PP Homopolymer P904J (Injection) - Thailand

IUPAC Name

:   Poly(1-methylethylene)

Cas Number

:   9003-07-0

HS Code

:   390210

Formula

:  

(C3H6)n

Basic Info

Appearance Name

:   White Granular Powder

Common Names

:   Propene Polymers, Propylene Polymers, IPP

Packaging

: 25 Kg Bag

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Technical Document

Brief Overview

Made from a single monomer, propylene, polypropylene homopolymer exhibits significant crystallinity and isotactic structure, which denotes a regular and systematic arrangement of molecular chains. This produces a material with excellent electrical insulation qualities, good chemical resistance, and remarkable stiffness. Because polypropylene homopolymer has a high melting point, it is frequently processed using methods like injection molding or extrusion to create products like pipes, sheets, and packaging. Because of its superior mechanical and thermal properties, it is a preferred choice in a number of industries, including consumer goods, construction, and automotive.

Manufacturing Process

Polypropylene homopolymer is created by polymerizing propylene monomer at a specific pressure and temperature. The process usually consists of the following phases:

  1. Propylene Polymerization: A Ziegler-Natta catalyst, which usually consists of a transition metal compound and an organoaluminum co-catalyst, is present during the propylene polymerization process. The process that yields a high molecular weight polypropylene homopolymer is initiated by this catalyst.

  2. Quenching and Cooling: Following the completion of the polymerization process, the polymer is quenched, which is the act of halting the reaction and lowering the polymer's temperature with the use of a cooling agent such as gas or water.

  3. Solid-State Polymerization: During the solid-state polymerization process, the polymer is heated to improve its mechanical properties and remove any unreacted monomer residue. At this stage, the polymer can be heated under a vacuum or in an inert atmosphere to eliminate impurities and enhance the properties of the finished product.

  4. Pelletization: To make handling and transportation easier, the obtained polymer is sliced into small pellets using a pelletizing machine.

The characteristics of the resultant polypropylene homopolymer can be modified by adjusting process variables such as temperature, pressure, and catalyst type. Moreover, the addition of stabilizers, processing aids, and antioxidants can enhance the material's performance.

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