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Sylic®Softening Finishing Auxiliaries

Sylic®Softening Finishing Auxiliaries

Advanced Softening Solutions for Textiles

 

Enhance the softness, smoothness, and drape of your fabrics with our premium textile softening auxiliaries. Featuring high-quality silicone softeners and softening flakes, our solutions provide a luxurious hand feel while maintaining fabric strength and durability.

 

Softening Finished Textile

Durable Performance – Enhances wash resistance for long-lasting softness.

Customizable Effects – Offers hydrophilic, hydrophobic, and special finishing options.

Durable Performance – Enhances wash resistance for long-lasting softness.

Versatile Applications – Suitable for cotton, polyester, wool, silk, and blends.

Upgrade your textile finishing process with our high-performance softeners.

Sylic®Softening Finishing Auxiliaries

NO.

Product Name

Basic Character

Application

Reference Dosage

01

Sylic F3575 Soft and Smooth Silicone Oil

Transparent light yellow liquid Solid content: 64-66% Weak cationic

1. High-concentration self-emulsifying silicone oil, suitable for cotton, polyester and their blended fabrics 2. Soft handfeeling; low yellowing; high stability and compatibility

(Dilute emulison) padding dyeing: 5 -20g/L; Exhaust dyeing: 1-5% (o.w.f)

02

Sylic F3591 Silicone Softener (CY-404A)

Transparent liquid Solid content: 49-51% PH Value: 5.0-6.0 Weak cationic/Nonionic

1. Used for soft finishing of terry cloth and cotton fabrics 2. It feels fluffy, smooth and has good hydrophilicity.

(Dilution emulsion) Padding dyeing: 10-40g/L; Exhaust dyeing: 2-6% (o.w.f)

03

Sylic F3603 Cold Water Softener Flake (CY-9004)

Milky white flakes PH Value(5-8% solution): 3.0-4.0 Weak Cationic

1. Suitable for denim washing processing, soft finishing of cotton, linen and its blended fabrics 2. Soft and smooth to the touch; easy to change material

Dilution temperature: 30-40℃; (10% flake emulsion) Padding dyeing: 20 -30g/L; exhaust dyeing: 3-8% (o.w.f)

04

Sylic F3605 Non-ionic Softener Flake (CY-9005B)

Light yellow flake PH Value(5-10% solution): 4.0-5.0 Nonionic

1. Suitable for cotton, linen, rayon and their blends. 2. Soft, smooth and full hand feel; no yellowing; good stability.

Dilution temperature: 70-80℃; Reference dosage: (10% flake emulsion) Padding dyeing: 20 -50g/L; exhaust dyeing: 3-8% (o.w.f)

05

Sylic F3607 Softener Flake (CY-9007)

Light yellow flakes PH Value:4.5-6.5 Weak cationic

1. Suitable for soft finishing of polyester and blended fabrics 2. Soft, smooth and plump feel

Dilution temperature: 75-80℃; (10% flake emulsion) padding dyeing: 20 -50g/L; exhaust dyeing: 3 - 8% (o.w.f)

06

Sylic F3630 Soft Beads (CY-9010)

White to yellow hemispherical solid PH Value:7.0-8.0 Non-ionic

1. Suitable for softening cotton, linen, rayon and their blended fabrics 2. Soft and fluffy feel; less yellowing; good stability

Dilution temperature: 70-80℃; (10% flake emulsion) padding dyeing: 20 -50g/L; exhaust dyeing: 3 - 8% (o.w.f)

07

Sylic F3640 Hydrophilic Ointment (CY-9008)

Yellow viscous paste Weak cationic

1. Used for soft finishing of cotton fabrics and yarns, especially terry cloth 2. Excellent hydrophilicity, low yellowing. ; Fluffy, soft, smooth hand feel; Good stability

Dilution temperature: 40-50℃; Chemical ratio: 1:10-1:15 (10% flake emulsion) padding dyeing: 10-50g/L; exhaust dyeing: 3-10% (o.w.f)

08

Sylic F3720 Silicone Emulsion (CY-4415)

White emulsion Solid content (%): 62.0-66.0 PH Value (1% aq. sol. ): 6.0-8.0 Weak anionic/Nonionic

1. Suitable for fabric raising agent (raising processing of polyester knitted fabrics and polar fleece) 2. It feels fluffy and has rich, short, dense and even fluffing effect; it is not easy to turn yellow.

