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A Numerical Investigation of an Abnormal Phenomenon of Stress Intensity Factor(SIF)in a Cracked T-Butt Joint Accounting for Welding Effect 被引量:1
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作者 Matteo Schiaretti Jie Cai +2 位作者 Xiaoli Jiang Shengming Zhang Dingena Schott 《Journal of Marine Science and Application》 CSCD 2021年第2期343-353,共11页
Industry design standards such as BS 7910 deployed some empirical formulas for the prediction of stress intensity factor(SIF) based on simulation results from traditional finite element method(FEM).However,such FEM si... Industry design standards such as BS 7910 deployed some empirical formulas for the prediction of stress intensity factor(SIF) based on simulation results from traditional finite element method(FEM).However,such FEM simulation occasionally failed to convince people due to the large discrepancies compared with engineering practice.As a consequence,inaccuracy predictions via such formulas in engineering standards inevitably occur,which will compromise the safety of structures.In our previous research work,an abnormal phenomenon of SIF in a cracked T-butt joint accounting for welding effect has been observed.Compared with BS 7910,the calculation results of SIF at the surface points of welded specimens cannot be well predicted,with a large discrepancy appearing.In order to explore such problem with an abnormal increase at the surface points of cracked welded specimens,a numerical investigation in terms of SIF among BS 7910,XFEM,and FEM is performed in this paper.Numerical models on both a simple cracked plate without welding effect and a cracked T-butt joint with welding effect are developed through ABAQUS.Parametric studies in terms of the effects of varied crack depth to thickness ratio(a/T) and the effects of crack depth to crack half-length ratio(a/c) are carried out.Empirical solutions from BS 7910 are used for comparison.It is found that the XFEM can provide predictions of SIF at both the crack deepest point and crack surface point of a simple cracked plate as accurate as FEM.For a T-butt joint with a transverse stiffener,a large discrepancy in terms of the weld magnification factors(Mk) occurs at the crack surface point compared with empirical predictions.An exceptional increase of von Mises stress gradient in regions close to the weld-toe is found through the simulation of FEM,whereas a constant stress gradient is obtained through XFEM.The comparison results indicate an inappropriate prediction of SIF by the utilization of the empirical formulas in BS 7910.A more reasonable prediction of the SIF at the surface point of a crack is obtained by the XFEM.Therefore,further updating of the empirical solutions in BS7910 for SIF accounting for welding effect is recommended. 展开更多
关键词 stress intensity factor(sif) CRACK T-butt joint BS 7910 Extended finite element method(XFEM) Finite element method(FEM)
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Enhancing Stress Intensity Factor Reduction in Cracks Originating from a Circular Hole in a Rectangular Plate under Uniaxial Stress through Piezoelectric Actuation
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作者 Gopi Krishna Konda Jens Schuster Yousuf Pasha Shaik 《Materials Sciences and Applications》 2024年第1期1-14,共14页
Circular holes are commonly employed in engineering designs;however, they often serve as locations where cracks initiate and propagate. This paper explores a novel approach to structural repair by utilizing piezoelect... Circular holes are commonly employed in engineering designs;however, they often serve as locations where cracks initiate and propagate. This paper explores a novel approach to structural repair by utilizing piezoelectric actuators. The primary focus of this study is to investigate the influence of an adhesively bonded piezoelectric actuator patch placed above a circular hole on the stress intensity factor (SIF) in an aluminium plate. The plate is subjected to uniaxial tensile stress, while the piezoelectric actuator is excited with varying voltage levels. The analysis is conducted using the finite element method (FEM), a powerful numerical technique for simulating complex structures. The study assesses the stress distribution and employs the SIF as an adequate criterion for evaluating the impact of different patch configurations. The results indicate a strong correlation between the applied voltage and the SIF. Whether the SIF increases or decreases depends on the polarization of the piezoelectric actuator. Particularly noteworthy is the finding that rectangular patches in a horizontal orientation significantly reduce the SIF compared to other patch geometries. Moreover, double-sided patches exhibit a pronounced decrease in the SIF compared to single-sided patches. In summary, this research underscores the potential of piezoelectric actuators in mitigating stress intensity in structures with circular hole with crack initiation. It offers valuable insights into the influence of applied voltage, patch geometry, and patch placement on the SIF, thereby contributing to developing effective strategies for enhancing structural integrity. 展开更多
