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Effect of Microstructure on Impact Fatigue Resistance and Impact Wear Resistance of Medium Cr-Si Cast Iron

机译:显微组织对中Cr-Si铸铁冲击疲劳强度和冲击耐磨性的影响

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摘要

A great amount of iron grinding balls in tube mills have been consumed. Under this impact abrasive wear working condition, the failure of wear resistant alloying white irons grinding balls is mainly caused by fatigue spalling. The impact wear resistance of martensitic high chromium cast iron (Cr of 15 %) is not high sometimes, but its cost is not low. Thus, medium Cr-Si wear resistant cast iron is recommended. The influence of the iron on impact fatigue resistance and impact wear resistance is pronounced. Ball-on-ball impact fatigue test and high stress impact wear test of the grinding balls have been carried out. The results show that the impact fatigue resistance (IFR) and impact wear resistance (IWR) of medium Cr-Si cast iron are superior to those of martensitic high chromium cast iron (Cr of 15%). The main reasons are that (1) the stress in medium Cr-Si cast iron is released in the as-cast state; (2)the matrix is fine pearlite with better toughness and plasticity; (3) the pearlite is more stable compared with a retained austenite under repeated impact load and less phase transformation can take place; (4) high silicon content improves the morphology of eutectic carbide; (5) there is no secondary carbide which results in less crack sources. All these factors are beneficial to improvement of impact fatigue spalling resistance. The eutectic carbide M7C3 is the main constituent to resist wear.
机译:管磨机中消耗了大量的铁磨球。在这种冲击性磨料磨损工作条件下,耐磨合金化白铁砂轮的失效主要是由疲劳剥落引起的。马氏体高铬铸铁(Cr为15%)的耐冲击磨损性有时不高,但是成本不低。因此,建议使用中等Cr-Si耐磨铸铁。铁对耐冲击疲劳性和耐冲击磨损性的影响是明显的。已经对磨球进行了滚珠冲击疲劳试验和高应力冲击磨损试验。结果表明,中Cr-Si铸铁的抗冲击疲劳性(IFR)和抗冲击耐磨性(IWR)优于马氏体高铬铸铁(Cr为15%)。其主要原因是:(1)铸态中的Cr-Si铸铁中的应力被释放。 (2)基体为细珠光体,具有较好的韧性和塑性; (3)在反复冲击载荷下,珠光体与残余奥氏体相比更稳定,相变少; (4)高硅含量改善了共晶碳化物的形态; (5)没有次生碳化物,从而减少了裂纹源。所有这些因素都有利于提高抗冲击疲劳剥落性。共晶碳化物M7C3是抗磨损的主要成分。

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