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Injection moulding compounds

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Plastics:

Biodegradable, biobased, biomass-balanced compounds as well as recyclates

Applications:

diverse, from consumer goods to use in the automotive sector

About the Product Family

The injection moulding materials from BIO-FED include a broad portfolio of compounds made from biodegradable biopolymers as well as compounds with a varying proportion of renewable raw materials (biobased or biomass-balanced) or raw materials from waste streams (recyclates). All materials can be processed on conventional injection moulding machines and tools.

Injection moulding product portfolio (PDF)

M·VERA® compounds

Biodegradable Compounds

The M∙VERA® injection moulding materials from BIO-FED consist of various biodegradable biopolymers and can be used in a wide range of applications. They are all biodegradable with different end-of-life scenarios. Our M·VERA® compounds are developed according to current composting standards and are therefore ideally suited for industrial composting. They also have different levels of biobased content.

Normally, the cycle times are only slightly longer than those of conventional plastics.

Product portfolio M·VERA® injection moulding grades (PDF)

M·VERA_GP1012_earthworms
M·VERA® GP1012

Soil degradable and from renewable sources

  • Degradability: OK biodegradable SOIL & OK compost HOME

  • Organic content: >98 %

  • MVR: 9 cm³/10 min (160 °C/5 kg)

  • Processing technology: Injection moulding, extrusion

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M·VERA_GP1015_cameleon
M·VERA® GP1015

Our universal allrounder

  • Degradability: OK compost INDUSTRIAL

  • Organic content: 68 %

  • MVR: 10 cm³/10 min (190 °C/2.16 kg)

  • Processing technology: Injection moulding

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M·VERA_GP1025_bamboo
M·VERA® GP1025

Stiff and almost 100 % renewable content

  • Degradability: OK compost INDUSTRIAL

  • Organic content: >98 %

  • MVR: 11 cm³/10 min (190 °C/2.16 kg)

  • Processing technology: Injection moulding

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M·VERA_GP1041_water
M·VERA® GP1041

Transparent and particularly flowable

  • Degradability: OK compost INDUSTRIAL

  • Organic content: >98 %

  • MVR: 30 cm³/10 min (190 °C/2.16 kg)

  • Processing technology: Injection moulding

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M·VERA_GP1045_home_compost
M·VERA® GP1045

Home compostable, almost 100 % renewable content

  • Degradability: OK biodegradable SOIL & OK compost HOME

  • Organic content: >98 %

  • MVR: 9 cm³/10 min (190 °C/2.16 kg)

  • Processing technology: Injection moulding, extrusion

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M·BIOBASE® compounds

Biomass-balanced or biobased compounds

Biomass-balanced M·BIOBASE® injection moulding compounds are made from polypropylene (PP) whose raw material sources are vegetable oil and fat waste generated in various processes, e.g. in the food industry. Certification guarantees the traceability of the sustainable material flow along the value chain.

Some biobased M·BIOBASE® materials are made from polylactic acid (PLA) and contain wood fibres from waste streams from the wood industry.

Product portfolio M·BIOBASE® injection moulding grades (PDF)

M·BIOBASE_PPC_035_nat_iceberg
M·BIOBASE® PPC 035 nat CI

Low temperature impact-resistant PP

  • Certification: ISCC PLUS

  • Allocation factor: 90 %

  • MFR: 3.5 g/10 min (230 °C/2.16 kg)

  • Processing technology: Injection moulding

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M·BIOBASE_PPH_120_nat_cameleon
M·BIOBASE® PPH 120 nat CI

Our sustainable PP allrounder

  • Certification: ISCC PLUS

  • Allocation factor: 100 %

  • MFR: 12 g/10 min (230 °C/2.16 kg)

  • Processing technology: Injection moulding

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M·BIOBASE_PPH_500_nat_air_bubbles
M·BIOBASE® PPH 500 nat CI

PP for thin and transparent applications

  • Certification: ISCC PLUS

  • Allocation factor: 100 %

  • MFR: 50 g/10 min (230 °C/2.16 kg)

  • Processing technology: Injection moulding

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M·BIOBASE_PPH_050_GF30_nat_glas_fibres
M·BIOBASE® PPH 050 GF30 nat CI

Particularly stable PP due to glass fibres

  • Certification: ISCC PLUS

  • Allocation factor: 96 %

  • MFR: 5 g/10 min (230 °C/2.16 kg)

  • Processing technology: Injection moulding

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M·BIOBASE_PPH_080_WF20_nat_wood_gears
M·BIOBASE® PPH 080 WF20 nat CI

PP with improved mechanics due to wood

  • Certification: ISCC PLUS

  • Allocation factor: 80 %

  • MFR: 8 g/10 min (230 °C/2.16 kg)

  • Processing technology: Injection moulding

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M·BIOBASE_PPH_130_WF30_nat_wood
M·BIOBASE® PPH 130 WF30 nat CI

PP with natural look due to wood fibres

  • Certification: ISCC PLUS

  • Allocation factor: 70 %

  • MFR: 13 g/10 min (230 °C/2.16 kg)

  • Processing technology: Injection moulding

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M·BIOBASE_PPH_230_WF30_nat_wood_fibres
M·BIOBASE® PPH 230 WF20 nat CI

Particularly flowable PP with wood fibres

  • Certification: ISCC PLUS

  • Allocation factor: 80 %

  • MFR: 23 g/10 min (230 °C/2.16 kg)

  • Processing technology: Injection moulding

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M·BIOBASE_PLA_035_WF30
M·BIOBASE® PLA 035 WF30 nat

Over 95% biobased PLA with wood fibres

  • MFR: 3.5 g/10 min (190°C/2.16 kg)

  • Processing technology: Injection moulding

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M·CYCLOSE® compounds

Compounds with recycled content

Our M·CYCLOSE® compounds have a proportion of raw materials that are recycled. These recycled materials either come from products that have already completed a life cycle with consumers (PCR = Post Consumer Recyclate), or from waste products from industry, such as start-up materials from plastics processing (PIR = Post Industrial Recyclate). In both cases, the recyclate replaces virgin material made from traditional petroleum-based plastic and thus contributes to improving CO2 footprint of the materials, reduces waste streams and minimises the amount of energy required.

Our M·CYCLOSE® materials contain varying proportions of 'post-consumer' or 'post-industrial' recyclates. These recyclates are incorporated into our compounds either as a base material or as a filler. We indicate the origin and the proportion of recyclate.

M·CYCLOSE_PELD_050_nat_cycle
M·CYCLOSE® PELD 050 nat

PE completely in the cycle

  • Recycled fibre content: 100 %

  • Origin: Post consumer

  • MFR: 5 g/10 min (190 °C/2.16 kg)

  • Processing technologies: Injection moulding, extrusion, blown film

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At a glance!

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All our compounds

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