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首页> 外文期刊>Journal of Materials Science >Erosion-corrosion behavior of plastic mold steel in solid/aqueous slurry
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Erosion-corrosion behavior of plastic mold steel in solid/aqueous slurry

机译:塑料模具钢在固/水浆中的冲蚀腐蚀行为

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Erosion-corrosion behavior of a precipitation hardenable plastic mold steel (NAK80) has been investigated by using a rotated slurry erosion rig containing a slurry comprising 20 wt% Al2O3 particle and 3.5% NaCl solution. The erosion-corrosion rate and the synergism between erosion and corrosion have been determined under various conditions. The major environmental parameters considered are impact angle, impact velocity, and particle size. Post-test examination was conducted to identify the material degradation mechanism involved. The erosion-corrosion mechanisms of NAK80 mold steel at high-impact angles are dominated by the formation of impact pits, dissolution of metallic matrix, and plastic deformation fatigue spalling, whereas at low-impact angles, the mechanisms are dominated by the formation of impact pits, dissolution of metallic matrix, fatigue cracks, and cutting. The observed synergism between these mechanisms is much more accentuated at an oblique impact angle than that at a normal impact angle. At a given impact angle, the erosion-corrosion rate is found to increase with the impact velocity and the size of solid particles. The maximum peak of the erosion rates lies at oblique angles between 30A degrees and 45A degrees, whereas the maximum peak of the erosion-corrosion rates appears at 45A degrees, and the erosion-corrosion rate is higher than the erosion rate alone at all angles examined. There is a positive synergism between erosion and corrosion for NAK80 mold steel in solid/aqueous slurry. The synergistic effect is 40-60% of the total weight loss. The contribution of synergism to the total weight loss depends upon the impact velocity; however, it is almost independent of the impact angle and particle size.
机译:沉淀硬化型塑料模具钢(NAK80)的腐蚀-腐蚀行为已经通过使用旋转的浆料腐蚀设备进行了研究,该设备包含包含20 wt%Al2O3颗粒和3.5%NaCl溶液的浆料。已经在各种条件下确定了腐蚀腐蚀速率以及腐蚀与腐蚀之间的协同作用。所考虑的主要环境参数是冲击角,冲击速度和粒径。进行了测试后检查以确定所涉及的材料降解机理。 NAK80模具钢在高冲击角时的腐蚀-腐蚀机理主要由冲击坑的形成,金属基体的溶解和塑性变形疲劳剥落引起;而在低冲击角时,该机理主要由冲击的形成引起。坑,金属基质的溶解,疲劳裂纹和切削。这些机制之间观察到的协同作用在倾斜撞击角下比在正常撞击角下更加突出。在给定的冲击角下,发现腐蚀速率随冲击速度和固体颗粒尺寸的增加而增加。腐蚀速率的最大峰值位于30A度和45A度之间的倾斜角度,而腐蚀腐蚀速率的最大峰值出现在45A度,并且在所有角度下腐蚀腐蚀速率均高于单独的腐蚀速率。 NAK80模具钢在固/水浆中的腐蚀和腐蚀之间具有积极的协同作用。协同作用是总体重减轻的40-60%。协同作用对总减肥的贡献取决于撞击速度。但是,它几乎与冲击角和粒径无关。

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