subject
Engineering, 26.11.2019 19:31 lezapancakes13

An automotive designer is proposing using a 50 cm section of rigid stainless steel fuel line. the fuel line has 1.0 cm outer diameter and 3 mm wall thickness. (area =6.60e-5 m^2 and area moment of inertia is 4.78e-10 m^4) one end of the tube is cantilevered (fixed) from the fuel sender and the other end rests (pinned) on the vehicle frame. a flexible hose is attached after the pinned end. during operation, the pinned end of the fuel line moves +/- 1 cm (perpendicular to the fuel line). the fuel line material has yield strength of 276 mpa and ultimate strength 572 mpa.
make a sketch of the problem. answer the following questions:
1. is there a risk of fuel line fatigue failure?
2. because fuel line failures are likely to have fatal consequences, a factor of safety of three is specified for infinite life.
3. after a required design change to the frame cross section, the nominal position of the pinned end was moved up 2 cm (perpendicular to the fuel line). during operation, the pinned end of the fuel line still moves +/- 1 cm. is there a risk of fuel line failure?
4. verify the factor of safety of three for infinite life after the design change to the frame.
5. the designer did not want to design any fixed bends in the fuel line because it would cause stress concentrations. make a recommendation that would improve the design of the fuel line.

ansver
Answers: 2

Another question on Engineering

question
Engineering, 04.07.2019 18:10
Coiled springs ought to be very strong and stiff. si3n4 is a strong, stiff material. would you select this material for a spring? explain.
Answers: 2
question
Engineering, 04.07.2019 18:10
Water in a partially filled large tank is to be supplied to the roof top, which is 8 m above the water level in the tank, through a 2.2-cm-internal-diameter pipe by maintaining a constant air pressure of 300 kpa (gage) in the tank. if the head loss in the piping is 2 m of water, determine the discharge rate of the supply of water to the roof top in liters per second.
Answers: 3
question
Engineering, 04.07.2019 18:10
A-mn has a cubic structure with a0 0.8931 nm and a density of 7.47 g/cm3. b-mn has a different cubic structure, with a0 0.6326 nm and a density of 7.26 g/cm3. the atomic weight of manganese is 54.938 g/mol and the atomic radius is 0.112 nm. determine the percent volume change that would occur if a-mn transforms to b-mn.
Answers: 2
question
Engineering, 04.07.2019 18:20
Agas mixture consists of 8 kmol of h2 and 2 kmol of n2. determine the mass of each gas and the apparent gas constant of the mixture.
Answers: 3
You know the right answer?
An automotive designer is proposing using a 50 cm section of rigid stainless steel fuel line. the fu...
Questions
question
Mathematics, 02.04.2020 01:25
question
Mathematics, 02.04.2020 01:25
question
Mathematics, 02.04.2020 01:26
question
Mathematics, 02.04.2020 01:26
question
Mathematics, 02.04.2020 01:26
Questions on the website: 13722367