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Influence of temperature on the biaxial strength of cemented carbides with different microstructures

机译:温度对不同组织的硬质合金双轴强度的影响

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摘要

The effect of the temperature on the mechanical strength of WC-Co cemented carbides with different microstructures (grain size and binder content) was evaluated. Biaxial flexural tests were performed on three cemented carbide grades at 600 °C using the ball-on-three-balls (B3B) method. Results were interpreted by Weibull statistics and compared to biaxial strength results at room temperature. A detailed fractographic analysis, supported by Linear Elastic Fracture Mechanics, was performed to differentiate the nature and size of critical defects and the mechanism responsible for the fracture. A significant decrease in the mechanical strength (around 30%) was observed at 600 °C for all grades of cemented carbides. This fact was ascribed to the change in the critical flaw population from sub-surface (at room temperature) to surface defects, associated with the selective oxidation of Co. Additionally, an estimation of the fracture toughness at 600 °C was attempted for the three cemented carbides, based upon the B3B strength results, the corresponding number of the tested specimens fragments and the macroscopic area of the B3B fracture surfaces. The fracture toughness was not affected by the temperature, at least up to 600 °C. In addition, the good agreement with the Single Edge Notch Beam toughness data suggests the possibility of employing this approach for fracture toughness evaluation of brittle materials under different testing conditions.
机译:评估了温度对具有不同微观结构(晶粒尺寸和粘结剂含量)的WC-Co硬质合金机械强度的影响。使用三对球(B3B)方法在600°C下对三种硬质合金牌号进行了双轴弯曲测试。结果由Weibull统计数据解释,并与室温下的双轴强度结果进行比较。在线性弹性断裂力学的支持下,进行了详细的分形分析,以区分关键缺陷的性质和大小以及造成断裂的机理。对于所有等级的硬质合金,在600°C时,机械强度均明显降低(约30%)。这一事实归因于临界缺陷数量从次表面(在室温下)到表面缺陷的变化,这与钴的选择性氧化有关。此外,尝试对三种合金在600°C时的断裂韧性进行估算。硬质合金,根据B3B强度结果,相应数量的试样碎片和B3B断裂表面的宏观区域。断裂韧性不受温度的影响,至少不超过600°C。此外,与单边缺口梁韧性数据的良好一致性表明,在不同的测试条件下,采用这种方法对脆性材料的断裂韧性进行评估的可能性。

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