Trademark | Product Specification | Properties | Application | |
GN453 | 1.56dtex×38mm | In the spinning process of polyester fibre, specially treated nano-scale antibacterial agents are dispersed into melt polyester. When the human body is in contact with the fibre, the antibacterial agent thet the fibre contains combines with the pheron in the bacteria, which, will deactivate and be inhibited from reproduction; when not in contact with the human body, antibacterial agents will ionize oxygen into ozone to kill the bacteria. The SGS test shows that the anti-bacterial staple fibre has excellent antibacterial effect against escherichia coli, staphylococcus aureus and candida albicans, etc. | Infant clothing fabric, medical and health care fabrics. | |
Gn446 | 3.33dtex×65mm |
Packaging | The products leave the factory in the form of packaging bags or tanker shipments. The packaging bag should be a woven bag with a liner. It can be covered with polyethylene dust-proof film according to user needs. The tanker used to transport the product should be clean and dry. | |||
Storage | The products are stacked in batches and should be placed in a cool, dry, ventilated warehouse with fire-fighting facilities, away from heat sources and avoiding direct sunlight. | |||
Transportation | The product is non-dangerous goods. During transportation, loading and unloading, the product warning signs shall be implemented in accordance with the regulations, and preventive measures shall be taken to prevent the product from being damp, exposed to the sun, contaminated and damaged packaging, and shall not be thrown or unloaded. |
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Common Names | Polyester staple fibre, Y-cool Cotton Fibre (Cotton Type Hollow Fibre) | |||
Structure | (C27H22O4S)n | |||
CAS No. | 25135-51-7 | Melting point (℃) | 185 °C | |
Molecular Weight | 1327.58 | Density | 1.24 g/mL at 25 °C(lit.) | |
Appearance | White fibre | Refractive index | 1.633 | |
HS Code | 39119000 | Autoignition Temperature | 550°C | |
Solubility | Soluble in dichloromethane, dichloroethane, chloroform, chlorobenzene, benzene, toluene. | Glass transition temperature | 150 ℃ |
Safety Statement (Europe) | S24/25 | ||
RIDADR | NONH for all modes of transport | ||
Water hazard class (WGK) | 3 | ||
Personal protective equipment | Eyeshields;Gloves;type N95 (US);type P1 (EN143) respirator filter |
FIRST AID | |
Inhalation | If breathed in, move person into fresh air. If not breathing, give artificial respiration. |
Skin | Wash off with soap and plenty of water. |
Eyes | Flush eyes with water as a precaution. |
Inhalation | Never give anything by mouth to an unconscious person. Rinse mouth with water. |
Polysulfone is polymerized from dialkali metal salts of diphenols (such as bisphenol A disodium salt) and active aromatic dihalides (such as 4,4`-dichlorodiphenyl sulfone). The production of polysulfone usually adopts Farnham’s nucleophilic substitution reaction. From the perspective of polymer synthesis, the production process of polysulfone products almost adopts the nucleophilic substitution polycondensation route in the industrial synthesis method. The production method has a one-step method and a two-step method. The two-step synthesis reaction is to generate bisphenol A disodium salt by in-situ reaction of bisphenol A and alkali, and then nucleophilic with 4,4`-dichlorodiphenyl sulfone Substitution reaction. The one-step synthesis of polysulfone is to use potassium bicarbonate or potassium carbonate instead of sodium hydroxide to synthesize polysulfone. This method can shorten the synthesis steps, avoid the dehydration process, and shorten the reaction time. It has great potential in increasing the output, but the current production Still use the two-step method to complete. |
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