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轮胎衍生纤维的回收利用:钢帘线对基于珍珠岩骨料的轻质混凝土性能的贡献。

Recycling of Tire-Derived Fiber: The Contribution of Steel Cord on the Properties of Lightweight Concrete Based on Perlite Aggregate.

作者信息

Kadela Marta, Małek Marcin, Jackowski Mateusz, Kunikowski Mateusz, Klimek Agnieszka, Dudek Daniel, Rośkowicz Marek

机构信息

Instytut Techniki Budowlanej, Filtrowa 1, 00-611 Warsaw, Poland.

Research Laboratory, Faculty of Civil Engineering and Geodesy, Military University of Technology in Warsaw, 00-908 Warsaw, Poland.

出版信息

Materials (Basel). 2023 Mar 6;16(5):2124. doi: 10.3390/ma16052124.

Abstract

The increasing amount of waste from the vulcanization industry has become a serious environmental challenge. Even the partial reuse of the steel contained in tires as dispersed reinforcement in the production of new building materials may contribute to reducing the environmental impact of this industry while supporting the principle of sustainable development. In this study, the concrete samples were made of Portland cement, tap water, lightweight perlite aggregates, and steel cord fibers. Two different addition of steel cord fibers (1.3% and 2.6% wt. of concrete, respectively) were used. The samples of lightweight concrete based on perlite aggregate with steel cord fiber addition showed a significant increase in compressive (18-48%), tensile (25-52%), and flexural strength (26-41%). Moreover, higher thermal conductivity and thermal diffusivity were reported after incorporating steel cord fibers into the concrete matrix; however, the specific heat values decreased after these modifications. The highest values of thermal conductivity and thermal diffusivity were obtained for samples modified with a 2.6% addition of steel cord fibers and were equal to 0.912 ± 0.002 W/mK and 0.562 ± 0.002 µm/s, respectively. Maximum specific heat, on the other hand, was reported for plain concrete (R)-1.678 ± 0.001 MJ/m K.

摘要

硫化工业产生的废弃物数量不断增加,已成为严峻的环境挑战。即便将轮胎所含的钢作为分散增强材料部分再利用于新型建筑材料生产中,也有助于减少该行业对环境的影响,同时支持可持续发展原则。在本研究中,混凝土样品由波特兰水泥、自来水、轻质珍珠岩骨料和钢帘线纤维制成。使用了两种不同添加量的钢帘线纤维(分别为混凝土重量的1.3%和2.6%)。添加钢帘线纤维的基于珍珠岩骨料的轻质混凝土样品的抗压强度(提高了18 - 48%)、抗拉强度(提高了25 - 52%)和抗弯强度(提高了26 - 41%)均有显著提高。此外,将钢帘线纤维掺入混凝土基体后,热导率和热扩散率有所提高;然而,这些改性后比热值降低。添加2.6%钢帘线纤维改性的样品热导率和热扩散率最高,分别为0.912±0.002W/mK和0.562±0.002µm/s。另一方面,普通混凝土(R)的比热最高,为1.678±0.001MJ/m K。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6de/10004698/93409b6dd2ea/materials-16-02124-g001.jpg

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