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试样尺寸和加载速度对夏比冲击试验的内在影响规律研究

Study on Intrinsic Influence Law of Specimen Size and Loading Speed on Charpy Impact Test.

作者信息

Jia Wang, Pi Aiguo, Zhao Zhang, Wang Shaohong, Wei Chen, Jie Zhou, Huang Fenglei

机构信息

State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China.

出版信息

Materials (Basel). 2022 May 28;15(11):3855. doi: 10.3390/ma15113855.

Abstract

Charpy impact energy/impact toughness is closely related to external factors such as specimen size. However, when the sample size is small, the linear conversion relationship between the Charpy impact energy of the sub-size and full-size Charpy specimens does not hold; the Charpy impact toughness varies with the size of the specimen and other factors. This indicates that studying the internal influence of external factors on impact energy or impact toughness is the key to accurately understanding and evaluating the toughness and brittleness of materials. In this paper, the effects of strain rate on the flow behavior and the effects of stress triaxiality on the fracture behavior of 30CrMnSiNi2A high-strength steel were investigated using quasi-static smooth bar and notched bar uniaxial tensile tests and Split Hopkinson Tensile Bar (SHTP). Based on the flow behavior and strain rate dependences of the yield behavior, a modified JC model was established to describe the flow behavior and strain rate behavior. Charpy impact tests were simulated using the modified JC model and JC failure model with the determined parameters. Reasonable agreements between the simulation and experimental results have been achieved, and the validity of the model was proved. According to the simulation results, the impact energy was divided into crack initiation energy, crack stability propagation energy and crack instability propagation energy. On this basis, the effects of striker velocity and specimen width on the energy and characteristic load of each part were studied. The results show that each part of the impact energy has a negligible dependence on the hammer velocity, but there is a significantly different positive linear relationship with the width of the sample. The energy increment of each part also showed an inverse correlation with the increase in the sample width. The findings reveal that the internal mechanism of Charpy impact toughness decreases with the increase in sample width; to a certain extent, it also reveals the internal reason why the linear transformation relationship of Charpy impact energy between sub-size specimens and standard specimens is not established when the specimens are small. The analytical method and results presented in this paper can provide a reference for the study of the dynamic behavior of high-strength steel, the relationship between material properties and sample size, and the elastic-plastic impact dynamic design.

摘要

夏比冲击能量/冲击韧性与试样尺寸等外部因素密切相关。然而,当试样尺寸较小时,小尺寸夏比试样与全尺寸夏比试样的夏比冲击能量之间的线性转换关系并不成立;夏比冲击韧性随试样尺寸及其他因素而变化。这表明,研究外部因素对冲击能量或冲击韧性的内部影响是准确理解和评估材料韧性与脆性的关键。本文通过准静态光滑杆和缺口杆单轴拉伸试验以及分离式霍普金森拉伸杆(SHTP),研究了应变速率对30CrMnSiNi2A高强度钢流动行为的影响以及应力三轴度对其断裂行为的影响。基于屈服行为的流动行为和应变速率依赖性,建立了修正的JC模型来描述流动行为和应变速率行为。使用修正的JC模型和具有确定参数的JC失效模型对夏比冲击试验进行了模拟。模拟结果与实验结果达成了合理的一致性,证明了模型的有效性。根据模拟结果,将冲击能量分为裂纹萌生能量、裂纹稳定扩展能量和裂纹失稳扩展能量。在此基础上,研究了冲击头速度和试样宽度对各部分能量及特征载荷的影响。结果表明,冲击能量的各部分对锤击速度的依赖性可忽略不计,但与试样宽度存在显著不同的正线性关系。各部分的能量增量也与试样宽度的增加呈负相关。研究结果揭示了夏比冲击韧性的内部机制随试样宽度的增加而降低;在一定程度上,也揭示了试样尺寸较小时小尺寸试样与标准试样之间夏比冲击能量线性转换关系未建立的内在原因。本文提出的分析方法和结果可为高强度钢动态行为、材料性能与试样尺寸关系以及弹塑性冲击动力学设计的研究提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d24/9181551/69cf8e12595f/materials-15-03855-g001.jpg

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