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	<title>laser | FabLab MVD</title>
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		<title>Uthopia: The unbuilt</title>
		<link>https://fablab-mvd.edu.uy/project/uthopia-the-unbuilt/</link>
					<comments>https://fablab-mvd.edu.uy/project/uthopia-the-unbuilt/#respond</comments>
		
		<dc:creator><![CDATA[Mariana Silveira]]></dc:creator>
		<pubDate>Mon, 19 Dec 2022 18:46:26 +0000</pubDate>
				<guid isPermaLink="false">https://fablab-mvd.edu.uy/?post_type=project&#038;p=915</guid>

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										<content:encoded><![CDATA[<p><div class="et_pb_section et_pb_section_0 et_pb_with_background et_section_regular" >
				
				
				
				
				
				
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				<div class="et_pb_text_inner"><h1>Uthopia: The unbuilt</h1>
<h3 id="digital-fabrication-of-unbuilt-architectures-2014">Digital fabrication of unbuilt architectures. 2014.</h3></div>
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				<div class="et_pb_text_inner"><p class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">The idea of ​​holding a exhibition of unrealized architecture models for November 2014, within the framework of the XVIII Congress of the Ibero-American Society of Digital Graphics (sigradi).</span></p>
<p class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">The condition of not having been carried out was the main reason to try to materialize those works that were impulses, innovations, ruptures, paradigms, prefigurations of the future, and that still continue in the imaginary of several generations of architects. </span></p>
<p class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">The instrument chosen to represent these examples, some very distant in time, had to be the most advanced materialization techniques: digital fabrication. In this way, they wanted to build an extensive bridge spanning several centuries, between the formulation of those ideas and their interpretation made matter, linking traditional techniques of representation and cutting-edge technologies. </span></p></div>
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				<div class="et_pb_text_inner"><p><span class="Y2IQFc" lang="en">The need to interpret the author&#8217;s idea was an additional challenge. In all cases, these are proposals that have been known through graphics with a low level of detail, some of them simply sketches with a few strokes. This involves a fair amount of input from the modeler, and not merely a literal translation of detailed parts for manufacturing. </span></p>
<p><span class="Y2IQFc" lang="en">The dozen chosen works have gone through three stages of preparation until they reach their final state of materialization: modeling, manufacturing and assembly.</span></p></div>
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		<item>
		<title>Aditive and sustractive fabrication</title>
		<link>https://fablab-mvd.edu.uy/project/aditive-and-sustractive-fabrication/</link>
					<comments>https://fablab-mvd.edu.uy/project/aditive-and-sustractive-fabrication/#respond</comments>
		
		<dc:creator><![CDATA[Mariana Silveira]]></dc:creator>
		<pubDate>Fri, 09 Dec 2022 17:34:46 +0000</pubDate>
				<guid isPermaLink="false">https://fablab-mvd.edu.uy/?post_type=project&#038;p=697</guid>

					<description><![CDATA[]]></description>
										<content:encoded><![CDATA[<p><div class="et_pb_section et_pb_section_3 et_pb_with_background et_section_regular" >
				
				
				
				
				
				
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				<div class="et_pb_text_inner"><h1>Digital Fabrication</h1></div>
			</div><div class="et_pb_module et_pb_text et_pb_text_4  et_pb_text_align_left et_pb_bg_layout_light">
				
				
				
