双向板配筋计算

按弹性理论计算

(1)底部跨中X向弯矩及配筋

Mx=(0.03814+0.00600×0.2)×(1.20×3.83+1.40×1.00)×4.2×4.2=4.16kN·m

(【tips】g+q/2满布,按四边固支查表)

考虑活载不利布置跨中X向应增加的弯矩:

Mxa=(0.08776+0.02164×0.2)×(1.4×1.00)×4.2×4.2=2.27kN·m

(【tips】q/2间隔布置,按四边简支查表)

Mx=4.16+2.27=6.44kN·m

Asx=231.77mm2,实配φ8@200(As=251.0mm2)

ρmin =0.179%,ρ=0.251%

(2)底部跨中Y向弯矩及配筋

My=(0.00600+0.03814×0.2)×(1.20×3.83+1.40×1.00)×4.2×4.2=1.44kN·m

考虑活载不利布置跨中Y向应增加的弯矩:

Mya=(0.02164+0.08776×0.2)×(1.4×1.00)×4.2×4.2=0.97kN·m

My=1.44+0.97=2.41kN·m

Asy=200.00mm2,实配φ8@200(As=251.0mm2)

ρmin=0.179%,ρ=0.251%

(3)顶部支座X向弯矩及配筋

Mx'=0.08098×(1.20×3.83+1.40×2.00)×4.2×4.2=10.57kN·m

(【tips】g+q满布,按四边固支查表)

Asx'=390.62mm2,实配φ10@200(As=393.mm2)

ρmin=0.179%,ρ=0.393%

(4)顶部支座Y向弯矩及配筋

My'=0.05710×(1.20×3.83+1.40×2.00)×4.2×4.2=7.45kN·m

Asy'=270.12mm2,实配φ8@180(As=279.0mm2)

ρmin=0.179%,ρ=0.279%

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