We supply a broad spectrum of polymer raw materials used across packaging, automotive, construction, medical, and consumer goods industries. Our portfolio covers commodity plastics, engineering polymers, and synthetic rubber sourced from globally approved producers.
MDPE (Medium-Density Polyethylene) combines flexibility and strength, making it suitable for pressure pipes, gas distribution systems, and industrial packaging. It provides good impact resistance and crack resistance compared to HDPE.
MDPE is commonly selected for applications requiring durability under stress while maintaining flexibility and environmental resistance.
| GRADE | MFR | DENSITY |
|---|---|---|
| 3840UA | 4 (2,16 K/g) | 0,954 |
| 38504UV | 4 (2,16 K/g) | 0,938 |
| LL32604UV | 4 (2,16 K/g) | 0,932 |
LDPE (Low-Density Polyethylene) is a flexible and lightweight thermoplastic widely used in packaging, film production, plastic bags, and containers. It has excellent chemical resistance, impact strength, and moisture barrier properties, making it ideal for food packaging and industrial applications.
LDPE is known for its high ductility, transparency, and ease of processing, allowing it to be used in a variety of molding and extrusion applications.
| GRADE | MFR | DENSITY |
|---|---|---|
| LH0075 | 0,75 (0,75 K/g) | 0,922 |
| 2420F | 0,75 (2,16 K/g) | 0,923 |
| 2101TN47 | 0,85 (2,16 K/g) | 0,921 |
| LF0190 | 1,9 (2,16 K/g) | 0,924 |
| 2420H | 1,9 (2,16 K/g) | 0,924 |
| L2102TN42 | 1,9 (2,16 K/g) | 0,921 |
| L2102TX00 | 1,9 (2,16 K/g) | 0,921 |
| LF2119 | 1,9 (2,16 K/g) | 0,921 |
| LF0200 | 2 (2,16 K/g) | 0,922 |
| 2420K | 4 (2,16 K/g) | 0,924 |
| 2004TX37 | 4,7 (2,16 K/g) | 0,921 |
| L1922T | 22 (2,16 K/g) | 0,921 |
| GRADE | MFR | DENSITY |
|---|---|---|
| 2420D | 0,25 (2,16 K/g) | 0,923 |
| L2100TN00 | 0,3 (2,16 K/g) | 0,921 |
LLDPE (Linear Low-Density Polyethylene) offers improved tensile strength, flexibility, and puncture resistance compared to LDPE. It is widely used in stretch films, packaging films, and industrial liners.
LLDPE provides excellent durability and processing efficiency, making it a preferred material for high-performance packaging applications.
| GRADE | MFR | DENSITY |
|---|---|---|
| LLO2O9 AA\KJ | 0.9 (2,16 K/g) | 0,921 |
| LL22501 AA\KJ | 0.95 (2,16 K/g) | 0,922 |
| LL22502 AA | 1.8 (2,16 K/g) | 0,922 |
| LL22B02 AA | 2 (2,16 K/g) | 0,920 |
| LL0220 AA\KJ | 2.4 (2,16 K/g) | 0,921 |
| LL22403 | 2.80 (2,16 K/g) | 0,92 |
HDPE (High-Density Polyethylene) is a rigid and durable thermoplastic widely used in packaging, pipes, containers, and industrial applications. It offers excellent chemical resistance, high tensile strength, and impact resistance, making it suitable for demanding environments.
HDPE is valued for its strength-to-density ratio, ease of processing, and long service life, especially in applications requiring structural stability and chemical durability.
PP Homopolymer (PP Homo) is a rigid polypropylene grade with high stiffness, chemical resistance, and good processability. It is commonly used in injection molding and extrusion applications requiring dimensional stability.
PP Homo is ideal for applications where strength, surface quality, and cost efficiency are critical.
PP Copolymer (PP Copo) offers enhanced impact resistance and toughness compared to homopolymer grades, especially at low temperatures. It is widely used in automotive components, containers, and household products.
PP Copo combines flexibility and durability, making it suitable for demanding industrial applications.
PP Pipe Grade polypropylene is engineered for pressure pipe systems and industrial fluid transportation. It provides excellent thermal resistance, chemical stability, and long-term mechanical strength.
This material is commonly used in plumbing, chemical piping, and industrial infrastructure projects.
GPPS (General Purpose Polystyrene) is a transparent and rigid thermoplastic known for its excellent optical clarity and surface finish. It is commonly used in packaging and consumer-oriented industrial components.
GPPS is easy to process and offers good dimensional stability for precision applications.
HIPS (High Impact Polystyrene) is a modified polystyrene with enhanced impact resistance and toughness. It is widely used in appliance housings, electronics, and industrial packaging.
HIPS offers good machinability, surface quality, and cost efficiency.
PS (Polystyrene) is a versatile thermoplastic polymer widely used in packaging, disposable products, and industrial applications. It offers good rigidity, dimensional stability, and ease of processing, making it suitable for both transparent and impact-modified grades.
Polystyrene is commonly used where cost efficiency, surface quality, and consistent processing performance are required. Depending on formulation, PS can provide clarity, stiffness, or enhanced impact resistance.
ABS (Acrylonitrile Butadiene Styrene) is a high-performance engineering plastic offering excellent impact resistance, toughness, and surface quality. It is widely used in automotive, electronics, and industrial components.
ABS combines strength and aesthetic finish, making it suitable for precision-molded parts.
PC (Polycarbonate) is a transparent engineering thermoplastic known for its exceptional impact resistance, heat stability, and optical clarity. It is commonly used in safety components and technical applications.
PC is ideal for applications requiring strength, transparency, and dimensional accuracy.
PVC (Polyvinyl Chloride) is a versatile thermoplastic used in construction, piping, and industrial applications. It offers excellent chemical resistance, durability, and cost efficiency.
PVC can be formulated as rigid or flexible, making it suitable for a wide range of industrial uses.
PET (Polyethylene Terephthalate) is a strong and lightweight thermoplastic with excellent barrier properties and chemical resistance. It is widely used in packaging, fibers, and industrial containers.
PET provides good clarity, recyclability, and processing performance.
SBR (Styrene Butadiene Rubber) is a widely used synthetic rubber known for its abrasion resistance, durability, and cost efficiency. It is commonly used in tire manufacturing and industrial rubber products.
SBR provides consistent performance in demanding mechanical applications.
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