Difference between revisions of "project01:Frontpage"
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==Benjamin Kemper== | ==Benjamin Kemper== | ||
− | < | + | <html> |
− | + | <iframe width="850" height="350" src="https://www.youtube.com/embed/V1bd6gdyaT4?modestbranding=1&autohide=1&showinfo=0&controls=0&autoplay=1&loop=1&playlist=V1bd6gdyaT4" frameborder="0" ></iframe | |
+ | </html> | ||
− | <div style="float:left; width: | + | <div style="height:30px; width: 870px; margin:0px; padding: 0px; padding-top: 20px; border: 0px;"> |
+ | <div style="float:left; width: 109px; height 30px; font-color: #323232; border: 2px solid #904e95; background-color: #e6e6e6; margin-right:10px;" align="center">[[project01:Frontpage|'''ROOGOTFL''']]</div> | ||
− | <div style="float:left; width: | + | <div style="float:left; width: 109px; height 30px; font-color: #323232; border: 2px solid #9d5189; background-color: #e6e6e6; margin-right:10px;" align="center">[[project01:P1|'''P1 ''']]</div> |
− | <div style="float:left; width: | + | <div style="float:left; width: 109px; height 30px; font-color: #323232; border: 2px solid #a9547e; background-color: #e6e6e6; margin-right:10px;" align="center">[[project01:P2|'''P2 ''']]</div> |
− | <div style="float:left; width: | + | <div style="float:left; width: 109px; height 30px; font-color: #323232; border: 2px solid #b65772; background-color: #e6e6e6; margin-right:10px;" align="center">[[project01:P3|'''P3 ''']]</div> |
− | <div style="float:left; width: | + | <div style="float:left; width: 109px; height 30px; font-color: #323232; border: 2px solid #c35b66; background-color: #e6e6e6; margin-right:10px;" align="center">[[project01:P4|'''P4 ''']]</div> |
+ | |||
+ | <div style="float:left; width: 109px; height 30px; font-color: #323232; border: 2px solid #d05e5a; background-color: #e6e6e6; margin-right:10px;" align="center">[[project01:diverse|'''Diverse ''']]</div> | ||
+ | |||
+ | <div style="float:left; width: 109px; height 30px; font-color: #323232; border: 2px solid #dc614f; background-color: #e6e6e6; margin-right:10px;" align="center">[[project01:comments|'''P5''']]</div> | ||
</div> | </div> | ||
==Running Out Of Gas On The Fast Lane== | ==Running Out Of Gas On The Fast Lane== | ||
+ | <i>Repurpose of abandoned drilling rigs in the North Sea (in 20-50 years)</i> | ||
+ | <br><br> | ||
+ | <div align="justify"> Eventually either the oil and gas supply will be exhausted, or society will develop methods to rely completely on eco-friendly energy sources. What will then happen to the oil industry and their factories and structures? In this hypothetical situation, offshore drilling rigs, structures made of billions of euros worth of steel and concrete, will need to be repurposed. These highly sophisticated platforms and jackets resist storms, frequent waves (resonance), and salt water. These abandoned rigs provide society with the opportunity to repurpose, and even extend the site over and under water. | ||
+ | |||
+ | Humans are facing the dangerous consequences of the climate change. Especially the population of the Netherlands, which has to face rising sea levels. An undesired, nor not impossible scenario, would be the loss of livable land due to flooding. The loss of building and living area would result in drastic changes to the means of life. On the one hand, we need to research possibilities to slow down the process, and also change our way of life. However, on the other hand, we must look for concepts and design proposals to support a lifestyle with radical climate changes. | ||
+ | |||
