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  <title><![CDATA[MSE Ph.D. Proposal - Richard Eugene Harper]]></title>
  <body><![CDATA[<p>Third generation of synthetic turf field (3G STF)is a
highly technical, pliable composite of polymeric grass tufts, woven flexible
backing, and elastomeric infill particles that were designed for high impact
sports activities, e.g., American football.&nbsp;
The infill is typically granulated crumb rubber (GCRI) that is milled
from only the outer two tread layers of used tires.&nbsp; The elastomeric GCRI addressed important
safety aspects of the sports field and sparked a renaissance in STF
construction.&nbsp; However, issues concerning
player exposure to the GCRI particles and their contents (volatile organic
compounds (VOC's), lead and lethal pathogens such as MRSA), landfill disposal
of the left-over tire carcasses and overall costs of the GCRI production
process have become concerns.</p>



<p>To alleviate these concerns, an alternate infill must
match safety and performance while alleviating environmental and health
concerns associated with GCRI.&nbsp; Plus, a
candidate could come from other sources of benign waste streams, such as
recycled PET from drink bottles to non-salvaged components of post-consumer
carpet (both broadloom and selected tiles), to remain economical.&nbsp; In addition, the infill's properties such the
shape and size could be optimized by statistical modeling to reduce the amount
of required material while maintaining performance and safety levels in the
filled turf.</p>



<p>This proposal outlines two topics of the dissertation
research.&nbsp; First, compare the
composition, bulk properties and impact performance of several waste material
streams to the properties of GCRI.&nbsp;
Second, determine important infill properties by modeling to optimize
the infill itself and possibly use polymer particles with controlled size,
shape, and other factors.&nbsp; Ideally this
work will define specifications for raw material that leads to ideal
performance of the final product.&nbsp;
Ultimately, the selected infill candidate will replace GCRI without
increased cost, reduced performance or impaired impact safety while remaining
beneficial to health and environment.</p>]]></body>
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      <value><![CDATA[Ph.D Proposal presentation by Richard Eugene Harper]]></value>
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  <field_summary>
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      <value><![CDATA[<p>Dissertation Title: DEVELOPMENT OF NOVEL SYNTHETIC TURF
INFILL MATERIALS</p>]]></value>
    </item>
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      <value><![CDATA[2011-05-31T16:00:00-04:00]]></value>
      <value2><![CDATA[2011-05-31T18:00:00-04:00]]></value2>
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      <timezone><![CDATA[America/New_York]]></timezone>
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  <og_groups>
          <item>1238</item>
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          <item><![CDATA[School of Materials Science and Engineering]]></item>
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        <tid>1795</tid>
        <value><![CDATA[Seminar/Lecture/Colloquium]]></value>
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        <value><![CDATA[MSE_Interal_Event]]></value>
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