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Subject Code : 301018
Assignment Task:

Task:

Question 1: Design of Belt Drives 
A cross belt drive has two pulleys with radii of 300 mm and 150 mm, respectively, mounted on two parallel shafts 2.5 + 0.P m apart as shown in Figure 1.1 below. Assume that the tight tension, T1 is 1500 + 0.P N, the smaller pulley rotates at 150 + 0.P rpm and the frictional coefficient ? is chosen as 0.2.
 

As the design engineer, you are required to determine:
a) what the datum lengths of the belts are required for this drive;
b) what the contact angles at two pulleys are; and
c) what the capacity of power transmission of the belt drive.

 

Question 2: Design of Chain Drives 
As the design engineer, you are required to specify the required length of no. 60 chain to mount on sprockets having 15 and 50 teeth, respectively, with a guess centre distance of 40 + 0.P pitches, and compute the actual centre distance.

The chain connects a hydraulic drive with a meat grinder with an input speed 300 + 0.P rpm and an input power 3 + 0.P hp. You are also required to
a) Determine what would be the rating for the two-strand chain; and
b) Design the chain drive according to the input speed and power requirement.

 

Question 3: Design of Spur Gears 
A pair of spur gears with 20°, full-depth, involute teeth transmits 0.75 + 0.P hp. The pinion is mounted on the shaft of an electric motor operating at 3,000 + P rpm. The pinion has 24 teeth and diametral pitch of 24. The gear has 110 teeth.

As the design engineer, you are required to compute:
a. The rotational speed of the gear
b. The velocity ratio and the gear ratio for the gear pair
c. The pitch diameter of the pinion and the gear
d. The centre distance between the shafts carrying the pinion and the gear
e. The pitch line speed for both the pinion and the gear
f. The torque on the pinion shaft and on the gear shaft
g. The tangential force acting on the teeth of each gear
h. The radial force acting on the teeth of each gear
i. The normal force acting on the teeth of each gear

Question 4: Shaft Design 
The following figure shows a rotating shaft carrying two steady downward loads F at C and D, respectively and D is right in the middle between A and B. The shaft is hold by a pair of bearings at A and B, respectively. As the design engineer, you are required to specify a suitable material with setting up the value of F using F = 200 + P/100 (N) with a design factor of 2.5 + 0.P.

 

Question 5: Key Design 
Specify a key for a gear to be mounted on a shaft of a 2.50-in diameter. The gear transmits a torque of 21,000 + P lb?in and has a hub length of 4.00+0.P in. As the design engineer, you are required to determine the required key geometry: length, width, and height.

Use AISI 1020 cold-drawn steel for the keys if a satisfactory design can be achieved. If not, use a higher- strength material. Unless otherwise stated, assume that the key material is weakest when compared with the shaft material or the mating elements.

 

 

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  • Posted on : March 25th, 2019
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