<?xml version="1.0" encoding="UTF-8"?><?xml-stylesheet type="text/xsl" href="static/style.xsl"?><OAI-PMH xmlns="http://www.openarchives.org/OAI/2.0/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.openarchives.org/OAI/2.0/ http://www.openarchives.org/OAI/2.0/OAI-PMH.xsd"><responseDate>2026-09-21T09:03:05Z</responseDate><request verb="GetRecord" identifier="oai:dspace.mit.edu:1721.1/59924" metadataPrefix="dim">https://dspace.mit.edu/server/oai/request</request><GetRecord><record><header><identifier>oai:dspace.mit.edu:1721.1/59924</identifier><datestamp>2022-01-13T07:54:36Z</datestamp><setSpec>com_1721.1_7582</setSpec><setSpec>com_1721.1_7581</setSpec><setSpec>col_1721.1_131024</setSpec></header><metadata><dim:dim xmlns:dim="http://www.dspace.org/xmlns/dspace/dim" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:doc="http://www.lyncode.com/xoai" xsi:schemaLocation="http://www.dspace.org/xmlns/dspace/dim http://www.dspace.org/schema/dim.xsd">
   <dim:field mdschema="dc" element="contributor" qualifier="advisor" lang="en_US">Martin L. Culpepper.</dim:field>
   <dim:field mdschema="dc" element="contributor" qualifier="author" lang="en_US">Schneider, Johannes (Johannes A.)</dim:field>
   <dim:field mdschema="dc" element="contributor" qualifier="other" lang="en_US">Massachusetts Institute of Technology. Dept. of Mechanical Engineering.</dim:field>
   <dim:field mdschema="dc" element="contributor" qualifier="department">Massachusetts Institute of Technology. Department of Mechanical Engineering</dim:field>
   <dim:field mdschema="dc" element="date" qualifier="accessioned">2010-11-08T17:46:23Z</dim:field>
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   <dim:field mdschema="dc" element="date" qualifier="copyright" lang="en_US">2010</dim:field>
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   <dim:field mdschema="dc" element="identifier" qualifier="oclc" lang="en_US">676704732</dim:field>
   <dim:field mdschema="dc" element="description" lang="en_US">Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2010.</dim:field>
   <dim:field mdschema="dc" element="description" lang="en_US">Cataloged from PDF version of thesis.</dim:field>
   <dim:field mdschema="dc" element="description" lang="en_US">Includes bibliographical references (p. 56).</dim:field>
   <dim:field mdschema="dc" element="description" qualifier="abstract" lang="en_US">The purpose of this research is the mechanical design of a miniature desktop milling machine for use as an alternative class project in MIT's introductory machining course 2.670. This research is important, because a well-designed introductory machining course has the potential of inspiring students early-on in their academic lives to learn about and become familiar with the principles of precision machine design. This thesis proposes a mill design that is simple enough to being built by inexperienced engineering students within the scope of a single semester introductory machining course and within a class budget of about $150 per student. The design that is proposed in this thesis is different to conventional desktop mill designs in that it is considerably more compact in size, thereby reducing material costs, machining time, and ease of storage. This thesis mainly focuses on the mechanical design aspects of the machine. It is structured in five sections: Machine Configurations, Cutting Analysis, Spindle Design, Stage Design, and a final segment covering frame design, vice design and final machine assembly.</dim:field>
   <dim:field mdschema="dc" element="description" qualifier="degree" lang="en_US">S.B.</dim:field>
   <dim:field mdschema="dc" element="format" qualifier="extent" lang="en_US">57 p.</dim:field>
   <dim:field mdschema="dc" element="language" qualifier="iso" lang="en_US">eng</dim:field>
   <dim:field mdschema="dc" element="publisher" lang="en_US">Massachusetts Institute of Technology</dim:field>
   <dim:field mdschema="dc" element="rights" lang="en_US">M.I.T. theses are protected by 
copyright. They may be viewed from this source for any purpose, but 
reproduction or distribution in any format is prohibited without written 
permission. See provided URL for inquiries about permission.</dim:field>
   <dim:field mdschema="dc" element="rights" qualifier="uri" lang="en_US">http://dspace.mit.edu/handle/1721.1/7582</dim:field>
   <dim:field mdschema="dc" element="subject" lang="en_US">Mechanical Engineering.</dim:field>
   <dim:field mdschema="dc" element="title" lang="en_US">Mechanical design of a desktop milling machine for fabrication in an introductory machining class by Johannes Schneider.</dim:field>
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   	&lt;Title>Mechanical design of a desktop milling machine for fabrication in an introductory machining class by Johannes Schneider.&lt;/Title>
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   	&lt;PublicationDate>2010&lt;/PublicationDate>
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        	&lt;DisplayName>Schneider, Johannes (Johannes A.)&lt;/DisplayName>
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    &lt;Keyword>Mechanical Engineering.&lt;/Keyword>
   	&lt;Abstract>The purpose of this research is the mechanical design of a miniature desktop milling machine for use as an alternative class project in MIT&amp;apos;s introductory machining course 2.670. This research is important, because a well-designed introductory machining course has the potential of inspiring students early-on in their academic lives to learn about and become familiar with the principles of precision machine design. This thesis proposes a mill design that is simple enough to being built by inexperienced engineering students within the scope of a single semester introductory machining course and within a class budget of about $150 per student. The design that is proposed in this thesis is different to conventional desktop mill designs in that it is considerably more compact in size, thereby reducing material costs, machining time, and ease of storage. This thesis mainly focuses on the mechanical design aspects of the machine. It is structured in five sections: Machine Configurations, Cutting Analysis, Spindle Design, Stage Design, and a final segment covering frame design, vice design and final machine assembly.&lt;/Abstract>
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