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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Fatigue Performance of Fluidized Bed Heat Treated 319 Alloy Diesel Cylinder Heads
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Fatigue Performance of Fluidized Bed Heat Treated 319 Alloy Diesel Cylinder Heads

机译:流化床热处理319合金柴油缸盖的疲劳性能

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Effects of various heat treatment tempers on fatigue performance of 319 alloy diesel cylinder heads were investigated. Castings were heat treated to T5, T6, and T7 tempers. Castings were solution heat treated and quenched using fluidized beds and aged using both conventional air convective furnace and fluidized bed for T6 and T7 tempers; while they were aged after casting for T5 temper using conventional furnace. Fatigue tests were performed at 373 K (100 A degrees C) and stress ratio equal to -1. Results show that heat treatment has significant effect on the fatigue behavior of 319 alloy. The fatigue strength of T6 tempered 319 alloy is greater than T5 and T7 treatments. Weibull analysis shows that the Weibull modulus and characteristic fatigue life of castings treated (using conventional forced air circulation electrical resistance furnace) to T6 and T7 tempers are greater than T5 temper. This implies that castings treated to T6 and T7 tempers have greater reliability vis-A -vis T5 temper. Fractographic analyses reveal three distinct regions. These are: (I) crack initiation region from the surface, (II) crack propagation region, and (III) catastrophic or monotonic failure region. The relative size of the crack propagation region in T6 and T7 treated samples is greater than T5 treated samples. In general, the monotonic failure region shows typical dimple morphology, which implies significant plastic deformation prior to failure. Dimples on the fractured surface of T5 treated alloy are relatively more faceted than those treated to T6 and T7 tempers. This implies that the 319 alloy treated to T6 and T7 tempers underwent higher degree of plasticity prior to failure than that in the T5 condition.
机译:研究了各种热处理温度对319合金柴油气缸盖疲劳性能的影响。将铸件热处理到T5,T6和T7回火。对铸件进行固溶热处理,并使用流化床淬火,并使用常规空气对流炉和流化床对T6和T7时效进行时效处理;在使用常规熔炉进行T5回火铸造后进行时效处理。疲劳测试在373 K(100 A摄氏度)下进行,应力比等于-1。结果表明,热处理对319合金的疲劳行为具有显着影响。 T6回火319合金的疲劳强度大于T5和T7处理。威布尔分析表明,经T6和T7回火处理(使用常规强制空气循环电阻炉)的铸件的威布尔模量和特征疲劳寿命大于T5回火。这意味着经过T6和T7回火处理的铸件相对于A5对T5回火具有更高的可靠性。分形分析显示出三个不同的区域。它们是:(I)从表面开始的裂纹萌生区域,(II)裂纹扩展区域,以及(III)灾难性或单调破坏区域。 T6和T7处理的样品中裂纹扩展区域的相对大小大于T5处理的样品。通常,单调破坏区域显示出典型的凹痕形态,这意味着在破坏之前会发生明显的塑性变形。经过T5处理的合金的断裂表面上的凹坑比经过T6和T7回火处理的凹坑具有相对更多的切面。这意味着与T5状态相比,在T6和T7回火下处理的319合金在破坏前经历了更高的塑性。

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