Products

Ixef® 2030

Ixef® 2030

Manufacturer: SOLVAY
Produced At:
 Import/ China
Product Category: IXEF PARA
Product No:
 Ixef 2030
Product Quantity: 25KG / BAG
Product Features:
 Chemical Resistant,Creep Resistant,Good Dimensional Stability,Good Strength,High Flow,High Stiffness,Low Moisture Absorption,Low Warpage,Outstanding Surface Finish

Ixef® 2030

Polyarylamide
Product Description:
Ixef® 2030 is a 55% glass-fiber/mineral reinforced polyarylamide compound which exhibits high strength, very high stiffness, low warpage, excellent creep resistance and outstanding surface gloss.

  • Black Ixef® 2030/X927

  • Custom Colorable


Filler / Reinforcement 
  • Glass\Mineral, 55% Filler by Weight

Features 
  • Chemical Resistant,Creep Resistant,Good Dimensional Stability,Good Strength,High Flow,High Stiffness,Low Moisture Absorption,Low Warpage,Outstanding Surface Finish
Uses 
  • Automotive Applications,Automotive Electronics,Business Equipment,CamsFurnitureGears,Industrial Applications,Lawn and Garden Equipment,Machine/Mechanical Parts,Metal Replacement,Power/Other Tools
RoHS Compliance 
  • RoHS Compliant

Appearance 
  • BlackColors Available 
Forms 
  • Pellets

Processing Method 
  • Injection Molding

Multi-Point Data 
  • Isothermal Stress vs. Strain (ISO 11403-1)

  • Secant Modulus vs. Strain (ISO 11403-1) 

Physical
Nominal Value
Unit
Test Method
Density
1.74
g/cm³
ISO 1183
Molding Shrinkage
0.10 to 0.40
%
Internal Method
Water Absorption (73°F, 24 hr)
0.19
%
ISO 62
Moisture Absorption - Equil, 65% RH
1.6
%
Internal Method
Mechanical
Nominal Value
Unit
Test Method
Tensile Modulus
3.12E+6
psi
ISO 527-2
Tensile Stress (Break)
20300
psi
ISO 527-2
Tensile Strain (Break)
1.2
%
ISO 527-2
Flexural Modulus
2.76E+6
psi
ISO 178
Flexural Stress
31900
psi
ISO 178
Impact
Nominal Value
Unit
Test Method
Notched Izod Impact
0.94
ft·lb/in
ASTM D256
Unnotched Izod Impact
5.0
ft·lb/in
ASTM D256
Thermal
Nominal Value
Unit
Test Method
Heat Deflection Temperature (264 psi, Unannealed)
428
°F
ISO 75-2/A
CLTE - Flow
1.0E-5
in/in/°F
ISO 11359-2
Electrical
Nominal Value
Unit
Test Method
Volume Resistivity
1.0E+13
ohms·cm
IEC 60093
Electric Strength
880
V/mil
IEC 60243-1
Dielectric Constant (110 Hz)
4.80

IEC 60250
Dissipation Factor (110 Hz)
0.025

IEC 60250
Comparative Tracking Index
600
V
IEC 60112
Flammability
Nominal Value
Unit
Test Method
Flame Rating 3
HB

UL 94
Oxygen Index
26
%
ISO 4589-2
Injection
Nominal Value
Unit

Drying Temperature
248
°F

Drying Time
0.50 to 1.5
hr

Rear Temperature
482 to 500
°F

Front Temperature
500 to 554
°F

Processing (Melt) Temp
536
°F

Mold Temperature
248 to 284
°F

Injection Notes
Hot Runners: 250°C to 260°C (482°F to 500°F)
Injection pressure: rapid

Storage
Ixef® compounds are shipped in moisture-resistant packages at moisture levels according to specifications. Sealed, undamaged bags should be preferably stored in a dry room at a maximum temperature of 50°C (122°F) and should be protected from possible damage. If only a portion of a package is used, the remaining material should be transferred into a sealable container. It is recommended that Ixef® resins be dried prior to molding following the recommendations found in this datasheet and/or in the Ixef® processing guide.

Drying
The material as supplied is ready for molding without drying. However, If the bags have been open for longer than 24 hours, the material needs to be dried. When using a desiccant air dryer with dew point of -28°C (-18°F) or lower, these guidelines can be followed: 0.5-1.5 hour at 120°C (248°F), 1-3 hours at 100°C (212°F), or 1-7 hours at 80°C (176°F).

Injection Molding
IXEF 2030 compound can be readily injection molded in most screw injection molding machines. A general purpose screw is recommended, with minimum back pressure.

The measured melt temperature should be about 280°C (536°F), and the barrel temperatures should be around 250°C to 260°C (482°F to 500°F) in the rear zone, gradually increasing to 260°C to 290°C (500°F to 554°F) in the front zone. If hot runners are used, they should be set to 250°C to 260°C (482°F to 500°F).

To maximize crystallinity, the temperature of the mold cavity surface must be held between 120°C and 140°C (248°F and 284°F). Molding at lower temperatures will produce articles that may warp, have poor surface appearance, and have a greater tendency to creep. Set injection pressure to give rapid injection. Adjust holding pressure and hold time to maximize part weight. Transfer from injection to hold pressure at the screw position just before the part is completely filled (95-99%).


Products are widely used in plastic modification, automotive, construction, electrical and electronic, industrial, daily necessities and other fields


Consultation
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