+ | Our society, human behavior, and cities are changing due to the exponential progress of technology. How are we going to live in a future, and which role will architecture play in an augmented world? It might emerge as a balancing act between utopia and dystopia, between the total dependency and repression of the machines and the freedom to achieve more than we ever imagined. Society’s addiction to technical devices emphasizes the urgency at hand to begin to work with new technologies instead of denying the process categorically. | ||
+ | |||
+ | Status Quo: http://rbse.hyperbody.nl/index.php/project01:P2 | ||
+ | </div> | ||
+ | <br> | ||
+ | |||
+ | ==Project Video== | ||
+ | |||
+ | <!--ROOGOTFL : Project Video--> | ||
<html> | <html> | ||
− | <iframe width= | + | <iframe width="850" height="478" src="https://www.youtube.com/embed/sN-OzVDpeGg?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> |
</html> | </html> | ||
− | |||
+ | ==TU Delft TV Video== | ||
+ | |||
+ | <!--ROOGOTFL : TU Delft TV--> | ||
<html> | <html> | ||
− | <iframe src="https://www. | + | <iframe width="850" height="478" src="https://www.youtube.com/embed/RHbnzmr-EdM?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> |
</html> | </html> | ||
− | + | ||
+ | ==P5 Preparation== | ||
+ | |||
+ | [[File: Bnk-twinmotion.jpg | 850px]] | ||
<html> | <html> | ||
− | < | + | <script type="text/javascript" src="https://www.windfinder.com/widget/forecast/js/maasvlakte?unit_wave=m&unit_rain=mm&unit_temperature=c&unit_wind=kmh&columns=3&days=3&show_day=1"></script><noscript><a rel='nofollow' href='https://www.windfinder.com/forecast/maasvlakte?utm_source=forecast&utm_medium=web&utm_campaign=homepageweather&utm_content=noscript-forecast'>Wind forecast for Maasvlakte</noscript> |
</html> | </html> | ||
− | |||
− | + | <html> | |
− | < | + | <IFRAME SRC="https://api.buienradar.nl/image/1.0/RadarMapNL?w=500&h=500" NORESIZE SCROLLING=NO HSPACE=0 VSPACE=0 FRAMEBORDER=0 MARGINHEIGHT=0 MARGINWIDTH=0 WIDTH=500 HEIGHT=500></IFRAME> |
+ | </html> | ||
− | [[File: | + | ==Soft Architecture Proposal== |
− | <br> | + | |
+ | ===0. Status Quo=== | ||
+ | |||
+ | ====Wind Analysis==== | ||
+ | |||
+ | <!--ROOGOTFL : Wind Analysis - Side View--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/F82poyiX6dc?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | <!--ROOGOTFL : Wind Analysis - Top View--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/YgGs69z8w38?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | ====Inspiration==== | ||
+ | |||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/a6g7aqILL3Y?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | ====Prototype 1st Iteration==== | ||
+ | |||
+ | <!--ROOGOTFL : Prototyping - Silicone Cell Types - 1st Iteration--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/g2SQVl-9zD8?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | ====Prototype 2nd Iteration==== | ||
+ | |||
+ | [[File: 170906_siliocne-print_pattern-02.jpg | 850px]] | ||
+ | |||
+ | <!--ROOGOTFL : Prototyping - Silicone Cell Types - 2nd Iteration 1--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/peZwXztmtJA?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | <!--ROOGOTFL : Prototyping - Silicone Cell Types - 2nd Iteration 2--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/4aYlnDMw96A?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | <!--ROOGOTFL : Prototyping - Silicone Cell Types - 2nd Iteration 3--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/zFnqrJcto3M?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | <!--ROOGOTFL : Prototyping - Silicone Cell Types - 2nd Iteration 4--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/KiT9E5OEUyI?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | [[File: 170906_siliocne-print_pattern-0215.jpg | 850px]] | ||
