Mitsubishi Iupilon LSH 2030 Hot Sale PC Resin
Mitsubishi Iupilon LSH 2030 is a specialty grade of polycarbonate (PC) resin that is a blend of bisphenol-A based PC and a 15% PTFE (polytetrafluoroethylene) lubricant additive.
Physical Properties
- Density: Determined by ISO 1183, the density is 1.30 g/cc (0.0470 lb/in³), a key indicator of mass-to-volume ratio for material characterization.
- Water Absorption: At 23.0°C (73.4°F) via immersion, water absorption is 0.10%, indicating low moisture sensitivity and dimensional stability.
- Linear Mold Shrinkage (Flow & Transverse) : at 3.20 mm (0.126 in) thickness is 0.0050–0.0070 cm/cm (0.0050–0.0070 in/in) for both directions.
- Melt Flow: Per ISO 1133, melt flow rate is 9.1 g/10 min at 300°C (572°F) under 1.20 kg (2.65 lb) load, indicating suitable processability for extrusion/molding.
Polymer Properties:
- Base Material: Polycarbonate (PC)
- Reinforcement: 15% filler
- Modification Features:
- Superior self – extinguishing properties for enhanced safety.
- Excellent weather resistance for long – term outdoor use.
- Good electrical insulation capabilities for electrical applications.
- Improved wear resistance suitable for high – friction environments.
Applications:
These properties make it an ideal material for the following applications:
- Office Automation Equipment: Components in printers, copiers, and other office machines that have moving parts, such as gear wheels and bearing housings, benefit from its low friction and wear resistance.
- Automotive Interior Parts: Used in mechanisms for dashboard panels and other interior components that require smooth, durable operation.
- Machinery and Industrial Equipment: Due to its durability and self-lubricating nature, it is suitable for various machine parts that require high precision and wear resistance.
- Electronics: Components that require durable, precise, and low-friction moving parts.
- Sports Equipment: The combination of impact resistance and low friction makes it suitable for certain components in sporting goods.