关键词 Piezoelectric Actuators stress Intensity factor (sif) Aluminium Plate VOLTAGE Finite Element Method (FEM)
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DYNAMIC STRESS INTENSITY FACTORS AROUND TWO CRACKS NEAR AN INTERFACE OF TWO DISSIMILAR ELASTIC HALF-PLANES UNDER IN-PLANE SHEAR IMPACT LOAD
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作者 钱仁根 伊藤胜悦 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 1995年第1期67-77,共11页
Transient stresses around two collinear cracks which lie in parallel with theinterface of the two dissimilar half-planes are studied in this article.The surfaces ofthe cracks are sheared suddenly. Application of the... Transient stresses around two collinear cracks which lie in parallel with theinterface of the two dissimilar half-planes are studied in this article.The surfaces ofthe cracks are sheared suddenly. Application of the Fourier and Laplace transforms technique reduces the problem to that of solving dual integrai equations.To solvethese,the differences of.the crack surface displacements are expanded in a series offunctions which are automatically zero outside of the cracks. The unknown coefficients accompanied in the series are determined by the Schmidt method. The stress intensity .factors are defined in the Laplace transform domain and these are inverted numerically in the physical space .As an example ,the dynamic stress intensity factors around two cracks in a ceramic and steel bonded composite are numerically calculated. 展开更多
关键词 stress intensity factor. collincar cracks. impact load. compositematerials. numerical Laplace inversion fracture mechanics
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Factors Impacting Teacher Stress and Mitigation of This Stress in UK School System
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作者 Jiayu Zhou Yajing Xue 《Review of Educational Theory》 2022年第1期10-15,共6页
Teacher plays an essential role in the lives of children.In addition to promoting their learning and improving academic performance,teachers have a major character in developing student’s creative potential and growi... Teacher plays an essential role in the lives of children.In addition to promoting their learning and improving academic performance,teachers have a major character in developing student’s creative potential and growing into responsible citizens.However,in recent years,a report by National Foundation for Educational(2019)claimed that the teacher has faced many challenges than other occupations.Stress is one of the most challenges for the teacher to overcome.The main sources of teacher stress generally come from personal,interpersonal as well as organization.This essay explores and discusses the factors that impact or affect teacher stress,exploring the theories and concepts associated with teacher stress and mitigation practices for teacher stress in the United Kingdom school system-from primary and secondary school. 展开更多
关键词 Teacher pressure stress mitigation impact factor
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An analytical solution for the stress field and stress intensity factor in an infinite plane containing an elliptical hole with two unequal aligned cracks 被引量:4
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作者 M.HAJIMOHAMADI R.GHAJAR 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2018年第8期1103-1118,共16页
The existing analytical solutions are extended to obtain the stress fields and the stress intensity factors(SIFs) of two unequal aligned cracks emanating from an elliptical hole in an infinite isotropic plane. A confo... The existing analytical solutions are extended to obtain the stress fields and the stress intensity factors(SIFs) of two unequal aligned cracks emanating from an elliptical hole in an infinite isotropic plane. A conformal mapping is proposed and combined with the complex variable method. Due to some difficulties in the calculation of the stress function, the mapping function is approximated and simplified via the applications of the series expansion. To validate the obtained solution, several examples are analyzed with the proposed method, the finite element method, etc. In addition, the effects of the lengths of the cracks and the ratio of the semi-axes of the elliptical hole(a/b) on the SIFs are studied. The results show that the present analytical solution is applicable to the SIFs for small cracks. 展开更多
