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On the Prediction of Strength from Hardness for Copper Alloys

机译:基于硬度的铜合金强度预测

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Hardness and strength values of over 55 copper alloys strengthened by solid solution strengthening, precipitation hardening, cold working, and dispersion strengthening were compiled. The yield strength (YS) and ultimate tensile strength (UTS) values of the copper alloys examined ranged between 50 to 1300 MPa and 200 to 1400 MPa, respectively. The compiled values were classified based on strain-hardening potential an indirect method to understand the effect of strain-hardening characteristics. Least squares regression analysis was employed to establish correlations between strength and Vickers hardness values. Strain-hardening potential showed a significant effect on the correlations. In all the cases, a linear relation was obtained for both YS and UTS with hardness for the entire range of values under analysis. Simple empirical equations were proposed to estimate the strength using bulk hardness. The proposed correlations obtained for the entire range of values were verified with experimental values. A good agreement was observed between experimental and predicted values.
机译:编制了通过固溶强化,沉淀硬化,冷加工和弥散强化强化的55种以上铜合金的硬度和强度值。所检验的铜合金的屈服强度(YS)和极限抗拉强度(UTS)值分别在50至1300 MPa和200至1400 MPa之间。基于应变硬化电位(一种间接方法来理解应变硬化特性的影响)对编译值进行分类。最小二乘回归分析用于建立强度和维氏硬度值之间的相关性。应变硬化潜力对相关性有显着影响。在所有情况下,在分析的整个值范围内,YS和UTS都具有线性关系,且硬度均相同。提出了简单的经验方程式,以使用整体硬度估算强度。用实验值验证了在整个值范围内获得的拟议相关性。实验值和预测值之间观察到很好的一致性。

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