Feature: | Oxidative Degradable |
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CAS No.: | 32131-17-2 |
Formula: | (C12h22n2o2)N |
Samples: |
BAG
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Customization: |
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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Payment Method: | |
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Initial Payment Full Payment |
Currency: | US$ |
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Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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nylon66 resin include mechanical and physical properties such as high mechanical strength
https://forever-plastics.en.made-in-china.com/product/rJwRvlcdZpWD/China-Nylon-PA6-GF33-PA66-Granules-PA6-with-30GF-Polyamide-PA66-30-GF-PA6-Material.html Heat-conducting nylon
Product Description | ||
Common features of nylon resin include mechanical and physical properties such as high mechanical strength, excellent balance of stiffness and toughness, good high temperature performance, good electrical and flammability properties, good abrasion and chemical resistance. In addition nylon resins are available in different modified and reinforced grades to create a wide range of products with tailored properties for specific processes and end-uses. nylon resin, including most flame retardant grades, offer the ability to be coloured. The good melt stability of nylon resin normally enables the recycling of properly handled production waste. If recycling is not possible recommends, as the preferred option, incineration with energy recovery (-31kJ/g of base polymer) in appropriately equipped installations. For disposal, local regulations have to be observed. nylon resin typically is used in demanding applications in the automotive, furniture, domestic appliances, sporting goods and construction industry. XT70G35HSL BK044A is a 35% glass fiber reinforced, heat stabilized polyamide 66 resin for injection molding. It has been developed for automotive applications requiring good retention of properties over time at temperatures up to 220°C and with good high temperature fatigue and properties. | ||
General | ||
Form Resin Pellets | ||
Filler 35 % Glass Fiber | ||
Feature Good Thermal | ||
Physical Nominal Value Test Method | ||
Dry: Viscosity Number 140 cm³/g | ISO 307; 1157; 1628 | |
Dry: Molding shrinkage, parallel 0.3 % | ISO 294-4, ISO 2577 | |
Dry: Molding shrinkage, normal 0.9 % | ISO 294-4, ISO 2577 | |
Dry: Humidity absorption(Thickness; 2 mm) 2.1 % Sim. to ISO 62 | ||
Density, dry 1.41 g/cm³ ISO 1183 | ||
Dry: Density of melt 1.24 g/cm³ | ||
Mechanical | Nominal Value | Test Method |
Dry: Tensile Modulus | 11000 MPa | ISO 527-1/-2 |
Condition: Tensile Modulus | 7500 MPa | ISO 527-1/2 |
Dry: Stress at break | 210 MPa | ISO 527-1/-2 |
Condition: Stress at break | 180 MPa | ISO 527-1/2 |
Dry: Strain at break | 3.2 % | ISO 527-1/-2 |
Condition: Strain at break | 6.5 % | ISO 527-1/2 |
Dry: Flexural Modulus | 10000 MPa | ISO 178 |
Condition: Flexural Modulus | 7000 MPa | ISO 178 |
Dry: Charpy Impact Strength Temperature; 23 °C Temperature; -30 °C |
90 kJ/m² 80 kJ/m² |
ISO 179 1eU |
Condition: Charpy Impact Strength(Temperature; 23 °C) | 100 kJ/m² | ISO 179 1eU |
Dry: Charpy Notched Impact Strength Temperature; 23 °C Temperature; -40 °C |
12 kJ/m² 11 kJ/m² |
ISO 179 1eA |
Condition: Charpy Notched Impact Strength Temperature; 23 °C Temperature; -40 °C |
16 kJ/m² 10 kJ/m² |
ISO 179 1eA |
Thermal | Nominal Value | Test Method |
Dry: Melting Temperature(18° F/min) | 258 °C | ISO 11357-1/-3 |
Dry: Glass Transition Temperature(18° F/min) | 70 °C | ISO 11357-1/-2 |
Dry: Temp. of deflection under load(1.8 MPa) | 250 °C | ISO 75-1/-2 |
Dry: Coeff. of linear therm. expansion, parallel | 1.9E-5 /K | ISO 11359-1/-2 |
Dry: Coeff. of linear therm. expansion, normal | 6E-5 /K | ISO 11359-1/-2 |
Thermal conductivity of melt | 0.25 W/m-K | |
Spec. heat capacity of melt | 2050 J/(kg K) | |
FMVSS Class | B | |
Burning rate(Thickness; 1 mm) | 33 mm/min | |
Processing | Nominal Value | |
Injection | ||
Drying Temperature | 80 °C | |
Drying Time, Dehumidified Dryer | 2 - 4 h | |
Processing Moisture Content | < = 0.2 % | |
Melt Temperature Optimum | 285 °C | |
Min. melt temperature | 275 °C | |
Max. melt temperature | 295 °C | |
Mold Temperature Optimum | 100 °C | |
Min. mold temperature | 70 °C | |
Max. mold temperature | 120 °C | |
Ejection Temperature | 200 °C |
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