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3d printed SLA services housing Stratasys Direct

SLA 3D Printing Service

SLA parts in as few as 3 days!

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ISO 9001 | ISO 13485 | AS9100 | DDTC/ITAR Registered
SLA 3D Printing Service | Stratasys Direct

Stratasys Direct: Unmatched SLA Expertise

Stratasys Direct® is at the forefront of Additive Manufacturing (AM), leveraging over 30 years of experience in Stereolithography (SLA) to turn intricate designs into tangible realities. With ISO9001 and AS9100 certification and DDTC/ITAR registration, Stratasys Direct blends quality and precision, with design and cutting-edge technology. We excel in producing high-precision, smooth-surfaced, watertight components, and utilize both solid and sparse-fill techniques to accelerate build times and reduce costs for large, lightweight SLA models. We’ve helped countless customers across multiple industries to bring their visions to life. 

Our state-of-the-art SLA printing service combines a unique blend of traditional craftsmanship and cutting-edge technology, guaranteeing not just dimensional accuracy and swiftness, but also customizable options to meet the varied needs of design manufacturers, engineers, hobbyists, and novices. Trust in the legacy and pioneering spirit of Stratasys Direct for SLA resin printing that transforms your most ambitious designs into reality.

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Diverse SLA Materials for Every Need

Stratasys Direct offers a diverse range of SLA printing materials, including high-performance resins for exceptional strength and versatility, clear materials for lenses, durable materials for harsh environments, high-clarity water-resistant materials for functional prototypes, and impact-resistant resins for demanding applications.

 

Key Features
  • Easy to clean & finish
  • High strength & durability
  • Accurate & dimensionally stable
  • High detail
Applications
  • Tough, functional prototypes
  • Snap-fit designs
  • Jigs & fixtures
Somos® EvoLVe™ 128 is a high-performance SLA material with exceptional strength, durability, and versatility. Its ability to resist wear, impact, and extreme temperatures makes it a solid choice for a wide range of industries, including aerospace, automotive, manufacturing, medical, and consumer products. EvoLVe™ 128 produces parts with intricate designs and complex geometries, allowing engineers to push the boundaries of what’s possible. In addition, EvoLVe™ 128 components are easy to clean and finish, making EvoLVe™ 128 an ideal material for bonding larger parts and painted components.
Key Features
  • Superior impact strength and durability
  • Exceptionally versatile
  • Thermoplastic-like performance, look and feel

 

Applications
  • Tough, functional end-use prototypes
  • Snap-fit designs
  • Jigs and fixtures
  • Packaging and sporting goods
Somos® NeXt is a durable Stereolithography (SLA) resin that produces very accurate parts with high feature detail. Based on the Somos® DMX technology, Somos® NeXt is a next generation of material that facilitates the production of tough, complex parts with improved moisture resistance and greater thermal properties for most of your prototyping needs.
Key Features
  • Extraordinary clarity
  • Colorless
  • Easy to finish
Applications
  • Automotive lenses
  • Bottles
  • Lenses
  • Light pipes
Somos® WaterClear® Ultra 10122 is a low-viscosity Stereolithography material that produces colorless, accurate parts with excellent temperature resistance. With minimized finishing requirements, parts built in Somos® WaterClear can appear transparent. The material is best suited for applications that require optical clarity, like fluid flow analysis, bottles, lenses, and other concept and functional models. Somos® WaterClear® has refractive values like the engineered plastics used in functional testing of optical light transmission work.
Key Features
  • Exceptional durability - Engineered for long-lasting performance
  • Best in class weathering - Able to withstand harsh environmental conditions
  • Outstanding precision, ensuring parts meet demanding tolerances and specifications
  • Dimensionally stable, with low shrinkage
  • UV resistant, with no discoloration when exposed to UV rays
  • Truer and richer black parts – straight off the machine
  • Fast and consistent processing
  • Smooth surface finish
  • Superior moisture and chemical resistance
Applications
  • Durable, stiff, tough parts
  • Automotive components
  • Electronic housings
  • Packaging
  • Functional prototypes and end-use parts
Somos® WaterShed Black is a high-performance stereolithography resin that delivers rich, true black parts without the need for painting or post-processing. With properties similar to Somos® WaterShed XC 11122, this advanced, durable material is designed to withstand tough conditions while delivering high resolution and a superior surface finish to 3D-printed parts. Its UV and chemical resistance make it perfect for outdoor applications, while offering low shrinkage, ensuring parts meet demanding tolerances. With durability, precision, and stunning black finishes, Watershed Black is a top choice for 3D-printed parts with superior aesthetics and performance.
Key Features
  • Easy to use and finish
  • Superior moisture resistance
  • Exceptional clarity
Applications
  • Consumer products
  • Fluid flow analysis
  • Lenses
As one of the industry’s most popular SLA materials, Somos® WaterShed® XC 11122 is the clear solution for numerous applications. Somos® WaterShed mimics the look and feel of clear thermoplastics, such as acrylic. This versatility means Somos® WaterShed® is the ideal material in markets such as automotive, aerospace, and consumer electronics.
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Fast and Easy Online Ordering

