Question

Question A-36 steel pipe with an outer diameter of 100 mm and an inner diameter of 80 mm subjected to loadings shown in Figur
0 0
Add a comment Improve this question Transcribed image text
Answer #1

Hey dear please provide the figure 1 for the loading as mentioned in the question. Without figure the problem can't be solved. So I humbly request you to upload the question with figure so that you can be helped with the solution. Thank you.

Add a comment
Know the answer?
Add Answer to:
Question A-36 steel pipe with an outer diameter of 100 mm and an inner diameter of...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Question A-36 steel pipe with an outer diameter of 100 mm and an inner diameter of...

    Question A-36 steel pipe with an outer diameter of 100 mm and an inner diameter of 80 mm subjected to loadings shown in Figure 1. The pipe is rigidly fixed at B and P - 150 kN. Given the yield stress, Oy -250 MPa and factor of safety, F.S. - 1.5 is used against yielding on this entire pipe. (a) For the stress state at the surface, construct the Mohr circle and determine: (1) the total stresses at surface of...

  • The steel pipe AB has a 106-mm outer diameter and a 6-mm wall thickness. Knowing that...

    The steel pipe AB has a 106-mm outer diameter and a 6-mm wall thickness. Knowing that arm CD is rigidly attached to the pipe, determine the principal stresses and the maximum shearing stress at point K 53 mm 6 mm 191 mm 9.2 kN 152 mm MPa MPa MPa ? max ?min

  • Question 5 16 pts The steel pipe AB has a 72-mm outer diameter and a 5-mm...

    Question 5 16 pts The steel pipe AB has a 72-mm outer diameter and a 5-mm wall thickness. Knowing that the arm CDE is rigidly attached to the pipe, determine the normal and shearing stresses at point H on the outer surface. The properties at the cross section at H include: A 1052.4 mm2,J 1,187,700 mm4, 1 593,840 mm4, and QNA 11,243 mm3 3 kN 9 kN 120 mm 150 mm 120 mm a.) Normal stress at H: b.) Shear...

  • A pipe with an outside diameter of 150 mm and a wall thickness of 5 mm...

    A pipe with an outside diameter of 150 mm and a wall thickness of 5 mm is subjected to the loadings shown in the figure below. P PO a For this analysis, use the following values: Distances, Loads, and Moments. a = 450 mm Px = 11.5 kN Py = 25.5 kN T = 15 kN-m (a) Calculate the maximum in-plane shear stress Tmax at point Hon the outer surface of the pipe if there is no internal pressure (i.e.,...

  • A pipe with an outside diameter of 175 mm and a wall thickness of 6 mm...

    A pipe with an outside diameter of 175 mm and a wall thickness of 6 mm is subjected to the loadings shown in the figure below. Р. H For this analysis, use the following values: Distances, Loads, and Moments. a = 400 mm Px = 40.5 kN Py = 68.5 kN T = 35 kN-m (a) Calculate the maximum in-plane shear stress Tmax at point Hon the outer surface of the pipe if there is no internal pressure (i.e.,p-OkPa). (Note:...

  • The copper pipe has an outer diameter of 40 mm and an Inner diameter of 31 mm.

    The copper pipe has an outer diameter of 40 mm and an Inner diameter of 31 mm. It is tightly secured to the wall at A and three orques are applied to it as shown in the figure below (Figure 1) Part A Determine the absolute maximum shear stress developed in the pipe.

  • A cylindrical tank holding oxygen at 5000 kPa pressure has an outside diameter of 500 mm...

    A cylindrical tank holding oxygen at 5000 kPa pressure has an outside diameter of 500 mm and a wall thickness of 10 mm. It has been determined that a critical point on the tank is subjected to the tensile stress of 465 MPa in x-direction, compressive stress of 350 MPa in y-direction and shearing stress of 600 MPa. By using Mohr’s Circle; Sketch the plane stresses element for the critical point. Determine the principal stresses and their locations. Determine the...

  • A cylindrical tank holding oxygen at 4000 kPa pressure has an outside diameter of 500 mm and a wa...

    A cylindrical tank holding oxygen at 4000 kPa pressure has an outside diameter of 500 mm and a wall thickness of 10 mm. It has been determined that a critical point on the tank is subjected to the tensile stress of 464 MPa in x-direction, compressive stress of 340 MPa in y-direction and shearing stress of 600 MPa. By using Mohr’s Circle; Sketch the plane stresses element for the critical point. Determine the principal stresses and their locations. Determine the...

  • 3) A steel pipe A with inner diameter (ID) 0.8" and outer diameter (OD) 1.104", is...

    3) A steel pipe A with inner diameter (ID) 0.8" and outer diameter (OD) 1.104", is press-fitted into another steel pipe B with 1.1" ID and 1.5" OD (a) What are the tangential stresses at the ID and OD of steel pipe A? (b) What are the radial stresses at the ID and OD of the steel pipe A? (C) What is the maximum shear stress in steel pipe A? Young's modulus and Poisson ratio of steel are 30 Mpsi...

  • 1. (15 points) The thin-walled pipe has an inner diameter of 0.5 in. and a thickness...

    1. (15 points) The thin-walled pipe has an inner diameter of 0.5 in. and a thickness of 0.025 in. If it is subjected to an internal pressure of 200 psi and the axial tension and torsional loadings as shown, determine the state of stress at point A and sketch these stresses on element A. Extra Credit: What is the maximum in-plane shear stress in this element? 00 lb 100 lb 20 lb.ft 20 lb.ft

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT