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Influence of Silicon Content, Strain Rate and Temperature on Toughness and Strength of Solid Solution Strengthened Ferritic Ductile Cast Iron

机译:硅含量,应变速率和温度对固溶强化铁素体球墨铸铁的韧性和强度的影响

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摘要

High Silicon Solid Solution Strengthened Ferritic Ductile Cast Iron possesses advantages, such as better combination of strength-elongation; higher fatigue strength, smaller section thickness sensitivity, higher machinability etc., over conventional ferrite-peadite type ductile cast iron. However, industrial application of high Si ductile cast iron is still very limited, because of the lower Charpy impact value at room temperature. As the toughness of iron strongly depends on the strain rate as well as temperature, dynamic three-point bending tests are conducted on 3 similar to 4%Si ferritic ductile cast iron at stroke speed of 10(-3)similar to 10(2) mm/s, and at -20 similar to 22 degrees C. The relations of the crack initiation energy E-i. the crack propagation energy E-p the total absorbed energy E-t and the maximum bending stress sigma(b,max) to the strain rate show abrupt dropping of these characteristic values at critical strain rate, depending on silicon content and test temperature. sigma(b,max) keeps increasing with increasing strain rate as far as the fracture origin is ductile, it slightly decreases over (epsilon)over dot(sigma) = (epsilon)over dot(fD) where the dimple fracture completely disappears. sigma(b,max) E-t and E-i of each silicon iron is well expressed in relation to strain rate-temperature parameter R, T ln(A/(epsilon)over dot(f)). The critical R values for E-t, E-i and sigma(b,max) (R-t, R-i and R-sigma) decrease linearly with decreasing the silicon content of iron. The critical value for sigma(b,max) (R-sigma) is lowest, indicating R-sigma gives a wider design tolerance.
机译:高硅固溶强化铁素体球墨铸铁具有优点,如强度-伸长率更好的结合;与传统的铁素体-珠光体型球墨铸铁相比,具有更高的疲劳强度,更小的截面厚度敏感性,更高的切削性等。然而,由于室温下较低的夏比冲击值,高硅球墨铸铁的工业应用仍然非常有限。由于铁的韧性在很大程度上取决于应变率和温度,因此在3(类似于4%Si铁素体球墨铸铁)上以10(-3)的冲程速度类似于10(2)进行了动态三点弯曲测试。毫米/秒,并且在-20时类似于22摄氏度。裂纹萌生能量Ei的关系。裂纹扩展能量E-p,总吸收能量E-t和最大弯曲应力sigma(b,max)对应变速率的影响,在临界应变速率下,这些特性值突然下降,具体取决于硅含量和测试温度。只要断裂起点是可延展的,sigma(b,max)就会随着应变率的增加而不断增加,而在凹痕完全消失的点(ε)上的ε=(点)上的ε稍微减小。每个硅铁的sigma(b,max)E-t和E-i相对于应变率-温度参数R,T ln(A /ε在点(f)上)得到了很好的表示。 E-t,E-i和sigma(b,max)的临界R值(R-t,R-i和R-sigma)随着铁含量的降低而线性降低。 sigma(b,max)(R-sigma)的临界值最低,表明R-sigma提供了更大的设计公差。

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