{"version":"1.0","type":"rich","provider_name":"techandbusiness.org","provider_url":"https://techandbusiness.org","title":"Foam-filled titanium lattice remains buoyant after structural damage","author_name":"techandbusiness.org · Tech & Business, Infrastructure","thumbnail_url":"https://assets.newatlas.com/dims4/default/1fef652/2147483647/strip/true/crop/2196x1153+0+156/resize/1200x630!/quality/90/?url=https%3A%2F%2Fnewatlas-brightspot.s3.ap-southeast-2.amazonaws.com%2F20%2F56%2F9b2e28994211ba0510d15c561cc8%2Ffloating-titanium-thumbnail-1.jpeg&na.image_optimisation=0","width":600,"height":400,"html":"<blockquote class=\"tb-newswire-embed\" style=\"max-width:600px;border-left:3px solid #22d3ee;padding:12px 16px;margin:0;font-family:-apple-system,system-ui,sans-serif;background:#09090b;border-radius:0 8px 8px 0;\">\n      <p style=\"margin:0 0 8px;font-size:10px;font-weight:600;letter-spacing:0.1em;color:#71717a;\">techandbusiness.org · Tech & Business, Infrastructure</p>\n      <p style=\"margin:0 0 8px;font-size:18px;font-weight:700;line-height:1.3;color:#fff;\"><a href=\"https://techandbusiness.org/newswire/Hknno4IIfL6QvglyEFpzh2\" style=\"color:#fff;text-decoration:none;\">Foam-filled titanium lattice remains buoyant after structural damage</a></p>\n      <p style=\"margin:0;font-size:14px;color:#a1a1aa;line-height:1.5;\">RMIT University researchers created a 3D-printed titanium lattice that floated in fresh water and seawater despite cracks, fractured connections and the loss of an entire lattice layer. The design use...</p>\n    </blockquote>"}