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Indicative comparisons between bonded and dowelled hardwood studs for limecrete-spruce connections under load-unload-reload double-shear testing

机译:加载-卸载-再加载双剪切试验下石灰岩-云杉连接的硬木钉和斜钉硬木钉之间的指示性比较

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This paper reports double-shear testing of hardwood stud-based connections between Hmecrete slabs and spruce glulam beams. Limecrete-glulam composites can form low carbon floors in buildings owing to the low CO_2 emissions from manufacture of the natural hydraulic lime constituent of Hmecrete. There are four novel facets to the present tests. First, an innovative rolling formwork was developed to facilitate casting of the two slabs needed per double-shear specimen. Second, the impact on connection behaviour of the inclination angles of the studs across the range 40-90°, in 10° increments, have been investigated. Third, the effects of either Ramin dowels or adhesive bonding to fasten the hardwood studs to the glulam blocks were studied. Fourth, these connections' responses to multiple unload-reload cycles en route to failure were determined. The processed test data reveal the bonded stud connections to be of superior pullout and shear-slip properties to their dowelled stud counterparts, although the bonded stud connections did also exhibit significantly more pronounced variability in slip modulus than did the dowelled ones. Some hysteresis was displayed by all connections during load cycling, which is useful for energy dissipation. The bonded connections exhibited performance comparable to previously published connections based on inclined metallic screws threaded into spruce glulam and projecting into lightweight aggregate concrete. It is concluded that future tests to optimize these connection systems are warranted.
机译:本文报道了Hmecrete平板和云杉胶合木梁之间基于硬木螺柱的连接的双重剪切测试。由于制造Hmecrete的天然水硬石灰成分所产生的CO_2排放量低,Limecrete-glulam复合材料可在建筑物中形成低碳地板。本测试有四个新颖方面。首先,开发了一种创新的轧制模板,以方便铸造每个双剪切试样所需的两个平板。其次,研究了跨度为40-90°(以10°为增量)的双头螺栓倾斜角度对连接行为的影响。第三,研究了用拉明销钉或粘合剂粘合将硬木钉固定到胶合木块上的效果。第四,确定了这些连接在故障途中对多个卸载-重新加载循环的响应。处理后的测试数据表明,与双头螺栓对应的螺栓连接相比,双头螺栓连接具有更好的拔出和剪切滑移性能,尽管与双头螺栓连接相比,双头螺栓连接的滑移模量变化也明显得多。负载循环期间所有连接均显示一些滞后现象,这对于能量耗散很有用。粘结连接的性能可与以前发布的连接媲美,该连接基于拧入云杉胶合层并伸入轻骨料混凝土中的倾斜金属螺钉。结论是,将来有必要进行优化这些连接系统的测试。

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