一种增强混凝土性能的新型本地矿物掺合料的研制

Mohamad S Eissa, A. Megahed, M. Rashwan, O. Farghal
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摘要

根据我们全能的真主在他的书——神圣的《古兰经》中所说的话:“Hāmān啊,请你在粘土(用来造砖的)上为我点燃(火),为我建造一座塔....”。此外,作为土木工程师,我们必须不断努力开发水泥外加剂,以减少其制造过程中的负面影响。为此,本文对煅烧球粘土作为矿物火山灰掺合料用于混凝土生产进行了研究。CBC是在特定条件下由本地球粘土煅烧过程获得的。采用不同温度(600 ~ 900℃)和不同燃烧时间(2、3、4小时)对球泥煅烧工艺进行了评价,并通过28天龄期的强度活性指数对球泥煅烧的最佳温度和时间进行了评价。从7天、28天、90天和180天的抗压强度、吸水率、超声脉冲速度和电阻率等方面分析了含0%、10%、15%和20% CBC的混凝土混合料作为水泥部分替代品的硬化性能发展。此外,用XRD研究了含CBC水泥浆体的微观结构。结果表明,在800℃下煅烧4h,可获得CBC的最佳工艺条件。以10%的CBC替代水泥是混凝土混合料的最佳掺量,其抗压强度比对照提高28%。因此,添加CBC可以有效地利用当地的自然资源,从而减少能源消耗,并在水泥混凝土的制造过程中最大限度地减少二氧化碳的足迹,因此,混凝土可以成为一种环保和可持续的材料。
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Development of A New Local Mineral Admixture for Enhancing Concrete properties
Proceeding from the saying of our God almighty on his book, the holy Qur'an: "Then ignite for me, O Hāmān, (a fire) upon the clay (From which bricks are made) and make for me a tower....". In addition to, our duty as civil engineers, we must work continually to develop cement admixtures, to reduce the negative impact during its manufacture. Therefore, this paper presents an investigation on, using calcined ball-clay (CBC) as mineral pozzolanic admixture for concrete production. CBC is obtained from calcination processes for local ball-clay at specified conditions. To evaluate ball-clay calcination process, various temperatures (600–900 ºC) and burning durations (2, 3 and 4 hours) are used and the optimum temperature and burning time for calcination are assessed by strength activity index at age of 28 days. The hardened properties development of concrete mixtures containing 0%, 10%, 15% and 20% CBC as cement partial replacement are analysed in terms of compressive strength at 7, 28, 90 and 180 days, water absorption, ultrasonic pulse velocity and electrical resistivity. In addition, microstructure by XRD of the cement pastes incorporating CBC was studied. The results showed that the optimum calcination process to obtain CBC are carried out at temperature 800 °C for 4 hours. The replacement of cement by 10% of CBC is an optimal dosage for concrete mixtures since it achieved an increase of compressive strength by 28% as compared with control one. Therefore, adding CBC can lead to a beneficial utilization of natural local resources, which reduces energy consumption and minimizes CO 2 footprint during the manufacturing of cement concrete, thus, concrete can become an eco-friendly and sustainable material.
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