微孔混凝土灌水器制备工艺与性能研究
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国家自然科学基金项目(51479172、51209177)和陕西省水利科技项目(2015slkj-10、2011slkj-05)


Preparation and Performance Study on Microporous Concrete Irrigation Emitters
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    摘要:

    提出了一种渗灌用微孔混凝土灌水器制备工艺,详细研究了原料中砂子粒径和水泥含量对微孔混凝土灌水器的抗折强度、开口孔隙率、平均孔径和水力性能的影响规律,优选出了微孔混凝土灌水器的最佳制备工艺。研究表明,砂子的粒径变化对灌水器的抗折强度、开口孔隙率、平均孔径和流量的影响不大;随着原料中水泥含量的增加,灌水器的抗折强度逐渐增大、开口孔隙率显著降低、平均孔径变小,继而导致灌水器的流量显著减小,其中水泥质量分数为15%~18%的微孔混凝土灌水器具有适中的抗折强度、开口孔隙率和平均孔径,可兼顾灌水器的可靠性和流量要求,而且流量稳定,是一种性能优异的渗灌灌水器。

    Abstract:

    Microporous concrete irrigation emitters were prepared with dry pressing method and then cured by an atomizing humidifying means. The effect of particle size of sand and cement content in raw material on the flexural strength, open porosity, pore size and hydraulic performance of the irrigation emitters was studied. By testing the hydraulic performance of the irrigation emitters, the variation of the water flow rate of irrigation emitters with time was analyzed, and the reason causing the variation was investigated. The particle size of sand has little effect on the flexural strength, open porosity and mean pore size of microporous concrete. As cement increases, the microporous concrete increases gradually in flexural strength, decreases obviously in open porosity and gradually in mean pore size. The water flow rate of irrigation emitters decreases obviously with the increase of cement in raw material, and decreases slightly as the particle size of sand decreases. When the cement content of raw material was 12%, the irrigation emitters are of high water flow rate but easy to be destroyed because of low strength. When the cement content of raw material was 21%, the irrigation emitters have good reliability due to their high strengths but are hardly to be used in practice because of very low water flow rate. When the cement content of raw material was 15%~18%, the irrigation emitters possess both good reliability and relative high water flow rate due to their suitable strengths, open porosities and mean pore sizes. During hydraulic performance testing, the soluble alkali in microporous concrete was dissolved and taken out by water, which makes the water flow rate with time of the irrigation emitters increase slightly because of the gradual increase of open porosity and mean pore size. Nevertheless, the slight increase of water flow rate has little impact on irrigation in practice. The microporous concrete irrigation emitters are promising good subirrigation emitters.

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李向明,杨建国.微孔混凝土灌水器制备工艺与性能研究[J].农业机械学报,2016,47(7):176-182.

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  • 收稿日期:2016-01-15
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  • 在线发布日期: 2016-07-10
  • 出版日期: 2016-07-10