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Supplier: Toray Industries (America), Inc.
Description: ECODEAR® is based on polylactic acid (PLA) derived from plants, rather than petroleum and other fossil resources. This means that it can readily be returned to the natural environment after use. ECODEAR® is an environment-friendly product that helps to conserve fossil resources and reduce
- Material Type: Molding Resin, Thermoplastic
- Features: Specialty / Other
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Supplier: ASTM International
Description: poly(lactic acid), these polymers are commonly referred to as PGA, PLA, and PLA:PGA resins for the hydrolytic byproducts to which they respectively degrade. PLA is a term that carries no enantiomeric specificity and therefore also encompasses the isotactic d-PLA
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Supplier: ASTM International
Description: is commonly abbreviated as PGA for poly(glycolic acid) and poly(lactide) is commonly abbreviated as PLA for poly(lactic acid), these polymers are commonly referred to as PGA and PGA:PLA resins for the hydrolytic byproducts to which they respectively degrade. 1.3 This
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Supplier: MCG - Performance Polymers Division
Description: MODIC™ offers two technologies designed to be used as a tie-resin or for peelable purposes: MODIC™ - ACID-GRAFTED POLYMER (TIE RESIN) MODIC™ tie-layer resin is acid grafted polyolefin forming a layer or a coating which provides adhesion between materials that have poor affinity.
- Industry: Automotive, Industrial, Medical / Food (FDA)
- Type: Extrusion Grade Resin, Film Grade Resin, Molding Resin, Thermoplastic
- Chemical System: Polycarbonate (PC), Polyester (PET, PBT), Polyethylene, Polypropylene (PP)
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Supplier: DME Company
Description: The Eco-Smart hot runner system is the only nozzle assembly engineered to overcome the unique challenges of processing biodegradeable, starch-based resins including Polylactic Acid (PLA)
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Supplier: MCG - Performance Polymers Division
Description: temperature. We provide the same performance with less cost in waste disposal expense. Good printability without pre-treatment Compatible with natural fibers Excellent Processability Mutual compatibility with other biodegradable plastics such as polylactic acid (PLA). Mixing BioPBS™ with
- Deflection Temperature (@ 264 psi, 1.8 MPa): 145.4 to 203 F
- Tensile Strength (Break): 3,480.88414457273 to 5,221.32621685909 psi
- Tensile Modulus: 36.259209839299196 to 94.273945582178 ksi
- Chemical System: Butyl / Polyisobutylene
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Supplier: ARKPLAS
Description: extruded from 100% virgin Linear Low-Density Polyethylene resin. Ethelplas™ Tubing is manufactured with non-toxic ingredients formulated specifically for the food and beverage industry. Ark-Plas® NSF-51/ 61 Polyethylene Tubing is manufactured with 55 Durometer resin that is
- Outside Diameter / Size: 0.5 inch
- Maximum Inside Diameter / Size: 0.375 inch
- Type: Electrical Tubing / Sheathing, Plastic Tubing
- Design Units: English
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Supplier: ARKPLAS
Description: extruded from 100% virgin Linear Low-Density Polyethylene resin. Ethelplas™ Tubing is manufactured with non-toxic ingredients formulated specifically for the food and beverage industry. Ark-Plas® NSF-51/ 61 Polyethylene Tubing is manufactured with 55 Durometer resin that is
- Outside Diameter / Size: 0.625 inch
- Maximum Inside Diameter / Size: 0.5 inch
- Type: Electrical Tubing / Sheathing, Plastic Tubing
- Design Units: English
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Supplier: ARKPLAS
Description: extruded from 100% virgin Linear Low-Density Polyethylene resin. Ethelplas™ Tubing is manufactured with non-toxic ingredients formulated specifically for the food and beverage industry. Ark-Plas® NSF-51/ 61 Polyethylene Tubing is manufactured with 55 Durometer resin that is
- Outside Diameter / Size: 0.625 inch
- Maximum Inside Diameter / Size: 0.5 inch
- Type: Electrical Tubing / Sheathing, Plastic Tubing
- Design Units: English
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Supplier: U.S. Plastic Corporation
Description: Lessen environmental impact with these PLA (polylactic acid) resin sampling spoons. The production of 100% plant-based PLA contributes less greenhouse gasses and uses less nonrenewable energy from source to resin than its petroleum-based counterparts, and the plants used
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Supplier: U.S. Plastic Corporation
Description: Lessen environmental impact with these PLA (polylactic acid) resin sampling spoons. The production of 100% plant-based PLA contributes less greenhouse gasses and uses less nonrenewable energy from source to resin than its petroleum-based counterparts, and the plants used
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Supplier: U.S. Plastic Corporation
Description: Lessen environmental impact with these PLA (polylactic acid) resin sampling spoons. The production of 100% plant-based PLA contributes less greenhouse gasses and uses less nonrenewable energy from source to resin than its petroleum-based counterparts, and the plants used
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Supplier: U.S. Plastic Corporation
Description: Lessen environmental impact with these PLA (polylactic acid) resin sampling spoons. The production of 100% plant-based PLA contributes less greenhouse gasses and uses less nonrenewable energy from source to resin than its petroleum-based counterparts, and the plants used
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Supplier: DME Company
Description: Eco-Smart—the right choice for your application…and our environment D-M-E has long recognized the need to address the global environmental concerns that are gradually moving the plastics industry away from reliance on petroleum-based resins and toward starch-based polymers that originate from
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Supplier: Polymer Technologies Inc.
Description: Resins and Material Selection PTI specializes in the production of advanced plastic components, including complex geometries and technologically-demanding and engineered materials. The types of resins that we mold include: PEEK, Ultem Implantable PLA, PMMA, PVOH, PVA PPA, TPE
- Supplier Capability: Assembly Services, Design Assistance, High Volume Production (Long Runs), Insert Molding / Overmolding, Just-In-Time Capability, Large Part Molding, Low Volume Production (Short Runs), Machining, Micro Molding, Tool / Mold Making
- Features: North America, Northeast US Only, United States Only
- Molding Type: Thermoplastic Injection Molding, Thermoset Injection Molding
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Supplier: ASTM International
Description: 1.1 This practice covers the method of classifying, identifying, and characterizing the failure modes in adhesively bonded fiber-reinforced-plastic (FRP) joints. The FRP used in developing this practice consists of glass fibers in a thermoset-polyester-resin matrix, commonly referred to as
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Preparation and physical properties of melt‐blown nonwovens of biodegradable PLA/acetyl tributyl citrate/FePol copolyester blends
To blow PLA resins at extremely high rates, the melt index (MI) values of PLA needed to be increased to proper values.
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The compatible and mechanical properties of biodegradable poly(Lactic Acid)/ethylene glycidyl methacrylate copolymer blends
The melt shear viscosity values of PLAxEGMCy resins, measured at varying shear rates, are significantly higher than those of the PLA resin , and increase consistently with their EGMC contents.
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Mechanical, thermal, and biodegradability properties of PLA/modified starch blends
Abstract Three different kinds of modified starch (MS) were prepared as fillers to assess the compatibility between them and poly(lactic acid) ( PLA ) resin .
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Compatible and crystallization properties of poly(lactic acid)/poly(butylene adipate‐ co ‐terephthalate) blends
Poly(lactic acid) ( PLA ) resins are well known as the biodegradable, linear aliphatic thermoplastics, which can be produced from renewable resources.
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Plasticized properties of poly (lactic acid) and triacetine blends
Further morphological analysis show that the inherent brittle deformation behavior of the PLA specimen was successfully transformed into relatively ductile fracture behavior after blending sufficient but optimum amounts of TAc in PLA resins .
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Molding Method, Thermal and Mechanical Properties of Jute/PLA Injection Molding
In this paper jute fiber filled PLA resin (jute/PLA) composites was fabricated by injec- tion moldings and mechanical properties were measured.
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Effect of knitted and woven textile structures on the mechanical performance of poly(lactic acid) textile insert injection‐compression moldings
The textile‐insert molding technique was applied in this case, whereby PLA fabrics were attached to the surface of PLA resin by injection‐compression molding.
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Plastics and Sustainability: Towards a Peaceful Coexistence between Bio-based and Fossil Fuel-based Plastics
The largest and best known pro- ducer, NatureWorks LLC, is expecting its expanded 300-million-lb capacity PLA resin plant to reach full capacity in 2013 or 2014, with another possible plant to be built outside the United States around that time …
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Biodegradable Polymers
Most virgin PLA resin cannot be directly processed into plastics.
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Effects of molecular weight and grafted maleic anhydride of functionalized polylactic acid used in reactive compatibilized binary and ternary blends of polylac...
PLA resin , dried in a vacuum oven at 90 C for 6 h, was pre- mixed with ground MA and L101.
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