dedendum can be calculated using the formula:

extDedendum=1.157m ext{Dedendum} = 1.157 m

Substituting the module:

extDedendum=1.157×3=3.471 mm(approximately3.47mm) ext{Dedendum} = 1.157 \times 3 = 3.471 \text{ mm} (approximately \, 3.47 \, mm)

Step 8

5.4.3 Clearance

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Answer

Clearance is given by:

extClearance=0.157m ext{Clearance} = 0.157 m

Substituting the module:

extClearance=0.157×3=0.471extmm(approximately0.47mm) ext{Clearance} = 0.157 \times 3 = 0.471 \, ext{mm} (approximately \, 0.47 \, mm)

Step 9

5.4.4 Pitch-circle diameter (PCD)

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Answer

The pitch-circle diameter can be calculated by:

extPCD=m×T ext{PCD} = m \times T

Where T is the number of teeth:

extPCD=3×48=144extmm ext{PCD} = 3 \times 48 = 144 \, ext{mm}

Step 10

5.4.5 Outside diameter

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Answer

The outside diameter is calculated with:

extOD=PCD+2m ext{OD} = PCD + 2m

Substituting the values:

extOD=144+2×3=150extmm ext{OD} = 144 + 2 \times 3 = 150 \, ext{mm}

Step 11

5.4.6 Cutting depth

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Answer

The cutting depth can be determined as:

extCuttingdepth=2.157m(or2.25mm) ext{Cutting depth} = 2.157 m \, (or \, 2.25 \, mm)

Both values can be used depending on the context.

Step 12

5.4.7 Circular pitch

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Answer

The circular pitch is calculated by:

extCircularpitch=m×π ext{Circular pitch} = m \times \pi

Using the module:

extCircularpitch=3×π9.42extmm ext{Circular pitch} = 3 \times \pi \approx 9.42 \, ext{mm}

Step 13

5.5 Identify the type of key shown in FIGURE 5.5

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Answer

The type of key shown in Figure 5.5 can be identified as a parallel key, Pratt and Whitney key, or feather key.

Step 14

5.6 Identify the milling process shown in FIGURE 5.6

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Answer

The milling process shown in Figure 5.6 is identified as straddle milling.

Step 15

5.7 Identify the engineering equipment shown in FIGURE 5.7

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Answer

The engineering equipment shown in Figure 5.7 is identified as a milling machine (universal or vertical/horizontal milling machine).

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