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#peek — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #peek, aggregated by home.social.

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  1. The #Optimus #humanoid #robot 🤖 is made of #PolyetherEtherKetone, a polymer offering rigidity, toughness, mechanical strength, and excellent resistance to heat, wear, and corrosion lft-g.com/blog/the-future-of-r

    Polyether ether ketone composite (#PEEK) also possesses good physicochemical properties such as #radiation ☢️ resistance, high/low 🌡️❄️ #temperature resistance, and low vacuum 🌌 #outgassing sciencedirect.com/science/arti

    #PEEK in #NASA's outgassing database etd.gsfc.nasa.gov/capabilities

    #SpaceRobot

  2. 🚨 Oh, look! Google's latest magic trick involves sneaking a ginormous #AI model onto your device—because who needs #storage space or #privacy, right? Meanwhile, the article itself is as "available" as your personal data 🙄.
    thatprivacyguy.com/blog/chrome #Google #Sneak #Peek #TechNews #HackerNews #ngated

  3. The basis of #Michelin’s lunar tire 🛞 is an airless design using polyether ether ketone (#PEEK) thermoplastic that has a useful operating temperature up to 250C 🌡️. The material must be soft and flexible but also rigid. The contact surface is wide like a snowshoe because the regolith is fluffy and volatile, so this will be needed to maintain traction. Michelin also uses an extinct volcano as part of its testing process, because the fine rocky dust is both soft and abrasive forbes.com/sites/jamesmorris/2

  4. oh and the community conversation, and me talking while designing/building is #peek on the userandagents.com Discord.

    User & Agents

  5. 最強ファイル管理ソフトの一角「Files」が「PowerToys」とタッグ、最新のv4.0.24で/スペースキーでファイルの内容を気軽に確認できる「プレビュー」(Peek)が利用できる
    forest.watch.impress.co.jp/doc

    #forest_watch_impress #Peek #ファイル管理 #PowerToys #Files #システム_ファイル #ファイル #Windows

  6. Sigh... The more I look at this guy, the more I want him. I love his beard, it's absolutely perfect. I love his fur, his natural build, and of course, his hot thick cock. It's the perfect size with a bit of girth. Girth always wins over length. Put all that together and you're in for a real good time. Damn--he'd feel so good...

    #joe schmoe, #beefy, #hairy, #peek a pit, #perfect beard, #hot cock, #perfect size, #girth, #would feel so good

    mastodon.social/@Pookey@mstdn.

  7. @EC64 Reminds me of the Compaq lunchbox-format computer I had for a while circa 1986.
    But a Commodore PET was my first "real" computer, so I'll take it.
    #PEEK #POKE

  8. Hi folks,
    Like the madman I am I've been working a lot on #storyboards for my #comic the past days. So far I have sketched 13 #pages for the next #chapter and am still at its beginning.
    Here's another #peek at the #sketches. Long chapter will be long…
    #furry #art #furryart

  9. Hi folks,
    As I kinda announced on Thursday, I'm working on my #webcomic, currently on the next chapter's #storyboards. I enclosed a little #peek at them.
    Please bear with me as I work on this #comic. I know the pace is slow, yet I do as much as I can. More updates soon.
    #furry #art #furryart

  10. Tullomer: The Future of 3D Printing – Stronger Than Steel and More Accessible Than Ever!

    991 words, 5 minutes read time.

    In the ever-evolving world of 3D printing, the demand for stronger, more durable materials is growing rapidly. For industries such as aerospace, automotive, and medical, having access to materials that not only perform well but also are affordable and accessible is essential. Enter Tullomer, an innovative filament by Z-Polymers that has the potential to change the way we think about 3D printing. It’s stronger than steel, offers properties superior to high-performance polymers like PEEK and ULTEM, and can even be printed on consumer-grade 3D printers. Let’s dive into how Tullomer is making waves in the 3D printing community and what this means for the future of manufacturing.

    1. What is Tullomer?

    Tullomer is an advanced 3D printing material developed by Z-Polymers, a company that specializes in high-performance polymers designed for 3D printing. Unlike many filaments currently available, Tullomer combines the strength and heat resistance of traditional engineering plastics with the user-friendly nature of materials designed for home and small-scale 3D printing. This breakthrough filament is positioned as a solution that bridges the gap between industrial-grade materials and consumer-grade 3D printing, making it accessible for a wider range of users, from hobbyists to large-scale manufacturers.

