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PVC S65D-61518 (Ethylene based - SG 5) - Taiwan

PVC S65D-61518 (Ethylene based - SG 5) - Taiwan in Tradeasia

IUPAC Name

Poly(1-chloroethylene)

Cas Number

9002-86-2

HS Code

390410

Formula

C2H3Cl

Industry

-

Basic Info

Appearance

White Powder

Common Names

Polychloroethylene

Packaging

25 Kg Bag

Brief Overview

Vinyl chloride is the monomer used to create the synthetic polymer known as polyvinyl chloride, or PVC. It is a thermoplastic substance that is easily molded and sculpted into a wide range of shapes, making it a multipurpose substance with a wide range of uses. PVC is widely utilized in the plumbing, electrical, medical, and building industries and is renowned for its strength, resilience, and chemical resistance. PVC is frequently used for vinyl siding for dwellings, electrical wire insulation, and water and sewage pipelines. Additionally, it is utilized in medical equipment including blood bags and tubing.

Manufacturing Process

PVC resin is a thermoplastic polymer that is extensively utilized in numerous industries because of its exceptional chemical resistance, affordability, and longevity. The following steps are commonly included in the production of PVC resin:

  1. Vinyl Chloride Monomer (VCM) Production: When hydrogen chloride and oxygen are present, ethylene gets chlorinated to form volatile chemical monomers (VCM). After that, the generated VCM gas is cleaned and kept ready for usage in the following stage.

  2. Polymerization: The next step involves polymerizing the VCM gas using either suspension or emulsion polymerization.

  • VCM droplets are suspended in water during suspension polymerization with the help of a catalyst and a dispersion agent. The polymerization reaction is then started by heating the mixture while it is under pressure. After that, the PVC particles are dried, cleaned, and sorted into sizes.
  • Emulsion polymerization is a process that uses an emulsifier and a catalyst to disperse VCM particles in water. After that, the mixture is heated and vigorously stirred to start the polymerization process. After that, the PVC particles are dried, cleaned, and coagulated.
  1. Additives: Usually, PVC resin is mixed with different ingredients to enhance its characteristics. These additions may include fillers to lower costs and enhance mechanical qualities, plasticizers to increase flexibility, stabilizers to stop degradation during processing and usage, and pigments to add color.

  2. Processing: To make the finished product, the PVC resin is then treated using a variety of techniques such extrusion, injection molding, or calendaring.

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