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HP PA12GB

Good toughness, high hardness, production of hard functional components, production of high-quality components at very low unit cost, materials imported from the United States, with FDM certification (accessible food-grade materials). PA12GB and PA12 belong to engineering plastics. PA12GB has higher mechanical properties, dimensional stability, heat resistance and aging resistance.

Keywords: PA12GB industrial device 3D printing PA12GB gift 3D printing PA12GB nylon medical device 3D printing PA12GB nylon professional 3D Printing
  • Product Details
Product Description

MATERIAL NAME

HP 3D High Reusability PA 12 Glass Beads

MATERIAL GROUP

Nylon

MATERIAL TYPE

Thermoplastic

BRAND

HP

TECHNOLOGY

MJF

PA12GB industrial device 3D printing

FEATURES

Produce stiff, functional parts

• 40% glass bead filled thermoplastic material with both optimal mechanical properties and high reusability.

• Provides dimensional stability along with repeatability.

•Ideal for applications requiring high stiffness like enclosures and housings, fixtures and tooling.

PA12GB industrial device 3D printing

Quality at a low cost per part

• Produce at a low cost per part and reduce your total cost of ownership.

• Less waste—reuse surplus powder batch after batch and get functional parts, no throwing away anymore.

• Get consistent performance while achieving up to 70% surplus powder reusability.

• Optimize cost and part quality—cost-efficient material with high surplus powder reusability.

PA12GB industrial device 3D printing

Engineered for HP Multi Jet Fusion technology

• Designed for production of functional parts across a variety of industries.

• Provides the best balance between performance and reusability.

• Engineered to produce common glass bead applications with detail and dimensional accuracy.

PA12GB industrial device 3D printing

TECHNICAL SPECIFICATIONS

Category

Measurement

Value

Method

General properties

Powder melting point (DSC)

186° C/367° F

ASTM D3418

Particle size

58 pm

ASTM D3451


Bulk density of powder

0.48 g/cm0.017 lb/in

ASTM D1895


Density of parts

1.3 g/cm/0.047 lb/n

ASTM D792


Mechanical properties

Tensile strength, max load, XY, XZ, YX, YZ

30 MPa/4351 psi

ASTM D638

Tensile strength, max load, ZX, XY

30 MPa/4351 psi

ASTM D638


Tensile modulus, XY, XZ, YX, YZ

2500 MPa/363 ksi

ASTM D638


Tensile modulus, ZX, XY

2700 MPa/392 ksi

ASTM D638


Elongation at break, XY, XZ, YX, YZ

10%

ASTM D638


Elongation at break, ZX, XY

10%

ASTM D638


Flexural strength (@ 5%), XY, XZ, YX, YZ

57.5 MPa/8340 psi

ASTM D790


Flexural strength (@ 5%), ZX, XY

65 MPa/9427 psi

ASTM D790


Flexural modulus, XY, XZ, YX, YZ

2400 MPa/348 ksi

ASTM D790


Flexural modulus, ZX, XY

2700 MPa/392 ksi

ASTM D790


Izod impact notched (@ 3.2 mm, 23°C), XY, XZ, YX, YZ, ZX, ZY

3 KJ/m2

ASTM D256 Test Method A


Shore Hardness D, XY, XZ, YX, YZ, ZX, ZY

82

ASTM D2240


Thermal properties

Heat deflection temperature (@ 0.45 MPa, 66 psi), XY, XZ, YX, YZ

174°C/345°F

ASTM D648 Test Method A

Heat deflection temperature (@ 0.45 MPa, 66 psi), ZX, XY

175° C/347° F

ASTM D648 Test Method A


Heat deflection temperature (@ 1.82 MPa, 264 psi), XY, XZ, YX, YZ

114° C/237°F

ASTM D648 Test Method A


Heat deflection temperature (@ 1.82 MPa, 264 psi), ZX, XY

120°C/248°F

ASTM D648 Test Method A


Reusability

Minimum refresh ratio for stable performance

30%


Recommended environmental conditions

Recommended relative humidity

50-70% RH


Certifications

UL 94, UL 746A, RoHS, REACH, PAHs



PA12GB industrial device 3D printingPA12GB industrial device 3D printing

ECO HIGHLIGHTS

• Powders and agents are not classified as hazardous

• Cleaner, more comfortable workplace—enclosed printing system, and automatic powder management

• Minimizes waste due to high reusability of powder



  • What colors are available?

    Any color is available.Each object can only be printed in one color.

  • How will I know when the print is done?

    You will be notified via email once your print has been completed, and whenever there’re any problems occurred during the printing process that may need your attention.

  • How long will it take to print?

    Printing usually takes hours, or several business days, and can vary depending on several factors: the size of your model, the material you are using, the layer height (smaller layers mean more layers to print), the complexity of your model, whether the object needs supports, etc.

  • How much does a 3D print cost?

    The cost per gram for 3D Printing is based on a variety of factors including time, labor, machine wear, and the estimated weight of the print (in grams), etc.

  • What machines do you use to create 3D objects?

    We have several types of machines in our workshops: HP Jet Fusion 3D 4200 Printer (11 units) EOS Formiga P110 3D Printer (1 unit) EOS P396 3D Printer (2 units)) EOS M290 3D Printer (6 units) Available materials: Aluminum (AlSi10Mg), Titanium (TiAl6V4), Stainless Steel (316L), PA11, PA12, PA12GB, Somos® EvoLVe 128 and other resins, etc.

  • How does 3D printing work?

    3D Printing process builds an object layer by layer to create a complex shape. In order to build this object we need a 3D file that contains accurate information about the geometry of the part. Then the information in this 3D file is sent to the 3D-printer that will build up the material matching the 3D file.

  • What is 3D printing?

    3D printing is a digital manufacturing process that makes it possible to create a physical object from a 3D file. The object is formed by applying successive layers of solid material. 3D Printing also known as Additive Manufacturing(AM) as a general term that covers various techniques and it empowers designers and manufacturers print object of any shape and geometric dimension. In simple words, it is one of the fastest modes of developing physical prototypes accurately and true to scale.

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