Martínez Borja, Mendizabal Virginia, Bernat-Masó Ernest, Gil Lluís
Department of Strength of Materials and Structures in Engineering, Polytechnic University of Catalonia, 08222 Terrassa, Spain.
Materials (Basel). 2024 Aug 6;17(16):3900. doi: 10.3390/ma17163900.
This study investigated the utilization of innovative green composites made from hemp shiv, a waste by-product of hemp cultivation, with the aim of promoting sustainability within the construction industry. The manufacturing method involved the application of pressure in a mold to create the samples. These materials were produced using an environmentally friendly binder consisting of colophony, arabic gum, and corn starch. Moreover, white glue and bioepoxy were also used to compare with the green resins. Three different binder compositions were used for the specimens. The samples underwent mechanical testing through tensile and bending assessments, and their performance was compared to that of non-green binders to validate the effectiveness of the manufacturing processes. The study revealed that decreasing the moisture content during the curing process was crucial for improving the mechanical properties. The best results were achieved when using arabic gum as a binder, yielding a tensile strength of 2.16 MPa and a bending strength of 5.25 MPa, with a composition of 62.5% hemp shiv and a manufacturing process involving a pressure of 5 MPa.
本研究调查了由大麻秸秆制成的创新绿色复合材料的利用情况,大麻秸秆是大麻种植的一种废弃副产品,旨在促进建筑行业的可持续发展。制造方法包括在模具中施加压力以制作样品。这些材料是使用由松香、阿拉伯胶和玉米淀粉组成的环保粘合剂生产的。此外,还使用了白胶和生物环氧树脂与绿色树脂进行比较。对试样使用了三种不同的粘合剂组合物。通过拉伸和弯曲评估对样品进行力学测试,并将其性能与非绿色粘合剂的性能进行比较,以验证制造工艺的有效性。研究表明,在固化过程中降低水分含量对于改善力学性能至关重要。使用阿拉伯胶作为粘合剂时取得了最佳结果,其拉伸强度为2.16MPa,弯曲强度为5.25MPa,大麻秸秆的含量为62.5%,制造工艺涉及5MPa的压力。