A big milestone deserves a special celebration. We were thrilled to welcome 37 Stratasys kids who are about to begin their first day of first grade. Together with their families, they enjoyed a fun-filled event packed with creativity, games, laughter, and plenty of excitement for the journey ahead. Wishing all of our future first graders an incredible school year filled with curiosity, friendships, and new adventures. We can't wait to see all they'll accomplish. A special thank you to Noam Ben Ari for organizing such a wonderful event, and to Tamir Algranati for the warm welcome and helping make the day so memorable. 💙 #StratasysKids #PeopleFirst #WeMakeItTogether #3DPrintABetterTomorrow #MiraRatzon #ChenZoref #SmartCatering #Miracle #AddStratasys #MakeAdditiveWorkForYou
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Stratasys develops industrial grade additive solutions to help you solve critical design and manufacturing challenges, right along your production cycle. Working with you to push the boundaries of what’s possible. And thrive in a changing world. Make additive work for you™.
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https://www.stratasys.com?utm_campaign=gen-corbra&utm_medium=social&utm_source=linkedin
Externer Link zu Stratasys
- Branche
- Herstellung von Industriemaschinen
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- 1.001–5.000 Beschäftigte
- Hauptsitz
- Rehovot
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- Kapitalgesellschaft (AG, GmbH, UG etc.)
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- 3D printing, rapid prototyping, fused deposition modeling (FDM), Additive Manufacturing, carbon fiber, PolyJet, SAF, P3, Stereolithography, 3D Printer und Make additive work for you
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Beschäftigte von Stratasys
Updates
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Delivering on manufacturing-focused strategy. Record consumables revenue. Strong Aerospace & Defense growth. Q2 highlighted the growing adoption of additive manufacturing in production environments, driven by manufacturing applications and increasing demand from high-value industries. Made for Manufacturing. Proven in Production. #Stratasys #AdvancedManufacturing #AerospaceAndDefense #Reliability #Efficiency #Speed #AdditiveManufacturing #WeMakeAdditiveWorkForYou
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Stratasys welcomes the publication of ASTM International's Strategic Guide to Certification of Additively Manufactured Parts in Defense Applications. Developed by the ASTM Additive Manufacturing Center of Excellence in support of the UK Ministry of Defence’s Project TAMPA, the guide brings clarity to the evidence required before an additively manufactured part can be accepted for service. By structuring expectations around part criticality, it can help pave the way for wider adoption of AM across air, land, and maritime defense applications. For Stratasys, the guide reinforces an approach we have invested in for years: reliable additive manufacturing depends on more than material performance alone. It requires controlled materials, documented processes, trained operators, traceability, build records, and proven repeatability. Our published FDM characterization study provides one clear proof point: more than 1,200 builds across 16 systems and three materials, examining mechanical consistency, dimensional performance, machine-to-machine variation, and repeatability over time. Stratasys technologies, materials, and workflows are already used within qualification pathways across multiple aerospace and defense programs with over 100 parts on the Orion spacecraft and replacement parts flying on C-17 aircraft. Our initial engineering review indicates strong alignment with many foundational expectations, including process control, traceability, operator training, and qualification evidence. Qualification remains application-specific and subject to the design organization and authority. ASTM is helping clarify the path, and Stratasys has already built the engineering foundation needed to help customers move applications forward with confidence. [Download the ASTM Strategic Guide] https://lnkd.in/guvfPF-E [Download the Stratasys FDM repeatability study] https://lnkd.in/ek4YeuBt #AdditiveManufacturing #DefenseManufacturing #AerospaceAndDefense #Qualification
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Stratasys has been awarded $7.8 million in funding through America Makes and the United States Department of War Organic Industrial Base Modernization Challenge to help advance production-ready AM. The initiative will focus on in-process quality assurance capabilities for the F3300 and F900 platforms. John Wilczynski, Executive Director of America Makes, noted, the partnership is about "building greater trust in the manufacturing process and generating the data needed to support qualification." By enabling quality data capture during production, manufacturers can reduce inspection burdens, streamline qualification, and scale additive manufacturing with greater confidence. Read more: https://bit.ly/4g4mM61 #AdditiveManufacturing #AdvancedManufacturing #ManufacturingInnovation #3DPrinting
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One impressive 3D printed part is easy to showcase. Manufacturing thousands of consistent parts is the real test. In our latest blog, Neil Hopkinson 🦕, the original inventor of printhead-based polymer powder bed fusion technologies, looks at what really matters in PPBF manufacturing: repeatability, nesting density, powder refresh, part quality, and cost per part. As PPBF moves further into production, transparency matters more than ever. Read the full blog to learn what questions manufacturers should be asking: https://bit.ly/4fPoXdh
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How much can we stretch our newest silicone before it breaks? 500%? 600%? Will it do better than its industrial sibling? Take a seat, grab some popcorn and watch. Yaniv Hirschsohn Shin-Etsu Silicones Europe B.V. Shin-Etsu Silicones of America
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What does industrial additive manufacturing actually look like on the factory floor? We recently hosted TITANS of CNC at our North American HQ, where our technical experts broke down each platform in our portfolio - along with actual production use cases driving industrial AM adoption on the production floor. If you’ve been wondering where industrial AM fits into your production strategy, here is a tour of our Stratasys Direct Manufacturing facility!
Inside Stratasys' RESTRICTED 3D Printing Facility https://lnkd.in/evzRpqjd #titansofcnc #cnc #cncmachining #cncmachinist #machining #innovation #technology
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Meet P3™ Deflect 110, a strong, high-temperature engineering resin for the Origin® P3 DLP workflow. With a heat deflection temperature of 110°C / 230°F, high stiffness, strong chemical resistance, and long-term UV stability, P3 Deflect 110 helps you move beyond prototypes and produce rigid, durable end-use parts with confidence. From automotive under-the-hood components to industrial brackets, housings, connectors, jigs, and fixtures, this material is built for demanding applications where performance matters. Your next production part doesn’t have to wait for tooling. #3DPrinting #AdditiveManufacturing #DLPPrinting #ProductionParts #EngineeringResin #AutomotiveManufacturing
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Medical OEMs don't need another way to print prototypes. They need a faster way to reduce development risk. One of the biggest challenges in medical device development is that prototype parts often don't behave like the final molded product. Engineers can validate geometry, fit and assembly—but when it comes to compression, sealing, rebound, aging or long-term performance, prototype materials frequently fall short. That's where injection-molding-quality additive manufacturing changes the equation. When a printed part matches the performance of its molded counterpart, it becomes possible to: • Generate production-representative validation data earlier • Evaluate functional performance before investing in tooling • Delay costly mold decisions until designs are mature • Produce low-volume parts without compromising material performance This is especially important for silicone components such as seals, gaskets, valves and patient-contact interfaces, where material behavior is just as critical as geometry. That's why we developed P3™ MED Silicone 25A together with Shin-Etsu Silicones Europe B.V. for our Origin P3 DLP system. It produces biocompatible silicone parts with the properties engineers expect from molded silicone—bringing production-representative performance much earlier into the development process. For medical OEMs, that means fewer compromises between prototyping and production, faster design validation, greater confidence before tooling is ever cut and low volumes at affordable cost. Shin-Etsu Silicones of America