5020(HCH 5020)

5020(HCH 5020)

Blow Moulding


General Properties

Category : Blow Moulding
Grade Name : 5020(HCH 5020)
Manufacturer : ARYASASOL
MFR : 0.3(2 .16 K/g)
Density : 0.951
Applications :
HCH 5020 is suitable for Extrusion Blow Moulding (Small blow mouldings, Engineering parts), Packaging of consumer goods, Packaging of dangerous goods, Packaging of surfactants
Properties Unit Typical value Test Method
Polymer Properties
Density (23 oC) Kg/m3 950 ISO 1183
MFI (190 oC /21.6Kg) Dg/min 22 ISO 1133
MFI (190 oC /2.16Kg) Dg/min 0.3 ISO 1133
Bulk Density g/cm3 - ISO 1133
Mechanical properties
Tensile Modulus of elasticity MPa 1000 ISO527-1
Tensile stress at Yield MPa 25 ISO 527-1
Tensile strain at Yie % 9 ISO 527-1
Notched Tensile impact strength(-30 oC) KJ/m 110 ISO 8256/1A
Thermal Properties
HDT,(0.45 MPa) o C 75 ISO 75B-1
HDT,(1.80 MPa) o C 43 ISO 75A-1
Melting Point o C 131 ISO 11357
Vicat Temperature (B50,50 oC/h , 50 N) o C 78 ISO 306
Hardness
Ball indentation Hardness (H 132/30) MPa 45 ISO 2039-1
FNCT (3.5MPa, 80°C, 2% Igepal BC/9) h 6 ISO/CD 16770
ESCR(bottle test) h 150 Basell
Additive : Antioxidant-Heat stabilizer

Application
HCH 5020 is suitable for Extrusion Blow Moulding (Small blow mouldings, Engineering
parts), Packaging of consumer goods, Packaging of dangerous goods, Packaging of surfactants
General information
HCH5020 has been manufactured using Basell Lupotech G licensed technology
Processing:
Recommended melt temperatures: 170 - 200°C
Packaging
Supplied in pellet form and can be packaged in 25kg bags, 1 ton semi bulk or 17 ton bulk.
Food packaging
The above mentioned grade meets the relevant requirements of plastics directive 2002/72/EC
(06-08-2002) and its amendments till directive 2008/39EC relating to plastic materials and
articles intended to come into contact with foodstuffs .
Pharmaceutical Application
The above mentioned grade meets the requirements of the European pharmacopeia version 6
section 3.1.5 for pharmaceutical application.
Conveying
Conveying equipment should be designed prevent accumulation of fines and dust particles can,
under certain conditions, pose an explosion hazard. We recommend that the conveying system
used:
1. be equipped with adequate filters
2. is operated and maintained in such a manner to ensure no leaks develop
3. that adequate grounding exists at all times
We further recommended that good housekeeping will practiced throughout the facility

Storage
As ultraviolet light may cause a change in the material, all resins should be protected from
direct sunlight and/or heat during storage. The storage location should also be dry, dust Free
and the ambient temperature should not exceed 50 0C. It is also advisable to process
polyethylene resins (in pelletized or powder from) within 6 months after delivery, this because
also excessive aging of polyethylene can lead to a deterioration in quality.
Handling
Minimal protection to prevent possible mechanical or thermal injury to the eyes. Fabrication
areas should be ventilated to carry away fumes or vapors.
Combustibility
Polyethylene resins will burn when supplied adequate heat and oxygen. They should be
handled and stored away from contact with direct flames and/or other ignition sources .in
burning; polyethylene resins contribute high heat and may generate a dense black smoke. Fires
can be extinguished by conventional means with water and mist preferred. In enclosed areas,
fire fighters should be provided with self contained breathing apparatus.


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