#superelastic
A painting to show my love of Valencia Grace's song Super Elastic

#fanart #digitalart #procreate #valenciagrace #fanartfriday #superelastic
September 5, 2025 at 7:37 AM
Metallurgists have designed an extraordinary titanium alloy that is light, strong and flexible, and which recovers its original shape after large amounts of deformation — even when as cold as liquid helium or hotter than boiling water.

🧪
www.nature.com/articles/d41...
Superelastic titanium alloy has potential for space missions
A lightweight but strong alloy that recovers its shape after deformation.
www.nature.com
March 2, 2025 at 5:17 PM
Superelastic Tire | T2 Portal
technology.nasa.gov
May 15, 2025 at 5:19 PM
Superelastic Alloy Stays Strong from Liquid Helium to Boiling Water, Transforming Space and Medicine

Source: SciTechDaily
search.app/TKX7
Superelastic Alloy Stays Strong from Liquid Helium to Boiling Water, Transforming Space and Medicine
Researchers have unveiled a groundbreaking titanium-aluminum alloy that maintains superelasticity across an unprecedented temperature range, from -269°C to +127°C. This innovation could revolutionize ...
search.app
March 6, 2025 at 1:58 PM
I thought the flex nibs were just that there wasn't much demand for them? Since everyone's just internalized "cursive is illegible".

(and now I'm forced to wonder if the various superelastic nitinols react badly to ink)
July 23, 2026 at 8:21 AM
Discover a new lightweight and strong titanium-aluminum alloy with superelastic capabilities across extreme temperatures, from space missions to medical devices.
Tohoku University Unveils Revolutionary Titanium-Aluminum Superelastic Alloy
Discover a new lightweight and strong titanium-aluminum alloy with superelastic capabilities across extreme temperatures, from space missions to medical devices.
www.science-tldr.com
February 28, 2025 at 8:17 AM
Is it superelastic bubble plastic?

Or maybe anti-electric hypomath?
February 28, 2025 at 12:34 AM
Superelastic Alloy Stays Strong from Liquid Helium to Boiling Water, Transforming Space and Medicine
scitechdaily.com/superelastic...
Superelastic Alloy Stays Strong from Liquid Helium to Boiling Water, Transforming Space and Medicine
Researchers have unveiled a groundbreaking titanium-aluminum alloy that maintains superelasticity across an unprecedented temperature range, from -269°C to +127°C. This innovation could revolutionize ...
scitechdaily.com
March 2, 2025 at 1:57 PM
A new titanium-aluminum superelastic alloy functions from -269°C to +127°C, offering potential for space exploration and medical applications due to its strength and flexibility. doi.org/g86ksr
Superelastic alloy that functions in extreme temperatures could aid space exploration
Researchers at Tohoku University have developed a titanium-aluminum (Ti-Al)-based superelastic alloy. This new material is not only lightweight but also strong, offering the unique superelastic capability to function across a broad temperature range—from as low as -269°C, the temperature of liquid helium, to +127°C, which is above the boiling point of water.
techxplore.com
February 27, 2025 at 3:47 PM
🛠️🌡️ Titanyum-alüminyum (Ti-Al) bazlı süper elastik bir alaşım geliştirmişler. Bu yeni malzeme, son derece hafif ve güçlü olup, -269 °C ile +127 °C arasında geniş bir sıcaklık aralığında çalışabiliyormuş. Bu uzay araştırmaları ve tıbbi cihazlar gibi alanlarda önemli uygulamalara olanak tanıyor. 🌌
A Lightweight Flexible Alloy for Extreme Temperatures
Strong, lightweight, superelastic, and able to function across a range of temperatures, this newly developed alloy has huge potential.
www.tohoku.ac.jp
February 28, 2025 at 3:02 PM
Superelastic was a single, if that helps! Just spent a few mins looking for my copy (which I got at the time, not from the 50p bin)
July 25, 2024 at 9:45 AM
Researchers developed superelastic NiTi #scaffolds with tunable mechanical and #MassTransfer properties via multiscale optimization and gyroid-sheet design, offering solutions for #BoneRepair & multifunctional #Metamaterials.
#MaterialsScience

#IJEM: doi.org/10.1088/2631...
October 19, 2025 at 1:13 PM
not even in a horny way but i surprisingly often think about just how much sense it makes that a superelastic person can survive sex with a superstrong person. thats what makes the incredibles so great
August 18, 2026 at 12:37 AM
The latest issue of Materials Futures is available, featuring breakthrough research in perovskite cells, TENGs, and superelastic alloys .

