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                    <title><![CDATA[Mohawk College Newsroom]]></title>
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                    <pubDate>Tue, 02 Feb 2021 18:50:55 +0100</pubDate>
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                        <title>Characterizing growth condition of plants using multispectral sensors installed on an UAV</title>
                        <link>https://www.mohawknewsdesk.ca/characterizing-growth-condition-of-plants-using-multispectral-sensors-installed-on-an-uav/</link>
                        <guid>https://www.mohawknewsdesk.ca/characterizing-growth-condition-of-plants-using-multispectral-sensors-installed-on-an-uav/</guid><pp:caseid>434496</pp:caseid><description><![CDATA[<img src="https://content.presspage.com/uploads/1499/1920_dronesgrowth.jpg?10000"><p><span><span><em><span><span><span>Upcoming webinar showcases how drones can be used to monitor crop health.</span></span></span></em></span></span></p><p><span><span><i><span>In agriculture, nothing is more important than the health of your crop- and the earlier you can address crop health issues, the better. New technology is making it possible to discover issues with crops before they are even visible to the human eye.</span></i> </span></span></p><p><span><span><span><span>On March 2, Greg Matzke will be sharing the research results from his study that explored how multispectral sensors, when installed on a UAV (drone) could help determine the growth conditions of various types of vegetation such as wine crops in the Niagara on the Lake area.</span></span></span></span></p><p><span><span><span><span>The researchers mounted Multispectral cameras with RGB (Red, Green, Blue) near infrared and red edge bands on a DJI Inspire 1 Pro drone in order to determine the growth conditions of various types of vegetation. As near infrared and red edge bands are not visible to human eye, they can easily detect deficiency of chlorophyll, green pigment in the plants responsible for photosynthesis process and this allows for early intervention.</span></span></span></span></p><p><span><span><span><span>Greg Matzke is a professor in the Chemical, Environmental and Biotechnology Department at Mohawk College. His research project was supported by the IDEAWORKS Catalyst Fund (ICF), which provides funding to support new applied research and innovative scholarship in teaching and learning at Mohawk College.</span></span></span></span></p><p><span><span><span><span>The free webinar will be held on Thursday, March 2, 2021 from 2 p.m.- 3 p.m. and is open to Mohawk College employees, students and the public.</span></span></span></span></p><p><span><span><span><span><a href="https://mohawkcollege.zoom.us/webinar/register/3216107464602/WN_aABJcn5SQlyNP8ar5FXd_Q">Register here.</a></span></span></span></span></p>]]></description><category><![CDATA[news now,Spotlight on Research,applied research]]></category>
            <pubDate>Tue, 02 Feb 2021 10:15:00 -0500</pubDate>
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                        <title>Mohawk College partners with University of Guelph to help CGL Manufacturing adopt additive manufacturing technology</title>
                        <link>https://www.mohawknewsdesk.ca/mohawk-college-partners-with-university-of-guelph-to-help-cgl-manufacturing-adopt-additive-manufacturing-technology/</link>
                        <guid>https://www.mohawknewsdesk.ca/mohawk-college-partners-with-university-of-guelph-to-help-cgl-manufacturing-adopt-additive-manufacturing-technology/</guid><pp:caseid>425822</pp:caseid><pp:subtitle>Guelph-based CGL Manufacturing to leverage expertise at Mohawk, Guelph to develop ductile iron powder mix for 3D Printing.</pp:subtitle><description><![CDATA[<img src="https://content.presspage.com/uploads/1499/1920_ductileironpowder.jpg?10000"><p><span><span><span>A partnership between</span> <a href="https://www.mohawkcollege.ca/ideaworks"><span>Mohawk College</span></a> <span>and the</span> <a href="https://www.uoguelph.ca/"><span>University of Guelph</span></a> <span>will help an Ontario off-road component supplier</span> <span>create high-quality rapid prototypes for its clients while fostering Canadian innovation in advanced manufacturing.</span></span></span></p><p><span><span><a href="https://www.cglmfg.ca/"><span><span><span>CGL Manufacturing Inc</span></span></span></a><span>., headquartered in Guelph, Ontario, is a global supplier of machined castings, components, and fabrications. Seeking a competitive advantage to respond faster to client&rsquo;s requests for new and redesigned parts, CGL turned to the combined additive manufacturing and materials development expertise at Mohawk and U of G. The partnership gained important funding from the Natural Science and Engineering Research Council of Canada (NSERC) to support the research.