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Effect of Tensile Strength and Microstructure on Notch-fatigue Properties of Ultrafine-grained Steels

机译:拉伸强度和组织对超细晶钢缺口疲劳性能的影响

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摘要

Fatigue strength is one of the key properties in the practical use of ultrafine grained steels. Fatigue tests were conducted on notched specimens by conventional electromagnetic resonance fatigue testing machines. The electromagnetic resonance fatigue testing was carried out at 150 Hz up to 10~7 cycles. The investigated steels had different levels of carbon, 0.15 wt%, 0.30 wt% and 0.60 wt% with tensile strengths of 850 MPa, 950 MPa and 1 105 MPa, respectively. With increasing in carbon content, the tensile strength increased and the total elongation decreased. The notched specimens never showed internal fracture and showed a clear fatigue limit. The notch fatigue limit increased with an increase in tensile strength from 850 MPa to 970 MPa, when the carbon content was 0.15 and 0.30 wt% with microstruc-tures consisting of ultrafine ferrite grains and cementite.particles. On the other hand, when the carbon content was 0.60 wt%, the notch fatigue limit decreased, though tensile strength increased to 1 105 MPa. Retained pearlite grains were observed in 0.60 wt%C steel in addition to ultrafine ferrite grains and cementite particles. These retained pearlite grains which were coarse and high angle grain boundary poor regions were attributed to the lower notch fatigue limit.
机译:疲劳强度是超细晶粒钢在实际使用中的关键性能之一。疲劳试验是通过常规的电磁共振疲劳试验机对缺口试样进行的。电磁疲劳试验在150 Hz下进行了10〜7个循环。被研究的钢具有不同的碳含量,分别为0.15 wt%,0.30 wt%和0.60 wt%,抗张强度分别为850 MPa,950 MPa和1105 MPa。随着碳含量的增加,抗拉强度增加,总伸长率降低。带缺口的样品从未显示出内部断裂,并且显示出明显的疲劳极限。当碳含量分别为0.15和0.30 wt%(由超细铁素体晶粒和渗碳体颗粒组成的微结构)时,缺口疲劳极限随拉伸强度从850 MPa增加到970 MPa而增加。另一方面,当碳含量为0.60重量%时,尽管抗拉强度增加至1 105 MPa,但缺口疲劳极限降低。除超细铁素体晶粒和渗碳体颗粒外,在0.60 wt%C的钢中还观察到残留的珠光体晶粒。这些保留的珠光体晶粒是粗的和高角度晶界不良区域,归因于缺口疲劳极限的降低。

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