+ | |||
+ | [[File: 170906_siliocne-print_pattern-022.jpg | 138px]] | ||
+ | [[File: 170906_siliocne-print_pattern-023.jpg | 138px]] | ||
+ | [[File: 170906_siliocne-print_pattern-024.jpg | 138px]] | ||
+ | [[File: 170906_siliocne-print_pattern-025.jpg | 138px]] | ||
+ | [[File: 170906_siliocne-print_pattern-026.jpg | 138px]] | ||
+ | [[File: 170906_siliocne-print_pattern-027.jpg | 138px]] | ||
+ | |||
+ | [[File: 170906_siliocne-print_pattern-028.jpg | 138px]] | ||
+ | [[File: 170906_siliocne-print_pattern-029.jpg | 138px]] | ||
+ | [[File: 170906_siliocne-print_pattern-0210.jpg | 138px]] | ||
+ | [[File: 170906_siliocne-print_pattern-0211.jpg | 138px]] | ||
+ | [[File: 170906_siliocne-print_pattern-0213.jpg | 138px]] | ||
+ | [[File: 170906_siliocne-print_pattern-0214.jpg | 138px]] | ||
+ | |||
+ | [[File: 170906_siliocne-print_pattern-0212.jpg | 850px]] | ||
+ | |||
+ | ===I. Prototype Fragment=== | ||
+ | |||
+ | <!--fragment prototype--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/CCtQweUxoxY?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | <!--prototype force flow--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/-6Vu1GyYSbk?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | <!--[[File: 170321_teaser-prototype.jpg | 850px]]--> | ||
+ | |||
+ | <!--prototype force flow - stress curves 4k--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/eb-eYaMGw3o?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | ===II. Silicone=== | ||
+ | |||
+ | [[File: 170327_silicone-properties.jpg | 850px]] | ||
+ | |||
+ | |||
+ | <b>Silicone Company</b><br> | ||
+ | <html><a href="https://www.wacker.com/cms/en/products/brands/elastosil/elastosil.jsp">Wacker Silicones</a></html> | ||
+ | |||
+ | <b>Recipe</b> (Components)<br> | ||
+ | <center><font size="4">SILICONE RUBBER</font> (e.g. <html><a href="https://www.wacker.com/cms/en/products/product/product.jsp?product=9121">Elastosil® M 4512</a></html>)</center><br> | ||
+ | <center><font size="4">+</font></center><br> | ||
+ | <center><font size="4">CATALYST A</font> (e.g. <html><a href="http://sdb.wacker.com/pf/e/result/report.jsp?P_LANGU=D&P_SYS=2&P_SSN=7014&P_REP=00000000000000000008&P_RES=9544&P_SPEC=R">Wacker® Catalyst T 51</a></html>)</center><br> | ||
+ | <center><font size="4">+</font></center><br> | ||
+ | <center><font size="4">CATALYST B</font> (e.g. <html><a href="http://sdb.wacker.com/pf/e/result/report.jsp?P_LANGU=D&P_SYS=2&P_SSN=7011&P_REP=00000000000000000060&P_RES=9537&P_SPEC=R">Wacker® Catalyst T 47</a></html>)</center><br> | ||
+ | <center><font size="4">+</font></center><br> | ||
+ | <center><font size="4">ADDITIVE</font> (e.g. <html><a href="http://sdb.wacker.com/pf/e/result/report.jsp?P_LANGU=D&P_SYS=2&P_SSN=7019&P_REP=00000000000000000032&P_RES=9550&P_SPEC=R">Wacker® Thixotropic Additive C</a></html>)</center><br> | ||
+ | |||
+ | Modification of the recipe will cause:<br> | ||
+ | - different curing times (hours to minutes)<br> | ||
+ | - variation in pot life (hour to minutes)<br> | ||
+ | - change in viscosity (fluent to stable)<br> | ||
+ | |||
+ | ===III. Silicone Expertise=== | ||
+ | |||
+ | <b>Traditional Silicone Casting</b><br> | ||
+ | Bachelor thesis in cooperation with <html><a href="http://www.luisaroth.com/">Luisa Roth</a></html> @ <i>Technical University of Cologne</i><br> | ||
+ | |||
+ | <i>Silicone Molds + Counter Plaster Forms:</i><br> | ||
+ | [[File: 06_IMG_0420.jpg | 209px]] | ||
+ | [[File: 05_IMG_0388.jpg | 209px]] | ||
+ | [[File: 03_IMG_0268.jpg | 209px]] | ||
+ | [[File: 07_IMG_0423.jpg | 209px]] | ||
+ | |||
+ | <i>Concrete Models:</i><br> | ||
