FIELD: acoustics.
SUBSTANCE: invention relates to industrial acoustics, particularly to broadband soundproofing. Sound absorber consists of perforated frame filled with sound absorbing material placed in protective shell. Frame is made from lower part of conical shape with cover and upper part made in form of axially symmetric body of rotation of cylindrical shape with top and bottom flat bases. External toothed surface of said body is made in cross-section perpendicular to axis of rotation body, toothed shape, and inner surface is composed of cylindrical shell arranged coaxially with respect to cylindrical surface around which triangular teeth are located toothed surface. Cylindrical cavity inside the cylindrical shell is filled with sound reflecting material, for example foam aluminium, or metal-ceramics, or metal foam, or in form of compacted crumbs from solid damping material, for example, elastomer, polyurethane or elastrons of "Agat", "Antivibrat", "Schwim" types. Size of fractions of crumbs is within optimal range of values: 0.3…2.5 mm. Inner cavity between cylindrical shell ring and external toothed surface is filled with sound absorbing material. Perforated framework has following perforation parameters: hole diameter 3÷7 mm, perforation percentage of 10 %÷15 %. As for the shape the holes can be circular, triangular, square, rectangular or diamond-shaped. In case of non-circular holes, it is necessary to consider as the nominal diameter the maximum diameter of the circle inscribed in the polygon. As sound-absorbing material used sound sheet material, which is based on magnesite binder with reinforcing glass or glass, or polyester, or porous sound-absorbing ceramic material with volume density 500÷1,000 kg/m3 and consisting of 100 wt parts of pearlite with grain diameter of 0.1÷8.0 mm, 80÷250 wt parts of one of sintering materials selected from group comprising ash dust, slag, quartz, lava, stones or clay as main material, 5÷30 pts.wt inorganic binder. After sintering mixture of pearlite particles form communicating holes between contact surfaces so that inner pores are interconnected.
EFFECT: invention allows to improve efficiency of noise suppression.
1 cl, 2 dwg
Title | Year | Author | Number |
---|---|---|---|
KOCHSTAR-TYPE SINGLE-PIECE SOUND ABSORBER | 2014 |
|
RU2581168C2 |
KOCHETOV SINGLE-PIECE SOUND ABSORBER | 2013 |
|
RU2531153C1 |
KOCHSTAR TYPE SINGLE-PIECE SOUND ABSORBER | 2013 |
|
RU2531152C1 |
ELEMENT OF KOCHETOV NOISE SUPPRESSOR | 2014 |
|
RU2604263C2 |
MULTI-SECTION SILENCER BY KOCHETOV FOR NOISE REDUCTION OF GAS-DYNAMIC PLANTS EXHAUST | 2014 |
|
RU2604262C2 |
SINGLE-PIECE SOUND ABSORBER FOR ACOUSTIC STRUCTURE OF PRODUCTION FACILITY | 2013 |
|
RU2540991C1 |
MULTI-SECTION NOISE SUPPRESSOR | 2014 |
|
RU2603875C2 |
SOUND-ABSORBING STRUCTURE OF INDUSTRIAL PREMISES | 2014 |
|
RU2579020C2 |
KOCHETOV'S PIECE NOISE ABSORBER | 2014 |
|
RU2558817C1 |
SOUND ABSORBER WITH CYLINDRICAL RESONATOR | 2014 |
|
RU2655641C2 |
Authors
Dates
2016-05-10—Published
2014-08-27—Filed