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Study on optimization of iron-based matrix formula for hot pressed diamond bit

机译:热压金刚石钻头铁基基体配方的优化研究

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A new type of iron-based matrix formula as a potential substitute for traditional WC-based matrix formula for hot pressed diamond bit was investigated. Iron, phosphor-iron, 663-Cu, nickel, cobalt and certain additives were selected as the studied formula constituents. Among matrix performances, the hardness and wear resistance were chosen as experimental indexes in this paper. Constrained uniform design method was used for the formula design of iron-based matrix. Two forms of regression models of matrix hardness and wear resistance were obtained by regression analysis using MATLAB. Moreover, the optimization of matrix formulae and matrix performances were also achieved through constrained nonlinear programming. It was found that matrix hardness, significantly affected by the factor of Ni-Co-additives and Fe, increased with the increment of Ni-Co-additives, Fe and P-Fe, but reduced with the increase of 663-Cu. On the other hand, matrix wear resistance is mainly affected by Fe ;the effect of the interaction between Fe and P-Fe is also relatively obvious.The increment of 663-Cu powder may result in a slight improvement in matrix wear resistance. In addition, the results of nonlinear programming revealed that the predictive optimum value of hardness was 139.5 HRB and the optimum wear resistance was 0.056 g, whereas they could not reach the optimum value at the same time.
机译:研究了一种新型的铁基基体配方,可以替代传统的热压金刚石钻头基的WC基基体配方。选择铁,磷铁,663-Cu,镍,钴和某些添加剂作为所研究的配方成分。在基体性能中,选择硬度和耐磨性作为实验指标。采用约束均匀设计方法进行铁基基体的配方设计。通过使用MATLAB进行回归分析,获得了两种形式的基体硬度和耐磨性回归模型。此外,还通过约束非线性规划实现了矩阵公式和矩阵性能的优化。研究发现,受Ni-Co添加剂和Fe的影响显着的基体硬度随Ni-Co添加剂Fe和P-Fe的增加而增加,但随663-Cu的增加而降低。另一方面,基体耐磨性主要受Fe的影响; Fe与P-Fe相互作用的影响也比较明显.663-Cu粉末的增加可能导致基体耐磨性略有改善。此外,非线性编程的结果表明,硬度的预测最佳值为139.5 HRB,最佳耐磨性为0.056 g,而它们不能同时达到最佳值。

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