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Analyzing size effects in a cracked orthotropic layer under antiplane shear loading

机译:在抗涂层剪切载量下裂纹正交层中的尺寸效应

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Scale-dependent stress intensity factors in an anti-plane cracked orthotropic material layer are evaluated using strain gradient theory. Both volumetric and surface strain gradient material characteristic lengths represented as l and l', respectively, are employed to obtain semi-analytical solutions. The surface strain gradient effect is considered for both positive and negative l' values. The layer edges are assumed stress-free and oriented parallel to the crack plane. The presence of orthotropy can either increase or decrease the stress intensity factors depending on if it is greater or smaller than unity. The volumetric strain gradient effect reduces the stress intensity factor and it is more pronounced for smaller layer thickness. It was found that the negative surface gradient leads to a more complaint crack, while the positive surface gradient increases crack stiffness. Overall, the surface gradient effect is less significant in comparison with the volumetric gradient effect.
机译:使用应变梯度理论评估抗平面裂纹正交材料层中的依赖依赖性应力强度因子。分别表示为L和L'的体积和表面应变梯度材料特征长度,以获得半分析溶液。考虑表面应变梯度效果,用于正极和负L'值。假设层边缘无应力和平行于裂缝平面定向。取决于它是否大于或小于统一,正向特性的存在可以增加或降低应力强度因子。体积应变梯度效果降低了应力强度因子,并且对于较小的层厚度更加明显。发现负面梯度导致更抱怨的裂缝,而正表面梯度增加裂缝刚度。总的来说,与体积梯度效应相比,表面梯度效应不太显着。

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