+ | [[File: 08_IMG_2919.jpg | 209px]] | ||
+ | [[File: 17_IMG_2848.jpg | 209px]] | ||
+ | [[File: 13_IMG_2840.jpg | 209px]] | ||
+ | [[File: 14_IMG_9694.jpg | 209px]] | ||
+ | |||
+ | <i>Making Of:</i> | ||
+ | <!--elastic silicone mold (negative form)--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/joplqvqTgt0?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | |||
+ | <b>Pneumatic Silicone</b><br> | ||
+ | <html><a href="http://ex25.hyperbody.nl/index.php/Msc1G2:Group">Swarmscape</a></html> - MSc1 project in cooperation with <html><a href="http://arlauskas.net/">Mindaugas Arlauskas</a></html>, <html><a href="http://vanderdoorn.eu/">Olav van der Doorn</a></html>, and Daniel Fischer @ <i>hyperbody, TU Delft</i><br> | ||
+ | |||
+ | <i>Prototype:</i> | ||
+ | <!--Swarmscape: Prototype of a soft-pneumatic structure--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/l0fRKRz14qM?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | <i>Making Of:</i> | ||
+ | <!--Swarmscape: Making a soft-pneumatic prototype--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/FoCppFyRJIk?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | ===IV. Architecture/Design References=== | ||
+ | |||
+ | <b>IAAC - <html><a href="http://www.designboom.com/architecture/soft-skin-institute-of-advanced-architecture-catalonia-10-29-2015/">Soft Skin</a></html></b> | ||
+ | |||
+ | <i>Inflated Silicone Skin + Façade Section:</i><br> | ||
+ | [[File: Iaac_soft-skin_02.jpg | 326px]] | ||
+ | [[File: iaac_soft-skin_01.jpg | 518px]] | ||
+ | |||
+ | <!--Soft Skin [Morphing, Damping, Roughening]--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/5ZWdedKAVPs?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | |||
+ | <b>Nameless Architecture - <html><a href="http://namelessarchitecture.com/work/25_namelessdoor.html">The Door</a></html></b> | ||
+ | |||
+ | <i> Silicone Door (Reinforced Epoxy Resin, Translucent Silicone Resin + Steel Wire):</i><br> | ||
+ | [[File: AR1409_0595_new2.jpg | 280px]] | ||
+ | [[File: Nameless-door-4902_new2.jpg | 280px]] | ||
+ | [[File: The-Door-by-Nameless-Architecture_dezeen_468_9.jpg | 280px]]<br> | ||
+ | |||
+ | <i>Product Video:</i> | ||
+ | <!--The Door--> | ||
+ | <html> | ||
+ | <iframe src="https://player.vimeo.com/video/113597044?color=E2624A&title=0&byline=0&portrait=0" width="850" height="478" frameborder="0" webkitallowfullscreen mozallowfullscreen allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | |||
+ | <b>Harvard Bio Design Lab/Soft Robotics Toolkit - <html><a href="http://softroboticstoolkit.com/book/case-study-cardiac-simulator">Cardiac Simulator</a></html></b> | ||
+ | |||
+ | <i>Artificial Silicone Heart + Muscles:</i><br> | ||
+ | [[File: Cardsim1.png | 590px]] | ||
+ | [[File: Cardsim2.png | 254px]] | ||
+ | |||
+ | <i>A Bioinspired Soft Active Material and Cardiac Simulator:</i> | ||
+ | <!--A Bioinspired Soft Active Material and Cardiac Simulator--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/0Qbvc3WusEU?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | ===V. Responsive Skin=== | ||
+ | <b>Proposal Living Architecture</b> | ||
+ | |||
+ | [[File: 170327_silicone-responsiveness.jpg | 850px]] | ||
+ | |||
+ | |||
+ | <b>Reference Living Architecture</b><br> | ||
+ | Philip Beesley - <html><a href="http://www.philipbeesleyarchitect.com/sculptures/0929_Hylozoic_Ground_Venice/">Hylozoic Ground</a><br></html> | ||
+ | |||
+ | <!--Philip BEESLEY - Hylozoic Ground--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/3RFr6tG_Iyw?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | <b>Artificial Muscles</b> | ||
+ | |||
