Company Details

  • PF Mold Co., Ltd.

  •  [Guangdong,China]
  • Business Type:Manufacturer
  • Main Mark: Americas , East Europe , Europe , North Europe , Other Markets , West Europe , Worldwide
  • Exporter:51% - 60%
  • Certs:ISO9001, ISO9002, CCC, CE, FCC, FDA, GS, RoHS, Test Report, TUV, UL
  • Description:Rapid Prototype Mold,Rapid Prototype,Zinc Casting Mold,Mold Design
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Rapid Prototype Mold

Product categories of Rapid Prototype Mold, we are specialized manufacturers from China, Rapid Prototype Mold, Rapid Prototype suppliers/factory, wholesale high-quality products of Zinc Casting Mold R & D and manufacturing, we have the perfect after-sales service and technical support. Look forward to your cooperation!
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3D rapid printing samples for display

Model No. : PFS13

Plastic cap with all color for custom size Customized cover for bottle Accessaries for blow mold bottle PF MOLD Die Casting has always been dedicated to providing companies with superior die casting and tooling along with metal finishing and CNC...

China Rapid Prototype Mold of with CE
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Selective laser sintering SLS service

Model No. : P1806B-6

Selective laser sintering SLS service direct metal laser sintering Everyone knows that 3D printing is an excellent way to produce prototypes for concept review or form fit function testing but the examples listed are evidence that it s becoming an...

China Manufacturer of Rapid Prototype
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Create CNC machined parts with unrivaled speed

Model No. : P1806B-5

Create CNC machined parts with unrivaled speed We operate more than 20 state of the art machining centers with a wide variety of CNC equipment such as single axis lathes which are ideal for executing round parts such as nozzles engine components and...

Customized Zinc Casting Mold Made in China
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Rapid mold making small quantity parts

Model No. : P1806B-4

Rapid mold making small quantity parts CNC Machining is a subtractive manufacturing method that uses cutting tools to remove material from a block of raw material or a pre existing part Our capacity allows us to create CNC machined parts with...

Professional Manufacturer of Mold Design
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China Rapid Prototype Mold Suppliers
Everyone knows that 3D Printing is an excellent way to produce prototypes for concept review or form-fit-function testing, but the examples listed are evidence that it`s becoming an increasingly popular method for producing [real" parts. This is especially true when volumes are low enough that casting and molding are not cost effective, or where part complexity prohibits processes like machining. Before you begin work on your next medical device or aerospace component, however, consider the following:

Technology: PFMOLD uses three different additive manufacturing processes: direct metal laser sintering (DMLS), selective laser sintering (SLS), and stereolithography (SL). By virtue of its ability to create fully dense metal parts on demand, DMLS is a tested and proven option for end-use applications, although SLS is often an excellent solution for low-volume plastic end-use components. SL has always been a prototype-centric process, although secondary coating technologies exist to add durability to SL`s resin-based parts.

3D-printed parts
A 3D-printed nylon turbine (left) and titanium medical drill component (right).
Material selection: The nearly two dozen 3D-printable resins and powders available at Protolabs address many of the mechanical and electrical requirements in parts today, and most are suitable for long-term use. From cobalt chrome to glass-filled nylon, a variety of end-use parts can be manufactured in cost-effective quantities, accurately enough to compete with machining and injection molding.

Design considerations: In many cases, there`s limited differences between a prototype part design and one destined for years of service. What`s important is that product designers and engineers recognize 3D printing`s potential for such use. The ability to create organic shapes and complex lattices opens doors otherwise closed to traditional manufacturing.

Production quantities: Despite its many strengths, 3D printing is relegated to relatively smaller part quantities, limiting its use for most high-volume applications. Because of this, understanding what quantities are appropriate for end-use parts is an important step in any design project. Anything from a single replacement part for a vintage automobile to on-demand production runs of complex componentry may be practical, provided the part cannot be produced more cost-effectively via alternative manufacturing methods.

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