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3 products found on Floreon.
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Floreon Bio Tech Compostable Grade product card banner

Floreon

Floreon Bio Tech Compostable Grade

Polymer Name: Polylactic Acid (PLA)

Additives Included: Nucleating Agent

Labeling Claims: Plant-Based, From Renewable Resources, Biodegradable, Low Carbon Footprint (PCF), Recyclable

Processing Methods: Injection Molding

Density: 1260.0 - 1260.0 kg/m³

Floreon Bio Tech Compostable Grade is intended for injection molded applications, with high rigidity and good impact strength. The material is a compound of polylactic acid (PLA) and other biodegradable polyesters which enhance the melt flow rate and toughness of the material.

Floreon Dura Tech Durable Grade product card banner

Floreon

Floreon Dura Tech Durable Grade

Polymer Name: Polylactic Acid (PLA)

Additives Included: Nucleating Agent

Labeling Claims: Recyclable, Plant-Based, From Renewable Resources, Biodegradable, Low Carbon Footprint (PCF)

Processing Methods: 3D Printing, Injection Molding, Extrusion

Density: 1260.0 - 1260.0 kg/m³

Floreon Dura Tech Durable Grade is a PLA based compound intended for durable applications requiring high impact resistance, whilst also retaining a high renewable content which can be certified to recognized criteria. The material is recyclable and is not intended for applications that are compostable.

Floreon Therma Tech Flame Retarded Grade product card banner

Floreon

Floreon Therma Tech Flame Retarded Grade

Polymer Name: Polylactic Acid (PLA)

Additives Included: Impact Modifier, Nucleating Agent, Flame Retardant

Labeling Claims: Recyclable, Plant-Based, From Renewable Resources, Biodegradable

Processing Methods: Extrusion, 3D Printing, Injection Molding

Density: 1260.0 - 1260.0 kg/m³

Floreon Therma Tech Flame Retarded Grade is a PLA based compound intended for durable applications requiring flame retardancy. This developmental grade contains a flame retardant, impact modifier, nucleating agent. The material is based on PLA and is designed as a drop in replacement for ABS in injection molding, extrusion and 3D printing. Drying of the material is recommended to ensure melt stability and limit degradation of the material during processing.