Demystifying Stratasys: The Evolution of 3D Printing Services.

Introduction

In recent times, technological developments have hastily increased, changing not only industries and our society but also the way we perceive the world. Among this technological explosion, 3D printing holds a prominent position. A major player in the world of 3D printing is Stratasys; a company that has consistently pioneered cutting-edge technologies for more than three decades. This blog post will delve deep into how Stratasys has significantly altered the landscape of 3D printing services.

The Inception of Stratasys

Stratasys LTD was established in 1989, marking the beginning of a new era in manufacturing. The company was founded by Scott Crump, who wanted to create a toy frog for his daughter. Today, they are a globally recognized and respected brand, making an impact across industries from aerospace to healthcare. Two things have remained consistent over 30 years - a commitment to quality and the spirit of innovation.

The Evolution of Stratasys Printing Services

Over the past three decades, Stratasys has introduced a myriad of 3D printing technologies, contributing significantly to the industry's evolution. These groundbreaking introductions include Fused Deposition Modelling (FDM) and PolyJet technologies, which offer engineers and designers the ability to print parts with complex geometries and intricate details.

Stratasys' Fused Deposition Modelling (FDM) Technology

Fused Deposition Modelling, the brainchild of the company*s founder, Scott Crump, allows for the creation of parts with robust mechanical properties, making it a popular choice in industries where strength and durability are paramount. Industries such as aerospace, automotive and medical device manufacturing have harnessed the power of FDM, rapidly accelerating their product design and development processes.

Stratasys' PolyJet Technology

PolyJet technology takes 3D printing to a whole new level. By jetting ultra-thin layers of photopolymer material onto the build tray, it allows for the creation of models with intricate details and a smooth surface finish, thereby, serving industries such as architecture, education, and product design.

Stratasys' Impact on Different Industries

Given its extensive range of offerings, Stratasys has been able to cater to different industries' unique needs. For example, in healthcare, 3D printed anatomical models have been instrumental in enabling surgeons to plan surgeries with precision. In the automotive industry, Stratasys technology has been leveraged to create functional prototypes, reducing the time and cost associated with conventional manufacturing methods.

Stratasys' Commitment to Sustainable Manufacturing

Stratasys is not just transforming manufacturing, but also making it sustainable for future generations. With additive manufacturing, companies can now produce parts on-demand, reducing the need for inventory and decreasing waste. The company's technologies enable the efficient use of materials, ensuring high functionality with a minimal environmental footprint.

The Future with Stratasys

Stratasys' line of 3D printing services continues to evolve and improve. As the company explores new and innovative ways to serve its customers, the future of 3D printing seems brighter. From developing bio-compatible materials for medical applications to introducing new software for streamlined design processes, Stratasys continues to drive the industry forward.

Stratasys, through its innovative spirit and customer-centric attitudes, is leading the 3D printing industry with continued development and offerings. As they continue to break boundaries and foster creativity, the future of 3D printing services promises to be an exciting journey, punctuated by remarkable innovation. Keep an eye on Stratasys and the world of 3D printing because they are merely getting started.

stratasys 3d printing service

3D printing process

Different 3D printing processes have their own advantages and applicable scenarios, Sigma provides SLA process for Visual prototyping and SLS process for Functional prototyping.

3D printing materials

Plastics

One of the most commonly used 3D printing materials. These materials include ABS, PLA, PETG, TPU, PEEK, etc. Each material has different physical and chemical properties and can be suitable for different application scenarios.

Metal

Metal 3D printing materials include titanium alloy, aluminum alloy, stainless steel, nickel alloy, etc. Metal 3D printing can produce complex components and molds, with advantages such as high strength and high wear resistance.

Ceramic

Ceramic 3D printing materials include alumina, zirconia, silicate, etc. Ceramic 3D printing can produce high-precision ceramic products, such as ceramic parts, ceramic sculptures, etc.

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What can we do?

Sigma Technik Limited, as a prototype production company and rapid manufacturer focusing on rapid prototyping and low volume production of plastic and metal parts, has advanced manufacturing technology, one-stop service, diversified manufacturing methods, on-demand manufacturing services and efficient manufacturing processes, which can provide customers with high-quality, efficient and customized product manufacturing services and help customers improve product quality and market competitiveness.

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3D Printing FAQs

Poor printing quality may be caused by improper printer adjustment, material issues, or design issues. The solution includes adjusting printer settings, replacing materials, or redesigning the model.

The printing speed may be slow due to issues with the mechanical structure or control system of the printer. The solution includes upgrading printer hardware or adjusting printer settings

Possible poor adhesion of the printing bed due to surface or material issues. The solution includes replacing the surface of the printing bed, using a bottom coating, or replacing materials.

The printer may malfunction due to hardware or software issues. The solution includes checking and repairing printer hardware, updating printer software, or reinstalling drivers.