Vanadium Microalloyed Forging Steels
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摘要: 介绍了中碳含钒锻钢的工艺、组织和性能。钒产生的强化作用可以提高中碳钢的强度,从而省去微合金化锻钢的后步热处理工序。强度的提高是由于在直接冷却的铁素体/珠光体组织中析出了细小的碳氮化钒析出物。当钢的组织大部分为珠光体时,强度达到最大,但此时钢在冲击载荷下的抗解理断裂性较低。提高含钒钢的韧性有几种方祛:-是在保证钢的强度的前提下降低碳含量;二是加入微合金元素钛;三是适当提高硫含量。Abstract: The production processing, microstructure and properties of vanadium microalloyed forging steels with medium-carbon are introduced. The strengthening produced by vanadium enhances the strength of medium-carbon steels. As a result, no further heat treatment is required for vanadium microalloyed forging steels. The increasing of strengths is due to fine vanadium carbonitride particles precipitating in ferrite-pearlite microstructure during cooling after forging. The highest strengths of steels are produced in base microstructrures with large volume fractions of pearlite. As a result, the resistance to cleavage fracture during impact loading is low. There are several available approaches for improving toughness. One approach is to lower the carbon content if lower strength can be tolerated. Another approach is to add titanium as a microalloying element. The third approach is to increasing sulfur content properly.
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Key words:
- forging steels /
- vanadium /
- microalloying /
- strengthening precipitation /
- strength /
- toughness /
- cleavage fracture
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