首页> 外文会议>Advances in Powder Metallurgy Particulate Materials - 2006 >The Effect of Post Sintering Cooling Rate on Microstucture and Machinability of a PM Sinter Hardened Steel
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The Effect of Post Sintering Cooling Rate on Microstucture and Machinability of a PM Sinter Hardened Steel

机译:烧结后冷却速度对粉末冶金烧结硬化钢的显微组织和切削性能的影响

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The effect of post sintering cooling rate on the microstructure of a PM sintered steel was investigated by assigning three different cooling conditions to the same alloy. The various microstructures produced by these different cooling conditions were evaluated and quantitatively analyzed for volume fraction of bainite, martensite, and retained austenite. Machinability tests were also performed on samples from all three cooling conditions to determine how these microstructures affected tool life. This was done using a turning operation and the tool life machinability criteria. It was found that the volume fraction of martensite was the most important factor in determining machinability. Lower martensite contents produced much higher machinability and vice versa. Lower martensite contents also resulted in decreased hardness. Bainite was found to be a much more favorable phase from a machinability standpoint. It was also observed that the trajectory of the chips during the turning operation was an indicator of the condition of the tool edge.
机译:通过将三种不同的冷却条件分配给同一合金,研究了烧结冷却速率对PM烧结钢微观结构的影响。通过这些不同的冷却条件产生的各种微结构进行评价和定量地分析贝氏体,马氏体和保留奥氏体的体积分数。还对来自所有三种冷却条件的样品进行了可加工性测试,以确定这些微结构如何影响工具寿命。这是使用转动操作和工具寿命的可加工标准完成的。结果发现马氏体的体积分数是确定可加工性的最重要因素。低马氏体含量产生了更高的可加工性,反之亦然。低马氏体含量也导致硬度降低。从可加工性的角度来看,贝氏体被发现是一个更有利的相位。还观察到,在转动操作期间芯片的轨迹是工具边缘条件的指示。

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