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Application of shortened heat treatment cycles on A356 automotive brake calipers with respective globular and dendritic microstructures

机译:缩短热处理循环应用于具有相应球状和树枝状微结构的a356汽车制动卡钳

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摘要

The conventional casting alloy A356 is probably one of the most popular alloys used for semi-solid metal (SSM) forming. This is due to its high fluidity and good castability. This alloy can be heat treated alternatively to the T4, T5 or T6 temper conditions. Previous work by the authors has shown that shorter heat treatment cycles can be applied for SSM processed A356 rather than the more costly traditional cycles (that were originally developed for liquid cast dendritic A356). The previous work was performed on relatively small rectangular plates (4×80×100mm3) that were cast in steel moulds with a 50 ton high pressure die casting (HPDC) machine. This work determined whether these short heat treatment cycles (T4, T5 and T6) can be applied successfully to a larger (and more complex) casting too. Since the automotive industry has many possible applications for SSM-HPDC parts, the newly developed heat treatment cycles, as well as the traditional heat treatment cycles, were applied to A356 brake calipers cast using a 630 ton HPDC machine. Vickers hardness measurements at a cross section of the brake calipers were performed, indicating that similar values can be obtained when using the significantly shorter heat treatment cycles. Finally, the typical tensile properties that can be obtained for SSM-HPDC A356 brake calipers are compared with those manufactured by gravity die casting. These results indicate that the differences in microstructures (globular or dendritic) do not have a noteworthy effect on the heat treatment response. This implies that the short heat treatment cycles originally developed for globular SSM-HPDC A356 castings can be successfully applied to dendritic liquid A356 castings too.
机译:传统的铸造合金A356可能是用于半固态金属(SSM)成形的最受欢迎的合金之一。这是由于其高流动性和良好的铸造性。可以替代T4,T5或T6回火条件对该合金进行热处理。作者先前的工作表明,较短的热处理周期可用于SSM处理的A356,而不是更昂贵的传统周期(最初是为液态铸造树枝状A356开发的)。先前的工作是在相对较小的矩形板(4×80×100mm3)上进行的,这些矩形板是使用50吨高压压铸(HPDC)机在钢模中铸造的。这项工作确定了这些短的热处理周期(T4,T5和T6)是否也可以成功地应用于更大(更复杂)的铸件。由于汽车行业对SSM-HPDC零件有许多可能的应用,因此将新开发的热处理循环以及传统的热处理循环应用于使用630吨HPDC机器铸造的A356制动钳。在制动钳的横截面上进行了维氏硬度测量,表明当使用明显较短的热处理周期时,可以获得相似的值。最后,将SSM-HPDC A356制动钳可获得的典型拉伸性能与重力压铸生产的拉伸性能进行了比较。这些结果表明,微观结构(球状或树枝状)的差异对热处理响应没有显着影响。这意味着最初为球状SSM-HPDC A356铸件开发的短热处理周期也可以成功应用于树枝状液态A356铸件。

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