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<titleInfo><title>Effect of substrate pre‐treatment on the low cycle fatigue performance of tungsten carbide‐cobalt coated additive manufactured 316 L substrates</title></titleInfo>


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  <namePart type="given">Wolfgang</namePart>
  <namePart type="family">Tillmann</namePart>
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  <namePart type="given">Leif</namePart>
  <namePart type="family">Hagen</namePart>
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  <namePart type="given">Kai-Uwe</namePart>
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  <namePart type="given">Kay-Peter</namePart>
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  <namePart type="given">Mirko</namePart>
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<originInfo><dateIssued encoding="w3cdtf">2020</dateIssued>
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<relatedItem type="host"><titleInfo><title>Materialwissenschaft und Werkstofftechnik</title></titleInfo>
  <identifier type="issn">0933-5137</identifier>
  <identifier type="issn">1521-4052</identifier><identifier type="doi">10.1002/mawe.202000109</identifier>
<part><extent unit="pages">1452-1464</extent>
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<chicago>Tillmann, Wolfgang, Leif Hagen, Kai-Uwe Garthe, Kay-Peter Hoyer, and Mirko Schaper. “Effect of Substrate Pre‐treatment on the Low Cycle Fatigue Performance of Tungsten Carbide‐cobalt Coated Additive Manufactured 316 L Substrates.” &lt;i&gt;Materialwissenschaft Und Werkstofftechnik&lt;/i&gt;, 2020, 1452–64. &lt;a href=&quot;https://doi.org/10.1002/mawe.202000109&quot;&gt;https://doi.org/10.1002/mawe.202000109&lt;/a&gt;.</chicago>
<ieee>W. Tillmann, L. Hagen, K.-U. Garthe, K.-P. Hoyer, and M. Schaper, “Effect of substrate pre‐treatment on the low cycle fatigue performance of tungsten carbide‐cobalt coated additive manufactured 316 L substrates,” &lt;i&gt;Materialwissenschaft und Werkstofftechnik&lt;/i&gt;, pp. 1452–1464, 2020, doi: &lt;a href=&quot;https://doi.org/10.1002/mawe.202000109&quot;&gt;10.1002/mawe.202000109&lt;/a&gt;.</ieee>
<mla>Tillmann, Wolfgang, et al. “Effect of Substrate Pre‐treatment on the Low Cycle Fatigue Performance of Tungsten Carbide‐cobalt Coated Additive Manufactured 316 L Substrates.” &lt;i&gt;Materialwissenschaft Und Werkstofftechnik&lt;/i&gt;, 2020, pp. 1452–64, doi:&lt;a href=&quot;https://doi.org/10.1002/mawe.202000109&quot;&gt;10.1002/mawe.202000109&lt;/a&gt;.</mla>
<bibtex>@article{Tillmann_Hagen_Garthe_Hoyer_Schaper_2020, title={Effect of substrate pre‐treatment on the low cycle fatigue performance of tungsten carbide‐cobalt coated additive manufactured 316 L substrates}, DOI={&lt;a href=&quot;https://doi.org/10.1002/mawe.202000109&quot;&gt;10.1002/mawe.202000109&lt;/a&gt;}, journal={Materialwissenschaft und Werkstofftechnik}, author={Tillmann, Wolfgang and Hagen, Leif and Garthe, Kai-Uwe and Hoyer, Kay-Peter and Schaper, Mirko}, year={2020}, pages={1452–1464} }</bibtex>
<short>W. Tillmann, L. Hagen, K.-U. Garthe, K.-P. Hoyer, M. Schaper, Materialwissenschaft Und Werkstofftechnik (2020) 1452–1464.</short>
<ama>Tillmann W, Hagen L, Garthe K-U, Hoyer K-P, Schaper M. Effect of substrate pre‐treatment on the low cycle fatigue performance of tungsten carbide‐cobalt coated additive manufactured 316 L substrates. &lt;i&gt;Materialwissenschaft und Werkstofftechnik&lt;/i&gt;. Published online 2020:1452-1464. doi:&lt;a href=&quot;https://doi.org/10.1002/mawe.202000109&quot;&gt;10.1002/mawe.202000109&lt;/a&gt;</ama>
<apa>Tillmann, W., Hagen, L., Garthe, K.-U., Hoyer, K.-P., &amp;#38; Schaper, M. (2020). Effect of substrate pre‐treatment on the low cycle fatigue performance of tungsten carbide‐cobalt coated additive manufactured 316 L substrates. &lt;i&gt;Materialwissenschaft Und Werkstofftechnik&lt;/i&gt;, 1452–1464. &lt;a href=&quot;https://doi.org/10.1002/mawe.202000109&quot;&gt;https://doi.org/10.1002/mawe.202000109&lt;/a&gt;</apa>
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