关键词 complex variable conformal mapping unequal crack elliptical hole stress intensity factor(sif)
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Evaluation of mixed-mode stress intensity factors by extended finite element method 被引量:3
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作者 茹忠亮 赵洪波 尹顺德 《Journal of Central South University》 SCIE EI CAS 2013年第5期1420-1425,共6页
Extended finite element method (XFEM) implementation of the interaction integral methodology for evaluating the stress intensity factors (SIF) of the mixed-mode crack problem is presented. A discontinuous function... Extended finite element method (XFEM) implementation of the interaction integral methodology for evaluating the stress intensity factors (SIF) of the mixed-mode crack problem is presented. A discontinuous function and the near-tip asymptotic function are added to the classic finite element approximation to model the crack behavior. Two-state integral by the superposition of actual and auxiliary fields is derived to calculate the SIFs. Applications of the proposed technique to the inclined centre crack plate with inclined angle from 0° to 90° and slant edge crack plate with slant angle 45°, 67.5° and 90° are presented, and comparisons are made with closed form solutions. The results show that the proposed method is convenient, accurate and computationallv efficient. 展开更多
关键词 stress intensity factor sif interaction integral method extended finite element method (XFEM)
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Comprehensive investigation of stress intensity factors in rotating disks containing three-dimensional semi-elliptical cracks 被引量:1
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作者 M.FAKOOR S.M.N.GHOREISHI 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2017年第11期1565-1578,共14页
Initiation and propagation of cracks in rotating disks may cause catastrophic failures. Therefore, determination of fracture parameters under different working con- ditions is an essential issue. In this paper, a comp... Initiation and propagation of cracks in rotating disks may cause catastrophic failures. Therefore, determination of fracture parameters under different working con- ditions is an essential issue. In this paper, a comprehensive study of stress intensity factors (SIFs) in rotating disks containing three-dimensional (3D) semi-elliptical cracks subjected to different working conditions is carried out. The effects of mechanical prop- erties, rotational velocity, and orientation of cracks on SIFs in rotating disks under cen- trifugal loading are investigated. Also, the effects of using composite patches to reduce SIFs in rotating disks are studied. The effects of patching design variables such as mechanical properties, thickness, and ply angle are investigated separately. The modeling and analytical procedure are verified in comparison with previously reported results in the literature. 展开更多
关键词 stress intensity factor sif semi-elliptical crack rotating disk finite ele-ment analysis (FEA)
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Closed form solution of stress intensity factors for cracks emanating from surface semi-spherical cavity in finite body with energy release rate method
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作者 Hualiang WAN Qizhi WANG Xing ZHANG 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2016年第12期1689-1706,共18页
In this paper, a new semi-analytical and semi-engineering method of the closed form solution of stress intensity factors (SIFs) of cracks emanating from a surface semi-spherical cavity in a finite body is derived us... In this paper, a new semi-analytical and semi-engineering method of the closed form solution of stress intensity factors (SIFs) of cracks emanating from a surface semi-spherical cavity in a finite body is derived using the energy release rate theory. A mode of crack opening displacements of a normal slice is established, and the normal slice relevant functions are introduced. The proposed method is both effective and accurate for the problem of three-dimensional cracks emanating from a surface cavity. A series of useful results of SIFs are obtained. 展开更多
关键词 stress intensity factor sif closed form solution surface cavity three-dimensional crack normal slice
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Digital Image Correlation Using Specific Shape Function for Stress Intensity Factor Measurement
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作者 Chunhua Ren Jia Yang +1 位作者 Xiaochuan Zhang Hongwei Ji 《Transactions of Tianjin University》 EI CAS 2017年第2期157-162,共6页
