首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A Coupling Response Surfaces Methodology of Multiple Constraints (CRSMMC) for parameters optimization of broach tool in broaching of heat-resistant steel X12CrMoWVNb N-10-1-1
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A Coupling Response Surfaces Methodology of Multiple Constraints (CRSMMC) for parameters optimization of broach tool in broaching of heat-resistant steel X12CrMoWVNb N-10-1-1

机译:用于优化耐热钢X12CrMoWVNb N-10-1-1的拉削刀具参数的多重约束耦合响应面方法(CRSMMC)

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摘要

Broaching fir-slots on the turbine discs is regarded as one of the key processes and the most difficult machining operations due to complex geometry and very tight tolerances. The heat-resistant steel X12CrMoWVNb N-10-1-1 is widely used as material in power-generation turbines. However, the manufacturability of the heat-resistant steel poses enormous challenges to the turbine plants. Subjected to several constraints including broaching force, broaching surface quality and broaching tool's structure strength, machining efficiency, broaching tool's life, and so on; the broaching process is mainly influenced by cutting speed, rake angle, clearance angle, and rise per tooth (RPT) of broach tool. A flexible evaluation method for multiple constraints, CRSMMC, is presented to acquire optimization parameters of broach tool for machining heat-resistant steel. Rake angle, clearance angle and rise per tooth (RPT) are designed as three factors by using the central composite design (CCD) method. In addition, broaching experiments of heat-resistant steel X12CrMoWVNb N-10-1-1 were performed in order to set up the model. In addition, the influences of broaches parameters on constraints were studied. The results indicated that the rise per tooth (RPT) was the dominant factor under the constraints of surface roughness and cutting force. Moreover, the predicted values obtained by CRSMMC were in good agreement with the experimental values, which indicated that CRSMMC was an effective method for broach tool's parameters optimization in broaching of heat-resistant steel X12CrMoWVNb N-10-1-1.
机译:由于复杂的几何形状和非常严格的公差,涡轮盘上的拉削裂槽被认为是关键工艺之一,也是最困难的加工操作。耐热钢X12CrMoWVNb N-10-1-1被广泛用作发电涡轮机的材料。然而,耐热钢的可制造性对涡轮机厂提出了巨大的挑战。受到拉削力,拉削表面质量和拉削工具结构强度,加工效率,拉削工具寿命等方面的限制;拉削过程主要受拉削刀具的切削速度,前角,游隙角和每齿上升量(RPT)的影响。提出了一种灵活的多约束评估方法CRSMMC,以获取用于加工耐热钢的拉刀的优化参数。使用中央复合设计(CCD)方法将前角,后角和每齿上升角(RPT)设计为三个因素。此外,进行了耐热钢X12CrMoWVNb N-10-1-1的拉削实验,以建立模型。此外,研究了拉刀参数对约束的影响。结果表明,在表面粗糙度和切削力的约束下,每齿上升量(RPT)是主要因素。另外,通过CRSMMC获得的预测值与实验值吻合良好,表明CRSMMC是优化耐热钢X12CrMoWVNb N-10-1-1的拉削刀具参数优化的有效方法。

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