subject
Engineering, 12.11.2019 05:31 Animallover100

Acylindrical specimen of a metal alloy 48.0 mm long and 9.72 mm in diameter is stressed in tension. a true stress of 368 mpa causes the specimen to plastically elongate to a length of 53.5 mm. if it is known that the strain-hardening exponent for this alloy is 0.2, calculate the true stress (in mpa) necessary to plastically elongate a specimen of this same material from a length of 48.0 mm to a length of 57.4 mm.

ansver
Answers: 3

Other questions on the subject: Engineering

image
Engineering, 03.07.2019 15:10, margaret1758
If you were designing a bumper for a car, would you prefer it to exhibit elastic or plastic deformation? why? consider the functions of a bumper in both a minor "fender-bender" and a major collision.
Answers: 1
image
Engineering, 04.07.2019 18:10, salazjlove
Which of the following refers to refers to how well the control system responds to sudden changes in the system. a)-transient regulation b)- distributed regulation c)-constant regulation d)-steady-state regulation
Answers: 1
image
Engineering, 04.07.2019 18:10, mamasbug4285
An air compression refrigeration system is to have an air pressure of 100 psia in the brine tank and an allowable air temperature increase of 60°f for standard vapor compression cycle temperatures of 77 f entering the expansion cylinder and 14 f entering the compression cylinder, calculate the coefficient of performance a. 2.5 b 3.3 c. 4.0 d. 5.0
Answers: 3
image
Engineering, 04.07.2019 18:10, QueenLife4869
Awall of 0.5m thickness is to be constructed from a material which has average thermal conductivity of 1.4 w/mk. the wall is to be insulated with a material having an average thermal conductivity of 0.35 w/mk so that heat loss per square meter shall not exceed 1450 w. assume inner wall surface temperature of 1200°c and outer surface temperature of the insulation to be 15°c. calculate the thickness of insulation required.
Answers: 3
You know the right answer?
Acylindrical specimen of a metal alloy 48.0 mm long and 9.72 mm in diameter is stressed in tension....

Questions in other subjects: