Evolv3D™ Series, 3D Printing Materials

Results:
6
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Series
Color
Operating Temperature
Flex Strength
Filament Material
Filament Diameter
Density
Weight
Tensile Strength
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Evolv3D™
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ImageProduct DetailPriceAvailabilityECAD ModelFeaturesOperating TemperatureColorWeightFilament DiameterFlex StrengthTensile StrengthDensitySeriesFilament Material
OBC1010750GY2
EVOLV3D PE COPOLYMER, 1.75MM, 75
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
Gray
1.653 lb (750.0 g)
0.070" (1.75mm)
14Mpa
14Mpa
905mg/cm³
Evolv3D™
Olefin Block Copolymer (OBC)
OBC1030750BK1
EVOLV3D PE COPOLYMER, 2.85MM, 75
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
Black
1.653 lb (750.0 g)
0.112" (2.85mm)
14Mpa
14Mpa
905mg/cm³
Evolv3D™
Olefin Block Copolymer (OBC)
OBC1030750GY2
EVOLV3D PE COPOLYMER, 2.85MM, 75
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
Gray
1.653 lb (750.0 g)
0.112" (2.85mm)
14Mpa
14Mpa
905mg/cm³
Evolv3D™
Olefin Block Copolymer (OBC)
OBC1010750BK1
EVOLV3D PE COPOLYMER, 1.75MM, 75
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
170°C ~ 210°C
Black
-
0.070" (1.75mm)
14Mpa
14Mpa
905mg/cm³
Evolv3D™
OBC Polyethylene
OBC1030750WT1
EVOLV3D PE COPOLYMER, 2.85MM, 75
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
White
-
0.112" (2.85mm)
-
14Mpa
0.9g/cm³
Evolv3D™
Olefin Block Copolymer (OBC)
OBC1010750WT1
EVOLV3D PE COPOLYMER, 1.75MM, 75
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
White
1.653 lb (750.0 g)
0.070" (1.75mm)
14Mpa
14Mpa
905mg/cm³
Evolv3D™
Olefin Block Copolymer (OBC)

3D Printing Materials

In the world of 3D printing, filaments play a crucial role as the raw material used to create three-dimensional models through the process of fused deposition. These solid strand thermoplastic feedstocks come in various formulations and characteristics, offering a wide range of options for 3D printing enthusiasts. Let's explore the key features associated with 3D printing filaments: Diameter: Filaments are available in different diameters, with the most common sizes being 1.75 mm, 2.85 mm (also known as 3 mm), and 3.00 mm. The filament diameter must match the specifications of the 3D printer's extruder mechanism to ensure smooth and consistent filament feeding during the printing process. Weight: Filaments are typically sold by weight, with popular options ranging from small spools of 0.5 kg to larger spools exceeding 1 kg. The weight of the filament determines the amount available for printing and influences the overall cost per model. Tensile strength: Tensile strength refers to the maximum amount of stress or force a filament can withstand before breaking. It is an important property to consider, as it impacts the durability and structural integrity of the printed object. Flex strength: Flex strength measures the ability of a filament to bend or deform without breaking. Filaments with high flex strength are suitable for applications that require flexibility or elasticity, such as creating rubber-like objects or hinges. Density: Filament density affects the weight and solidity of the printed object. Different filaments have varying densities, which can influence the final weight and feel of the printed model. Plastic formulations: Filaments are available in a variety of plastic formulations, each offering unique properties and characteristics. Some common formulations include Acrylonitrile Butadiene Styrene (ABS), Polylactic Acid (PLA), Polyethylene Terephthalate (PET), Polyamide (PA), Polycarbonate (PC), Polystyrene (PS), Polyvinyl Alcohol (PVA), and Thermoplastic Polyurethane (TPU). These formulations vary in terms of strength, flexibility, temperature resistance, and printability. Color options: Filaments are available in a wide array of solid and translucent colors, allowing for greater creativity and customization in 3D printing projects. From vibrant primary colors to subtle pastels and even glow-in-the-dark options, the choice of filament color adds an aesthetic element to the printed models. By selecting the appropriate filament based on diameter, weight, tensile strength, flex strength, density, and plastic formulation, 3D printing enthusiasts can achieve their desired results, whether it be creating sturdy functional objects or producing intricate and visually appealing prototypes.