Войдите в систему

A couple is a pair of parallel forces equal in magnitude but in opposite directions. The forces are separated by a perpendicular distance, known as the couple's arm. The couple causes a rotation force or moment that rotates the body about an axis perpendicular to the plane of the forces. The resulting moment is referred to as the couple moment. The SI unit of a couple moment is the Newton-meter (N-m).

A typical example to understand this concept is tightening a bolt with a lug wrench. A force couple is formed when two equal and opposite forces are applied to the wrench at points A and B separated by a perpendicular distance. The respective position vectors are directed from the origin of a coordinate system to the point of application. The couple moment about the origin is the sum of the cross-product of the position vectors and the forces. The difference between the position vectors of both the opposite forces gives the position vector r, which is the distance between the opposing forces.

Interestingly, the couple moment only depends on the position vector r between the forces, not the individual position vectors for the two forces. The position vector r is independent of the origin. It implies computing the moments of the same forces around a different point would yield the same result. The couple moment is a free vector. Unlike a couple moment, the moment of a force depends on the position at which it is measured. If two couples produce a moment of equal magnitude and direction, then these two couples are equivalent. Equivalent couples have equal torque or turning effects regardless of their positions, directions, or magnitudes.

Calculating the couple moment and understanding its effects is crucial in designing stable and robust systems that can withstand external forces.

Теги
CoupleParallel ForcesCouple s ArmRotation ForceCouple MomentNewton meterForce CoupleLug WrenchPosition VectorsCross productPosition Vector RFree VectorTorqueEquivalent CouplesStable Systems

Из главы 4:

article

Now Playing

4.11 : Couple

Force System Resultants

358 Просмотры

article

4.1 : Момент силы: скалярная формулировка

Force System Resultants

620 Просмотры

article

4.2 : Момент силы: решение проблем

Force System Resultants

501 Просмотры

article

4.3 : Результирующий момент: скалярная формулировка

Force System Resultants

1.3K Просмотры

article

4.4 : Момент силы: векторная формулировка

Force System Resultants

2.0K Просмотры

article

4.5 : Декартова форма для векторной формулировки

Force System Resultants

531 Просмотры

article

4.6 : Результирующий момент: векторная формулировка

Force System Resultants

2.9K Просмотры

article

4.7 : Принцип моментов

Force System Resultants

1.5K Просмотры

article

4.8 : Принцип моментов: решение проблем

Force System Resultants

737 Просмотры

article

4.9 : Момент силы, вращающейся вокруг оси: скалярный

Force System Resultants

272 Просмотры

article

4.10 : Момент силы вокруг оси: вектор

Force System Resultants

282 Просмотры

article

4.12 : Пары: скалярная и векторная формулировка

Force System Resultants

203 Просмотры

article

4.13 : Равнозначные пары

Force System Resultants

242 Просмотры

article

4.14 : Момент пары: решение проблемы

Force System Resultants

784 Просмотры

article

4.15 : Система Сил и Пар

Force System Resultants

378 Просмотры

See More

JoVE Logo

Исследования

Образование

О JoVE

Авторские права © 2025 MyJoVE Corporation. Все права защищены