钢筋混凝土楼盖(Reinforced concrete floor).doc
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钢筋混凝土楼盖(Reinforced concrete floor)
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Reinforced concrete floor
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The board design
The 1.1 floor structure layout of the plate thickness h = (1/35~1/40) *2000=57.14~50mm consider industrial floor minimum plate thickness is 80mm, so the plate thickness is 80mm. The secondary beam interface height h= (1/18~1/12) *6000=333.3~500mm, b*h=200*400mm (1/14~1/8) h= beam section height *6000=428.5~750mm, design panel b*h=250~600mm 2, plate length is 6000/2000=3, using one-way plate rib floor calculation, reinforcement plate along the long edge direction of a certain number of reinforced.
0.02*20=0.4 kN/m 0.08*25=2 kN/m 0.015*17=0.255 kN/m Gk=2.655 kN/m g=1.2 *2.655=3.186 kN/m constant load live load value q=1.3*7=9.1 kN/m g+p=12.286kN/m design 1m wide strip unit, every metre wide plate g+p=12.286 kN/m
(1) the load calculation of constant load standard value of 20mm thick cement mortar layer of 80mm thick reinforced concrete plate 12mm thick bottom plastering
(2) the internal force calculation of side span L1=Ln+h/2= (2.0-0.2/2-0.24/2+0.08/2) =1.82m L2=L3=Ln=2.0-0.2=1.8m middle span span difference (1.82-1.8) /2*100%=1% 10% so, taking the internal force coefficient calculation of span continuous beam.
Figure:
A
B
C
C
B
A
The calculation sketch plate 1.2 1.1.1 continuous plate bending moment
The bending moment coefficient a (= M alpha (g+ q) L2) / (kN - M)
Side span
Support B
In the middle of the cross
Intermediate support
1/11
- 1/14
1/16
- 1/14
(1/11) *12.22*2.02*2.02=4.53 (-1/11) *12.22*2.02*2.02=-4.53 (1/16) *12.22* 2.0*2.0=3.06 (-1/14) *12.22* 2.0*2.0=-3.49
(3) normal section bearing capacity calculation of b=1000mm, h=80mm, ho=80-20=60mm, 0.35ho=0.35*60=21mm
Reinforcement calculation of 1.1.2 plate
The 2 section of the 1 3.7*10^6 B -3700000 I-I - strip plate with I-I plate with -2910000
C
The moment M/
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