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Tubular bells
Mallet percussion instrument / From Wikipedia, the free encyclopedia
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Tubular bells (also known as chimes) are musical instruments in the percussion family.[1] Their sound resembles that of church bells, carillons, or a bell tower; the original tubular bells were made to duplicate the sound of church bells within an ensemble.[2] Each bell is a metal tube, 30–38 mm (1+1⁄4–1+1⁄2 in) in diameter, tuned by altering its length. Its standard range is C4–F5, though many professional instruments reach G5. Tubular bells are often replaced by studio chimes, which are a smaller and usually less expensive instrument. Studio chimes are similar in appearance to tubular bells, but each bell has a smaller diameter than the corresponding bell on tubular bells.
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![]() A set of chimes made by Yamaha | |
Percussion instrument | |
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Other names |
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Classification | Keyboard percussion |
Hornbostel–Sachs classification | 111.232 (Sets of percussion tubes) |
Playing range | |
C4–F5 standard; extended range can include Bb3–G5, bass F3–B3, but can vary | |
Builders | |
![](http://upload.wikimedia.org/wikipedia/commons/thumb/4/4f/Adams_Bass_Chimes.jpg/640px-Adams_Bass_Chimes.jpg)
Tubular bells are sometimes struck on the top edge of the tube with a rawhide- or plastic-headed hammer. Often, a sustain pedal will be attached to allow extended ringing of the bells. They can also be bowed at the bottom of the tube to produce a very loud, very high-pitched overtone.
The tubes provide a purer tone than solid cylindrical chimes, such as those on a mark tree.
Chimes are often found in orchestral and concert band repertoire. It rarely plays melody, instead being used most often as a color to add to the ensemble sound. It does have solos occasionally, often depicting church bells.[2]
In tubular bells, modes 4, 5, and 6 appear to determine the strike tone and have frequencies in the ratios 92:112:132, or 81:121:169, "which are close enough to the ratios 2:3:4 for the ear to consider them nearly harmonic and to use them as a basis for establishing a virtual pitch".[3] The perceived "strike pitch" is thus an octave below the fourth mode (i.e., the missing "1" in the above series).