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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >The effect of impact conditions on the wear and deformation behavior of wear resistant steels
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The effect of impact conditions on the wear and deformation behavior of wear resistant steels

机译:冲击条件对耐磨钢的磨损和变形行为的影响

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摘要

The deformation and wear behavior of four high strength wear resistant steels were studied in various impact conditions to evaluate their performance in applications involving heavy impacts and impact-abrasion. In the normal direction impacts, the studies were conducted with single and repeated (multiple) drop tests. To better simulate the actual application conditions, the samples were positioned at an angle relative to the impact direction in the tests with the high velocity particle impactor (HVPI) device. The effect of strain rate was investigated using constant size projectiles made from materials with different density but keeping the impact energy constant by varying the incident projectile velocity. The effect of surface hardening on the wear resistance of the high strength steels was determined by impacting the same surface area multiple times at a constant velocity using spherical high velocity projectiles. Regardless of the rather similar hardness of the studied three martensitic steel grades, the impact behavior showed differences in wear rate and damage mechanisms in each case due to the microstructural characteristics of the materials. The adiabatic shear bands forming in the martensitic steels at higher loading rates were found to increase the wear rate. Moreover, the carbide reinforced steel performed in general better than the martensitic grades but showed more brittle behavior and generation of crack networks that can affect the wear performance of the material. (C) 2015 Elsevier B.V. All rights reserved.
机译:对四种高强度耐磨钢在各种冲击条件下的变形和磨损行为进行了研究,以评估其在涉及重冲击和冲击磨损的应用中的性能。在法线方向的冲击下,研究采用单次和重复(多次)跌落试验进行。为了更好地模拟实际应用条件,在使用高速粒子撞击器(HVPI)的测试中,将样品相对于撞击方向成一定角度放置。使用由不同密度的材料制成的恒定尺寸射弹,但通过改变入射射弹速度保持冲击能量恒定,研究了应变率的影响。表面硬化对高强度钢耐磨性的影响是通过使用球形高速射弹以恒定速度多次冲击相同的表面积来确定的。不管所研究的三种马氏体钢的硬度是否相近,由于材料的微观结构特征,在每种情况下,冲击行为均显示出磨损率和损伤机理的差异。发现在较高加载速率下在马氏体钢中形成的绝热剪切带会增加磨损率。此外,硬质合金增强钢的性能总体上优于马氏体钢,但表现出更多的脆性和裂纹网络的产生,这些裂纹会影响材料的磨损性能。 (C)2015 Elsevier B.V.保留所有权利。

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