首页> 外文期刊>Journal of international management >Structural Behavior of Sandwich Beams with Flax Fiber-Reinforced Polymer Faces and Cardboard Cores under Monotonic and Impact Loads
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Structural Behavior of Sandwich Beams with Flax Fiber-Reinforced Polymer Faces and Cardboard Cores under Monotonic and Impact Loads

机译:亚麻纤维增强聚合物面和纸板芯在单调和冲击载荷下的夹层梁的结构行为

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To meet the ever-increasing demand for more environmentally conscious building designs, it is important that sustainable building material options be available. Natural and recycled materials can be used in sandwich panels to reduce their environmental footprint. This study featured experiments with 12 sandwich beams constructed with flax fiber-reinforced polymer (FFRP) faces and recycled corrugated cardboard cores under monotonic and impact loading. Each sandwich beam was 1,200 mm long and 150 mm wide, and was constructed of two-layer FFRP faces and a 75-mm-thick corrugated cardboard core. Six specimens were prepared using a plain cardboard core and six with a waxed cardboard core. Two separate test methods were employed in this study: a three-point bending test and a drop-weight impact test. Three specimens of each type with a span length of 1,120 mm of each type were tested under monotonic load. The load was applied through a 150-mm-wide steel hollow structural section (HSS) and was measured with a 250 kN load cell. The midspan deflection was measured with a string potentiometer, and the strains in the top and bottom faces at midspan were measured using strain gauges. The monotonic test data were recorded at a rate of 10 Hz. Three specimens of each type were tested under a drop-weight impact load. The drop weight was applied to the midspan. To match the monotonic tests, the drop weight was affixed with a 150 mm HSS loading surface. The midspan displacement was measured with a fast-action string potentiometer, and the midspan face strains were measured using strain gauges. The impact data were recorded at a rate of 25 kHz. In addition, each impact test was filmed with high-speed video (500 frames per second). The residual monotonic flexural behavior after impact was also investigated for specimens that survived the impact testing (that is, they were additionally tested under monotonic three-point bending). The results of the tests were compared with the results of similar tests on sandwich beams with conventional petroleum-based foam cores and showed that the cardboard core beams behaved similarly to the foam core beams. It was determined that core manufacturing and specimen preparation had a significant effect on the overall specimen behavior and potentially caused premature failure in some of the tests. The residual monotonic tests of the specimens after impact showed that there was no significant reduction in specimen strength or stiffness after an impact event. Existing models used for predicting the behavior of foam-core FFRP sandwich beams were used to predict the behavior of the cardboard specimens tested in this study.
机译:为满足不断增长的对更环保的建筑设计的需求,重要的是可持续建筑材料选择。天然和再生材料可用于三明治面板,以减少其环境足迹。本研究采用了用亚麻纤维增强聚合物(FFRP)的12个夹层梁的实验,并在单调和冲击载荷下进行了再生瓦楞纸板核心。每个夹层光束长1,200毫米,宽150毫米,由两层FFRP面和75毫米厚的瓦楞纸板芯构成。使用普通纸板芯和六个用蜡纸板核心制备六个标本。本研究采用了两种独立的试验方法:三点弯曲试验和滴重试验。在单调负载下测试每种类型的每种类型的三个标本,每种类型的每种类型1,120mm。载荷通过150mm宽的钢中空结构部分(HSS)施加,并用250kN称重传感器测量。用弦电位计测量中坡偏转,使用应变仪测量中沸的顶面和底面的菌株。单调测试数据以10 Hz的速率记录。在滴重量的冲击载荷下测试每种类型的三个标本。将滴重量施加到中坡。为了匹配单调测试,将滴重量固定在150mm HSS装载表面上。使用快速动作弦电位计测量中坡位移,使用应变仪测量中坡面部菌株。以25 kHz的速率记录冲击数据。此外,每个冲击试验用高速视频(每秒500帧)拍摄。还研究了冲击后的残留单调的抗弯曲行为,用于在冲击试验中存活的标本(即,在单调三点弯曲下另外测试它们。将测试结果与具有常规石油基泡沫芯的夹层梁类似试验的结果进行了比较,并显示纸板芯束与泡沫芯梁的表现类似。确定核心制造和样本制剂对整体标本行为产生显着影响,并且在一些测试中可能引起过早失效。撞击后试样的残留单调试验表明,冲击事件后,样品强度或刚度没有显着降低。用于预测泡沫核心FFRP夹层梁的行为的现有模型用于预测本研究中测试的纸板样本的行为。

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