Discover the ease of sourcing SLA components with our direct online ordering system. Navigate through a selection of premium resins, upload your models, and get immediate pricing for your custom parts. Our platform facilitates a straightforward process, and our SLA experts are available to guide you through material selection and design intricacies for unparalleled results.

Enter NEW30 at checkout for 30% off your online order! Restrictions apply. 

lightweight painted gloss Sparse filled SLA 3d printed car | Stratasys Direct

Unveil the Beauty of SLA Parts: Expert Finishing and Assembly 

Your project deserves the finest finish, which is why our team goes the extra mile with an extensive selection of post-processing services. Stratasys Direct boasts a team of finishing and assembly experts dedicated to enhancing the performance and aesthetics of your SLA parts. Our expert finish and assembly team utilizes meticulous processes, such as ultrasonic cleaning, hand finishing, sanding, custom finishing, texture application, colorization, artwork, and functional coatings like EMI/RFI shielding or plating to improve your parts. The result is premium quality surfaces and beautiful components with exceptional clarity, detail and accuracy.  

SLA parts | Finishing & Quality | Stratasys Direct

Commitment to Quality for Precise SLA Prints

Rigorous quality control measures are the cornerstone of our SLA printing process at Stratasys Direct. Excess resin is meticulously drained and supports are carefully removed post-build for a flawless foundation. We leverage our extensive 30-year experience in stereolithography to manage the UV curing process, guaranteeing parts meet your exact specifications. This unwavering commitment to quality translates to exceptionally precise and reliable SLA prints that consistently surpass expectations.

SLA Design Guide | Stratasys Direct

SLA Design Guide

This guide emphasizes the importance of meticulous planning and design for creating impressive 3D printed parts. Focusing on stereolithography, it highlights the technology's advantages such as accuracy, speed, limitless size capabilities, and finishing options, while providing insights into its operation, material selection, key design considerations, and techniques for achieving custom finishes.

Applications for SLA Printing:

Transform your concepts into reality with our SLA prototyping services. We specialize in creating incredibly beautiful, high-resolution parts:

SAL 3d printed gaming controller prototype | Stratasys Direct

Prototypes

Turn your concepts into reality with exacting prototypes that ensure design validation and expedite development.

FLIR SLA 3d printed concept model | Stratasys Direct

Concept Models

Utilize SLA for concept models and lightweight display models.

SLA 3d printed cup testing on space station with Stratasys Direct

End-Use Parts

Produce low-volume, high-value end-use parts with exceptional accuracy and aesthetics.

SAL 3d printed gaming controller prototype | Stratasys Direct

Turn your concepts into reality with exacting prototypes that ensure design validation and expedite development.

FLIR SLA 3d printed concept model | Stratasys Direct

Utilize SLA for concept models and lightweight display models.

SLA 3d printed cup testing on space station with Stratasys Direct

Produce low-volume, high-value end-use parts with exceptional accuracy and aesthetics.

