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Page 1: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Engineering Mechanics

Friction

Page 2: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Friction: Layout

Types of Friction Characteristics of Dry Friction Coulomb’s Friction Model Friction Angle Simple Application: Wedge

characteristics [,kær kt 'ristiks] ə ən. 特性,特征;特色( characteristic 的复数);特质

coulomb ['ku:l m] ɒn. 库仑

wedge [wed ] ʒn. 楔子;楔形物;

Page 3: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Types of Friction Dry Friction - When the unlubricated surfaces of two solids

are in contact under a condition of sliding or tendency to slide

• Fluid Friction - When adjacent layers in a fluid are moving at

different velocities • Internal Friction - When solid materials are subjected to cyclical

loading

lubricate ['lubrikeit] vi. 润滑;

adjacent [ 'd eis nt] ə ʒ əadj. 邻近的,毗连的

cyclical ['saiklik l] əadj. 周期的,循环的

Page 4: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Characteristics of Dry Friction

Ft: Friction Force N: Normal Force

Page 5: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

critical ['kr t k( )l]ɪ ɪ əadj. 临界的;

impend 英 [ m'pend] ɪvi. 即将发生

kinetic [k 'net k]ɪ ɪadj. [ 力 ] 运动的;动力的

coefficient [,k ui'fi nt] ə ʃən. [ 数 ] 系数

Page 6: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:
Page 7: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Friction: Example I

A block of mass m is resting on an inclined plane. The coefficient of friction between the block and the plane is µ =0.25. Determine the maximum value of the inclining angle θ.

Note: Inclining the plane may be used to estimate

the coefficient of friction

incline [in'klain] vi. 倾斜;

value ['vælju:] n. 值;

Page 8: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Friction Force- Direction

- MagnitudeCoordinate System

- Standard- Rotated

Page 9: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Friction: Example II Determine the range of values of force P

applied so that the block of mass m will neither slide down or move up the inclined plane. Assume that the coefficient of friction between the block and the plane is µ =0.25 and the inclining angle of the plane is θ=45 º.

Page 10: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Friction: Example II

Friction Force: Direction ?

Page 11: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:
Page 12: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Friction: Example II

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Page 14: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Friction: Example III A square block of mass m resting on the horizontal

surface is subjected to a horizontal force P. The coefficient of

friction between the block and the plane is µ. Prove that equilibrium is broken by sliding if µ <0.5, and by the block tilting if µ >0.5.

square [skwε ] əadj. 平方的;正方形的;

subject ['s bd ikt] ʌ ʒadj. 受制于…的

tilt [tilt] vi. 倾斜;

Page 15: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:
Page 16: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Friction: Example IV The three flat blocks are positioned on the 30 º

incline and a force P parallel to the incline is applied to the middle block. The coefficient of friction for each of the three pairs of mating surfaces is shown. Determine the maximum value of P may have before any slipping takes place.

Page 17: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:
Page 18: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Friction: Example IV

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Page 20: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

The Angle of Friction

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Page 22: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:
Page 23: Engineering Mechanics Friction. Friction: Layout Types of Friction Characteristics of Dry Friction Coulomb ’ s Friction Model Friction Angle Simple Application:

Wedge: Example V The position of the 500kg block is adjusted by the 5

º wedge under the action of the force P. If the coefficients of friction for both pairs of wedge surfaces and between the block and the horizontal plane are 0.3 and 0.6 respectively, determine the

least force P required to move the block.

respectively [ri'spektivli] adv. 分别地;各自地,独自地

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