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Effect of Impact Energy on the Impact-Wear Properties of Low Carbon High Manganese Alloy Steels in Corrosive Conditions

机译:腐蚀条件下冲击能量对低碳高锰合金钢冲击磨损性能的影响

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摘要

The impact-wear properties of low carbon high manganese alloy steel were tested under three different impact energies (0.7 J, 1.2 J and 1.7 J) using a modified MLD-10 wear tester. SEM inspection of the wear surface and subsurface optical metallographic analysis reveal the impact wear mechanism. Under corrosive conditions we observe a shift from single micro-cutting to impact-flaking, after the appearance of vertical section micro-cracks, while at higher impact energies fatigue corrosion and abrasion are observed.
机译:使用改良的MLD-10磨损测试仪,在三种不同的冲击能量(0.7 J,1.2 J和1.7 J)下测试了低碳高锰合金钢的冲击磨损性能。 SEM的磨损表面检查和地下光学金相分析揭示了冲击磨损机理。在腐蚀条件下,在出现垂直截面的微裂纹后,我们观察到了从单次显微切割到冲击剥落的转变,而在更高的冲击能量下,观察到了疲劳腐蚀和磨损。

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