+ | <!--Nitinol - Metallic Muscles with Shape Memory. (RUSSIAN ACCENT)--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/-K57cbOhA5g?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | ===VI. Silicone 3D Printing=== | ||
+ | |||
+ | <b>Reference</b><br> | ||
+ | <html><a href="https://www.aceo3d.com/">ACEO® 3D Printing</a><br></html> | ||
+ | |||
+ | <!--3D Printing with Silicones: Impossible Products by ACEO--> | ||
+ | <html> | ||
+ | <iframe width="422" height="237" src="https://www.youtube.com/embed/qZwf-XDvaQo?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | <!--3D Printing with Silicones: ACEO Logo--> | ||
+ | <html> | ||
+ | <iframe width="422" height="237" src="https://www.youtube.com/embed/JIYb69iDeCI?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | |||
+ | <b>Proposal</b><br> | ||
+ | Large scale 3D printing of silicone on double curved surfaces<br> | ||
+ | |||
+ | <i>Basic steps 3D printing siliocne on double curved membrane (single layer // multi layers w/ different directions)</i><br> | ||
+ | [[File: 170311_presentation-portrait_silicone.jpg | 422px]] | ||
+ | [[File: 170311_presentation-portrait_silicone2.jpg | 422px]] | ||
+ | |||
+ | <i>Advanced steps + modifications to a responsive skin (different silicone types // embedded plastic structure // embedded sub structures // embedded artificial muscles // combination)</i><br> | ||
+ | [[File: 170311_presentation-portrait_silicone3.jpg | 166px]] | ||
+ | [[File: 170311_presentation-portrait_silicone4.jpg | 166px]] | ||
+ | [[File: 170311_presentation-portrait_silicone5.jpg | 166px]] | ||
+ | [[File: 170311_presentation-portrait_silicone6.jpg | 166px]] | ||
+ | [[File: 170311_presentation-portrait_silicone7.jpg | 166px]] | ||
+ | |||
+ | <b>Initial Experiments</b><br> | ||
+ | <i>3D print of silicone on double curved surface // 3D print of silicone on elastic double curved fabric</i><br> | ||
+ | [[File: 170316_presentation-initial-experiments.jpg | 422px]] | ||
+ | [[File: 170316_presentation-initial-experiments2.jpg | 422px]] | ||
+ | |||
+ | <b>Print Pattern (WIP)</b> | ||
+ | [[File: 170407_silicone-patterns.jpg | 850px]] | ||
+ | |||
+ | [[File: 170407_silicone-patterns2.jpg | 850px]] | ||
+ | |||
+ | [[File: 170407_silicone-patterns3.jpg | 850px]] | ||
+ | |||
+ | [[File: 170407_silicone-patterns4.jpg | 850px]] | ||
+ | |||
+ | [[File: 170407_silicone-patterns5.jpg | 850px]] | ||
+ | |||
+ | [[File: 170407_silicone-patterns6.jpg | 850px]] | ||
+ | |||
+ | [[File: 170407_silicone-patterns7.jpg | 850px]] | ||
+ | |||
+ | [[File: 170407_silicone-patterns8.jpg | 850px]] | ||
+ | |||
+ | ===VII. Manual Experiments=== | ||
+ | |||
+ | <!--ROOGOTFL : Prototype - Manual Silicone Experiment 01--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/7PsqHzpgfPU?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | <!--ROOGOTFL : Prototype - Manual Silicone Experiment 02--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/86MbLJC409E?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | <!--ROOGOTFL : Prototype - Manual Silicone Experiment 02--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/PgTN16EN7rM?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | ===VIII. 1st Robotic Experiment=== | ||
+ | |||
+ | <!--ROOGOTFL : Prototype - Manual Silicone Experiment 01--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/ygoIWgW5wS0?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | <!--ROOGOTFL : Prototype - Silicone Pattern 01--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/_hHLHLy6BLs?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | <!--ROOGOTFL : Prototype - Silicone Pattern 01 - Go Pro--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/eVg6Vqp3ATg?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | [[File: 170506_siliocne-print_pattern-01.jpg | 280px]] | ||