The stress intensity factor (SIF) is a critical parameter associated with the fracture behaviour of materials. In this paper, we select the displacement function around a crack tip as the shape function of the digital... The stress intensity factor (SIF) is a critical parameter associated with the fracture behaviour of materials. In this paper, we select the displacement function around a crack tip as the shape function of the digital image correlation (DIC), which makes it possible to directly calculate the SIF by the correlation scheme. Moreover, we use a non-rectangular subset, which can reduce the influence of plastic deformation and crack width on the DIC measurement accuracy. We measured the SIF of a mode I crack in a super-hard aluminium alloy specimen to verify the performance of the proposed method. Our experimental results show that a DIC with a specific shape function can be used to accurately and efficiently calculate the SIF. Furthermore, we also present a practical application of our proposed method for determining the SIF, crack propagation angle and crack tip displacement. © 2017, Tianjin University and Springer-Verlag Berlin Heidelberg. 展开更多
关键词 Crack propagation Cracks Fracture mechanics Image analysis Strain measurement stress intensity factors
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Stress and Fracture Strength Analysis for Three-Way Pipes 被引量:3
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作者 XU Jing-jing, WU Yi-min School of Electromechanical Engineering and Automation, Shanghai University, Shanghai 200072, China 《Advances in Manufacturing》 SCIE CAS 2000年第S1期11-15,共5页
Three-way pipes, T and Y pipes, are very important connecting components in pipeline systems, their strength are related to the safety of pipelines. In the case that crack is not detected in the three-way pipe, ANSYS ... Three-way pipes, T and Y pipes, are very important connecting components in pipeline systems, their strength are related to the safety of pipelines. In the case that crack is not detected in the three-way pipe, ANSYS finite element program version 5.6 is applied to study the stress distribution of the three-way pipe and to obtain the optimum fillet radius in the crotch region of the two pipes. The reasonable intersection angle of the two pipes is also obtained. In the case that a surface crack is detected in the three-way pipe, the maximum stress intensity factor (SIF) near the front of the surface crack is studied. 展开更多
关键词 three-way pipes intersection angle CRACK fracture strength stress intensity factor (sif) Kscc
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Dynamic fracture behavior of rock under impact load using the caustics method 被引量:7
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作者 YANG Ren-shu YUE Zhong-wen +2 位作者 SUN Zhong-hui XIAO Tong-she GUO Dong-ming 《Mining Science and Technology》 EI CAS 2009年第1期79-83,共5页
We studied the dynamic fracture mechanical behavior of rock under different impact rates. The fracture experiment was a three-point bending beam subjected to different impact loads monitored using the reflected causti... We studied the dynamic fracture mechanical behavior of rock under different impact rates. The fracture experiment was a three-point bending beam subjected to different impact loads monitored using the reflected caustics method. The mechanical parameters for fracture of the three-poim bending beam specimen under impact load are analyzed. The mechanism of crack propagation is discussed. Experimental results show that the dynamic stress intensity factor increases before crack initiation. When the dynamic stress intensity factor reaches its maximum value the crack starts to develop. After crack initiation the dynamic stress intensity factor decreases rapidly and oscillates. As the impact rate increases the cracks initiate earlier, the maximum value of crack growth velocity becomes smaller and the values of dynamic stress intensity factor also vary less during crack propagation. The results provide a theoretical basis for the study of rock dynamic fracture. 展开更多
关键词 ROCK impact load reflected caustics dynamic stress intensity factor crack extension regularity
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A PENNY-SHAPED CRACK IN A MAGNETOELECTROELASTIC LAYER UNDER RADIAL SHEAR IMPACT LOADING 被引量:2
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作者 Feng Wenjie Nie Hui Han Xu 《Acta Mechanica Solida Sinica》 SCIE EI 2007年第3期275-282,共8页
This paper analyzes the dynamic magnetoelectroelastic behavior induced by a pennyshaped crack in a magnetoelectroelastic layer. The crack surfaces are subjected to only radial shear impact loading. The Laplace and Han... This paper analyzes the dynamic magnetoelectroelastic behavior induced by a pennyshaped crack in a magnetoelectroelastic layer. The crack surfaces are subjected to only radial shear impact loading. The Laplace and Hankel transform techniques are employed to reduce the problem to solving a Fredholm integral equation. The dynamic stress intensity factor is obtained and numerically calculated for different layer heights. And the corresponding static solution is given by simple analysis. It is seen that the dynamic stress intensity factor for cracks in a magnetoelectroelastic layer has the same expression as that in a purely elastic material. And the influences of layer height on both the dynamic and static stress intensity factors are insignificant as h/a 〉 2. 展开更多
