苏州混凝土水泥制品研究院有限公司

头部文案

发布时间:2020-01-06 00:00:00
全国建材科技期刊
全国中文核心期刊
中国科技论文统计源期刊
万方数据-数字化期刊群入网期刊
中国学术期刊(光盘版)全文收录期刊
华东地区优秀科技期刊
江苏省期刊方阵“双效期刊”
中国期刊网全文收录期刊
中国科技期刊数据库全文收录期刊
预处理方式对再生砂及其胶砂性能的影响
Effect of pretreatment methods on the performance of recycled sand and its cement mortar
2025年第2期
废弃轨枕;再生砂;碳化;颗粒整形;水泥浆浸泡;胶砂性能
Waste sleeper; Recycled sand; Carbonization; Particle shaping; Cement slurry soaking; Performance of cement mortar
2025年第2期
10.19761/j.1000-4637.2025.02.101.06
程 欢1,2,何 政3,刘金坤1,2,孙德易1,2,李晓龙1,2
1.中铁工程设计咨询集团有限公司,北京 100055;2.中铁咨询集团北京工程检测有限公司,北京 100073;3.渝万铁路有限责任公司,重庆 400037

程 欢1,2,何 政3,刘金坤1,2,孙德易1,2,李晓龙1,2

程欢,何政,刘金坤,等.预处理方式对再生砂及其胶砂性能的影响[J].混凝土与水泥制品,2025(2):101-106.

CHENG H,HE Z,LIU J K,et al.Effect of pretreatment methods on the performance of recycled sand and its cement mortar[J].China Concrete and Cement Products,2025(2):101-106.

浏览量:
1000
摘   要:研究了预处理方式(颗粒整形、水泥浆浸泡、碳化处理)对再生砂压碎指标、孔结构及胶砂需水量、力学性能、吸水性、干燥收缩性能和孔结构的影响。结果表明:颗粒整形对再生砂抗压碎性能和孔结构的改善效果最好;相比于掺未处理再生砂的胶砂,掺颗粒整形再生砂胶砂的需水量降低了23.86%,28 d抗压强度、抗折强度分别提高了77.97%、50.00%,吸水量降低了1.55%,干燥收缩值降低了6.46%,孔隙率降低了58.52%。 Abstract: The effects of pretreatment methods(particle shaping, cement slurry soaking and carbonation treatment) on the crushing index, pore structure of recycled sand, as well as the water demand, mechanical properties, water absorption, drying shrinkage performance and pore structure of cement mortar were investigated. The results show that particle shaping has relatively the best effect on the improvement of crushing resistance and pore structure of recycled sand. Compared with the cement mortar with untreated recycled sand, the water demand of the cement mortar with recycled sand after particle shaping decreases by 23.86%, the 28 d compressive strength and flexural strength increase by 77.97% and 50.00%, respectively, the water absorption decreases by 1.55%, the drying shrinkage value decreases by 6.46%, and the porosity decreases by 58.52%.
英文名 : Effect of pretreatment methods on the performance of recycled sand and its cement mortar
刊期 : 2025年第2期
关键词 : 废弃轨枕;再生砂;碳化;颗粒整形;水泥浆浸泡;胶砂性能
Key words : Waste sleeper; Recycled sand; Carbonization; Particle shaping; Cement slurry soaking; Performance of cement mortar
刊期 : 2025年第2期
DOI : 10.19761/j.1000-4637.2025.02.101.06
文章编号 :
基金项目 :
作者 : 程 欢1,2,何 政3,刘金坤1,2,孙德易1,2,李晓龙1,2
单位 : 1.中铁工程设计咨询集团有限公司,北京 100055;2.中铁咨询集团北京工程检测有限公司,北京 100073;3.渝万铁路有限责任公司,重庆 400037

程 欢1,2,何 政3,刘金坤1,2,孙德易1,2,李晓龙1,2

程欢,何政,刘金坤,等.预处理方式对再生砂及其胶砂性能的影响[J].混凝土与水泥制品,2025(2):101-106.

CHENG H,HE Z,LIU J K,et al.Effect of pretreatment methods on the performance of recycled sand and its cement mortar[J].China Concrete and Cement Products,2025(2):101-106.

摘要
参数
结论
参考文献
引用本文

摘   要:研究了预处理方式(颗粒整形、水泥浆浸泡、碳化处理)对再生砂压碎指标、孔结构及胶砂需水量、力学性能、吸水性、干燥收缩性能和孔结构的影响。结果表明:颗粒整形对再生砂抗压碎性能和孔结构的改善效果最好;相比于掺未处理再生砂的胶砂,掺颗粒整形再生砂胶砂的需水量降低了23.86%,28 d抗压强度、抗折强度分别提高了77.97%、50.00%,吸水量降低了1.55%,干燥收缩值降低了6.46%,孔隙率降低了58.52%。

Abstract: The effects of pretreatment methods(particle shaping, cement slurry soaking and carbonation treatment) on the crushing index, pore structure of recycled sand, as well as the water demand, mechanical properties, water absorption, drying shrinkage performance and pore structure of cement mortar were investigated. The results show that particle shaping has relatively the best effect on the improvement of crushing resistance and pore structure of recycled sand. Compared with the cement mortar with untreated recycled sand, the water demand of the cement mortar with recycled sand after particle shaping decreases by 23.86%, the 28 d compressive strength and flexural strength increase by 77.97% and 50.00%, respectively, the water absorption decreases by 1.55%, the drying shrinkage value decreases by 6.46%, and the porosity decreases by 58.52%.

