Daniel Eylon

Affiliations: 
Materials Engineering University of Dayton, Dayton, OH, United States 
Area:
Materials Science Engineering, Mechanical Engineering
Website:
https://asura.asu.edu/daniel-eylon
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"Daniel Eylon"
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Publications

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Meyendorf R, Eylon D. (2014) Improving the accuracy of case depth measurements in carburized steel using a combination of electromagnetic test methods Aip Conference Proceedings. 1581: 1299-1306
Eylon D, Ernst WA, Kramer DP. (2009) Development of ultra-fine microstructure in titanium via powder metallurgy for improved ductility and strength Materials Science Forum. 604: 223-228
Ivasishin OM, Eylon D, Bondarchuk VI, et al. (2008) Diffusion during powder metallurgy synthesis of titanium alloys Defect and Diffusion Forum. 277: 177-185
Stanford MK, DellaCorte C, Eylon D. (2004) Effect of particle morphology on flow characteristics of a composite plasma spray powder Journal of Thermal Spray Technology. 13: 586-592
Tal-Gutelmacher E, Eliezer D, Eylon D. (2004) The effects of low fugacity hydrogen in duplex- and beta-annealed Ti-6Al-4V alloy Materials Science and Engineering A. 381: 230-236
Niinomi M, Hutson AL, Shell EB, et al. (2003) Effect of Cu-Ni plasma coating on fretting fatigue characteristics of Ti-6Al-4V under flat-on-flat contact Materials Science Forum. 426: 649-654
Gunawarman, Niinomi M, Eylon D, et al. (2003) Improvement in fracture toughness of Ti-4.5Al-3V-2Mo-2Fe through microstructural optimization Metallurgical and Materials Transactions a: Physical Metallurgy and Materials Science. 34: 267-275
Stanford MK, DellaCorte C, Eylon D. (2003) Particle size effects on flow properties of PS304 plasma spray feedstock powder blend Ceramic Engineering and Science Proceedings. 24: 577-586
Martinez CM, Eylon D, Nicholas T, et al. (2002) Effects of ballistic impact damage on fatigue crack initiation in Ti-6Al-4V simulated engine blades Materials Science and Engineering A. 325: 465-477
Hutson AL, Niinomi M, Nicholas T, et al. (2002) Effect of various surface conditions on fretting fatigue behavior of Ti-6Al-4V International Journal of Fatigue. 24: 1223-1234
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