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CiaoPlas™ PLA212 NAT

Technical DataSheet | Supplied by Chiao Fu Material Technology (Chiao Fu Group)

CiaoPlas™ PLA212 NAT by Chiao Fu Material Technology (Chiao Fu Group) is a PLA (polylactic acid) grade. It is a cost effective, natural colored product derived from natural, renewable, non-toxic plant resources, such as corn starch, potato starch or tapioca roots. Moreover it is 100% biodegradable, recyclable, compostable, and eco-friendly biomass material. Also, it can be incinerated at lower temperature without any generation of toxic substances and shows reduced carbon dioxide emission compared to general plastic materials. Suitable for 3D (three-dimensional) printing filaments (generates no foul smell while printing, and the surfaces of the printed objects would be smooth) in consumer product applications. CiaoPlas™ PLA212 NAT by Chiao Fu Material Technology (Chiao Fu Group) complies with BPI (Biodegradable Products Institute), Din Certco, GreenPla, JBPA (Japan BioPlastics Association), RoHS (Restriction of Hazardous Substances Directive) and REACH (Registration, Evaluation, Authorization and Restriction of Chemicals).

CiaoPlas™ PLA212 NAT Product details

Product Type
xxxxxxxxxxxxxxxxxxxxxxx
Appearance
Natural
Product Status
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Applications/ Recommended for
  • Households products/ Consumer Goods
  • 3D Printing/Additive Manufacturing
Biodegradable
xxx
Bio Based
xxx
Bio Based Content Comments
Plant-based
Labels/Agency Rating
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Key Features
  • xxxxxxxxxxxxx
  • xxxxxxxxxxx
  • xxxxxxxxxx

CiaoPlas™ PLA212 NAT Properties

Physical Properties

Value & Unit
Test Condition
Test Method
Specific Gravity (Density)
1.27
ASTM D792

Mechanical Properties

Value & Unit
Test Condition
Test Method
Tensile Strength (Tensile Stress)
xxx kg/cm2
xxxxxxxxx
Flexural Strength
xxx kg/cm2
xxxxxxxxx
Flexural Modulus (Stiffness)
xxxxx kg/cm2
xxxxxxxxx

Impact Properties

Value & Unit
Test Condition
Test Method
Izod Impact
x kg/cm2
xxxxxxxxx

Thermal Properties

Value & Unit
Test Condition
Test Method
Heat Deflection Temperature Under Load (HDT)
xx °C
xxxxxxxxx
Glass Transition Temperature
xx °C
xxxxxxxxx
Last edited Sep 30, 2016
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