HN-9880 Hydrophilic Soft & Loose Silicone Oil adopts the latest block copolymer design concept and is synthesized through special modification. It imparts a soft, smooth, and loose comfort characteristic to fabrics. Particularly suitable for high-count, high-density cotton/spandex fabrics and high-end long-staple cotton knitted fabrics.
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Appearance |
Colorless transparent liquid |
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Content |
80% |
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Ionicity |
Cationic |
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Main components |
Siloxane, polyamine, polyether block copolymer |
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Environmental compliance |
This product is environmentally friendly, contains no prohibited chemicals, and complies with EU Oeko-TEX 100 standards. |
· Particularly soft, smooth, hydrophilic, and moisturizing hand feel.
· Excellent stability; good resistance to acids, alkalis, heat, and electrolytes.
· Very good hydrophilicity; allows rework.
· Flexible oil-to-emulsifier ratio allows different hand feel styles.
The emulsification ratio can range from 5:1 to 10:1. Use emulsifier TO7 and add 2% glacial acetic acid based on the crude oil amount.
Emulsification recommendations:
Crude oil emulsified at 5:1 to 10:1 ratio gives a soft, smooth, moisturizing hand feel with slightly slower hydrophilicity compared to solvent-added emulsification.
Add solvent to crude oil to 70% content (recommended solvent: diethylene glycol monobutyl ether), then emulsify at 5:1 to 10:1 ratio. The hand feel will be stiffer and smoother than direct emulsification, with slightly faster hydrophilicity than without solvent.
Application Method
1. Recommended dosage:
·Padding process: 30–80 g/L
·Drying temperature: 170°C × 90–120 seconds
·Exhaustion process: 3–5% (o.w.f.)
2. Customers may adjust the dosage appropriately according to their hand feel requirements.
3. The technical information provided by our company, whether oral or written, is given in good faith. However, users are responsible for testing our products to verify their suitability for the intended processes and applications. Since the conditions of use are beyond our control, the user assumes full responsibility.
JIANGYIN HUANAN NEW MATERIAL