首页> 外文期刊>International Journal of Fatigue >Effect Of Units In Different Sizes On Thermal Fatigue Behavior Of 3cr2w8v Die Steel With Biomimetic Non-smooth Surface
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Effect Of Units In Different Sizes On Thermal Fatigue Behavior Of 3cr2w8v Die Steel With Biomimetic Non-smooth Surface

机译:尺寸不同的单元对仿生非光滑表面3cr2w8v模具钢热疲劳行为的影响

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摘要

Aiming to deeply research the thermal fatigue behavior of 3Cr2W8V die steel with biomimetic surface, the specimens with different sizes of concave-shape and striation-shape units were processed by laser technique. By establishing cross-section model of the units and by calculating their volume, the size of the units was quantitatively expressed, and its effect on thermal fatigue behavior of 3Cr2W8V die steel was investigated and compared. The results showed that the units in different sizes have different degrees of effects on resisting the thermal fatigue cracks; especially those in the larger size can play a greater role in preventing the crack initiation and blocking the crack propagation; and further the influence of the size of the units on thermal fatigue behavior is more sensitive to resist the crack propagation. Based on the self-strengthening of the units, the increased resistance of the units in the larger size to crack initiation can be attributed to the crack prevention mechanism owing to the reduced probability of crack nucleation and the enhanced resistance to plastic deformation on the biomimetic surface, while the enhanced resistance to crack propagation is due to the crack blocking mechanism that results in the slow crack growth rate.
机译:为了深入研究具有仿生表面的3Cr2W8V模具钢的热疲劳行为,采用激光技术加工了不同尺寸的凹形和条纹形单元。通过建立单元的截面模型并计算其体积,定量表示单元的尺寸,并研究和比较了其对3Cr2W8V模具钢热疲劳行为的影响。结果表明,不同尺寸的单元对热疲劳裂纹的抵抗程度不同。特别是较大尺寸的那些在防止裂纹萌生和阻止裂纹扩展方面可以发挥更大的作用;而且,单元尺寸对热疲劳行为的影响对抵抗裂纹扩展更敏感。基于单元的自增强,由于裂纹成核的可能性降低和仿生表面上塑性变形的抵抗力增强,较大尺寸的单元对裂纹萌生的抵抗力增加可归因于裂纹预防机制,而提高的抗裂纹扩展能力是由于裂纹阻塞机制导致了缓慢的裂纹扩展速度。

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