				
				<div class="et_pb_text_inner"><p>Additive vs Sustractive fabrication</p></div>
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				<div class="et_pb_text_inner">Digital fabrication consist of an integrated and computer-asisted system composed by simulation tools, 3D visualization, analysis and collaboration to create<span class="Y2IQFc" lang="en"> product and fabrication process definitions simultaneously.</span></p>
<p id="tw-target-text" class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">This type of manufacturing allows the processes to be repeatable as many times as necessary. In turn, the complexity of the object does not have a significant impact on the cost of production. The possibilities within digital fabrication are not linked to the human scale. </span></p>
<p class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">Digital fabrication technologies can be divided into two large groups. On the one hand the additive fabrication and on the other the subtractive, each one of them presents certain limitations, advantages and disadvantages to the other.</span></p>
<p>&nbsp;</div>
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				<span class="et_pb_image_wrap "><img loading="lazy" decoding="async" width="1024" height="684" src="https://fablab-mvd.edu.uy/wp-content/uploads/2022/11/cid-2.jpeg" alt="" title="cid-2" srcset="https://fablab-mvd.edu.uy/wp-content/uploads/2022/11/cid-2.jpeg 1024w, https://fablab-mvd.edu.uy/wp-content/uploads/2022/11/cid-2-980x655.jpeg 980w, https://fablab-mvd.edu.uy/wp-content/uploads/2022/11/cid-2-480x321.jpeg 480w" sizes="(min-width: 0px) and (max-width: 480px) 480px, (min-width: 481px) and (max-width: 980px) 980px, (min-width: 981px) 1024px, 100vw" class="wp-image-178" /></span>
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				<div class="et_pb_text_inner"><h2 id="aditive-fabrication">Aditive fabrication</h2></div>
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				<span class="et_pb_image_wrap "><img loading="lazy" decoding="async" width="833" height="625" src="https://fablab-mvd.edu.uy/wp-content/uploads/2022/11/Process-14-2.jpg" alt="" title="Process-14-2" srcset="https://fablab-mvd.edu.uy/wp-content/uploads/2022/11/Process-14-2.jpg 833w, https://fablab-mvd.edu.uy/wp-content/uploads/2022/11/Process-14-2-480x360.jpg 480w" sizes="(min-width: 0px) and (max-width: 480px) 480px, (min-width: 481px) 833px, 100vw" class="wp-image-569" /></span>
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				<div class="et_pb_text_inner"><p><span class="Y2IQFc" lang="en">Aditive fabrication is the type of digital manufacturing, which allows the construction of objects in three dimensions in a sequential way, during a process of adding material by layers. </span><span class="Y2IQFc" lang="en">In many cases it uses heat to provide fluidity to the material used.</span></p></div>
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				<div class="et_pb_text_inner"><h3 id="advantages">Advantages</h3>
<ul>
<li>It does not generate waste of material in the process.</li>
<li><span class="Y2IQFc" lang="en">It is possible to change the physical properties of the object.</span></li>
<li>The interior is also designed.</li>
<li><span class="Y2IQFc" lang="en">Wide range of machinable materials and it is expanding: polymers, ceramics, cement, metals, sand, chocolate….</span></li>
</ul></div>
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				<div class="et_pb_text_inner"><h3 id="disadvantages">Disadvantages</h3>
<ul>
<li>
<p id="tw-target-text" class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">Expensive processes.</span></p>
</li>
<li>
<p id="tw-target-text" class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción">Very slow processes compared to massive processes technics, like injection.</p>
</li>
<li>
<p id="tw-target-text" class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">In the case of 3D printing, they are limited to the dimensions of the printing bed. </span></p>
</li>
<li>
<p id="tw-target-text" class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">Parts made from 3D printing often require some type of cleaning and finishing to achieve their final properties and appearance. On many occasions, the model requires the use of support structures, which are removed once printing is finished. These can be made of the same material as the impression or made of materials that dissolve in water, which allows for easier removal and a better finish on the final piece.</span></p>
</li>
</ul></div>
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				<div class="et_pb_text_inner"><h3 id="technologies">Technologies</h3>
<ul>
<li>3D printing:</li>
</ul>
<p id="tw-target-text" class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">Polymers: Fused Deposition Modeling (FDM), Stereolithography Sintering (SLA), Digital Light Processing (DLP), Selective Laser Sintering (SLS). </span></p>
<p class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">Metals: Direct Metal Laser Sintering (DMLS), Electron Beam Melting (EBM), Binder Jetting, and Selective Laser Melting (SML).</span></p></div>
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				<div class="et_pb_text_inner"><h2 id="sustractive-fabrication">Sustractive fabrication</h2></div>
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				<span class="et_pb_image_wrap "><img loading="lazy" decoding="async" width="733" height="529" src="https://fablab-mvd.edu.uy/wp-content/uploads/2022/11/cortadora-CNC-compress.jpg" alt="" title="cortadora CNC compress" srcset="https://fablab-mvd.edu.uy/wp-content/uploads/2022/11/cortadora-CNC-compress.jpg 733w, https://fablab-mvd.edu.uy/wp-content/uploads/2022/11/cortadora-CNC-compress-480x346.jpg 480w" sizes="(min-width: 0px) and (max-width: 480px) 480px, (min-width: 481px) 733px, 100vw" class="wp-image-371" /></span>
			</div><div class="et_pb_module et_pb_text et_pb_text_12  et_pb_text_align_left et_pb_bg_layout_light">
				
