Pavement Design Multiple Choice Questions on “Highway Pavements Design – Joint Spacing”.
1. What is the spacing allotted for the expansion joints in summer in the rigid pavement?
a) 50 – 60 m
b) 50 – 80 m
c) 90 – 120 m
d) 90 – 100 m
Answer: c
Clarification: As recommended by the IRC codes, the spacing between the adjacent expansion joints during the summertime is 90 to 120 m. During winter, the spacing is 50 to 60 m. these values are valid for a smooth interface.
2. What is the expansion joint spacing design based on?
a) Length of pavement
b) Length of joint
c) Width of pavement
d) Width of joint
Answer: d
Clarification: The design of the expansion joint is based on two factors. One is the maximum temperature variation expected and the other is the width of the joint. Width of the expansion joint depends on the length of the slab.
3. What is the equation used to find the spacing of the expansion joint?
a) (L_e=frac{δ}{100C(T_2-T_1)})
b) (L_e=frac{δ}{10C(T_2-T_1)})
c) (L_e=frac{2δ}{100C(T_2-T_1)})
d) (L_e=frac{2δ}{10C(T_2-T_1)})
Answer: a
Clarification: (L_e=frac{δ}{100C(T_2-T_1)}) is the equation used to find the spacing of the expansion joints. In the equation, the term δ represents half the width of the joint, C is the coefficient of thermal expansion of concrete and the T2-T1 indicates the rise in temperature during the expansion.
4. The maximum spacing between the contraction joints in a reinforced cement concrete slab is ______
a) 15 cm
b) 15 m
c) 14 cm
d) 14 m
Answer: d
Clarification: As per IRC recommendations, the maximum spacing between the contraction joints in a reinforced cement concrete pavement of thickness 20 cm is 14 m. in case of plain cement concrete slabs, the spacing is less than that of in reinforced one. The maximum spacing is taken to be 4.5 m.
5. A thinner slab requires a ______ joint spacing.
a) Longer
b) Shorter
c) Deeper
d) Narrower
Answer: b
Clarification: The thickness of the slab is an important factor that affects the spacing of the joint. A thinner slab has high warping stress or curling stress. Hence to resist the same, the spacing must be shorter, otherwise, the slab would warp more.
6. What is the equation to compute the contraction joint spacing for a plain cement concrete pavement?
a) (L_c=frac{2×10^2 SA}{fWbh})
b) (L_c=frac{2×10^4 S}{fW})
c) (L_c=frac{2×10^2 S}{fW})
d) (L_c=frac{2×10^4 SA}{fWbh})
Answer: b
Clarification: For calculating the spacing between the contraction joints in plain cement concrete pavement, the equation (L_c=frac{2×10^4 S}{fW}) is used. In the case of a reinforced cement concrete pavement, the equation to be used is (L_c=frac{2×10^2 SA}{fWbh}).
7. At what length of the slab does the maximum stress due to friction occur in the case of contraction joints?
a) One fourth
b) Half
c) Three fourth
d) Full
Answer: b
Clarification: The slab contracts when there is a fall in temperature and it also undergoes shrinkage during curing periods. To resist the same, frictional stresses are developed. The maximum stress is developed at half the length of the slab.
8. Find the spacing between expansion joints for the following data given below.
Width of expansion joint gap = 2.5 cm
Temperature during laying the pavement = 14°C
Maximum temperature during summer = 50°C
Coefficient of thermal expansion = 10×10-6 /°C
a) 35.34 m
b) 35.72 m
c) 34.34 m
d) 34.72 m
Answer: d
Clarification: (L_e=frac{δ}{100C(T_2-T_1)}) is the equation used to find the spacing of the expansion joints. As per the question,
δ =2.5/2=1.25 cm C=10×10-6/°C T1=14°C T2=50°C
Therefore, (L_e=frac{δ}{100C(T_2-T_1)} =frac{1.25}{100×10×10^{-6}×(50-14)})=34.72 m
9. Determine the spacing between contraction joints of a 4 m wide slab having 15 cm thickness, coefficient of friction is 1.3 and allowable stress in concrete is 0.8 kg/cm2.
a) 4.13 m
b) 5.5 m
c) 5.13 m
d) 4.5 m