</span></span></span></p><p><span><span><span>CGL produces its final parts in ductile iron, a material known for its strength and durability. While the company plans to continue to use castings to create its final parts, there is interest in producing preliminary parts and prototypes using an Additive Manufacturing technology known as powder bed fusion. However, ductile iron is not a material that is commonly used in additive manufacturing and is not commercially available. Mohawk and Guelph will collaborate to develop a ductile iron powder mix that can be used by CGL to produce high-quality parts and prototypes.</span></span></span></p><p><span><span><span>&ldquo;A 24-week lead and set-up time of the casting process is one of the main challenges CGL faces when a sample part is needed for a new client, or for design revisions of current products,&rdquo; says President and CEO Michael Ritchie about why the company wanted to invest in research and development. &ldquo;We want to provide our clients with a high-quality experience, and part of that is reducing production to market time for samples, new products, and design revisions.&rdquo;</span></span></span></p><p><span><span><span>The results of the joint research project will ensure that the powder bed fusion parts will have the same chemical composition and mechanical properties as the final casted parts.</span></span></span></p><p><span><span><span>&ldquo;This project is an example of a synergetic collaboration and resource integration between industry and academia to develop novel solutions to unique business challenges,&rdquo; says Ibrahim Deiab, Professor of Mechanical Engineering at the University of Guelph. &ldquo;On the Guelph side, the Advanced Manufacturing Lab (AML) provides a unique environment to support this type of research, training and education in advanced and sustainable manufacturing technologies.&rdquo;</span></span></span></p><p><span><span><span>&ldquo;It&rsquo;s important for the Canadian private sector to compete in a global marketplace. By leveraging academic institutions to help solve key challenges, small and medium-sized companies grow faster and smarter.&rdquo; says Jeffrey McIsaac, Dean of Applied Research at Mohawk College. &ldquo;Mohawk&rsquo;s additive manufacturing expertise will help CGL explore new 3D printing at low risk and will keep them at the forefront of technology.&rdquo;</span></span></span></p><p><span><span><span>The two-year project is funded by $300,000 from the NSERC through</span> <a href="https://www.nserc-crsng.gc.ca/professors-professeurs/rpp-pp/cui2i-innovuc_eng.asp"><span>Innovation Links,</span></a> <span>a unique program that supports research projects that combine college expertise with university knowledge to collaborate to solve an industry problem. CGL is also investing $200,000 in the project through cash and in-kind contributions.</span></span></span></p><p><span><span><span>CGL will work on this research with Jeff McIsaac, Simon Coulson, and Justin Valenti at Mohawk College&rsquo;s</span> <a href="https://www.mohawkcollege.ca/ideaworks/additive-manufacturing-innovation-centre-amic"><span>Additive Manufacturing Innovation Centre (AMIC</span></a><span>) and Dr. Ibrahim Deiab and John Cloutier of U of G&rsquo;s</span> <a href="http://www.uoguelph.ca/aml/"><span>Advanced Manufacturing Laboratory (AML)</span></a><span>. This is the second research collaboration between CGL, Mohawk College and the University of Guelph. Previously, the trio explored preliminary work in developing the ductile iron powder,</span> <span><span><span>funded by an NSERC engage grant, Ontario Centres of Excellence VIP I grant and the</span></span></span> <a href="https://www.ncinnovation.ca/"><span><span><span>Southern Ontario Network for Advanced Manufacturing Innovation (SONAMI)</span></span></span></a>&nbsp;<span><span><span>through</span></span></span>&nbsp;<a href="https://www.feddevontario.gc.ca/eic/site/723.nsf/eng/home"><span><span><span>Federal Economic Development Agency for Southern Ontario</span></span></span></a>&nbsp;<span><span><span>(FedDev Ontario) contributions.</span></span></span></span></span></p><p><span><span><span>&ldquo;Our diverse range of capabilities allows us to take on the projects that other firms cannot, while providing a level of service unparalleled in our industry&rdquo; says Mike Ritchie, CGL CEO. &ldquo;This collaboration with Mohawk and Guelph will provide our clients with an additional reason to rely on Canadian innovation.&rdquo;</span></span></span></p><p><span><span><span>.</span></span></span></p>]]></description><category><![CDATA[news now,Spotlight on Research,spotlight on projects]]></category>
            <pubDate>Thu, 26 Nov 2020 09:22:00 -0500</pubDate>
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