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Enhancing Printable Concrete Thixotropy by High Shear Mixing

机译:高剪切混合增强可打印的混凝土触变性

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Our results show that the storage elastic modulus as a function of time increases at a higher rate for cement paste mixed at higher vesus lower mixing intensity.Hence,higher mixing appears to be enhancing thixotropy.Using calorimetry analysis we find that higher mixing decreases the setting time and enhances the peak of the heat flow.By analyzing the nanoparticles present in the suspending fluid of the cement paste,we show,in accordance with literature,that an appropriate combination of mixing energy and super-plasticizer dosage promotes hydration by scratching hydrates from the surface of cement particles,stabilizing them in the suspending fluid and hence generating additional nucleation surfaces.These results open the door for the design of printing heads including high-shear micro mixers allowing for a faster liquid-to-solid transition of the printable material.
机译:我们的结果表明,作为时间函数的储存弹性模量以较高的水泥浆料较高的速​​度增加,在较高的vssus较低的混合强度下混合。较高的混合似乎增强了触变性。火回物分析我们发现较高的混合减少了速度时间并增强热流的峰值。根据文献,分析在水泥浆料的悬浮液中存在的纳米颗粒,其展示了混合能量和超塑性剂量的适当组合通过刮擦水合物来促进水化水泥颗粒的表面,将它们稳定在悬浮液中,因此产生额外的成核表面。这些结果为印刷头的设计开放,包括高剪切微混合器,允许可打印材料的较快的液体 - 固体过渡的液体 - 固体过渡。 。

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