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第 25 章

梁のたわみ

横荷重を受けるビームの変形
横荷重を受けるビームの変形
A crucial component in the design of beams is the identification and measurement of deflection. A comprehensive understanding of deflections is necessary ...
弾性曲線の方程式
弾性曲線の方程式
The plane curve's curvature at a point on the curve can be expressed using an expression involving the curve's first and second derivatives. The ...
荷重分布からの弾性曲線
荷重分布からの弾性曲線
When a beam carries a distributed load, the shear force and bending moment at any point on the beam can be expressed in a differential form. A third-order ...
ビームのたわみ
ビームのたわみ
The deflection of a beam in a roof structure can be determined using the integration method, provided that a single analytical function can represent the ...
重ね合わせの方法
重ね合わせの方法
The method of superposition is used in structural engineering to calculate the slope and deflection of beams subjected to multiple loads. When a beam ...
モーメント面積定理
モーメント面積定理
The moment-area theorem provides geometric properties of an elastic curve for determining deflection and slope at any point on the beam supporting a ...
対称荷重を持つ梁
対称荷重を持つ梁
The Moment-area method can be implemented on a cantilever beam under a concentrated load and moment to identify the slope and deflection. The process ...
非対称荷重を持つ梁
非対称荷重を持つ梁
Analyzing a supported beam under unsymmetrical loadings requires a reference tangent with a known slope to identify the level point. The slope of the ...
最大たわみ
最大たわみ
Consider a train moving on a bridge. Here, an unsymmetrical load is applied to a supported beam where the maximum deflection doesn't usually occur in ...
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