Category: | PC+ABS , PC/ABS Engineering Resin |
Manufacturer: | Trinseo |
Trademark: | PULSE™ |
Fillers: | - |
Ports: | Qinzhou, Shekou, Shanghai, Ningbo |
Delivery Terms | FOB, CIF, DAP, DAT, DDP |
PDF: | IlGpk7_PULSE-2000-EZ.pdf ![]() |
PRICE: | Order Products email sales@su-jiao.com |
Message |
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PULSE 2000 EZ Engineering Resin is designed to provide top performance in tough applications, from single piece items to intricate components. Ideal for energy management solutions, PULSE 2000 EZ can withstand high and low temperature extremes and rapid, repeated temperature fluctuations. Applications:
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General Information | |
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Features |
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Uses |
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Forms |
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Processing Method |
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Physical | Nominal Value | Unit | Test Method |
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Density | |||
-- | 1.13 | g/cm³ | ASTM D792, ISO 1183/B |
-- | 1130 | kg/m³ | ISO 1183 1 |
Melt Mass-Flow Rate (MFR) | |||
230°C/3.8 kg | 3.7 | g/10 min | ASTM D1238 |
260°C/5.0 kg | 18 | g/10 min | ISO 1133, ASTM D1238 |
Melt volume-flow rate (230°C/3.8 kg) | 7.00 | cm³/10min | ISO 1133 2 |
Molding Shrinkage | 0.50 to 0.70 | % | ISO 294-4 |
Water Absorption (23°C, 24 hr) | 0.15 | % | ASTM D570, ISO 62 |
Mechanical | Nominal Value | Unit | Test Method |
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Tensile Modulus | |||
4.00 mm, Injection Molded | 2330 | MPa | ISO 527-2 |
-- | 2350 | MPa | ISO 527-2 3 |
Tensile Stress | |||
Yield 4 | 58.0 | MPa | ASTM D638 |
Yield | 57.0 | MPa | ISO 527-2/50 |
Yield | 54.0 | MPa | ISO 527-2 5 |
Break 6 | 55.0 | MPa | ASTM D638 |
Break | 47.0 | MPa | ISO 527-2/50 |
Tensile Strain | |||
Yield | 4.5 | % | ISO 527-2/50 |
Yield | 4.4 | % | ISO 527-2 7 |
Break | 160 | % | ASTM D638 |
Break | 90 | % | ISO 527-2/50 |
Nominal strain at break | > 50 | % | ISO 527-2 8 |
Flexural Modulus | |||
-- 9 | 2450 | MPa | ASTM D790 |
-- 10 | 2400 | MPa | ISO 178 |
Flexural Stress 11 | 90.0 | MPa | ISO 178 |
Impact | Nominal Value | Unit | Test Method |
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Charpy notched impact strength | ISO 179/1eA 12 | ||
-30°C | 14.0 | kJ/m² | |
23°C | 40.0 | kJ/m² | |
Charpy impact strength | ISO 179/1eU 13 | ||
-30°C | No Break | ||
23°C | No Break | ||
Notched Izod Impact | |||
-30°C | 590 | J/m | ASTM D256 |
23°C | 750 | J/m | ASTM D256 |
-30°C | 47 | kJ/m² | ISO 180/A |
23°C | 63 | kJ/m² | ISO 180/A |
Instrumented Dart Impact 14 | ASTM D3763 | ||
23°C, Total Energy | 62.0 | J | |
23°C, Peak Energy | 55.0 | J |
Thermal | Nominal Value | Unit | Test Method |
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Heat Deflection Temperature | |||
0.45 MPa, Unannealed | 130 | °C | ISO 75-2/B |
0.45 MPa | 126 | °C | ISO 75-2 15 |
1.8 MPa, Unannealed | 109 | °C | ASTM D648 |
1.8 MPa, Unannealed | 106 | °C | ISO 75-2/A |
1.8 MPa | 105 | °C | ISO 75-2 16 |
Vicat Softening Temperature | |||
-- | 142 | °C | ISO 306/A120 |
-- | 129 | °C | ISO 306/B50 |
50°C/h, B (50N) | 124 | °C | ISO 306 17 |
CLTE - Flow | 6.9E-5 | cm/cm/°C | ISO 11359-2 18 |
Flammability | Nominal Value | Unit | Test Method |
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Burning Rate 19 | < 100 | mm/min | FMVSS 302 |
Note Message | |
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1 . | Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
2 . | Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
3 . | Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
4 . | 50 mm/min |
5 . | Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
6 . | 50 mm/min |
7 . | Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
8 . | Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
9 . | 1.3 mm/min |
10 . | 2.0 mm/min |
11 . | 2.0 mm/min |
12 . | Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
13 . | Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
14 . | 2.20 m/sec |
15 . | Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
16 . | Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
17 . | Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
18 . | Tested in accordance with ISO 10350. 23°C/50%r.h. unless otherwise noted. |
19 . | This rating not intended to reflect hazards presented by this or any other material under actual fire conditions. |
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