				
				
				
				<div class="et_pb_text_inner"><p id="tw-target-text" class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">Sustractive fabrication gathers all those forming operations in which the excess material is removed from an initial work piece. The most important processes in this category are machining operations such as turning, drilling, milling, and grinding. Non-traditional processes are used because they use lasers, electron beams, chemical erosion, electrical discharges, or electrochemical energy to remove material.</span></p></div>
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				<div class="et_pb_text_inner"><h3 id="advantages">Advantages</h3>
<ul>
<li>In general, it uses the same materials as traditional techniques.</li>
<li><span class="Y2IQFc" lang="en">Higher precision parts are obtained than additive manufacturing methods. </span></li>
<li><span class="Y2IQFc" lang="en">Repeatable process.</span></li>
<li><span class="Y2IQFc" lang="en">Efficient use of material (nesting). The optimization of the cuts saves material.</span></li>
</ul></div>
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				<div class="et_pb_text_inner"><h3 id="disadvantages">Disadvantages</h3>
<ul>
<li>Generate waste material.</li>
</ul></div>
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				<div class="et_pb_text_inner"><h3 id="technologies">Technologies</h3>
<ul>
<li>Laser cutting</li>
<li>CNC (drilling machine, lathe, panel saw, router)</li>
<li>Water jet cutting</li>
<li>Plasma cutting</li>
<li>Electrical discharge machining (EDM)</li>
</ul></div>
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				<div class="et_pb_text_inner"><h1 id="tw-target-text" class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">Basic terminology</span></h1></div>
			</div><div class="et_pb_module et_pb_text et_pb_text_17  et_pb_text_align_left et_pb_bg_layout_light">
				
				
				
				
				<div class="et_pb_text_inner"><p id="tw-target-text" class="tw-data-text tw-text-large tw-ta" dir="ltr" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">To carry out the fabrication of any object through any of the technologies mentioned above, it is essential to understand and manage the different languages ​​so that the machines, operators and software correctly interpret the projects.</span></p></div>
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				<div class="et_pb_module et_pb_icon et_pb_icon_0">
				<span class="et_pb_icon_wrap "><span class="et-pb-icon"></span></span>
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				<div class="et_pb_text_inner"><h2 style="text-align: center;" id="cad"><strong>CAD</strong></h2>
<p style="text-align: center;">Computer Aided Design</p>
<p style="text-align: center;"><span class="Y2IQFc" lang="en">The file containing the design to be manufactured. It is important that the design does not contain double lines, curves without closing or elements that do not touch each other.</span></p>
<p style="text-align: center;">Software: Autocad, Illustrator, Corel, etc.</p></div>
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				<div class="et_pb_module et_pb_icon et_pb_icon_1">
				<span class="et_pb_icon_wrap "><span class="et-pb-icon"></span></span>
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				<div class="et_pb_text_inner"><h2 style="text-align: center;" id="cam"><strong>CAM</strong></h2>
<p style="text-align: center;">Computer Aided Manufacturing</p>
<p id="tw-target-text" class="tw-data-text tw-text-large tw-ta" dir="ltr" style="text-align: center;" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">Translates the CAD file into a set of instructions that the machine can interpret: CAM= translator. This file must contain the specific elements/parameters that the machine will need for manufacturing: speeds, intensity, times, etc. For this reason, the plans must express not only what is necessary for the machine but also what is necessary for the operator who will configure the machine.</span></p>
<p style="text-align: center;">Software: Cura, Fusion 360, etc.</p>
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				<div class="et_pb_text_inner"><h2 style="text-align: center;" id="cnc"><strong>CNC</strong></h2>
<p style="text-align: center;">Computer Numerical Control</p>
<p id="tw-target-text" class="tw-data-text tw-text-large tw-ta" dir="ltr" style="text-align: center;" data-placeholder="Traducción"><span class="Y2IQFc" lang="en">It is used to create programming instructions for a computer to control a certain machine/tool. CNC is related to the manufacturing process and improves automation as well as flexibility.</span></p>
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