Rapid Delivery for Defoamer TEX-29 Defoamer, Antifoam for Textile to India Importers

Rapid Delivery for
 Defoamer TEX-29 Defoamer, Antifoam for Textile to India Importers

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SIXIN® DEFOAMER TEX-29   FEATURES ● Composed of polysiloxane, modified polysiloxane, silica, dispersing agent, and stabilizing agent. ●Excellent defoaming performance through a wide temperature range (25°C-100℃). ●Stable in alkaline environments (pH 8-11).   TYPICAL PROPERTIES Index Result Test method Appearance White or yellowish uniform liquid emulsion,without any sediment and mechanical impurities GB/T 26527-2011 pH 6.5~8.5 Nonvolatile Content(%) 38...


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Rapid Delivery for Defoamer TEX-29 Defoamer, Antifoam for Textile to India Importers Detail:

SIXIN® DEFOAMER TEX-29

 

FEATURES

● Composed of polysiloxane, modified polysiloxane, silica, dispersing agent, and stabilizing agent.

●Excellent defoaming performance through a wide temperature range (25°C-100℃).

●Stable in alkaline environments (pH 8-11).

 

TYPICAL PROPERTIES

Index

Result

Test method

Appearance

White or yellowish uniform liquid emulsion,without any sediment and mechanical impurities

GB/T 26527-2011

pH

6.58.5

Nonvolatile Content(%)

38.5±1.0

Viscosity(25℃mPa·s) 250600

GB/T 5561-2012

Emulsifier Type

Weak anionic
NoteThe information above is for reference and shall not be deemed as a technical indicator. Test pH with indicator paper (pH 5.5 to 9); pH values cannot be tested by other methods.

 

 APPLICATIONS

● Textile dyeing (cotton dyeing)

 Pretreatment of textile (desizing, scouring, and bleaching)

● Sewage treatment

● Emulsion polymerization

 

PACKAGE

50/200kgs plastic drum/IBC

 

SHELF LIFE

9 months from the date of manufacture.

 

TIPS

Defoamer Textile,Defoamer Dyeing,Defoamer Silicone,Defoamer Water Base,

Antifoam Silicone,Antifoam Water Base


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With advanced technologies and facilities, strict quality control, reasonable price, superior service and close co-operation with customers, we are devoted to providing the best value for our customers for Rapid Delivery for Defoamer TEX-29 Defoamer, Antifoam for Textile to India Importers, The product will supply to all over the world, such as: Hungary , Ethiopia , Pretoria , We adopt advanced production equipment and technology, and perfect testing equipment and methods to ensure our product quality. With our high-level talents, scientific management, excellent teams, and attentive service, our products are favored by domestic and foreign customers. With your support, we will build a better tomorrow!


  • GaAs SemiconductorGallium arsenide is a chemical gallium/arsenic compound. This is an important semiconductor being the third after silicon and germanium in terms of commercial use. Gallium arsenide is used to build microwave integrated circuits, light-emitting diodes, laser diodes, Gunn diodes, tunnel diodes, photo receivers and nuclear radiation detectors.Some gallium arsenide’s properties surpass those of silicon. Gallium arsenide has a higher electron mobility. That’s why it can operate at the frequency of up to 250 giga-hertz. Arsenide gallium-based semiconductor equipment generates lesser noise than silicon-based equipment at one and the same frequency. As gallium arsenide has a higher breakdown field intensity as opposed to silicon and gallium arsenide-based devices can operate at greater power. Such properties of gallium arsenide account for its wide utility in semiconductor lasers and individual radar systems. As compared to silicon-based equipment, semiconductor devices made of gallium arsenide are more resistant to radiation. That’s why they are widely used in radioactive environment (for instance, in solar batteries installed in the space).Another benefit of gallium arsenide is that is a direct band semiconductor. Various optoelectronic equipment uses gallium arsenide, for example, light-emitting diodes or semiconductor lasers.Molecular beam epitaxy or MOC-hydride epitaxy techniques allow growing complex gallium arsenide lattice structures combined with aluminum arsenide or ternary solutions (heterostructures). Due to almost ideal lattice matching layers have a small mechanical stress and may be of any width.Physically, gallium arsenide is more fragile and less heat-conducting than silicon. Gallium arsenide bottom layers are much more difficult to manufacture and are five-fold more expensive than silicon one. Therefore, gallium arsenide is used less frequently.



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