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基于断裂力学原理的混凝土套箍封闭主拱圈加固石拱桥技术研究
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作者 陈军军 《山东交通科技》 2014年第2期52-54,共3页
首先介绍了拱桥的加固方法,简述了其优缺点;然后,对混凝土套箍封闭主拱圈加固技术的断裂力学原理进行了阐述;最后结合工程实例,对加固前后桥梁的承载力进行了计算分析,结果表明采用文中所述的加固方法可以大幅提高该类拱桥的承载力。
关键词 断裂力学机理 混凝土套箍 主拱圈 加固
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Microstructure and properties of probeless friction stir spot welding of AZ31 magnesium alloy joints 被引量:7
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作者 Xia-wei YANG Wu-yuan FENG +4 位作者 Wen-ya LI Xiu-rong DONG Ya-xin XU Qiang CHU Shuo-tian YAO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第11期2300-2309,共10页
The AZ31 magnesium alloy with a thickness of 1.8 mm was welded by the probeless friction stir spot welding process without Zn interlayer.The influence of process parameters on joint microstructure and mechanical prope... The AZ31 magnesium alloy with a thickness of 1.8 mm was welded by the probeless friction stir spot welding process without Zn interlayer.The influence of process parameters on joint microstructure and mechanical properties was investigated by using different rotating speeds and dwell time.Microstructure of joints is divided into three regions:stir zone,thermomechanically-affected zone and heat-affected zone.With the increase of rotation speed and dwell time,the depth of stir zone gradually increases,and hook defects extend from the interface of two plates to the surface of the upper plate.The tensile shear strength of joints and two fracture modes(shear fracture and plug fracture)are closely related to hook defects.The maximum tensile shear strength of the joint is 4.22 kN when rotation speed and dwell time are 1180 r/min and 9 s,respectively.Microhardness value and its fluctuation in upper sheet are evidently higher than those of the lower sheet. 展开更多
关键词 probeless friction stir spot welding AZ31 alloy mechanical properties fracture mechanism
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Effect of solution plus aging heat treatment on microstructural evolution and mechanical properties of near-β titanium alloy 被引量:22
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作者 Chuan WU Mei ZHAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第5期997-1006,共10页
The microstructural evolution, mechanical properties and fracture mechanism of a Ti.5Al.5Mo.5V.3Cr.1Zr (Ti-55531) alloy after solution (760.820℃) plus aging (580.640℃) treatments were investigated. The results show ... The microstructural evolution, mechanical properties and fracture mechanism of a Ti.5Al.5Mo.5V.3Cr.1Zr (Ti-55531) alloy after solution (760.820℃) plus aging (580.640℃) treatments were investigated. The results show that the volume fraction of the primary α(αp) phase decreases with the increase of solution temperature, and the length of the secondary α phase (αs) decreases while its width increases with the increase of aging temperature. Yield and tensile strengths decrease with the increase of solution temperature, while increase with the increase of aging temperature. A good balance of tensile strength and ductility of the alloy is obtained under solution of 800℃ for 2 h plus aging of 640℃ for 8 h, in which the tensile strength is 1434 MPa and the elongation is 7.7%. The coarsening αs phase makes crack propagation paths deflected and tortuous, which increases the crack propagation resistance and improves the ductility and fracture toughness. 展开更多
关键词 Ti.5Al.5Mo.5V.3Cr.1Zr titanium alloy hot treatment SOLUTION AGING microstructural evolution mechanical properties fracture mechanism
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Mechanical properties and fracture mechanism of as-cast MnFeCoCuNix high-entropy alloys 被引量:8
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作者 Cheng-yan ZHU Hao WU +3 位作者 He-guo ZHU Xiang-dong LI Chun-lei TU Zong-han XIE 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第1期222-231,共10页
MnFeCoCuNix high-entropy alloys(HEAs)with different Ni contents were fabricated by vacuum induction melting.XRD and SEM−EDS were used to analyze the phase constitution and structure,and the tensile properties of the s... MnFeCoCuNix high-entropy alloys(HEAs)with different Ni contents were fabricated by vacuum induction melting.XRD and SEM−EDS were used to analyze the phase constitution and structure,and the tensile properties of the samples were determined using a universal tensile tester.The results show that the HEAs consist of a dual-phase structure,in which FCC1 phase is rich in Fe and Co,while the FCC2 phase has high contents of Cu and Mn.As Ni content increases,the segregation of Cu decreases,accompanied by the decrease of FCC2 phase.Moreover,the tensile strength of the HEAs increases first and then decreases,and the elongation increases slightly.This is attributed to the combined effect of interface strengthening and solid solution strengthening.The in-situ stretched MnFeCoCuNi0.5 alloy shows obvious neck shrinkage during the tensile fracture process.In the initial deformation stage,the slip lines show different morphologies in the dual-phase structure.However,in the later stage,the surface slip lines become longer and denser due to the redistribution of atoms and the re-separation of the dissolved phase. 展开更多
关键词 high-entropy alloys dual-phase structure mechanical properties in-situ stretching fracture mechanism
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