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Particle-Bed Binding by Selective Paste Intrusion—Strength and Durability of Printed Fine-Grain Concrete Members

机译:通过选择性糊状的侵入强度和印刷细粒混凝土构件的耐腐蚀性和耐久性的颗粒床结合

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摘要

The selective paste intrusion (SPI) describes a selective binding, additive manufacturing method. SPI bonds thin layers of aggregate by cement paste locally. Currently, SPI can achieve higher compressive strength, durability, and easier unpacking behavior compared to other selective binding methods suitable for the production of concrete structures. Particle-bed based methods not only achieve much higher surface resolutions than depositing (extrusion)-based additive manufacturing methods but also have no restrictions in freedom of form. However, the mechanical performance of SPI components strongly depends on the void content between the individual layers and thus the penetration behavior of the cement paste. This paper presents direction-dependent measurements of the strength and durability of SPI-printed components compared to casted specimens with the same mixing composition. The results show compressive strength values between 70 and 78 MPa after 7 d, flexural strength of 1/10 without reinforcement, a high freeze–thaw resistance, no detectable carbonation after 182 days of exposure under ambient CO2–conditions, and after 28 days under increased CO2 content of 2 vol % as well as low chloride penetration resistances. All tests showed in almost all cases no dependency on the layer orientation.
机译:选择性粘贴入侵(SPI)描述了选择性结合,添加剂制造方法。 SPI通过水泥膏在本地粘合薄层。目前,与适合于制造混凝土结构的其他选择性结合方法相比,SPI可以实现更高的抗压强度,耐用性和更容易的打开行为。基于颗粒的方法不仅可以实现比沉积(挤出)基于沉积的添加剂制造方法的更高的表面分辨率,而且对形式自由没有限制。然而,SPI组分的机械性能强烈取决于各个层之间的空隙含量,从而取决于水泥浆料的穿透行为。本文与具有相同混合组合物的浇铸试样相比,介绍了SPI印刷组分的强度和耐久性的方向依赖性测量。结果显示7天和78MPa的压缩强度值,弯曲强度为1/10而不加强,高冻融抗性,在环境CO 2条件下暴露182天后没有可检测的碳酸化,在28天后增加了二氧化碳含量为2体积%以及氯化物渗透抗性。所有测试都显示在几乎所有情况下都没有对层方向的依赖性。

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