3D printing with Stereolithography (SLA) | Stratasys Direct

Precision and Versatility with Stereolithography

Stereolithography (SLA) is a 3D printing technique that uses a laser to cure liquid resin layer-by-layer, building precise prototypes and even functional end-use parts.​ Stereolithography is most commonly used as a prototyping technology within industries that need to print parts or models to validate fit form and function or for concept visualization.  Stereolithography is also used in manufacturing applications for short-run part production such as vacuum castings, injection mold tooling, investment casting master patterns and functional end-use part production for certain environments.

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What is Stereolithography?

Stereolithography (SLA) is a vat polymerization 3D printing process and is the original 3D printing process that is still widely used today for its accuracy and speed. SLA is often used for prototypes, large concept models, and lightweight display models. 

Stereolithography can create high dimensional accuracy parts with intricate designs and smooth surfaces. It also allows us to print watertight components in clear materials making it easy to test fluid flow found in product designs. 

At Stratasys Direct we can build extremely light, large-scale parts in record time utilizing our sparse fill, which is a hollow build method. Sparse fill is ideal for nonstructural appearance models. These parts build faster, weigh less and cost less than solid SLA models. 

How Sterolithography (SLA) Works

Stereolithography (Monikers: Vat photopolymerization, photocuring, SLA, SL) relies on a precise UV laser to cure liquid resin layer by layer. Its build platform sits just below the top of the resin bath. The build platform is coated with a thin layer of liquid plastic.

A UV laser hits dynamic mirrors which direct the UV energy downwards across the build platform, curing the liquid resin in precise patterns one cross-section at a time. After each layer is cured, the build platform retracts into the bath of liquid while a recoater blade evenly distributes the resin across each new layer.

Stereolithography also requires build supports which are removed manually by hand, meaning areas that require support be accessible. Stereolithography support material is the same material as the final part.

During printing, the resin within the chamber can become trapped within the part or pool in certain part features, reabsorbing into the part and causing bloating and design distortion. Therefore, after a build is complete, excess resin is drained and supports are removed.

Unlike PolyJet, Stereolithography parts do not fully cure during the build so the parts enter a UV oven to complete curing. Expertise comes from experience, and being that Stratasys Direct has been building SLA parts almost since the industry's birth means that we know exactly how to build and post-process SLA exactly to your needs. 

SLA Resources

Additive Manufacturing for Marketing Displays | Stratasys Direct

The 3D Printing Advantage: Igniting Creativity in Marketing and Exhibitions

Marketers are leveraging 3D printing to innovate and engage audiences. PolyJet, Fused Deposition Modeling, and Stereolithography lead for creating durable, visually impressive model displays.

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flir

Stereolithography Predicts Product Life

Thermal imaging company, FLIR, uses Stereolithography to test design and function, determine strengths and weaknesses, calculate market interest and lengthen the life of their products.

View more
top 4 differences between polyjet stereolithography 3

Top 4 Differences Between Stereolithography and PolyJet

Knowing the differences will lead you to the best process choice for your project. Here are the top four differences between PolyJet and Stereolithography.

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3D Printed Bone Model

3D Printed Bone Models Provide True-To-Life Training For Surgeons

3D printing offered a viable, cost-effective solution to recreating accurate models with repeatable bone fracture types for multiple training scenarios.

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SLA Design Guide | Stratasys Direct

Stereolithography Design Guide

Expand your working knowledge of SLA 3D printing including file preparation and material choices for this versatile 3D printing method. Download the guide.

View more
hydra klik

Water Bottle for Runners Goes the Distance with Multiple 3D Printing Technologies

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baby bottles

Article: 3D Printing Baby Bottles

Entrepreneur used 3D printing to determine the functionality, look and feel of a baby bottle design.

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Image courtesy of IRPI / NASA

3D Printing Brings the Familiarity of Home to the International Space Station

To create a drinking cup in microgravity, IRPI looked to 3D printing to solve what appeared to be an insurmountable challenge.

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numnum

Reinventing the Spoon: Prototyping to Perfection

The NumNum Dip encourages the progression of necessary motor skills without requiring the baby to jump from zero utensil handling to debutante-ready motions.