扫二维码用手机看
未找到相应参数组,请于后台属性模板中添加

(1)在相同预处理方式下,随着粒径的增加,再生砂的压碎指标基本呈增大趋势;三种预处理方式对再生砂抗压碎性能改善效果的大小顺序为:颗粒整形>水泥浆浸泡>碳化处理;对再生砂孔结构改善效果的大小顺序为:颗粒整形>碳化处理>水泥浆浸泡。
(2)三种预处理方式对胶砂需水量降低效果的大小顺序为:颗粒整形>碳化处理>水泥浆浸泡;对28 d抗压强度、抗折强度改善效果的大小顺序基本为:水泥浆浸泡≈颗粒整形>碳化处理;对吸水性改善效果的大小顺序基本为:水泥浆浸泡>碳化处理>颗粒整形;对干燥收缩性能改善效果的大小顺序基本为:颗粒整形>碳化处理>水泥浆浸泡;对胶砂孔结构改善效果的大小顺序基本为:颗粒整形>水泥浆浸泡>碳化处理。
(3)总体上,相较于水泥浆浸泡、碳化处理,颗粒整形对再生砂、掺再生砂胶砂性能的改善效果最好,再生砂的性能与石英砂相当,甚至更好。

[1] AKHTAR A,SARMAH A K.Construction and demolition waste generation and properties of recycled aggregate concrete: A global perspective[J].Journal of Cleaner Production,2018,186:262-281.
[2] WANG B,YAN L B,FU Q N,et al.A comprehensive review on recycled aggregate and recycled aggregate concrete[J].Resources,Conservation and Recycling,2021,171:105565.
[3] XING W Q,TAM V W Y,LI K N,et al.Life cycle assessment of recycled aggregate concrete on its environmental impacts: A critical review[J].Construction and Building Materials,2022,317:125950.
[4] 程欢,黄法礼,李化建,等.铁路工程废弃混凝土资源化再利用现状[J].铁道建筑,2021,61(11):1-5.
[5] LI L,ZHAN B J,LU J,et al.Systematic evaluation of the effect of replacing river sand by different particle size ranges of fine recycled concrete aggregates (FRCA) in cement mortars[J].2019,209:147-155. 
[6] THERENE F,KEITA E,NAEL-REDOLFI J,et al.Water absorption of recycled aggregates: Measurements, influence of temperature and practical consequences[J].Cement and Concrete Research,2020,137:106196. 
[7] ALEXANDRIDOU C,ANGELOPOULOS G N,COUTELIERIS F A.Mechanical and durability performance of concrete produced with recycled aggregates from Greek construction and demolition waste plants[J].Journal of Cleaner Production,2018,176:745-757.
[8] PEREIRA P,EVANGELISTA L,DE-BRITO J.The effect of superplasticisers on the workability and compressive strength of concrete made with fine recycled concrete aggregates[J].Construction and Building Materials,2012,28(1):722-729.
[9] LI S J,GAO J M,LI Q Y,et al.Investigation of using recycled powder from the preparation of recycled aggregate as a supplementary cementitious material[J].Construction and Building Materials,2021,267:120976.
[10] ISMAIL S,RAMLI M J C,MATERIALS B.Engineering properties of treated recycled concrete aggregate (RCA) for structural applications[J].Construction and Building Materials,2013,44:464-476.
[11] JUAN M S D,GUTIERREZ P A J C,MATERIALS B.Study on the influence of attached mortar content on the properties of recycled concrete aggregate[J].Construction and Building Materials,2009,23(2):872-877.
[12] Al-BAYATI H,DAS P K,TIGHE S L,et al.Evaluation of various treatment methods for enhancing the physical and morphological properties of coarse recycled concrete aggregate[J].Construction and Building Materials,2016,112:284-298.
[13] ZHAO Z H,WANG S D,LU L C,et al.Evaluation of pre-coated recycled aggregate for concrete and mortar[J].Construction and Building Materials,2013,43:191-196.
[14] SINGH L P,BISHT V,ASWATHY M S,et al.Studies on performance enhancement of recycled aggregate by incorporating bio and nano materials[J].Construction and Building Materials,2018,181:217-226.
[15] CHINZORIGT G,LIM M K,YU M,et al.Strength, shrinkage and creep and durability aspects of concrete including CO2 treated recycled fine aggregate[J].Cement and Concrete Research,2020,136:106062.
[16] ZHU Y G,KOU S C,POON C S,et al.Influence of silane-based water repellent on the durability properties of recycled aggregate concrete[J].Cement and Concrete Composites,2013,35(1):32-38.
[17] 朱亚光,徐培蓁.硅烷与PVA对再生混凝土粗骨料改性试验研究[J].混凝土,2015(3):93-95,101.
[18] DIMITRIOU G,SAVVA P,PETROU M F.Enhancing mechanical and durability properties of recycled aggregate concrete[J].Construction and Building Materials,2018,158:228-235. 

程欢,何政,刘金坤,.预处理方式对再生砂及其胶砂性能的影响[J].混凝土与水泥制品,2025(2):101-106.

CHENG H,HE Z,LIU J K,et al.Effect of pretreatment methods on the performance of recycled sand and its cement mortar[J].China Concrete and Cement Products,2025(2):101-106.

相关文件

暂时没有内容信息显示
请先在网站后台添加数据记录。

关注《混凝土与水泥制品》

总访问量 468,401   网站统计

官方微信公众号关闭
苏州混凝土水泥制品研究院有限公司

关于我们    |    联系我们    |    订购杂志    |    回到顶部

版权所有:中国混凝土与水泥制品网  苏ICP备10086386号   网站建设:中企动力 苏州

版权所有:中国混凝土与水泥制品网

苏ICP备10086386号

网站建设:中企动力 苏州