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Microstructure control and structure analysis in the semi-solid state of different feedstock materials for the bearing steel 100Cr6

机译:轴承钢100Cr6不同原料的半固态组织控制和结构分析

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The bearing steel 10OCr6 in the forged and hardened condition is of great importance in industrial use. Escaping the geometry restrictions of conventional forging, the application of semi-solid metalworking (SSM) offers significantly increased design freedom. Using conventionally available rolled feedstock material with carbide banding, however, results in a higher segregation tendency during thixoforging, and thus special attention was paid to the feedstock's "quality". To achieve a fine-grained, globular microstructure in the semi-solid state, castings with and without the addition of 100 ppm titanium were compared with the hot rolled material. With its inherent nitrogen Ti forms TiN particles, which reduce grain-growth in austenite. The results indicate that TiN precipitates strongly affect grain growth during solid state processing, but the grain size in the semi-solid state can only be influenced for short process times. Generally the cast feedstock materials possess smaller globulites in the semi-solid state compared to forgings, so that a reduction of the sponge effect and a minimization of the segregation in produced components are expected. Since the cast material already showed a fine-grained, globulitic microstructure, the use of TiN is not recommended because of the possible negative influence of TiN on the dynamic mechanical properties
机译:处于锻造和硬化状态的轴承钢10OCr6在工业应用中非常重要。避免了传统锻件的几何形状限制,半固态金属加工(SSM)的应用大大提高了设计自由度。然而,使用传统上可获得的具有碳化物带的轧制原料,导致触变过程中有更高的偏析趋势,因此要特别注意原料的“质量”。为了获得半固态的细小球状微结构,将添加和不添加100 ppm钛的铸件与热轧材料进行了比较。 Ti以其固有的氮形成TiN颗粒,从而减少了奥氏体中的晶粒长大。结果表明,TiN沉淀物在固态加工过程中强烈影响晶粒的生长,但半固态的晶粒尺寸只能在较短的加工时间内受到影响。通常,与锻件相比,铸造原料在半固态下具有较小的球状体,因此预期海绵效应的降低和所生产部件中偏析的最小化。由于铸造材料已经显示出细粒的球状微结构,因此不建议使用TiN,因为TiN可能会对动态力学性能产生负面影响

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