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A new production technique for wear resistant ring-hammers

机译:耐磨环锤的新生产技术

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Based on a great number of laboratory experiments, a new technique has been developed for producing wear resistant ring-hammers. In this technology, lost foam casting with iron sand was combined to make mold; a special alloy was used to inoculate the molten steel, and proper heat treatment was used to further improve mechanical properties of wear resistant ring-hammers. The influence of this new production technology on the microstructure and mechanical properties of wear resistant ring-hammers was studied. Results show that iron sand molding, having the inherent characteristic of sand molding, changes the type of metallic compounds, refines crystal grains and increases the fineness of microstructure. Practical experience verified that the properties of the ring-hammers produced with this new technique are as follows: tensile strength (Rm) 720 MPa, impact toughness (ak) > 210 J?cm-2 and hardness > 200 HB. After water quenching from 1,080℃ (holding for 4 h) and tempering at 320℃ for 3 h, the best wear resistance is obtained, and the wear resistance is 1.6 times higher than that of common high manganese ring-hammers.
机译:基于大量的实验室实验,已开发出一种新的技术来生产耐磨环锤。在这项技术中,结合使用铁砂铸造的消失模铸模来制造模具;使用特殊合金对钢水进行孕育,并使用适当的热处理进一步改善了耐磨环锤的机械性能。研究了这种新生产技术对耐磨环锤的组织和力学性能的影响。结果表明,具有砂型成型固有特性的铁砂型成型可改变金属化合物的类型,细化晶粒并提高微结构的细度。实际经验证明,用这种新技术生产的环锤的性能如下:拉伸强度(Rm)720 MPa,冲击韧性(ak)> 210 J?cm-2和硬度> 200 HB。将水从1,080℃淬火(保温4 h)并在320℃回火3 h后,可获得最佳的耐磨性,其耐磨性是普通高锰环锤的1.6倍。

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