Ei Machine Tool Technology cover photo
Ei Machine Tool Technology

Ei Machine Tool Technology

工程服务

A welding engineering firm helping you with your process, equipment, and material needs.

关于我们

Provides process support on laser welding, laser micro-machining, resistance welding, and other specialty processes. Provides equipment know-how on many systems offered by Trumpf, Matuschek, Branson, Amada and others. Provides team support for qualifications and/or training needs.

网站
https://ei-mtt.com/
所属行业
工程服务
规模
1 人
类型
自有
领域
laser welding、laser ablation、reisistance welding、stainless steel、titanium、nickel alloys、disimilar metal welding、micro welding、battery welding、equipment training、welding engineering training和welding metallurgy

Ei Machine Tool Technology员工

动态

  • Glad to see the IQ/OQ support offering. This was something I definitely supported and see as a nice partnership perk.

    查看TRUMPF的组织主页

    196,685 位关注者

    Every MedTech product follows a journey, with the Approval phase being key for regulatory compliance and market entry. We can help accelerate the process: ?? Qualification of equipment: IQ/OQ services to meet industry standards ?? Compliance documentation: Aligning with FDA and MDR requirements ?? Process testing: Verifying stable, reliable, and compliant production ?? Team training: Ensuring correct procedures and high production standards Learn more about our qualification support: https://lnkd.in/gJyHTkja

  • On the medical side of things, there's a great benefit to a station with so much flexibility. Pulsing, CW, frequency change, dual core fiber (spatial profile changes), it's all rolled into one. I can show you how to effectively use all of these. And, save you time from knowing when to not! ??

    查看Kurt Erickson的档案

    Experienced, results driven engineer in welding and joining technologies

    Having some fun demonstrating what our stations can do. This is the TruLaser Station 7000 with a TruDisk 2000 Laser using motorized collimation to achieve a variety of things. Great flexibility!

  • Ei Machine Tool Technology转发了

    查看TRUMPF México的组织主页

    2,135 位关注者

    ? Soldadura de pulsos cortos: Precisión sin límites con TRUMPF ? Cuando se trata de unir materiales sensibles con la máxima precisión, la soldadura láser de pulsos cortos es la solución ideal. Gracias a su alta precisión y control térmico, permite realizar uniones limpias y sin deformaciones, incluso en piezas diminutas o materiales difíciles. ?? ?Por qué elegir la soldadura de pulsos cortos? ? Mínima afectación térmica: Evita deformaciones y da?os en materiales delicados. ? Uniones fuertes y precisas: Perfecto para electrónica, tecnología médica y más. ? Soldadura sin contacto: Resultados limpios, sin necesidad de material adicional. ?? Lleva tu producción al siguiente nivel con la tecnología de TRUMPF. ?? Descubre más aquí: https://bit.ly/4i2HT88 #SoldaduraLáser #InnovaciónTRUMPF #PrecisiónLáser #Industria4.0

  • Ei Machine Tool Technology转发了

    查看Kurt Erickson的档案

    Experienced, results driven engineer in welding and joining technologies

    There’s always something fun to do in Greenville. Come on out to this event on Feb 13. Just don’t use it for your valentines dinner. ??

    查看Gary Kagel的档案

    Senior Chemist - Analytical Chemistry

    Please Join us and if you can please RSVP to [email protected].

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  • Some nice growth in the Midlands. I like to see the partnership with SC business' and the tech colleges.

  • Ei Machine Tool Technology转发了

    查看Kurt Erickson的档案

    Experienced, results driven engineer in welding and joining technologies

    Sounds like a super role and it's great to see the focus brought to our tech college system. best of luck to you and the program's success. Kurt #lasermanufacturing #materials

    查看Joni Young的档案

    Training Instructor at readySC - SC Technical College System

    Excited to announce my new role as a Training Facilitator at readySC, a division of the SC Technical College System. It's been quite a journey these past few years! Grateful for the opportunity to contribute to readySC's core mission of driving economic growth in South Carolina. We offer tailored recruitment and training services to businesses creating new opportunities in the state through relocation or expansion. Cheers to celebrating good health and reconnecting in 2025!

  • A lot of cool things are possible when you get below 2ps. It's a great demonstration of the properties of energy transfer and using engineering to create a benefit!

    查看TRUMPF的组织主页

    196,685 位关注者

    What happens during the black marking process, and why is it such a game-changer? Let’s break it down. ?? Cold processing = No heat, no distortion Ultrashort laser pulses (pico- or femtosecond) deliver precise energy bursts - so short that they don't transfer heat to the material. This means no thermal stress, no cracks, just perfectly structured surfaces at the nanoscale. No distortion. No worries. ??? Durable oxide film for corrosion resistance During marking, a chromium oxide layer forms. This layer is self-healing and incredibly resilient - thanks to minimal heat exposure. The result? Super strong, corrosion-resistant markings that last. ?? Passivation: The final touch After marking, passivation removes free iron ions, improving the oxide layer’s durability and prepping it for even the harshest environments. ?? Why it matters Ultrashort pulse laser black marking isn’t just about precision. It’s about enhancing product lifespan in critical applications where failure is not an option. Whether you're working in medical technology, aerospace, or any other high-stakes industry, ensuring your components can withstand corrosion is non-negotiable. So, next time you see a black laser marking on a metal surface, you’ll know it’s not just about aesthetics - it’s a high-tech, corrosion-resistant masterpiece engineered at the nanoscale. ???

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  • We are starting this year with a focus on an industry sector - Heat Exchangers and Pillow Plate Manufacturing. Surface Functionalization can be created or improved through laser structuring. The common name for this is Laser Induced Periodic Surface Structuring (LIPSS). There's a lot of highly technical information on this structuring, but one of the minor items I find very interesting is that there is oftentimes a secondary structure perpendicular to the intended disruption, and this secondary structure has a periodic occurrence that is very close to the wavelength used to create the intended structure. So if you are using a Ti:Sapphire laser, for example, with ca. 800nm wavelength, there will likely be a periodic pattern very close to 800nm in size that is perpendicular to the smaller intended structure. This is useful in finding where you are on a sample and navigating around with and SEM when doing the evaluations. LIPSS can be used to change the performance of the surface: - Improve wear properties - Change wettability - Change optical properties (colors!) - Improve corrosion performance - Reduce bacterial growth / fouling Those last two seem pretty relevant for pillow plate manufacturing.

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