关键词 magnetoelectroelastic layer penny-shaped crack impact stress intensity factor Hankel transform Laplace transform
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Theoretical and numerical studies of crack initiation and propagation in rock masses under freezing pressure and far-field stress 被引量:6
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作者 Yongshui Kang Quansheng Liu +1 位作者 Xiaoyan Liu Shibing Huang 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2014年第5期466-476,共11页
Water-bearing rocks exposed to freezing temperature can be subjected to freezeethaw cycles leading tocrack initiation and propagation, which are the main causes of frost damage to rocks. Based on theGriffith theory of... Water-bearing rocks exposed to freezing temperature can be subjected to freezeethaw cycles leading tocrack initiation and propagation, which are the main causes of frost damage to rocks. Based on theGriffith theory of brittle fracture mechanics, the crack initiation criterion, propagation direction, andcrack length under freezing pressure and far-field stress are analyzed. Furthermore, a calculation methodis proposed for the stress intensity factor (SIF) of the crack tip under non-uniformly distributed freezingpressure. The formulae for the crack/fracture propagation direction and length of the wing crack underfreezing pressure are obtained, and the mechanism for coalescence of adjacent cracks is investigated.In addition, the necessary conditions for different coalescence modes of cracks are studied. Using thetopology theory, a new algorithm for frost crack propagation is proposed, which has the capability todefine the crack growth path and identify and update the cracked elements. A model that incorporatesmultiple cracks is built by ANSYS and then imported into FLAC3D. The SIFs are then calculated using aFISH procedure, and the growth path of the freezing cracks after several calculation steps is demonstratedusing the new algorithm. The proposed method can be applied to rocks containing fillings such asdetritus and slurry. 2014 Institute of Rock and Soil Mechanics, Chinese Academy of Sciences. Production and hosting byElsevier B.V. All rights reserved. 展开更多
关键词 Freeze-thaw action Freezing pressure stress intensity factor(sif) Crack propagation
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A HALF PLANE CRACK UNDER THREE-DIMENSIONAL COMBINED MODE IMPACT LOADING 被引量:1
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作者 柳春图 李湘平 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 1994年第1期40-48,共9页
The dynamic stress intensity factor history for a half plane crack in an otherwise unbounded elastic body, with the crack faces subjected to a traction distribution consisting of two pairs of suddenly-applied shear li... The dynamic stress intensity factor history for a half plane crack in an otherwise unbounded elastic body, with the crack faces subjected to a traction distribution consisting of two pairs of suddenly-applied shear line loads is consid- ered. The analytic expression for the combined mode stress intensity factors as a function of time is obtained. The method of solution is based on the application of integral transforms and the Wiener-Hopf technique. Some features of the solutions are discussed and graphical numerical results are presented. 展开更多
关键词 impact line loads a half plane crack combined mode dynamic stress intensity factor
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SEMI-ELLIPTIC SURFACE CRACK IN AN ELASTIC SOLID WITH FINITE SIZE UNDER IMPACT LOADING 被引量:1
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作者 Guo Ruiping Liu Guanting Fan Tianyou 《Acta Mechanica Solida Sinica》 SCIE EI 2006年第2期122-127,共6页
In this paper a semi-elliptic surface crack problem in an elastic solid of finite size under impact loading is investigated. An analysis is performed by means of fracture dynamics and the finite element method, and a ... In this paper a semi-elliptic surface crack problem in an elastic solid of finite size under impact loading is investigated. An analysis is performed by means of fracture dynamics and the finite element method, and a three-dimensional finite element program is developed to compute the dynamic stress intensity factor. The results reveal that the effects of the solid's boundary surface, crack surface, material inertia and stress wave interactions play significant roles in dynamic fracture. 展开更多
