Have you checked out our Introduction to Nitinol Whitepaper yet? If not, download it today! This whitepaper is a reference for companies and engineers new to nitinol alloys with the goal of expediting the learning process. What topics to expect: - Key nitinol concepts - Nitinol ingot and wrought material - Semi-finished materials - Resonetics proven nitinol processing - Functional properties of nitinol - ASTM standard for nitinol alloy - Medical device design considerations - Nitinol finishing Click here to download: https://hubs.ly/Q02CJnfY0 #nitinol
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Director Business Development - Germany/Swizerland/Austria/Italy RESONETICS - The Leader in Advanced Engineering, Prototyping, Automation, and Micro Manufacturing for Life Sciences and MedTech
**Discover the Essentials of Nitinol with Our Comprehensive Whitepaper!** #nitinol #resonetics #withpaper
Have you checked out our Introduction to Nitinol Whitepaper yet? If not, download it today! This whitepaper is a reference for companies and engineers new to nitinol alloys with the goal of expediting the learning process. What topics to expect: - Key nitinol concepts - Nitinol ingot and wrought material - Semi-finished materials - Resonetics proven nitinol processing - Functional properties of nitinol - ASTM standard for nitinol alloy - Medical device design considerations - Nitinol finishing Click here to download: https://hubs.ly/Q02CJnfY0 #nitinol
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I've been using a version of this for years, giving it to engineers that are new to Nitinol. It's an excellent overview of the material, the processing, and the challenges of working with Nitinol. It's not a 'sales' presentation, it's a solid introduction that you'll want to keep as a handy reference for years! #ResoneticsNitinol #NitinolIntroduction #Nitinol
Want to learn about nitinol? Our 'Introduction to Nitinol' whitepaper is a reference for companies and engineers new to nitinol alloys with the main goal of expediting the learning process. Many concepts used every day by our engineers at Resonetics will be introduced. What can you expect to read about? - Key nitinol concepts - Nitinol ingot and wrought material - Semi-finished materials - Resonetics proven nitinol processing - Functional properties of nitinol - ASTM standard for nitinol alloy - Medical device design considerations - Nitinol finishing Click here to download: https://hubs.ly/Q02z4NDT0
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Want to learn about nitinol? Our 'Introduction to Nitinol' whitepaper is a reference for companies and engineers new to nitinol alloys with the main goal of expediting the learning process. Many concepts used every day by our engineers at Resonetics will be introduced. What can you expect to read about? - Key nitinol concepts - Nitinol ingot and wrought material - Semi-finished materials - Resonetics proven nitinol processing - Functional properties of nitinol - ASTM standard for nitinol alloy - Medical device design considerations - Nitinol finishing Click here to download: https://hubs.ly/Q02z4NDT0
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Watch our webinar on-demand on #Nitinol for #AdditiveManufacturing. Learn how to successfully use Nitinol for AM, including controlling chemistry from powder to finished part, matching print parameters to powder chemistry, and producing fully dense, near net shape components. Check out the webinar here: https://hubs.li/Q02mKtK70. #MetalAM #MetalPowder
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Titanium electrode plate 💝 A titanium electrode plate is a plate made of titanium that is used in electrochemical processes such as electroplating, electrowinning, and electrolysis. Titanium is an excellent material for electrode plates due to its unique properties. One of the benefits of using titanium electrode plates is their high corrosion resistance, making them perfect for use in harsh environments where other materials would corrode quickly. Additionally, titanium electrode plates have a high strength to weight ratio, making them lightweight and durable, which reduces maintenance needs and increases the lifespan of the electrode. Titanium electrode plates also have a low electrical resistance, which means they can conduct electricity efficiently and effectively, leading to better performance and productivity in electrochemical processes. In addition, titanium is biocompatible, which means it can be used in medical devices such as pacemakers and dental implants. Overall, the benefits of using titanium electrode plates make them a popular choice for many industrial and research applications. Their durability, corrosion resistance, and conductivity make them a reliable and cost-effective choice for a variety of electrochemical processes. Our company provides electrode plates, which can ensure quality, size, and accurate design. If you have any needs or questions, please contact us. We will always try to support our customers in the best way 💕 📞: 0931782260 (Ms Nene) 📧: sales03@shelllaiqi.com 🌐: http://shelllaiqi.com/ #titanium #electrode #electrochemical #titan #water #environment #plate #reusable #energy
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Auger Electron Spectroscopy (AES) is a surface analysis technique that helps manufactures understand more about the surfaces of their products. AES can help determine surface contamination but is also often used to measure the passivation layer of metal samples such as nitinol or stainless steel. These features are important in many industries, but in particular, the medical device industry, where preserving and protecting life is essential. A case study can be found using this link: https://lnkd.in/e-t8G5CT #MedicalDevices #StainlessSteel #NitinolStents
Nitinol Stent Material Analysis Using Auger Testing | Innovatech Labs
https://www.innovatechlabs.com
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Biomechanics to keep in mind for medical devices include the ability of an implant to resist compressive, tensile and shear forces, variations and degrees of freedom as well as the device’s mechanical properties such as elastic modulus, yield strength and elongation to failure. Materials such as metals and alloys, ceramics and polymers are of use in developing a broad range medical devices #testing #medicaldevices #TiniusOlsen https://lnkd.in/dYhN2KMG
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Medical devices in a range of forms are some of the biggest users of plasma and corona surface treatment. The treatments are usually automated, making them highly repeatable and have no requirement for dangerous chemicals while still giving a perfect surface for bonding or coating components. Medical implants usually have an even tighter requirement for quality and materials available to use. Strong adhesion between components for bonded implants is critical to avoid repeating an operation. It's also a smart consideration to use the right materials from the start of the design process and know that a surface treatment will give the right surface energy for processing down the line. This gives much greater design freedom and opens up smaller, lighter or smarter designs. Plasma will super clean the surface, leaving it with a ready to process finish. This technology is sensible for a wide range of materials, from fabrics and polymers, to metals. https://lnkd.in/em-8gCQp #surfacetreatmentsystems #sticktogether #redditch #plasmasurfacetreatments #coronasurfacetreatments #corona #plasma #PlasmaSurfaceTreatment #PlasmaPrinting
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📢Publication Alert📢 The article, "Manufacturing studies of a polymeric/composite heart valve prosthesis" by Mary Jialu Chen, Georgios Pappas, Caroline Smid, Cesarovic Nikola, Volkmar Falk, Paolo Ermanni is now available at Polymer Composites. In this article, a manufacturing processes for PEEK-based heart valve implants was developed, demonstrating a proof of concept for thermoforming of semi-crystalline PEEK leaflets. The effect of processing temperature on valve mechanical properties was also studied. New heart valve designs are enabled using autoclave processing and vacuum forming. #heartvalve #manufacturing The full article can be found here: https://lnkd.in/eVDPQQDV
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Tantalum Metal Foam: An In-Depth Guide #tantalum #metalfoam Tantalum metal foam is a porous material created from tantalum metal. This innovative material combines the inherent properties of tantalum with the benefits of a foam structure, including high surface area, low density, and enhanced mechanical properties. It is used in medical implants, heat exchangers, filtration systems, catalysts, and energy storage devices.
Tantalum Metal Foam: An In-Depth Guide
samaterials.com
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