Machined Plastics
Plastics
Machined Plastic Parts Materials ABS Plastics & MachiningAcetal & Delrin MachiningAcrylic Plastic Materials & MachiningCOC/COP Plastic Materials & MachiningCPVC Plastic Material & MachiningCTFE/KEL-F Plastic Material & MachiningDelrin AF Plastic Material & Machining ECTFE/Halar Plastic Material & Machining Fluorosint® 500 and 207 Plastic Materials & MachiningHDPE Plastic Material & MachiningLDPE Plastic Material & MachiningNoryl® Plastic Material & MachiningNylatron GS: Self Lubricating Nylon for Precision MachiningNylon 6/6 Material & Machining PBT Plastic Material & MachiningPEEK Plastic Material & Machining PES (Radel A) Plastic Material & MachiningPlastic Machining With PETPhenolics/G10 Plastic Machining Polycarbonate Plastic & MachiningPolypropylene Plastic Material & MachiningPolysulfone Plastic Matetial & MachiningPPS Plastic Material & MachiningPVC Plastic & Machining PVDF Plastic Material & MachiningRadel® Plastic Material & MachiningRexolite® Plastic Material & Machining Tecadur Plastic Material & MachiningTeflon® Plastic Machining (PTFE) | Controlled FluidicsTorlon PlasticMaterial & MachiningUHMW Plastic Materials & MachiningUltem® (PEI) Plastic Material & MachiningVespel® Plastic MachiningPOLYMER OPTIONS
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LIGHTWEIGHT, MANAGEABLE, EFFECTIVE

 

Cut the cord on tubing and simplify your product

Internalize ChannelsCost Efficient AlternativeEasier To Design
Free up visible space and internalize channels to create a more user-friendly device.Create a product made of material just as strong (if not stronger) but more cost efficient than metal.No need to complicate your design. With internal straight channels, fluids and gases flow freely

 

WHAT ARE DRILLED MANIFOLDS & WHEN DO YOU NEED ONE?

For teams seeking a more cost-efficient, easier to design manifold solution, drilled and single-layer manifolds may be the answer. Such manifolds are created by CNC milling and other precision plastic machining techniques withFor teams seeking a more cost-efficient, easier to design manifold solution, drilled and single-layer manifolds may be the answer. Such manifolds are created by CNC milling and other precision plastic machining techniques without using diffusion bonding or layering plastic. Manufacturing drilled manifolds here creates straight channels and direct ports needed for optimal fluidic systems. out using diffusion bonding or layering plastic. Manufacturing drilled manifolds here creates straight channels and direct ports needed for optimal fluidic systems.

Overall design, cost, and considering the product's purpose all play an important role when considering if drilled fluidic manifolds are the right fit. These are things to consider when it comes to custom drilled manifolds. 

  • Flexible Material Choices

Teams have the freedom in selecting the right material choice given strength, chemical, temperature etc. requirements.

  • Simplicity in Design

Manifolds can be a simple block of plastic with drilled holes allowing for a single input being split into multiple outputs.

  • Fully Customizable

Adaptable and versatile, single-layer/drilled manifolds offer several options to create the highest quality product.

  • Limited Geometries

Tooling here often limits design layout to straight lines created by the machines, which can reduce design possibilities. However, we mitigate this concern through drilling and plugging processes.

  • Drill Depths

Teams must carefully consider the ability of drill to form proper holes as the L/D ratio increases. Size, finish and straightness can degrade as the L/D ratio increases.

  • Imperfections Within Channels

Intersecting holes can harbor chips or other imperfections within the channels that can hinder a material's flow. Polishing and other finishing techniques can help to abate this risk. 

SLM EXAMPLES

Here are some examples of our previous work with single-layer/drilled manifolds made from different materials.

See all our work

A transparent yellow ULTEM rectangular plastic manifold with cut-out channels and holes, some with threaded inserts, used as a fluidic/microfluidic device for directing liquid or gas flow.
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A black rectangular, PVC plastic hydraulic manifold block with multiple circular ports and threaded holes on its front and side surfaces, used for directing fluid flow in hydraulic systems.
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