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首页> 外文期刊>Composites. B, Engineering >In-plane shear testing of thick-section pultruded FRP composites using a modified Arcan fixture
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In-plane shear testing of thick-section pultruded FRP composites using a modified Arcan fixture

机译:使用改良的Arcan夹具对厚截面拉挤FRP复合材料进行面内剪切测试

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摘要

A modified Arcan fixture with butterfly specimen geometry is designed to measure the in-plane shear response of thick-section pultruded FRP composites. The objective of the proposed testing method is to determine both the material shear stiffness and its non-linear stress-strain response up to ultimate stress. The tested pultruded specimens include two alternating layers in the form of a unidirectional glass roving and continuous filament mat layers. Finite element models for the butterfly specimen are generated to examine the effects of the notch radius and material orthotropy on the uniformity and distribution of stresses in the gage area. Butterfly geometry with a blunted notch and roving orientation parallel to the applied load is found to have a uniform shear stress in the gage section. The axial-shear response is measured under different biaxial stress states by varying the angle of the applied load. The tested non-linear shear stress―strain responses compare favorably to results previously obtained from off-axis compression tests used to calibrate a multi-axial constitutive model for this material. Results from strain gage and Infrared thermography measurements provide confirmation for the effectiveness of the fixture and the specimen geometry.
机译:设计了一种改良的具有蝴蝶标本几何形状的Arcan夹具,以测量厚截面拉挤FRP复合材料的面内剪切响应。所提出的测试方法的目的是确定材料的剪切刚度及其在极限应力作用下的非线性应力应变响应。被测试的拉挤试样包括两个交替的单向玻璃粗纱层和连续的长丝毡层。生成蝴蝶样品的有限元模型,以检查缺口半径和材料正交性对应变仪区域应力的均匀性和分布的影响。发现蝶形几何形状的凹口和粗纱方向平行于所施加的载荷,在量规部分具有均匀的剪应力。在不同的双轴应力状态下,通过改变施加载荷的角度来测量轴向剪切响应。经测试的非线性剪切应力-应变响应与先前从用于校准这种材料的多轴本构模型的离轴压缩测试中获得的结果相比具有优势。应变计和红外热像仪测量的结果证实了夹具和样品几何形状的有效性。

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