王硕,黄英豪,王文翀,等. 新拌固化淤泥流动性测试标准试验研究[J]. 水利水运工程学报.. doi: 10.12170/20230805001
引用本文: 王硕,黄英豪,王文翀,等. 新拌固化淤泥流动性测试标准试验研究[J]. 水利水运工程学报.. doi: 10.12170/20230805001
(WANG Shuo, HUANG Yinghao, WANG Wenchong, et al. Experimental research on test standards for freshly mixed solidified sludge flowability[J]. Hydro-Science and Engineering(in Chinese)). doi: 10.12170/20230805001
Citation: (WANG Shuo, HUANG Yinghao, WANG Wenchong, et al. Experimental research on test standards for freshly mixed solidified sludge flowability[J]. Hydro-Science and Engineering(in Chinese)). doi: 10.12170/20230805001

新拌固化淤泥流动性测试标准试验研究

Experimental research on test standards for freshly mixed solidified sludge flowability

  • 摘要: 流动性是评判新拌固化淤泥能否进行流动化施工的关键指标,一般采用流动度试验方法。研究流动度测试试验标准是推动新拌固化淤泥流动化施工的重要一环。采用目前主流的3种流动度测量筒/截锥圆模,研究初始含水比、水泥掺量及水化反应时间对淤泥和新拌固化淤泥流动度的影响,讨论3种流动度测量模具所反映出的流动度规律异同及适用性。研究发现:(1)淤泥和新拌固化淤泥流动度具有最大/小值,随着初始含水比的增加呈现S形增长。(2)水泥掺量从0变为50 kg/m3时对流动度影响最大,掺量继续增加流动度变化趋缓;水泥掺量固定时,水灰比和流动度呈现较明显的线性关系;3种流动度测量模具所得的拟合参数变化规律类似。(3)随着水泥水化反应的进行,新拌固化淤泥流动度下降,较高水泥掺量时流动度下降更快。(4) JHS .A 313和GB/T 2419流动度测量筒对初始含水比的变化关联度更强;ASTM D6103流动度测量筒因为其过长的高度,在实际操作中易造成试样倾斜,GB/T 2419测量筒则更容易混进空气,二者均对试验结果产生较大影响,因此推荐使用JHS .A 313流动度测量筒进行淤泥、新拌固化淤泥流动度的研究。

     

    Abstract: Flowability is a key indicator for assessing the feasibility of flowable construction using freshly mixed solidified sludge, and it is typically evaluated through flowability tests. Research on flowability test standards is an important aspect of promoting flowable construction of freshly mixed solidified sludge. This study investigates the influence of initial water content, cement content, and hydration time on the flowability of sludge and freshly mixed solidified sludge using three mainstream flowability measurement cylinders/conical molds. The study also explores the similarities, differences, and applicability of the flowability patterns reflected by these three measurement molds. The findings of the study are as follows: (1) The flowability of sludge and freshly mixed solidified sludge exhibits maximum/minimum values, and it shows an S-shaped growth with an increase in initial water content. (2) The change in flowability is most significant when the cement content increases from 0 to 50 kg/m3, and the change becomes less pronounced as the cement content continues to increase. When the cement content is fixed, there is a clear linear relationship between water-cement ratio and flowability. The variation patterns of the fitting parameters obtained from the three flowability measurement molds are similar. (3) With the progress of cement hydration, the flowability of freshly mixed solidified sludge decreases, and the decrease is more rapid at higher cement content. (4) The JHS.A 313 and GB/T 2419 flowability measurement cylinders are more closely related to changes in initial water content. The ASTM D6103 flowability measurement cylinder, due to its excessive height, may cause sample tilting during practical operations, while the GB/T 2419 measurement cylinder is more prone to air entrainment. Both factors have a significant impact on the test results. Therefore, it is recommended to use the JHS.A 313 flowability measurement cylinder for the study of sludge and freshly mixed solidified sludge flowability.

     

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