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用面积平衡原理预测伸展断陷盆地中岩层内部应变及亚分辨正断层的方法 被引量:17
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作者 漆家福 Groshong R H Jr 杨桥 《地球科学(中国地质大学学报)》 EI CAS CSCD 北大核心 2002年第6期696-702,共7页
大多数地堑和半地堑是由深度近水平的拆离正断层控制的 .根据面积平衡原理 ,这些伸展断陷盆地岩层的区域基准面至拆离断层面高度 (h)与其损失面积 (S)呈线性比例 .拆离断层之上的盆地基底岩层的水平伸展量相同 ,因此 ,用“S -h图解法”... 大多数地堑和半地堑是由深度近水平的拆离正断层控制的 .根据面积平衡原理 ,这些伸展断陷盆地岩层的区域基准面至拆离断层面高度 (h)与其损失面积 (S)呈线性比例 .拆离断层之上的盆地基底岩层的水平伸展量相同 ,因此 ,用“S -h图解法”可以确定拆离断层深度 ,并能在此基础上计算出岩层的总水平伸展量 .伸展盆地中的总水平伸展量主要是由不同尺度的正断层的水平离距体现出来的 .可观测解释的断层的水平位移可以通过测量盆地宽度、岩层长度等直接得到 .用剖面面积平衡方法可计算出盆地各岩层的平行岩层面的应变 ,其中相当部分是由在观测尺度上不能直接解释出来的“亚分辨正断层”的小尺度位移造成的 .因此 ,在分析伸展断陷盆地的构造样式、岩层力学性质基础上 ,有可能对计算得到的平行岩层的伸展应变进行合理评估 ,进而可以定量地预测“亚分辨正断层”的密度和可能的分布部位 . 展开更多
关键词 伸展断陷盆地 岩层 面积平衡 伸展应变 亚分辨断层 地堑 半地堑 S-h图解
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Segmentation of copper alloys processed by equal-channel angular pressing
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作者 Omid NEJADSEYFI Ali SHOKUHFAR Vahid MOODI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第8期2571-2580,共10页
This research provides experimental evidence for localized shear, billet cracking, and segmentation during the processing of various copper alloys. The results demonstrate that although many parameters affect the shea... This research provides experimental evidence for localized shear, billet cracking, and segmentation during the processing of various copper alloys. The results demonstrate that although many parameters affect the shear localization, there is a direct relation between segmentation and alloy strength (hardness) that is related to the alloying elements and constitutive phases. For instance, alpha brass is successfully processed by ECAP at room temperature, but alpha/beta brasses fail even at a temperature of 350 °C. Finite element simulation of cracking and segmentation was performed using DEFORMTM to investigate the influence of different parameters on segmentation. The results confirm that friction and processing speed have narrow effects on attaining a perfect billet. However, employing back pressure could be reliably used to diminish shear localization, billet cracking, segmentation, and damage. Moreover, diminishing the flow localization using back pressure leads to uniform material flow and the billet homogeneity increases by 36.1%, when back pressure increases from 0 to 600 MPa. 展开更多
关键词 back pressure BRASS BRONZE DAMAGE flow localization stress-strain behavior tensile strength DUCTILITY
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