登录

The principle of moments, also known as Varignon's theorem, is a fundamental concept in physics and engineering that describes the equilibrium of a rigid body under the influence of external forces. The principle states that the moment of a force about a point is equal to the sum of the moments of the components of the force about the same point.

The moment is calculated by multiplying the magnitude of the force by the perpendicular distance from the point of application to the point about which the moment is being calculated. Consider a valve where a hand wheel is mounted on a pipeline. When someone applies a force to rotate the wheel, the moment of the force about the center can be determined by multiplying the magnitude of the force by the perpendicular distance from the center to the point of the force application.

However, the calculation can become more complex if the applied force is not perpendicular to the valve or has multiple components. In this case, we can resolve the force into its component vectors and calculate each component's moment individually by multiplying it by the perpendicular distance from the point of application of that component to the point about which the moment is being calculated. Once each of the moments has been calculated, we can sum them up to determine the overall moment of the force about the point in question.

The principle of moments can be used in a wide range of applications, from structural engineering to mechanical design. By calculating the moments of the forces acting on a system or structure, we can determine whether it is in equilibrium or whether it will rotate or move due to an imbalance of forces.

Tags
Principle Of MomentsVarignon s TheoremEquilibriumRigid BodyExternal ForcesMoment Of A ForceMagnitude Of ForcePerpendicular DistanceValve MechanicsComponent VectorsStructural EngineeringMechanical DesignForce ApplicationMoment CalculationSystem Equilibrium

来自章节 4:

article

Now Playing

4.7 : Principle of Moments

Force System Resultants

1.5K Views

article

4.1 : 力矩:标量公式

Force System Resultants

621 Views

article

4.2 : 力矩:解决问题

Force System Resultants

506 Views

article

4.3 : 合力矩:标量公式

Force System Resultants

1.3K Views

article

4.4 : 力矩:矢量公式

Force System Resultants

2.0K Views

article

4.5 : 用于向量公式的笛卡尔形式

Force System Resultants

532 Views

article

4.6 : 合力矩:向量公式

Force System Resultants

2.9K Views

article

4.8 : 矩量原理:解决问题

Force System Resultants

740 Views

article

4.9 : 绕轴的力矩:标量

Force System Resultants

278 Views

article

4.10 : 绕轴的力矩:矢量

Force System Resultants

283 Views

article

4.11 : 夫妇

Force System Resultants

360 Views

article

4.12 : 耦合:标量和向量公式

Force System Resultants

205 Views

article

4.13 : 等效对数

Force System Resultants

242 Views

article

4.14 : 情侣时刻:解决问题

Force System Resultants

789 Views

article

4.15 : 力和耦合系统

Force System Resultants

379 Views

See More

JoVE Logo

政策

使用条款

隐私

科研

教育

关于 JoVE

版权所属 © 2025 MyJoVE 公司版权所有,本公司不涉及任何医疗业务和医疗服务。