钢筋竹混凝土填充结构梁在跨中集中荷载作用下的抗弯强度

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引用次数: 0

摘要

竹子仍然被认为是农村贫困人口的材料。然而,它也有潜力充分开发工程材料增强结构梁与混凝土填充,以增加结构的结构强度,这是自然的美学,比单独的竹子作为建筑物的结构部件更耐用。本研究旨在确定竹材混凝土填充梁作为结构梁在跨中集中荷载作用下的抗弯强度。所使用的材料是整根竹竿,特别是石竹、凤尾竹、青竹和青竹,切成600毫米长,用海水和芒果多酚填充混凝土的海水处理。混凝土的养护时间分别为7天、14天、28天和56天。结果表明,海水处理和海水加10%芒果多酚提取物溶液处理的竹竿整体抗弯强度显著提高。经芒果多酚处理后,混凝土填充到整个竹竿作为梁是有效的,增加了抗弯强度。混凝土的养护龄期和竹竿的海水和芒果多酚处理影响混凝土填充竹竿在跨中集中荷载作用下的抗弯强度。钢筋竹混凝土填充型建筑材料可以减少对资源和环境的压力。与传统建筑材料相比,这些材料具有环保和机械方面的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexural Strength of Reinforced - Bamboo Concrete Infill Structural Beam Subjected to Concentrated Load at Midspan
Bamboo is still considered a material for poor people in rural areas. Still, it also has the potential to be fully developed engineering material reinforced structural beams with concrete infill to increase the structural strength of the structures, which is natural aesthetic, and more durable than bamboo alone as structural parts of buildings. This study aims to determine the flexural strength of bamboo with concrete infill as a structural beam subjected to a concentrated load at midspan. The materials used were whole bamboo culms, specifically Dendrocalamus Asper Schultes, Dendrocalamus Merrillianos Elmer, Bambusa Vulgaris Schrad, and Bambusa Blumeana Schultes cut into 600 mm lengths and treated with seawater and seawater with mango polyphenol infilled with concrete. The concrete was cured for 7, 14, 28, and 56 days, respectively. The results showed that the whole bamboo culm treated with seawater and treated with seawater plus a 10 percent solution of mango polyphenol extract remarkably increased its flexural strength. The concrete infill to the whole bamboo culm as the beam is effective, increasing flexural strength when treated with mango polyphenol. The curing age of concrete and treatment of bamboo culm with seawater and mango polyphenol affects the flexural strength of reinforced bamboo with concrete infill subjected to a concentrated load at midspan. Reinforced bamboo concrete infill-based construction materials can reduce pressure on resources and the environment. These materials have environmental and mechanical advantages over conventional construction materials.
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