Padding dyeing: 3-10g/L; Exhaust dyeing: 0.3-1% (o.w.f)

09

Sylic F3740 Wax Emulsion

Beige to milky white liquid Solid content (%) 28.0-30.0 pH value (1% aqueous solution) 4.0-6.0 Nonionic

1. Suitable for finishing cotton yarn and polyester yarn. It gives the yarn a better smoothness and reduces yarn friction. 2.It can reduce yarn breakage rate and improve work efficiency during weaving.

Sylic F3740 is first diluted with cold water and stirred and then added to the dyeing vat. 0.5-2% Sylic F3740 is added. Pre-run for 5 minutes in a weak acid bath with a pH value of 5.5-6.0, slowly raise the temperature to 40°C, keep it warm for 15-20 minutes, The ratio of internal outflow time is: inside-outside/outside-inside = 1:2 For example: from inside to outside 2 minutes from outside to inside 4 minutes. In order to prevent insufficient exhaustion, it is recommended to add 0.5-1.0 ml/l 60% acetic acid. Drying can be carried out at room temperature or in a pressurized oven at less than 130°C.

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How does amine value affect amino silicone softener performance?

The amine value indicates the concentration of amino groups on the silicone polymer chain. Higher amine values increase electrostatic adsorption onto anionic fiber surfaces, improving softness intensity and softness retention through washing — with hydrogen bonding serving as a secondary anchoring force once the polymer is adsorbed. However, higher amine content also raises yellowing risk on white and light-colored fabrics. Selecting the right amine value involves balancing softness depth against acceptable yellowing tolerance for the target substrate.

Amino silicone vs block silicone softener: which to choose?

The choice depends primarily on whether moisture management needs to be preserved:

  • Amino silicone: delivers superior softness depth and a silky, smooth hand feel, making it preferred for apparel and home textiles where tactile quality is the primary target
  • Block silicone: polyether segments maintain fiber hydrophilicity while improving drape, making it preferred for towels, sportswear, and moisture-wicking fabrics where water absorption must not be compromised

Both types can be blended to balance softness and moisture performance on cotton/polyester blend substrates.

Why do amino silicone softeners yellow white fabric?

Two distinct mechanisms drive yellowing in amino silicones:

  • Thermooxidative yellowing: free amine groups degrade under heat during stenter curing, generating chromophores. The effect is more pronounced at higher amine values
  • Gas fading (NOx yellowing): atmospheric nitrogen oxides react with amine groups during storage or transport to form yellow-tinted products, independent of heat exposure

For white and pale substrates, low-amine-value amino silicones or hydrophilic block silicone softeners are specified to manage both risk pathways.

What is the advantage of self-emulsifying silicone softener?

Standard silicone oils require a separate emulsification step using surfactants and high-shear mixing equipment before being added to a bath. Self-emulsifying silicone softeners carry built-in emulsifier groups in the polymer structure, dispersing in water with simple agitation. This produces more uniform emulsion particle size and better bath stability, eliminates pre-emulsification infrastructure, and simplifies dosing in continuous padding or jet dyeing operations across any production scale.

What causes roller sticking with silicone softener?

Roller sticking occurs when silicone deposits accumulate on stenter or padding mangle rollers, causing fabric adhesion and surface distortion. It is more common with high-molecular-weight amino silicone emulsions at elevated concentrations. The deposits originate from multiple sources: emulsion particle coalescence on the roller surface, oil separation under nip pressure, and electrostatic affinity between cationic silicone and certain roller materials. Maintaining weakly acidic bath pH improves emulsion stability and reduces the rate of deposit formation during extended padding runs.

Padding vs exhaust application: how do they differ for silicone softeners?

The two application methods require different optimization approaches:

  • Padding: fabric passes through a bath and is nipped to set wet pickup, typically at 70–80% wet add-on. Bath concentration and nip pressure are the primary control variables since contact time is brief
  • Exhaust (jet/overflow dyeing): the softener must migrate from the liquor onto the fiber. Cationic silicones exhaust preferentially onto anionic cotton and wool surfaces through electrostatic affinity, while exhaustion rate is further governed by bath pH, temperature, treatment time, and fabric-to-liquor ratio

For exhaust application, ionic character is therefore the primary selection criterion, as it determines whether the softener will exhaust effectively at all.

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