    2. How Tullomer Stands Out in the 3D Printing World

    When it comes to high-performance materials, PEEK and ULTEM are typically the gold standard. These materials are known for their ability to withstand extreme temperatures, chemical exposure, and mechanical stress. However, they come with their own set of challenges, primarily their high cost and the need for specialized, industrial-grade 3D printers to work with them. Tullomer, on the other hand, offers comparable strength and heat resistance but is designed to be used on consumer-grade 3D printers.

    In fact, Tullomer has been described as stronger than steel, offering tensile strength and durability that makes it ideal for creating functional parts that are exposed to wear and tear. Tullomer’s ability to be printed on widely available 3D printers significantly lowers the barrier to entry for industries that need high-performance materials but don’t want to invest in expensive equipment.

    3. The Science Behind Tullomer’s Strength

    So, what makes Tullomer stronger than steel? The material’s unique molecular composition is key to its impressive properties. It’s designed to withstand high temperatures—up to 300°C or more—while maintaining its structural integrity. Its tensile strength is comparable to that of steel, but it’s much lighter, which is crucial for industries like aerospace, where weight reduction is vital.

    The advanced polymer structure of Tullomer provides high resistance to impact and wear, meaning that parts printed with this filament won’t degrade quickly under stress. Whether you’re designing functional prototypes or end-use parts, Tullomer offers the durability required in harsh environments. This makes it suitable for applications in sectors like automotive, aerospace, and even medical devices, where strength and precision are essential.

    4. Why Consumer 3D Printers Are Perfect for Tullomer

    One of the most exciting aspects of Tullomer is that it can be used on consumer-grade 3D printers. Traditional high-performance materials like PEEK and ULTEM require expensive 3D printers with specialized hotends and heated beds. In contrast, Tullomer is designed to be compatible with a wide range of 3D printers, including models from Prusa, Creality, and Ultimaker. This makes it possible for more people—from hobbyists to professionals—to access the material and start creating high-performance parts.

    The accessibility of Tullomer on consumer 3D printers opens up a world of possibilities. Engineers and designers can now experiment with high-end materials without the need for industrial equipment. This democratization of 3D printing materials will likely lead to a surge in innovation, as users will be able to quickly iterate and produce prototypes that would have otherwise been too costly or difficult to manufacture.

    5. Real-World Applications for Tullomer in 3D Printing

    With its remarkable properties, Tullomer has vast potential for real-world applications. Here are a few industries where Tullomer is already making an impact:

    • Aerospace: Tullomer’s strength-to-weight ratio is perfect for lightweight aerospace components. It can be used for parts like brackets, connectors, and housings, which need to be both strong and lightweight.
    • Automotive: In automotive manufacturing, parts must endure high temperatures and constant mechanical stress. Tullomer’s heat resistance and durability make it ideal for creating functional parts, prototypes, and tooling.
    • Medical Devices: Tullomer’s biocompatibility and strength make it suitable for creating medical devices or tools that need to perform in extreme conditions, such as high temperatures or chemical exposure.
    • Prototyping and End-Use Parts: Many industries rely on functional prototypes for testing new designs. Tullomer’s exceptional properties make it an ideal choice for prototyping, as it can simulate the performance of the final product even in early stages.

    6. The Future of Tullomer and 3D Printing

    As the world of 3D printing continues to advance, materials like Tullomer are paving the way for new possibilities in manufacturing. The combination of strength, affordability, and accessibility is a game-changer for industries that have been limited by the high cost of traditional materials. We can expect to see Tullomer being used in an increasing number of applications as it continues to gain traction in the 3D printing community.

    The future of manufacturing lies in high-performance, cost-effective materials like Tullomer. As more industries adopt 3D printing for production, materials that offer superior properties at a lower cost will be in high demand. Tullomer is at the forefront of this revolution, helping to shape the future of manufacturing.

    Conclusion: Why Tullomer is the Game-Changer in 3D Printing

    Tullomer is a groundbreaking 3D printing material that combines strength, heat resistance, and accessibility, making it ideal for a variety of industries. By providing properties that rival traditional high-performance materials like PEEK and ULTEM, Tullomer is a game-changer in the world of 3D printing. Its compatibility with consumer-grade 3D printers opens up a world of possibilities for hobbyists, engineers, and manufacturers alike. As 3D printing continues to evolve, materials like Tullomer will play a key role in shaping the future of manufacturing.

    D. Bryan King

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