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Preparation and Properties of Mo Coating on H13 Steel by Electro Spark Deposition Process

机译:电火花沉积工艺H13钢MO涂层的制备与性能

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摘要

H13 steel is often damaged by wear, erosion, and thermal fatigue. It is one of the essential methods to improve the service life of H13 steel by preparing a coating on it. Due to the advantages of high melting point, good wear, and corrosion resistance of Mo, Mo coating was fabricated on H13 steel by electro spark deposition (ESD) process in this study. The influences of the depositing parameters (deposition power, discharge frequency, and specific deposition time) on the roughness of the coating, thickness, and properties were investigated in detail. The optimized depositing parameters were obtained by comparing roughness, thickness, and crack performance of the coating. The results show that the cross-section of the coating mainly consisted of strengthening zone and transition zone. Metallurgical bonding was formed between the coating and substrate. The Mo coating mainly consisted of Fe9.7Mo0.3, Fe-Cr, FeMo, and Fe2Mo cemented carbide phases, and an amorphous phase. The Mo coating had better microhardness, wear, and corrosion resistance than substrate, which could significantly improve the service life of the H13 steel.
机译:H13钢常用于磨损,腐蚀和热疲劳损坏。它是通过制备涂层来改善H13钢的使用寿命的基本方法之一。由于熔点高的优点,通过电火花沉积(ESD)工艺在H13钢上制造良好的磨损和Mo的耐腐蚀性,通过电火花沉积(ESD)工艺在本研究中制造。详细研究了沉积参数(沉积功率,放电频率和特定沉积时间)对涂层,厚度和性质的粗糙度的影响。通过比较涂层的粗糙度,厚度和裂纹性能来获得优化的沉积参数。结果表明,涂​​层的横截面主要由强化区和过渡区组成。在涂层和基材之间形成冶金键合。 Mo涂层主要由Fe9.7mo0.3,Fe-Cr,股骨和Fe2Mo硬质合金相和非晶相组成。 MO涂层具有比基材更好的微硬度,磨损和耐腐蚀性,这可以显着提高H13钢的使用寿命。

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