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・ Belsta River
・ Belstaff
・ Belstead
・ Belstead Brook Hotel
・ Belston Loch
・ Belstone
・ Belstone Corner
・ Belstone F.C.
・ Belsunce
・ Belsy Laza
・ Belsyre Court
・ Belsősárd
・ Belt
・ Belt (clothing)
・ Belt (firearms)
Belt (mechanical)
・ Belt armor
・ Belt buckle
・ Belt course
・ Belt Creek
・ Belt Creek (Montana)
・ Belt dryer
・ Belt Expressway
・ Belt filter
・ Belt friction
・ Belt grinding
・ Belt hook
・ Belt Junction, Texas
・ Belt Line (DART station)
・ Belt Line Road (Texas)


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Belt (mechanical) : ウィキペディア英語版
Belt (mechanical)

A belt is a loop of flexible material used to mechanically link two or more rotating shafts, most often parallel. Belts may be used as a source of motion, to transmit power efficiently, or to track relative movement. Belts are looped over pulleys and may have a twist between the pulleys, and the shafts need not be parallel. In a two pulley system, the belt can either drive the pulleys normally in one direction (the same if on parallel shafts), or the belt may be crossed, so that the direction of the driven shaft is reversed (the opposite direction to the driver if on parallel shafts). As a source of motion, a conveyor belt is one application where the belt is adapted to continuously carry a load between two points.
== Power transmission ==
Belts are the cheapest utility for power transmission between shafts that may not be axially aligned. Power transmission is achieved by specially designed belts and pulleys. The demands on a belt drive transmission system are large and this has led to many variations on the theme. They run smoothly and with little noise, and cushion motor and bearings against load changes, albeit with less strength than gears or chains. However, improvements in belt engineering allow use of belts in systems that only formerly allowed chains or gears.
Power transmitted between a belt and a pulley is expressed as the product of difference of tension and belt velocity:
:P=(T_1-T_2)v
where, T1 and T2 are tensions in the tight side and slack side of the belt respectively. They are related as:

:\frac = e^
where, μ is the coefficient of friction, and α is the angle subtended by contact surface at the centre of the pulley.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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