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	<title>Bearing  &#124; Deep Groove Ball Bearing  Blog &#187; Ball Bearings</title>
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		<title>Baldor Moving Bearing Production to Marion from Columbus facility.</title>
		<link>http://www.taihebearing.com/blog/archives/7</link>
		<comments>http://www.taihebearing.com/blog/archives/7#comments</comments>
		<pubDate>Tue, 12 Jan 2010 11:02:36 +0000</pubDate>
		<dc:creator>admin</dc:creator>
				<category><![CDATA[Ball Bearings]]></category>
		<category><![CDATA[Bearing News]]></category>
		<category><![CDATA[Bearing]]></category>

		<guid isPermaLink="false">http://www.taihebearing.com/blog/?p=7</guid>
		<description><![CDATA[Production of larger Dodge branded mounted industrial bearings is being moved from Columbus, Indiana to a sister plant in Marion, North Carolina. Baldor said the plant in Columbus is not being closed and no layoffs are currently expected, but that it is actively seeking buyers for Columbus as a turnkey manufacturing facility.
Baldor Electric Company (USA; [...]]]></description>
			<content:encoded><![CDATA[<p>Production of larger Dodge branded mounted industrial bearings is being moved from Columbus, Indiana to a sister plant in Marion, North Carolina. Baldor said the plant in Columbus is not being closed and no layoffs are currently expected, but that it is actively seeking buyers for Columbus as a turnkey manufacturing facility.</p>
<p>Baldor Electric Company (USA; NYSE: BEZ; 5251R9N7), Dodge&#8217;s relatively new owner, has been consolidating manufacturing facilities worldwide since acquiring Reliance and Dodge in 2007 for USD $1.8 billion.</p>
<p>Baldor manufactures electric motors, motor drives, power transmissions, and generators. In early 2007, Baldor acquired Dodge Bearing, Reliance Electric and other operations related to Rockwell Automation&#8217;s Power Systems Business division.</p>
<p>2006 article: Rockwell to divest Dodge Bearing business</p>
<p>2006 article: Baldor acquiring Dodge <strong><a href="http://www.taihebearing.com/">Bearing</a></strong> from Rockwell</p>
<p>Founded in 1878, Dodge branded power transmission products include mounted bearings, enclosed shaft mount, helical and worm gearing, and other power transmission components such as bushings, sheaves and conveyor pulleys. Markets are across many applications and industries &#8212; mining, petroleum, aggregate, unit handling, power generation, and package handling.</p>
<p>Opened in 1996, the 176,000 square foot Marion NC bearing plant currently employs approximately 100 workers. It produces 2,600 different Dodge branded mounted bearings &#8212; spherical and tapered roller &#8212; in IDs from 1-3/16&#8243; to 5&#8243;.</p>
<p>Adding Columbus production at Marion coincides with a $3.1 million expansion program that will add 25 workers by 2011. The One North Carolina Fund reportedly put up $76,000 to help offset the expense moving the line from Columbus to Marion.</p>
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		<title>Schaeffler Releases Condition Monitoring Guide</title>
		<link>http://www.taihebearing.com/blog/archives/3</link>
		<comments>http://www.taihebearing.com/blog/archives/3#comments</comments>
		<pubDate>Wed, 16 Dec 2009 09:47:05 +0000</pubDate>
		<dc:creator>admin</dc:creator>
				<category><![CDATA[Ball Bearings]]></category>
		<category><![CDATA[Bearing News]]></category>
		<category><![CDATA[Deep Groove Ball Bearing NEWS]]></category>

		<guid isPermaLink="false">http://www.taihebearing.com/blog/?p=3</guid>
		<description><![CDATA[A technical white paper that provides engineers with advice and guidance on the condition monitoring of rolling bearings is now available from Schaeffler.
The paper, entitled &#8216;The Role of Vibration Monitoring in Predictive Maintenance&#8217;, was written by Dr Steve Lacey, engineering manager at Schaeffler (UK).
As companies downsize and look to reduce costs, maintenance can often become [...]]]></description>
			<content:encoded><![CDATA[<p>A technical white paper that provides engineers with advice and guidance on the condition monitoring of rolling bearings is now available from Schaeffler.</p>
<p>The paper, entitled &#8216;The Role of Vibration Monitoring in Predictive Maintenance&#8217;, was written by Dr Steve Lacey, engineering manager at Schaeffler (UK).</p>
<p>As companies downsize and look to reduce costs, maintenance can often become a casualty.</p>
<p>However, as equipment and machinery becomes more complex and automated, the need to have a properly structured and funded maintenance strategy is more important than ever.</p>
<p>Undertaking thorough risk assessments across the business can help companies identify how critical existing machines are to their overall operation, which helps to determine the potential return on investment of a properly funded maintenance strategy.</p>
<p>&#8216;Rolling <a href="http://www.taihebearing.com/">bearings</a> are a critical component used extensively in rotating equipment and machinery,&#8217; said Lacey.</p>
<p>&#8216;When they fail unexpectedly, this can result in a catastrophic failure with high associated repair and replacement costs.</p>
<p>&#8216;Vibration-based condition monitoring can be used to detect and diagnose machine faults and form the basis of a predictive maintenance strategy,&#8217; he added.</p>
<p>As well as providing the reader with information on the basic approaches to the various types of maintenance strategy (reactive, preventive and predictive), the paper also provides guidance on how to set up and identify the criticality of assets in your business, including potential return on investment from implementing a predictive maintenance regime.</p>
<p>The paper then discusses the technical benefits of using condition monitoring systems and techniques to support the predictive maintenance strategy.<br />
<span id="more-3"></span><br />
This includes vibration monitoring, which can be used to detect early signs of failure of rolling bearings.</p>
<p>Detailed analysis of the various rolling bearing vibration monitoring techniques are discussed and appraised.</p>
<p>Sections are included on frequency spectrum, envelope spectrum, Cepstrum analysis, bearing characteristic frequencies, typical bearing defects, variable compliance and bearing speed ratio.</p>
<p>The final chapter of the paper considers various real-life scenarios of rolling bearing vibration monitoring, including detailed studies of a 250kW electric motor; an impact crusher drive shaft; a 2MW generator on a test bed; a vertical impact crusher; and the gearbox of a wind turbine.</p>
<p>&#8216;Rolling bearings generate characteristic vibration frequencies that can combine to give complex vibration spectra, which at times may be difficult to interpret other than to an experienced vibration analyst,&#8217; said Lacey.</p>
<p>&#8216;However, with rolling bearings, characteristic vibration signatures are often generated in the form of modulation of the fundamental bearing frequencies.</p>
<p>&#8216;This can be used to our advantage and vibration condition monitoring software is designed to identify these features and provide an early warning to an impending problem.</p>
<p>&#8216;This usually takes the form of signal demodulation and the envelope spectrum, which indicates early deterioration of the rolling contact surfaces,&#8217; he added.</p>
<p>For a free copy of the white paper, visit Schaeffler&#8217;s website.</p>
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