[1]曾健新,刘俊新,张永泽.层理效应对黑色页岩抗拉强度影响及其能量分析[J].高速铁路技术,2019,10(02):38-43,59.[doi:10.12098/j.issn.1674-8247.2019.02.009]
ZENG Jianxin,LIU Junxin,ZHANG Yongze.Influence of Bedding Effect on Tensile Strength of Black Shale and Its Energy Analysis[J].HIGH SPEED RAILWAY TECHNOLOGY,2019,10(02):38-43,59.[doi:10.12098/j.issn.1674-8247.2019.02.009]
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层理效应对黑色页岩抗拉强度影响及其能量分析()
《高速铁路技术》[ISSN:1674-8247/CN:51-1730/U]
- 卷:
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10卷
- 期数:
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2019年02期
- 页码:
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38-43,59
- 栏目:
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理论探索
- 出版日期:
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2019-04-28
文章信息/Info
- Title:
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Influence of Bedding Effect on Tensile Strength of Black Shale and Its Energy Analysis
- 文章编号:
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1674—8247(2019)02—0038-06
- 作者:
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曾健新; 刘俊新; 张永泽
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1. 中铁二院工程集团有限责任公司, 成都 610031;
2. 西南科技大学, 四川 绵阳 621010
- Author(s):
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ZENG Jianxin; LIU Junxin; ZHANG Yongze
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1. China Railway Eryuan Engineering Group Co., Ltd., Chengdu 610031, China;
2. Southwest University of Science and Technology, Mianyang 621010, China
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- 关键词:
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页岩|巴西劈裂|抗拉强度|破坏模式|能量|特征
- Keywords:
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shale|Brazilian splitting|tensile strength|failure mode|energy|characteristics
- 分类号:
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TU443
- DOI:
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10.12098/j.issn.1674-8247.2019.02.009
- 文献标志码:
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A
- 摘要:
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层理效应是影响页岩力学性能的主要因素之一,文章以龙马溪组黑色页岩为研究对象,进行了不同层理面角度页岩的巴西圆盘劈裂试验,研究了层理效应对黑色页岩抗拉强度和破坏模式的影响,并且分析了其破坏过程中能量的吸收规律,结果如下:(1)当加载方向与层理面平行时黑色页岩抗拉强度最小;(2)层理角度为0°时,黑色页岩的破坏模式为沿着层理面方向的开裂;当层理角度为22.5°、45°、67.5°时,页岩的破裂模为非中心破裂;当层理角度为90°时,页岩的破坏模式为中心开裂;(3)加载初期,能量吸收较慢,加载后期,能量吸收较快,能量吸收多少与层理面角度呈线性关系;(4)能量吸收和抗拉强度之间呈非线性关系,且与抗拉强度和层理面角度之间关系相似。
- Abstract:
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Bedding effect is one of the main factors influencing the mechanical properties of shale. Taking the Longmaxizu black shale as research object, Brazilian splitting test of shale is carried out from the different bedding plane angles, the influence of bedding effect on tensile strength and failure mode of the black shale is studied and the energy absorption law during the failure process is analyzed in the paper. The study results show that:(1) When loading direction is parallel to bedding plane, the black shale has the minimum tensile strength; (2) When the bedding angle is 0°, black shale cracks along the bedding plane direction, When the bedding angle is 22.5°, 45°, and 67.5°, non-central failure occurs in the shale, when the bedding angle is 90°, the central cracking occurs in the shale; (3) at the initial stage of loading, the energy absorption is slow, and at the late stage of loading, the energy absorption is fast, the energy absorption has a linear relation with the angle of bedding plane; (4) the relationship between energy absorption and tensile strength is non-linear, and similar that between tensile strength and angle of bedding plane.
备注/Memo
- 备注/Memo:
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作者简介:曾健新(1977-),男,高级工程师。基金项目:四川省科技支撑计划项目(2016GZ0157)引文格式:曾健新, 刘俊新, 张永泽. 层理效应对黑色页岩抗拉强度影响及其能量分析[J].高速铁路技术, 2019, 10(2):38-43.ZENG Jianxin,LIU Junxin,ZHANG Yongze. Influence of Bedding Effect on Tensile Strength of Black Shale and Its Energy Analysis[J].High Speed Railway Technology,2019,10(2):38-43.
更新日期/Last Update:
2019-04-28