Thursday, January 30, 2014

4/4 PSC ASSIGNMENT - LAST DATE 05-02-2014




      1.     A pretensioned beam, 200 mm wide and 300 mm deep, is prestressed by 10 wires of 7mm        diameter initially stressed to 1200 N/mm2, with their centroids located 100 mm from the soffit.            Find the maximum stress in concrete immediately after transfer, allowing only for elastic                      shortening of concrete.
If the concrete undergoes a further shortening due to creep and shrinkage while there is a relaxation of 5 percent of steel stress, estimate the final percentage loss of stress in the wires using the Indian standard code regulations, and the following data:
Es = 210 kN/mm2. Modulus of elasticity of concrete is considered from the Indian Standard code regulations, for a compressive strength of 42 N/mm2. Creep coefficient is considered for the age of loading at 28 days. Assume any other missing

2. Explain the general principles of prestressing and advantages of Prestressed concrete

3. In a post-tensioned beam of length 12 m, a cable is laid symmetrically with its central 6 m length horizontal and the two straight end portions sloping up at an angle with the horizontal whose tangent is equal to 0.075. The cable is tensioned by jacking at one end and is anchored at the remote end of the beam. At the jacking end the measured stress is 1040N/mm2. The wobble coefficient K may be assumed as 0.004/m. Calculate the stress in the cable at the remote end and the two points where the alignment changes. Assume the coefficient of friction between cable and duct of 0.40. What is the percentage loss of prestress between the jacking end and the anchored end

4. Explain the different systems of Prestressing with neat sketches

5. A prestressed concrete beam of section 200 mm wide by 300 mm deep is used over an effective span of 6 m to support an imposed load of 4 kN/m. The density of concrete is 24 kN/m3. (Assume any other missing data). At the centre of span section of the beam, find the magnitude of:
          a) The concentric prestressing force necessary for zero fibre - stress at the soffit when the                  beam is fully loaded; and
           b) The eccentric prestressing force located 100 mm from the bottom of the beam which would             nullify the bottom fibre stresses due to loading.

           6. An unsymmetrical I-section is used to support an imposed load of 2kN/m over a span of    8m. The sectional details are top flange 300 mm wide and 60 mm thick, bottom flange 100 mm wide and 60 mm thick, bottom flange 100 mm wide and 60 mm thick; thickness of the web = 80 mm; overall depth of the beam = 400 mm. At the centre of the span, the effective prestressing force of 100 kN is located at 50 mm from the soffit of the beam. Estimate the stresses at the centre of span section of the beam for the following load conditions:
(a)    Prestress + Self-weight
(b)   Prestress + Self-weight + Live load

                   

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