特种水泥资源与节能技术

ce/papers Pub Date : 2023-12-06 DOI:10.1002/cepa.2980
Olena Khrystych, Halyna Shabanova, Alla Korohodska, Olga Gamova
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引用次数: 0

摘要

通过获取和研究基于各种工业领域废物的专用建筑材料,发现它们具有预定义的复合性能,并且是水力和空气结合材料。这类材料的物理力学性能变化范围很广:水灰比- 0.12 - 0.25;初始设置-从50分钟到1小时50分钟,最终设置-从2小时15分钟到3小时25分钟;凝结3天后抗压强度为30 ~ 60 MPa,凝结28天后抗压强度为50 ~ 85 MPa。此外,实验材料表现出复杂的特殊性能:计算的质量吸收比为200 - 280 cm-1,在腐蚀性介质中沉淀6个月后的硫酸盐抗性比为1.1 - 1.2。从化学工业废料中可以获得以下材料:砂石灰砖(含硅废料)、特殊用途混凝土的重填料(含铬废料)、各种类型的陶瓷(含钙废料),特别是铁磁陶瓷(含钡废料)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resource and energy saving technology of specialpurpose cements

By obtaining and studying special-purpose building materials based on the wastes of various industrial fields it has been found that that they exhibit a complex of predefined properties, and are both hydraulic and air binding materials. Physico-mechanical properties of such materials vary over a wide range: water-cement ratio – 0.12 – 0.25; initial set – from 50 minutes to 1 hour 50 minutes, final set – from 2 hours 15 minutes to 3 hours 25 minutes; compressive strength after 3 days of setting – 30 – 60 MPa, compressive strength after 28 days of setting – 50 – 85 MPa. In addition, experimental materials exhibit a complex of special properties: computed mass absorption ratio 200 – 280 cm-1, sulfate resistance ratio after 6 months of setting in aggressive medium – 1.1 – 1.2. It is possible to obtain the following materials from chemical industry wastes: sand lime bricks (silicon-containing wastes), heavy fillers for special purpose concretes (chromium wastes), various types of ceramics (calcium-containing wastes), and in particular ferromagnetic ceramics (barium-containing wastes).

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