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} .org-svg { width: 90%; } /*]]>*/--> </style> <script type="text/javascript"> // @license magnet:?xt=urn:btih:1f739d935676111cfff4b4693e3816e664797050&dn=gpl-3.0.txt GPL-v3-or-Later <!--/*--><![CDATA[/*><!--*/ function CodeHighlightOn(elem, id) { var target = document.getElementById(id); if(null != target) { elem.cacheClassElem = elem.className; elem.cacheClassTarget = target.className; target.className = "code-highlighted"; elem.className = "code-highlighted"; } } function CodeHighlightOff(elem, id) { var target = document.getElementById(id); if(elem.cacheClassElem) elem.className = elem.cacheClassElem; if(elem.cacheClassTarget) target.className = elem.cacheClassTarget; } /*]]>*///--> // @license-end </script> <script> MathJax = { tex: { macros: { bm: ["\\boldsymbol{#1}",1], } } }; </script> <script type="text/javascript" src="https://cdn.jsdelivr.net/npm/mathjax@3/es5/tex-mml-chtml.js"></script> </head> <body> <div id="org-div-home-and-up"> <a accesskey="h" href="index.html"> UP </a> | <a accesskey="H" href="index.html"> HOME </a> </div><div id="content"> <h1 class="title">Motion and Force Requirements for the Nano-Hexapod</h1> <div id="table-of-contents"> <h2>Table of Contents</h2> <div id="text-table-of-contents"> <ul> <li><a href="#org70e526c">1. Soft Hexapod</a> <ul> <li><a href="#org3326d69">1.1. Example</a></li> </ul> </li> </ul> </div> </div> <div id="outline-container-org70e526c" class="outline-2"> <h2 id="org70e526c"><span class="section-number-2">1</span> Soft Hexapod</h2> <div class="outline-text-2" id="text-1"> <p> As the nano-hexapod is in series with the other stages, it must apply all the force required to move the sample. </p> <p> If the nano-hexapod is soft (voice coil), its actuator must apply all the force such that the sample has the wanted motion. </p> <p> In some sense, it does not use the fact that the other stage are participating to the displacement of the sample. </p> <p> Let’s take two examples: </p> <ul class="org-ul"> <li>Sinus Ty translation at 1Hz with an amplitude of 5mm</li> <li>Long stroke hexapod has an offset of 10mm in X and the spindle is rotating Thus the wanted motion is a circle with a radius of 10mm If the sample if light (30Kg) => 60rpm If the sample if heavy (100Kg) => 1rpm</li> </ul> <p> From the motion, we compute the required acceleration by derive the displacement two times. Then from the Newton’s second law: \(m \vec{a} = \sum \vec{F}\) we can compute the required force. </p> </div> <div id="outline-container-org3326d69" class="outline-3"> <h3 id="org3326d69"><span class="section-number-3">1.1</span> Example</h3> <div class="outline-text-3" id="text-1-1"> <p> The wanted motion is: </p> \begin{align*} x &= d \cos(\omega t) \\ y &= d \sin(\omega t) \end{align*} <p> The corresponding acceleration is thus: </p> \begin{align*} \ddot{x} &= - d \omega^2 \cos(\omega t) \\ \ddot{y} &= - d \omega^2 \sin(\omega t) \end{align*} <p> From the Newton’s second law: </p> \begin{align*} m \ddot{x} &= F_x \\ m \ddot{y} &= F_y \end{align*} <p> Thus the applied forces should be: </p> \begin{align*} F_x &= - m d \omega^2 \cos(\omega t) \\ F_y &= - m d \omega^2 \sin(\omega t) \end{align*} <p> And the norm of the force is: \[ |F| = \sqrt{F_x^2 + F_y^2} = m d \omega^2 \ [N] \] </p> <p> For a Light sample: </p> <div class="org-src-container"> <pre class="src src-matlab">m = 30; d = 10e<span class="org-type">-</span>3; w = 2<span class="org-type">*</span><span class="org-constant">pi</span>; F = m<span class="org-type">*</span>d<span class="org-type">*</span>w<span class="org-type">^</span>2; <span class="org-constant">ans</span> = F </pre> </div> <pre class="example"> 11.844 </pre> <p> For the Heavy sample: </p> <div class="org-src-container"> <pre class="src src-matlab">m = 80; d = 10e<span class="org-type">-</span>3; w = 2<span class="org-type">*</span><span class="org-constant">pi</span><span class="org-type">/</span>60; F = m<span class="org-type">*</span>d<span class="org-type">*</span>w<span class="org-type">^</span>2 <span class="org-constant">ans</span> = F </pre> </div> <pre class="example"> 0.008773 </pre> </div> </div> </div> </div> <div id="postamble" class="status"> <p class="author">Author: Dehaeze Thomas</p> <p class="date">Created: 2020-03-17 mar. 17:28</p> </div> </body> </html>