+ | [[File: 170506_siliocne-print_pattern-012.jpg | 280px]] | ||
+ | [[File: 170506_siliocne-print_pattern-013.jpg | 280px]] | ||
+ | |||
+ | [[File: 170506_siliocne-print_pattern-014.jpg | 280px]] | ||
+ | [[File: 170506_siliocne-print_pattern-015.jpg | 280px]] | ||
+ | [[File: 170506_siliocne-print_pattern-016.jpg | 280px]] | ||
+ | |||
+ | ===IX. 2nd Robotic Experiment=== | ||
+ | |||
+ | <!--ROOGOTFL : Prototype - Silicone Cells 01--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/IzUBKZUkE4Y?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | [[File: 170609_IMG_5556_silicone-proto_it-02.jpg | 280px]] | ||
+ | [[File: 170609_IMG_5558_silicone-proto_it-02.jpg | 280px]] | ||
+ | [[File: 170609_IMG_5561_silicone-proto_it-02.jpg | 280px]] | ||
+ | |||
+ | [[File: 170609_IMG_5564_silicone-proto_it-02.jpg | 280px]] | ||
+ | [[File: 170609_IMG_5566_silicone-proto_it-02.jpg | 280px]] | ||
+ | [[File: 170609_IMG_5569_silicone-proto_it-02.jpg | 280px]] | ||
+ | |||
+ | [[File: 170609_IMG_5572_silicone-proto_it-02.jpg | 280px]] | ||
+ | [[File: 170609_IMG_5587_silicone-proto_it-02.jpg | 280px]] | ||
+ | [[File: 170609_IMG_5628_silicone-proto_it-02.jpg | 280px]] | ||
+ | |||
+ | [[File: 170609_IMG_5574_silicone-proto_it-02.jpg | 280px]] | ||
+ | [[File: 170609_IMG_5577_silicone-proto_it-02.jpg | 280px]] | ||
+ | [[File: 170609_IMG_5579_silicone-proto_it-02.jpg | 280px]] | ||
+ | |||
+ | [[File: 170609_IMG_5581_silicone-proto_it-02.jpg | 280px]] | ||
+ | [[File: 170609_IMG_5582_silicone-proto_it-02.jpg | 280px]] | ||
+ | [[File: 170609_IMG_5614_silicone-proto_it-02.jpg | 280px]] | ||
+ | |||
+ | [[File: 170609_IMG_5620_silicone-proto_it-02.jpg | 280px]] | ||
+ | [[File: 170609_IMG_5624_silicone-proto_it-02.jpg | 280px]] | ||
+ | [[File: 170609_IMG_5633_silicone-proto_it-02.jpg | 280px]] | ||
+ | |||
+ | <!--ROOGOTFL : Prototype - Silicone Cells 02--> | ||
+ | <html> | ||
+ | <iframe width="850" height="478" src="https://www.youtube.com/embed/gWiqLlMNKWc?modestbranding=1&autohide=1&showinfo=0" frameborder="0" allowfullscreen></iframe> | ||
+ | </html> | ||
+ | |||
+ | ===X. Combination Wood (TBC)=== | ||
+ | |||
+ | <b>Inspiration</b><br> | ||
+ | Microscopic exposures of cells and molecular biology @ <html><a href="http://www.cell.com/pictureshow">Cell</a></html> + <html><a href="http://www.upworthy.com/this-british-organization-asked-for-beautiful-science-photos-here-are-13-finalists">Upworthy</a></html><br> | ||
+ | |||
+ | <div align="justify"><i>Confocal microscopy image of cultured HeLa cells expressing CFP targeted to the Golgi Apparatus, made by Michael Davidson. Cells were immunolabeled for tubulin (green) and counterstained with propidium iodide to label DNA (orange). The Davidson Lab made thousands of conventional fluorophores constructs such as this CFP, and most are available from the nonprofit depository Addgene.</i></div> | ||
+ | [[File: To_the_Golgi_We_Go.jpg | 850px]] | ||
+ | |||
+ | <div align="justify"><i>MIT researchers try to understand PTCHD1’s normal function in order to better understand its role in the disease. Their preliminary results suggest that PTCHD1 may be expressed in glial cells (shown here), which provide support and protection for neurons in the brain.</i></div> | ||
+ | [[File: Patch_of_Light.jpg | 850px]] | ||
