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基于应变梯度理论和面积坐标有限元的管线钢微观组织尺寸效应研究 被引量:2
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作者 张博宇 陈章华 《机械工程学报》 EI CAS CSCD 北大核心 2017年第2期74-83,共10页
研究在微细尺度下,有效模拟金属材料变形尺度效应的数值方法。将四边形面积坐标法与MSG应变梯度理论的本构方程相结合,通过用户子单元UEL加入到ABAQUS的数值模拟中。在有限元模拟过程中,采用传统八节点等参元时常遇到网格严重畸变的问题... 研究在微细尺度下,有效模拟金属材料变形尺度效应的数值方法。将四边形面积坐标法与MSG应变梯度理论的本构方程相结合,通过用户子单元UEL加入到ABAQUS的数值模拟中。在有限元模拟过程中,采用传统八节点等参元时常遇到网格严重畸变的问题,而基于四边形面积坐标方法的单元却在网格严重畸变时仍然能够保持较高的精度,在非线性问题中有广阔的应用前景,而且经典理论无法解释试验中观察到的尺寸效应现象,因此采用MSG塑性应变梯度理论的本构方程解决尺度效应问题。应用文献中的数据对电抛光镍做数值模拟,以验证新的理论模型的正确性,对JX-2管线钢做试验研究,并对所得的铁素体、贝氏体、铁素体和贝氏体的双相体三种微观组织进行数值模拟,对比试验和模拟结果证明新的理论模型在工程中具有良好的可应用性,较传统塑性理论能更好地预测试验结果。 展开更多
关键词 尺寸效应 应变梯度理论 四边形面积坐标方法 金属大变形
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Interface,lattice strain and dislocation density of SiC_p/Al composite consolidated by equal channel angular pressing and torsion 被引量:4
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作者 钱陈豪 李萍 薛克敏 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第6期1744-1751,共8页
Powder mixture of pure A1 and oxidized SiC was consolidated into 10% (mass fraction) SiCp/AI composites at 523 K by equal channel angular pressing and torsion (ECAP-T). The interfacial bonding of the composites wa... Powder mixture of pure A1 and oxidized SiC was consolidated into 10% (mass fraction) SiCp/AI composites at 523 K by equal channel angular pressing and torsion (ECAP-T). The interfacial bonding of the composites was characterized by transmission electron microscopy (TEM) and high resolution transmission electron microscopy (HRTEM). The selected area electron diffraction (SAED) for the interface was investigated. The elements at the interface were scanned by energy dispersive spectroscopy (EDS) and the EDS mapping was also obtained. X-ray diffraction (XRD) analysis was carried out for the composites fabricated by 1 pass, 2 passes and 4 passes ECAP-T. According to the XRD analysis, the influences of ECAP-T pass on the Bragg angle and interplanar spacing for AI crystalline planes were studied. The results show that after ECAP-T, the interface between A1 and SiC within the composites is a belt of amorphous SiO2 containing a trace of A1, Si and C which diffused from the matrix and the reinforcement. With the growing ECAP-T pass, the Bragg angle decreases and interplanar spacing increases for A1 crystalline planes, due to the accumulated lattice strain. The increasing lattice strain of A1 grains also boosts the density of the dislocation within A1 grains. 展开更多
关键词 metal matrix composites severe plastic deformation INTERFACE lattice strain dislocation density
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High-pressure torsion deformation process of bronze/niobium composite 被引量:2
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作者 S. O. ROGACHEV S. A. NIKULIN +2 位作者 V. M. KHATKEVICH R. V. SUNDEEV D. A. KOZLOV 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第8期1689-1695,共7页
The deformation process in the material volume under high-pressure torsion(HPT)was studied.As a model object for the observation of deformation process,we used a composite comprising a bronze matrix and niobium filame... The deformation process in the material volume under high-pressure torsion(HPT)was studied.As a model object for the observation of deformation process,we used a composite comprising a bronze matrix and niobium filaments.The arrangements of the niobium filaments in the bronze matrix and their size have regular geometry.This allows us to monitor and measure the displacement of the niobium filaments in the sample volume,which results from HTP.The bronze/niobium composite samples were subjected to HPT at room temperature and 6 GPa,and the number of revolutions N=1/4,1/2,1,2,3 and 5.It was shown that HPT with revolution number of 1 leads to the 360° rotation of entire sample volume without sample slippage.Similar deformational behavior during HPT can be expected for high-ductility metallic materials.The increase in the number of revolutions more than 2 leads to twisting the niobium filaments in the sample volume and the formation of 'vortex' multilayer structure.The mechanisms for the formation of such structures were discussed. 展开更多
关键词 high-pressure torsion severe plastic deformation metal matrix composite vortex structure
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