💎 All diamond open access and free to read.
🌟 Proudly affiliated with Songshan Lake Materials Laboratory.

Discover 👉 https://ow.ly/tp2A50XgLwy
October 27, 2025 at 10:00 AM
📽️ Here, we can see a superelastic #NiTi braided architected material (BAM) undergoing impact testing.

It is subjected to a lower-velocity impact with an energy of 8 joules (left), while the same material experiences a higher-velocity impact with an energy of 64 joules (right).
September 17, 2026 at 4:31 PM
The most unbelievable part of The Fantastic 4 film isn't the flying flaming man or the superstrong man made of rocks or the superelastic man or Invisible woman or even flying space gods that devour planets, but actually the thought that all of humanity coming together in such a way. Incredible.
September 11, 2025 at 8:17 PM
Flexible High-Aspect-Ratio COF Nanofibers: Defect-Engineered Synthesis, Superelastic Aerogels, and Uranium Extraction Applications
Binbin Fan, Jianyong Yu, Xueli Wang*, Yang Si* & Peixin Tang*
Nano-Micro Lett. 18, 142 (2026).
doi.org/10.1007/s408...
Flexible High-Aspect-Ratio COF Nanofibers: Defect-Engineered Synthesis, Superelastic Aerogels, and Uranium Extraction Applications - Nano-Micro Letters
The lack of macro-continuity and mechanical strength of covalent organic frameworks (COFs) has significantly limited their practical applications. Here, we propose an “alcohol-triggered defect cleavage” strategy to precisely regulate the growth and stacking of COF grains through a moderate reversed Schiff base reaction, realizing the direct synthesis of COF nanofibers (CNFs) with high aspect ratio (L/D = 103.05) and long length (> 20 μm). An individual CNF exhibits a biomimetic scale-like architecture, achieving superior flexibility and fatigue resistance under dynamic bending via a multiscale stress dissipation mechanism. Taking advantages of these structural features, we engineer CNF aerogels (CNF-As) with programmable porous structures (e.g., honeycomb, lamellar, isotropic) via directional ice-template methodology. CNF-As demonstrate 100% COF content, high specific surface area (396.15 m2 g−1) and superelasticity (~ 0% elastic deformation after 500 compression cycles at 50% strain), outperforming most COF-based counterparts. Compared with the conventional COF aerogels, the unique structural features of CNF-A enable it to perform outstandingly in uranium extraction, with an 11.72-fold increment in adsorption capacity (920.12 mg g−1) and adsorption rate (89.9%), and a 2.48-fold improvement in selectivity (U/V = 2.31). This study provides a direct strategy for the development of next-generation COF materials with outstanding functionality and structural robustness.
doi.org
April 19, 2026 at 12:25 PM
Quickly whipped up bellow design for sidways FFF 3D printing. (And perhaps future mechanosynthesis of nanoscale superelastic gemstone crystolecules?)
www.printables.com/model/129822...
Square Bellow Chamfered by mechadense | Download free STL model | Printables.com
Just an experimental bellow for sideaways printing. Some notes on (co)-design-for-nanoscale in the description. | Download free 3D printable STL models
www.printables.com
May 17, 2025 at 8:44 AM
it's live — https://minomobi.com/superelastic/

Skipped g/'s WebGPU shelf (different origin, can't import cross-subdomain) for real canvas2D restitution physics instead. The threshold is genuinely emergent from the collision rule, not scripted. Crystallization and a leaderboard are next.
Superelastic — a crowd that heats itself up with no motor in sight
Dots that individually just sit and buzz — no self-propulsion at all. Turn up how crowded they are, or how much extra energy each collision injects, and a quiet canvas can flip into a jittering gas with nothing driving it but its own collisions.
minomobi.com
August 10, 2026 at 5:12 AM
Bernard Parent: Superelastic Heating in Treanor-Gordiets Plasmas: A Unified Analytic Closure https://arxiv.org/abs/2601.20734 https://arxiv.org/pdf/2601.20734 https://arxiv.org/html/2601.20734
January 29, 2026 at 6:49 AM
This #IJEM study demonstrates superelastic NiTi scaffolds with highly tuneable mechanical and mass transfer properties as a versatile platform for the development of patient-specific bone implants with optimized bio-integration.
#OpenAccess: doi.org/10.1088/2631...
April 5, 2026 at 10:00 AM