畜禽废弃物在夯土材料加固中的再利用:力学性能研究

IF 2.4 4区 农林科学 Q2 AGRICULTURAL ENGINEERING
M. Parlato, C. Rivera-Gómez, S. Porto
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引用次数: 1

摘要

农业废弃物作为原料土材料的添加剂,既可以改善新型可持续建筑材料的机械和物理性能,又可以从循环经济的角度加强废弃物管理。本研究旨在填补动物纤维对夯土材料力学效应的认识不足。禽畜废物,即羊毛纤维(SWF),作为由生土和无石灰砂浆生产的建筑构件的增强元素,其影响已经进行了评估。在加入SWF的样品上评估了线性收缩率、弯曲强度和抗压强度,目的是评估这种废物添加对新型生物复合材料机械性能的影响。样品是通过改变羊毛含量(0.25%或0.50%重量)和纤维长度(从10毫米到40毫米)制成的。当纤维掺入量最大、纤维掺入量最大时,纤维掺入量分别为40 mm和0.50%,其抗折强度达到1.06 MPa。SWF的加入改变了土坯砖的破坏模式,由脆性变为延性,降低了干密度和收缩率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reuse of livestock waste for the reinforcement of rammed-earth materials: investigation on mechanical performances
Agricultural wastes as additive within raw earth materials could both improve mechanical and physical properties of new sustainable construction materials and enhance waste management in a circular economy perspective. This study intends to fill the lack of knowledge considering the mechanical effects of animal fibers on rammed earth materials. The effects of a livestock waste, i.e., sheep wool fiber (SWF), as reinforcing element in building components produced by using raw earth and lime-free mortars, have been evaluated. Linear shrinkage, flexural strength, and compressive strength were evaluated on samples incorporating SWF, with the aim of assessing the effects of this waste addition on the mechanical performances of a new bio-composite material. The samples were made by varying the content of wool (0.25 % or 0.50%weight) and the length of the fibers (from 10 mm to 40 mm). The best result of the flexural strength was 1.06 MPa, exhibited by samples made with the longest and highest percentage of fibers, 40 mm and 0.50%, respectively. The addition of SWF to adobe bricks changed their failure mode, from fragile to ductile, reduced dry density and shrinkage rate.
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来源期刊
Journal of Agricultural Engineering
Journal of Agricultural Engineering AGRICULTURAL ENGINEERING-
CiteScore
2.30
自引率
5.60%
发文量
40
审稿时长
10 weeks
期刊介绍: The Journal of Agricultural Engineering (JAE) is the official journal of the Italian Society of Agricultural Engineering supported by University of Bologna, Italy. The subject matter covers a complete and interdisciplinary range of research in engineering for agriculture and biosystems.
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