<node id="691623">
  <nid>691623</nid>
  <type>news</type>
  <uid>
    <user id="36881"><![CDATA[36881]]></user>
  </uid>
  <created>1786482671</created>
  <changed>1786483710</changed>
  <title><![CDATA[Georgia Tech Researchers Discover New Mechanism Behind Soft-Material Adhesion]]></title>
  <body><![CDATA[<p><br>Anyone who has peeled off a bandage knows that speed matters. Conventional wisdom, and decades of adhesion research, suggest that pulling faster makes adhesive forces stronger. But researchers at Georgia Tech have discovered that soft materials can behave in a far more surprising way.</p><p>Instead of becoming steadily stickier as they are pulled apart, soft hydrogels first become less adhesive and then more adhesive as the pulling speed increases, revealing a previously unknown "sweet spot" where detachment is easier. The discovery challenges a long-held assumption in adhesion mechanics and reveals a new physical mechanism that governs how soft materials attach and detach.</p><p>"We expected the adhesion to increase continuously with pulling speed, as predicted by classical theories," said <a href="https://me.gatech.edu/faculty/hu-2"><strong>Yuhang Hu</strong></a>, associate professor in the <a href="https://me.gatech.edu/"><strong>George W. Woodruff School of Mechanical Engineering</strong></a> and the <a href="https://www.chbe.gatech.edu/"><strong>School of Chemical and Biomolecular Engineering</strong></a>. "Instead, we found the exact opposite over a broad range of speeds. That told us there had to be a completely different physical process at work."</p><p><a href="https://www.me.gatech.edu/news/georgia-tech-researchers-discover-new-mechanism-behind-soft-material-adhesion">Read the full story on the George W. Woodruff School of Mechanical Engineering website.</a></p>]]></body>
  <field_subtitle>
    <item>
      <value><![CDATA[]]></value>
    </item>
  </field_subtitle>
  <field_dateline>
    <item>
      <value>2026-08-11T00:00:00-04:00</value>
      <timezone><![CDATA[America/New_York]]></timezone>
    </item>
  </field_dateline>
  <field_summary_sentence>
    <item>
      <value><![CDATA[Georgia Tech researchers have uncovered a new mechanism governing how soft materials adhere, revealing that adhesion can weaken and then strengthen as pulling speed increases — a finding that could enable new approaches to biomedical devices, soft robotic]]></value>
    </item>
  </field_summary_sentence>
  <field_summary>
    <item>
      <value><![CDATA[<p>Anyone who has peeled off a bandage knows that speed matters. Conventional wisdom, and decades of adhesion research, suggest that pulling faster makes adhesive forces stronger. But researchers at Georgia Tech have discovered that soft materials can behave in a far more surprising way.</p><p>Instead of becoming steadily stickier as they are pulled apart, soft hydrogels first become less adhesive and then more adhesive as the pulling speed increases, revealing a previously unknown "sweet spot" where detachment is easier. The discovery challenges a long-held assumption in adhesion mechanics and reveals a new physical mechanism that governs how soft materials attach and detach.</p><p>"We expected the adhesion to increase continuously with pulling speed, as predicted by classical theories," said <a href="https://me.gatech.edu/faculty/hu-2"><strong>Yuhang Hu</strong></a>, associate professor in the <a href="https://me.gatech.edu/"><strong>George W. Woodruff School of Mechanical Engineering</strong></a> and the <a href="https://www.chbe.gatech.edu/"><strong>School of Chemical and Biomolecular Engineering</strong></a>. "Instead, we found the exact opposite over a broad range of speeds. That told us there had to be a completely different physical process at work."</p>]]></value>
    </item>
  </field_summary>
  <field_media>
          <item>
        <nid>
          <node id="680841">
            <nid>680841</nid>
            <type>image</type>
            <title><![CDATA[Yuhang-Hu_Article_Picture1.png]]></title>
            <body><![CDATA[]]></body>
                          <field_image>
                <item>
                  <fid>265167</fid>
                  <filename><![CDATA[Yuhang-Hu_Article_Picture1.png]]></filename>
                  <filepath><![CDATA[/sites/default/files/2026/08/11/Yuhang-Hu_Article_Picture1.png]]></filepath>
                  <file_full_path><![CDATA[http://hg.gatech.edu//sites/default/files/2026/08/11/Yuhang-Hu_Article_Picture1.png]]></file_full_path>
                  <filemime>image/png</filemime>
                  <image_740><![CDATA[]]></image_740>
                  <image_alt><![CDATA[Three-panel figure showing soft-material adhesion experiments: a microscope image of a probe contacting a surface, fluorescence images of the contact area, and a graph showing pull-off force versus retraction speed, with stress relaxation and dynamic bond effects labeled.]]></image_alt>
                </item>
              </field_image>
            
                      </node>
        </nid>
      </item>
      </field_media>
  <field_contact_email>
    <item>
      <email><![CDATA[]]></email>
    </item>
  </field_contact_email>
  <field_location>
    <item>
      <value><![CDATA[]]></value>
    </item>
  </field_location>
  <field_contact>
    <item>
      <value><![CDATA[<p>Tracie Troha<br>George W. Woodruff School of Mechanical Engineering</p>]]></value>
    </item>
  </field_contact>
  <field_sidebar>
    <item>
      <value><![CDATA[]]></value>
    </item>
  </field_sidebar>
  <field_boilerplate>
    <item>
      <nid><![CDATA[]]></nid>
    </item>
  </field_boilerplate>
  <!--  TO DO: correct to not conflate categories and news room topics  -->
  <!--  Disquisition: it's funny how I write these TODOs and then never
         revisit them. It's as though the act of writing the thing down frees me
         from the responsibility to actually solve the problem. But what can I
         say? There are more problems than there's time to solve.  -->
  <links_related> </links_related>
  <files> </files>
  <og_groups>
          <item>1188</item>
          <item>108731</item>
      </og_groups>
  <og_groups_both>
          <item>
        <![CDATA[Research]]>
      </item>
      </og_groups_both>
  <field_categories>
          <item>
        <tid>135</tid>
        <value><![CDATA[Research]]></value>
      </item>
      </field_categories>
  <core_research_areas>
      </core_research_areas>
  <field_news_room_topics>
      </field_news_room_topics>
  <links_related>
      </links_related>
  <files>
      </files>
  <og_groups>
          <item>1188</item>
          <item>108731</item>
      </og_groups>
  <og_groups_both>
          <item><![CDATA[Research Horizons]]></item>
          <item><![CDATA[School of Mechanical Engineering]]></item>
      </og_groups_both>
  <field_keywords>
          <item>
        <tid>194701</tid>
        <value><![CDATA[go-resarchnews]]></value>
      </item>
      </field_keywords>
  <field_userdata><![CDATA[]]></field_userdata>
</node>
