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RC Slab 弹性设计

计算每ACI 318M-19所需的板块加固. 输入设计参数,并获得钢材区,酒吧建议和安全检查.

RC Slab Flexural Design

Result 1
Result 2
Result 3
Status
As required
As min (shrinkage)
a — Stress Block (mm)
Status

Suggested Reinforcement

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How to use RC Slab Design

  1. 输入混凝土压缩强度f'c和钢产量强度fy.
  2. 输入每米宽以 kN- m 为单位的终极设计瞬间 .
  3. 输入条宽b(通常为平板1000毫米)、有效深度d和总厚度h.
  4. 审查所需钢材面积、最小钢材和中轴深度.
  5. 检查状态(Tension-controled = safe),并从建议的酒吧安排中选择.

{姓名}是什么来着?

这个工具根据ACI 318M-19进行单倍硬化的混凝土板弹性设计. 它使用长方形应力块法来计算所需的张力钢区,检查最小的钢要求(包括温度/收缩钢),并验证该路段按ACI要求为张力控制.

. 该工具建议符合要求的钢材区域的实际条形尺寸和间隔,帮助您快速选择可构造的加固布局.

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FAQ

这是基于什么代码?
ACI 318M-19 (测量). 采用长方形应力区块法,每ACI表22.2.2.4.3使用β1,对可张力控制区块使用φ=0.9,每ACI使用最小钢§9.6.1.2,每ACI使用温度/收缩钢§24.4.3.2.
"感应控制"是什么意思?
由张力控制的路段因钢材在混凝土被压碎之前产生而失效,这种路段是通便和可取的. 工具检查中轴深度是否在每ACI的张力控制下.

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Author

OH
Omar Hassan"The Number Cruncher"

Engineer & Unit Conversion Specialist

Omar is a mechanical engineer by training and a unit-conversion enthusiast by passion. He has built calibration systems for aerospace and automotive manufacturers and knows firsthand how a single decimal error can cost millions in rework. His mission is to make every conversion instant, accurate, and accessible to everyone, whether they are a student, tradesperson, or practicing engineer, with no advanced degree required.

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