PLA Resin SPL-101
SPL101 has a low optical purity, and the melting point is ≤160°. lt has high stiffness, gloss, and transparency. lt is compatible with nonwoven web formation technologies.
PLA Resin SPL101 is a bio-based thermoplastic produced from renewable plant-derived resources. The material is designed for applications that require a combination of processability, rigidity, transparency, and biodegradability.
SPL101 polylactic acid is synthesized from lactic acid obtained through corn fermentation. With good biodegradability and stable processing characteristics, it can be used in a variety of plastic processing applications, including sheet production, film, staple fiber, filament, injection molding, and fiber extrusion.
Key Material Features
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Bio-based thermoplastic derived from renewable plant resources
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Good biodegradability
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High rigidity and good transparency
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Easy to process using conventional thermoplastic processing methods
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Suitable for injection and fiber applications
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Applicable to sheet, film, staple fiber, and filament production
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Suitable for applications seeking an alternative to conventional petroleum-based plastics
Technical Data
| Item | SPL101 |
|---|---|
| Application | Injection and Fibre |
| Melting Point (°C) | ≤160 |
| Melt Index (g/10 min, 190°C/2.16 kg) | 4–6 |
| Glass Transition Temperature (°C) | 60 |
| Density (g/cm³) | 1.24 |
| L-content (%) | ~96 |
| Monomer Content (%) | ≤0.3 |
| Moisture | ≤0.05% |
| Tensile Strength | ≥45 MPa |
| Elongation at Break | ≥2% |
Recommended Applications
SPL101 polylactic acid is suitable for processing into:
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Plastic sheets
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Films
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Staple fibers
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Filaments
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Injection molded products
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Fiber-based products
The material is particularly suitable for manufacturers looking for a bio-based PLA resin for applications involving conventional thermoplastic processing and biodegradable material requirements.
Packaging
PLA Resin SPL-101 is supplied in packaged form for industrial handling, transportation, and storage.
Product Summary
SPL101 PLA Resin combines bio-based raw materials, biodegradability, rigidity, and practical processing performance. With applications covering injection molding, fiber, sheet, film, staple fiber, and filament production, it provides a versatile material option for manufacturers developing PLA-based products.
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