− | [[File: | + | <div align="justify"><i>Neural stem cells have the ability to form all the different cell types found in the nervous system. Here, researchers are investigating how neural stem cells grow on a synthetic gel called PEG. After just two weeks, the stem cells (magenta) produced nerve fibers (green). These fibers grew away from the cell due to chemical gradients in the gel, teaching researchers about how their environment affects their structural organization.</i></div> |
+ | [[File: Brain-on-a-chip-fdbad2fb60cd9a7b6c0043d878613fa1.jpg | 850px]] |
Latest revision as of 09:56, 19 April 2018
Benjamin Kemper
Running Out Of Gas On The Fast Lane
Repurpose of abandoned drilling rigs in the North Sea (in 20-50 years)
Humans are facing the dangerous consequences of the climate change. Especially the population of the Netherlands, which has to face rising sea levels. An undesired, nor not impossible scenario, would be the loss of livable land due to flooding. The loss of building and living area would result in drastic changes to the means of life. On the one hand, we need to research possibilities to slow down the process, and also change our way of life. However, on the other hand, we must look for concepts and design proposals to support a lifestyle with radical climate changes.
Our society, human behavior, and cities are changing due to the exponential progress of technology. How are we going to live in a future, and which role will architecture play in an augmented world? It might emerge as a balancing act between utopia and dystopia, between the total dependency and repression of the machines and the freedom to achieve more than we ever imagined. Society’s addiction to technical devices emphasizes the urgency at hand to begin to work with new technologies instead of denying the process categorically.
Status Quo: http://rbse.hyperbody.nl/index.php/project01:P2
Project Video
TU Delft TV Video
P5 Preparation
Soft Architecture Proposal
0. Status Quo
Wind Analysis
Inspiration
Prototype 1st Iteration
Prototype 2nd Iteration
I. Prototype Fragment
II. Silicone
Silicone Company
Wacker Silicones
Recipe (Components)
Modification of the recipe will cause:
- different curing times (hours to minutes)
- variation in pot life (hour to minutes)
- change in viscosity (fluent to stable)
III. Silicone Expertise
Traditional Silicone Casting
Bachelor thesis in cooperation with Luisa Roth @ Technical University of Cologne
Silicone Molds + Counter Plaster Forms:
Making Of:
Pneumatic Silicone
Swarmscape - MSc1 project in cooperation with Mindaugas Arlauskas, Olav van der Doorn, and Daniel Fischer @ hyperbody, TU Delft
Prototype:
Making Of:
IV. Architecture/Design References
IAAC - Soft Skin
Inflated Silicone Skin + Façade Section:
Nameless Architecture - The Door
Silicone Door (Reinforced Epoxy Resin, Translucent Silicone Resin + Steel Wire):
Product Video:
Harvard Bio Design Lab/Soft Robotics Toolkit - Cardiac Simulator
Artificial Silicone Heart + Muscles:
A Bioinspired Soft Active Material and Cardiac Simulator:
V. Responsive Skin
Proposal Living Architecture
Reference Living Architecture
Philip Beesley - Hylozoic Ground
Artificial Muscles
VI. Silicone 3D Printing
Reference
ACEO® 3D Printing
Proposal
Large scale 3D printing of silicone on double curved surfaces
Basic steps 3D printing siliocne on double curved membrane (single layer // multi layers w/ different directions)
Advanced steps + modifications to a responsive skin (different silicone types // embedded plastic structure // embedded sub structures // embedded artificial muscles // combination)
Initial Experiments
3D print of silicone on double curved surface // 3D print of silicone on elastic double curved fabric
VII. Manual Experiments
VIII. 1st Robotic Experiment
IX. 2nd Robotic Experiment
X. Combination Wood (TBC)
Inspiration
Microscopic exposures of cells and molecular biology @ Cell + Upworthy