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sdm sl 202004

Infographic: What Is Stereolithography?

Create large, highly-intricate parts with superb accuracy and finishes. Stereolithography (SL) makes it easy to iterate and produce complex models that capture attention.

View more
Additive Manufacturing for Marketing Displays | Stratasys Direct

Marketers are leveraging 3D printing to innovate and engage audiences. PolyJet, Fused Deposition Modeling, and Stereolithography lead for creating durable, visually impressive model displays.

flir

Thermal imaging company, FLIR, uses Stereolithography to test design and function, determine strengths and weaknesses, calculate market interest and lengthen the life of their products.

top 4 differences between polyjet stereolithography 3

Knowing the differences will lead you to the best process choice for your project. Here are the top four differences between PolyJet and Stereolithography.

3D Printed Bone Model

3D printing offered a viable, cost-effective solution to recreating accurate models with repeatable bone fracture types for multiple training scenarios.

SLA Design Guide | Stratasys Direct

Expand your working knowledge of SLA 3D printing including file preparation and material choices for this versatile 3D printing method. Download the guide.

baby bottles

Entrepreneur used 3D printing to determine the functionality, look and feel of a baby bottle design.

Image courtesy of IRPI / NASA

To create a drinking cup in microgravity, IRPI looked to 3D printing to solve what appeared to be an insurmountable challenge.

numnum

The NumNum Dip encourages the progression of necessary motor skills without requiring the baby to jump from zero utensil handling to debutante-ready motions.

sdm sl 202004

Create large, highly-intricate parts with superb accuracy and finishes. Stereolithography (SL) makes it easy to iterate and produce complex models that capture attention.

3D Printing Services

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P3™ DLP 3D Printing Service | Stratasys Direct®

P3™, an evolution of DLP 3D printing, produces finely detailed 3D-printed parts using high-performance materials.

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PolyJet 3D Printing Technology | Stratasys Direct

PolyJet 3D Printing Service | Stratasys Direct

PolyJet is a 3D printing technology that jets and cures layers of liquid photopolymer to build high-resolution models, prototypes and full color display models.

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FDM 3D Printed Jig | Stratasys Direct

Fused Deposition Modeling (FDM™) 3D Printing Service | Stratasys Direct®

Get parts using the most widely used form of 3d printing from those who invented FDM®

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Discover how Selective Absorption Fusion (SAF®) 3D printing technology operates and how it can be used to help lower production costs for your next project.

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3D Printed SLS Assembled Car | Stratasys Direct

Selective Laser Sintering (SLS) 3D Printing Service | Stratasys Direct

Selective Laser Sintering (SLS) is a 3D printing technology that creates tough and geometrically complex components for batch or serial manufacturing.

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multi jet fusion functional prototyping

Multi Jet Fusion (HP MJF) 3D Printing Service | Stratasys Direct

Learn more about Multi Jet Fusion printing technology and how it can provide a faster, more cost-effective process for 3D-printed parts.

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Somos WeatherX 100 P3 DLP 3D Printing | Stratasys Direct

P3™, an evolution of DLP 3D printing, produces finely detailed 3D-printed parts using high-performance materials.

PolyJet 3D Printing Technology | Stratasys Direct

PolyJet is a 3D printing technology that jets and cures layers of liquid photopolymer to build high-resolution models, prototypes and full color display models.

FDM 3D Printed Jig | Stratasys Direct

Get parts using the most widely used form of 3d printing from those who invented FDM®

SAF 3D Printing Technology | Stratasys Direct

Discover how Selective Absorption Fusion (SAF®) 3D printing technology operates and how it can be used to help lower production costs for your next project.

3D Printed SLS Assembled Car | Stratasys Direct

Selective Laser Sintering (SLS) is a 3D printing technology that creates tough and geometrically complex components for batch or serial manufacturing.

multi jet fusion functional prototyping

Learn more about Multi Jet Fusion printing technology and how it can provide a faster, more cost-effective process for 3D-printed parts.

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