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作 者:李晓林[1,2] 肖宝亮[1,2] 崔阳[1,2] 张楠[1,2] 缪成亮[1,2] 张大伟[1,2] 杨孝鹤[3] 金钊 袁泽博 孙林
机构地区:[1]首钢技术研究院,北京100043 [2]绿色可循环钢铁流程北京市重点实验室,北京100043 [3]首钢京唐钢铁公司,河北曹妃甸063200 [4]中国兵器工业新技术推广研究所,北京100089
出 处:《新技术新工艺》2017年第3期1-4,共4页New Technology & New Process
摘 要:利用光学显微镜观察Mn-Ti体系和Nb-V体系600 MPa冷压桥壳钢显微组织,采用MTS-810低频疲劳试验机,在试验频率为10Hz条件下,应用三点弯曲法,对2种成分体系冷压桥壳钢进行疲劳裂纹扩展速率试验,并绘制2种试验材料的裂纹扩展速率da/dN与应力强度因子幅度ΔK的关系曲线。结果表明,2种成分体系桥壳钢显微组织均为铁素体+少量的珠光体,Nb-V体系铁素体晶粒尺寸为3.3μm,Mn-Ti体系铁素体晶粒尺寸为5.8μm。利用线性拟合法,得到Mn-Ti体系和Nb-V体系的Paris方程系数分别为:m=2.629 8,C=4.13×10^(-12) mm/次和m=2.679 9,C=1.30×10^(-12) mm/次,计算得出裂纹扩展门槛值ΔKth分别为46.50和66.58 MPa·m^(1/2)。The microstructure of 600 MPa Mn-Ti and Nb-V steels for cold stamping axle housing were investigated by means of optical microscope. On the low-frequency fatigue tester MTS-810 with frequency of 10 Hz, the crack propagation rate of two chemical components of the tested steels was tested by using three-point bending method. The relationship between the propagation rate da/dN and the amplitude of stress intensity factor &K was drawn. The results showed that the microstructure all of two tested steels were ferrite and pearlite, the grain size of Nb-V steel and Mn-Ti steel was 3.3 μm and 5.8 μm respectively. The coefficient C and m in Paris equation of Mn-Ti steel and Nb-Vsteel were determined as m = 2. 629 8, C=4.13× 10^- 12 mm/cycle and m= 2. 679 9, C= 1.30 × 10 ^-12 mm/cycle respectively, and the threshold value of crack propagation △K th was 46.50 and 66.58 MPa · m1/2 respectively.
关 键 词:冷压桥壳钢 疲劳裂纹 应力强度因子幅度 裂纹扩展门槛值 晶粒尺寸
分 类 号:TG142.1[一般工业技术—材料科学与工程]
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