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topjm [15]
2 years ago
5

A rod consisting of two cylindrical portions AB and BC is restrained at both ends. Portion AB is made of steel (Es = 200 GPa and

αs = 11.7 × 10-6/°C) and portion BC is made of brass (Eb = 105 GPa and αb = 20.9 × 10-6/°C). Knowing that the rod is initially unstressed, determine the compressive force induced in ABC when there is a temperature rise of 55°C.
Engineering
1 answer:
Nookie1986 [14]2 years ago
8 0

Complete question:

A rod consisting of two cylindrical portions AB  and BC is restrained at both ends. Portion AB is made of steel (Es = 200 GPa and αs = 11.7 × 10-6/°C) and portion BC is made of brass (Eb = 105 GPa and αb = 20.9 × 10-6/°C). (diameter of AB is 30mm, Length of AB is 250 mm) and (diameter of BC is 50mm, Length of BC is 300 mm).

Knowing that the rod is initially unstressed, determine the compressive force induced in ABC when there is a temperature rise of 55°C

Answer:

The compressive force induced in ABC is 156.902 kN

Explanation:

Area of portion AB:

A_{AB} = \frac{\pi }{4}d^2_{AB} = \frac{\pi }{4} (30)^2 = 706.95 mm^2= 7.0695 X 10⁻⁴ m²

Area of portion BC:

A_{BC} = \frac{\pi }{4}d^2_{BC} = \frac{\pi }{4} (50)^2 = 1963.75 mm^2 = 1.96373 X 10⁻³ m²

Free thermal expansion:

\delta_T = L_{AB}\alpha_s(\delta T) +L_{BC}\alpha_b(\delta T) = (0.25)(11.7 X 10⁻⁶)(55) +  (0.3)(20.9 X 10⁻⁶)(55)

= 505.725 X 10⁻⁶m

Shortening due to induced compressive force P:

\delta_p = \frac{PL}{E_SA_{AB}} +  \frac{PL}{E_bA_{BC}}

\delta_p = \frac{0.25P}{(200 X10^9)(7.0695 X10^{-4})} +  \frac{0.3P}{(105 X10^9)(1.96373 X10^{-3})}

    = 1.7682 X 10⁻⁹P + 1.455 10⁻⁹P

    = 3.2232 X 10⁻⁹P

For zero net deflection, \delta _p = \delta _T

∴ 3.2232 X 10⁻⁹P = 505.725 X 10⁻⁶

P = \frac{505.725 X 10^{-6}}{3.2232 X 10^{-9}}

P = 156.902 X 10³ N = 156.902 kN

Therefore, the compressive force induced in ABC is 156.902 kN

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vesna_86 [32]

Answer:

The depth to which the cage will drop for each single rotation of the drum is approximately 18.85 m.

Explanation:

The mine winch drum consists of a drum around around which the haulage rope is attached

Therefore, given that the diameter of the winch drum = 6 m

The length of rope unwound by each rotation = How far the cage will drop for each single rotation of the drum

The length of the rope unwound by each rotation = The rope that goes round the circumference of the winch drum, once

∴ Since the rope that goes round the circumference of the winch drum, once = The circumference of the winch drum, we have;

The length of the rope unwound by each rotation = The circumference of the winch drum = π × The diameter of the winch drum

The length of the rope unwound by each rotation = π × 6 m = 6·π m

The length of rope unwound by each rotation = How far the cage will drop for each single rotation of the drum = 6·π m

How far the cage will drop for each single rotation of the drum = 6·π m ≈ 18.85 m

The depth to which the cage will drop for each single rotation of the drum ≈ 18.85 m.

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2 years ago
A digital-to-analog converter uses a reference voltage of 120 V dc and has eight binary digit precision. In one of the sampling
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Answer: Vo= 39.84 volts

Explanation:

Let Vo to be the voltage level of the signal,

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2 years ago
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Ostrovityanka [42]

Answer:

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Zero 2 = -3

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For any given transfer function, the general form is given as

T.F = k [N(s)] ÷ [D(s)]

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N(s) is the numerator polynomial of the transfer function whose roots are the zeros of the transfer function.

D(s) is the denominator polynomial of the transfer function whose roots are the poles of the transfer function.

k [N(s)] = 4s² + 16s + 12 = 4[s² + 4s + 3]

it is evident that

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The roots are then, 0, -2, -4 and -6.

Hope this Helps!!!

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