关键词 surface crack solid of finite size impact loading dynamic stress intensity factor finite element method
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圆杆和螺纹及板表面裂纹的扩展形态与SIF实验解分析
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作者 彭雪英 李其 徐克明 《大庆石油学院学报》 CAS 北大核心 1995年第3期104-107,共4页
在对圆杆、圆杆表面多环形槽和螺纹根部表面裂纹应力强度因子(SIF)进行了实验研究的基础上,分析了3种SIF实验解相互间的差异和共性,在3种试件中,表面裂纹SIF值无论在裂纹最深点还是表面点,均以螺纹联接时最高,圆杆表面多环形槽次之,圆... 在对圆杆、圆杆表面多环形槽和螺纹根部表面裂纹应力强度因子(SIF)进行了实验研究的基础上,分析了3种SIF实验解相互间的差异和共性,在3种试件中,表面裂纹SIF值无论在裂纹最深点还是表面点,均以螺纹联接时最高,圆杆表面多环形槽次之,圆杆的值为最低,同时,还讨论了在以上3种情况下其表面裂纹前缘的扩展形态,并相现有的平面板在拉伸、弯曲疲劳载荷作用下,其表面裂纹的扩展前缘进行了比较,指出:它们虽然都是椭圆曲线的一部分,有相同的裂纹形状比a/C随裂纹深度比a/R增大而减小的变化规律,但圆杆与拉抻板的断口形态接近,而圆杆表面多环形槽和螺纹根部的断口形态则处于板的拉伸与弯曲之间。 展开更多
关键词 圆杆 螺纹 裂纹 裂纹扩展 机械强度
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TORSIONAL IMPACT RESPONSE OF A PENNY-SHAPED CRACK IN A FUNCTIONAL GRADED STRIP
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作者 冯文杰 李向国 王守东 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2004年第12期1398-1404,共7页
The torsional impact response of a penny-shaped crack in a nonhomogeneous strip is considered. The shear modulus is assumed to be functionally graded such that the mathematics is tractable. Laplace and Hankel transfor... The torsional impact response of a penny-shaped crack in a nonhomogeneous strip is considered. The shear modulus is assumed to be functionally graded such that the mathematics is tractable. Laplace and Hankel transforms were used to reduce the problem to solving a Fredholm integral equation. The crack tip stress field is obtained by considering the asymptotic behavior of Bessel function. Explicit expressions of both the dynamic stress intensity factor and the energy density factor were derived.And it is shown that, as crack driving force, they are equivalent for the present crack problem. Investigated are the effects of material nonhomogeneity and (strip's) highness on the dynamic fracture behavior. Numerical results reveal that the peak of the dynamic stress intensity factor can be suppressed by increasing the nonhomogeneity parameter of the shear modulus, and that the dynamic behavior varies little with the adjusting of the strip's highness. 展开更多
关键词 dynamic stress intensity factor torsional impact penny-shaped crack functionally graded strip integral transform energy density factor
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DYNAMIC STRESS FIELD AROUND THE MODE Ⅲ CRACK TIP IN AN ORTHOTROPIC FUNCTIONALLY GRADED MATERIAL
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作者 李春雨 邹振祝 段祝平 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2000年第6期651-658,共8页
The problem of a Griffith crack in an unbounded orthotropic functionally graded material subjected to antipole shear impact was studied. The shear moduli in two directions of the functionally graded material were assu... The problem of a Griffith crack in an unbounded orthotropic functionally graded material subjected to antipole shear impact was studied. The shear moduli in two directions of the functionally graded material were assumed to vary proportionately as definite gradient. By using integral transforms and dual integral equations, the local dynamic stress field was obtained. The results of dynamic stress intensity factor show that increasing shear moduli's gradient of FGM or increasing the shear modulus in direction perpendicular to crack surface can restrain the magnitude of dynamic stress intensity factor. 展开更多
关键词 anisotropic media functionally graded materials dynamic stress intensity factor CRACK impact
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缺口悬臂梁振动疲劳裂纹扩展行为研究
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作者 张博瑞 白春玉 +2 位作者 李凯翔 宋巧治 马玉娥 《航空工程进展》 CSCD 2024年第5期97-105,共9页
航空飞行器在服役过程中会经受大量复杂的随机振动载荷,其结构易发生振动疲劳进而导致损伤甚至失效,造成严重损失。以铝合金悬臂梁结构件为对象,开展振动疲劳试验与理论分析,研究随机振动载荷下含裂纹梁的应力强度因子求解方法,提出一... 航空飞行器在服役过程中会经受大量复杂的随机振动载荷,其结构易发生振动疲劳进而导致损伤甚至失效,造成严重损失。以铝合金悬臂梁结构件为对象,开展振动疲劳试验与理论分析,研究随机振动载荷下含裂纹梁的应力强度因子求解方法,提出一种基于Hudson理论的时域法,结合经典的Paris公式估算振动疲劳裂纹扩展寿命。结果表明:本文提出的基于Hudson理论的时域法的寿命预测结果优于试验对比估算结果,验证了该方法能够有效描述随机振动裂纹扩展行为。 展开更多
关键词 随机振动 裂纹扩展 应力强度因子 疲劳损伤 寿命估算 Hudson理论
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V形斜缺口薄板结构应力场评估方法研究
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作者 谌伟 王宇强 +2 位作者 梁贵明 徐双喜 邱屿 《武汉理工大学学报(交通科学与工程版)》 2024年第3期448-452,共5页
文中对含有复杂V形倾斜角的薄板结构应力场进行了理论分析和数值研究.通过建立奇异强度因子as与缺口应力强度因子N-SIF的关系,获得无量纲的N-SIF,在此基础上建立一系列不同几何尺寸、张开角与倾斜角下的有限板宽的斜裂纹切口薄板模型,... 文中对含有复杂V形倾斜角的薄板结构应力场进行了理论分析和数值研究.通过建立奇异强度因子as与缺口应力强度因子N-SIF的关系,获得无量纲的N-SIF,在此基础上建立一系列不同几何尺寸、张开角与倾斜角下的有限板宽的斜裂纹切口薄板模型,对切口的应力场进行简化与拟合.通过控制变量法得到奇异强度因子与无量纲N-SIF的关系曲线,拟合得到简易的V形倾斜角的薄板结构应力场和N-SIF评估公式.将拟合出的N-SIF简化计算公式和有限元计算结果与传统文献计算结果进行对比与误差分析.结果表明:拟合出的应力场公式精度较高,可实现复杂倾斜角下V形切口应力场的快速评估. 展开更多
关键词 V形切口 奇异强度因子“as” 缺口应力强度因子(N-sif) 倾斜角 应力场评估
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