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PP MD30
XINYITE
Polypropylene (PP) filled with talc or other mineral filled is a common type of composite material used in various industries. Here are some key characteristics and advantages of talc-filled PP material:
Improved Stiffness and Rigidity: Talc is known for its stiffness, and when added to PP, it can enhance the rigidity of the material. This is beneficial in applications where a stiffer material is required.
Increased Heat Resistance: Talc-filled PP tends to exhibit improved heat resistance compared to unfilled PP. This makes it suitable for applications where exposure to higher temperatures is a consideration.
Dimensional Stability: The addition of talc can help reduce the shrinkage of the material during cooling, improving its dimensional stability. This is important in molding processes where maintaining precise dimensions is crucial.
Enhanced Flow Properties: Talc-filled PP may have improved melt flow properties, which can be advantageous in injection molding processes.
Weight Reduction: Talc is a lightweight filler, so incorporating it into PP can lead to weight reduction in the final product while maintaining or improving mechanical properties.
Surface Finish: Talc-filled PP can have a smoother surface finish compared to unfilled PP, which is beneficial in applications where aesthetics are important.
They are commonly used in the production of various plastic products, including containers, automotive parts, household appliances, and more.
Polypropylene (PP) filled with talc or other mineral filled is a common type of composite material used in various industries. Here are some key characteristics and advantages of talc-filled PP material:
Improved Stiffness and Rigidity: Talc is known for its stiffness, and when added to PP, it can enhance the rigidity of the material. This is beneficial in applications where a stiffer material is required.
Increased Heat Resistance: Talc-filled PP tends to exhibit improved heat resistance compared to unfilled PP. This makes it suitable for applications where exposure to higher temperatures is a consideration.
Dimensional Stability: The addition of talc can help reduce the shrinkage of the material during cooling, improving its dimensional stability. This is important in molding processes where maintaining precise dimensions is crucial.
Enhanced Flow Properties: Talc-filled PP may have improved melt flow properties, which can be advantageous in injection molding processes.
Weight Reduction: Talc is a lightweight filler, so incorporating it into PP can lead to weight reduction in the final product while maintaining or improving mechanical properties.
Surface Finish: Talc-filled PP can have a smoother surface finish compared to unfilled PP, which is beneficial in applications where aesthetics are important.
They are commonly used in the production of various plastic products, including containers, automotive parts, household appliances, and more.
PROPERTIES | Units | METHOD | PP TD30 |
Tensile Strength | Mpa | ISO527 | 20 |
Mold shrinkage | % | ISO2257 | 0.8-1.2 |
Flexural Strength | Mpa | ISO178 | 30 |
Flextural Modulus | Mpa | ISO178 | 2000 |
Notched IZOD Impact at 23℃ | KJ/㎡ | ISO180 | 6 |
Density | g/cm3 | ISO1183 | 1.13 |
Flammability | - | UL94 | HB |
Melt Flow Index | g/10min | ISO1133 | 20 |
Heat deflection temperature (0.45MPA) | ℃ | ISO75 | 105 |
PROPERTIES | Units | METHOD | PP TD30 |
Tensile Strength | Mpa | ISO527 | 20 |
Mold shrinkage | % | ISO2257 | 0.8-1.2 |
Flexural Strength | Mpa | ISO178 | 30 |
Flextural Modulus | Mpa | ISO178 | 2000 |
Notched IZOD Impact at 23℃ | KJ/㎡ | ISO180 | 6 |
Density | g/cm3 | ISO1183 | 1.13 |
Flammability | - | UL94 | HB |
Melt Flow Index | g/10min | ISO1133 | 20 |
Heat deflection temperature (0.45MPA) | ℃ | ISO75 | 105 |
Air cooler cover | solar panel cover | Bumper | Automotive interior panels |
Air cooler cover | solar panel cover | Bumper | Automotive interior panels |