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Functionally graded concrete elements composed of vertical layers of different mixes

机译:功能渐变的混凝土元件由不同混合的垂直层组成

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The industrial production of cement is currently responsible for 5-7% of global CO_2 emissions. The manufacture of functionally graded concrete structures, where the use of material is optimized by varying the material composition over the volume, opens up vast opportunities to reduce the use of cement. In functionally graded concrete, horizontal gradation can be achieved by casting vertical layers having homogeneous properties. However, a major problem with this kind of application is the control of the fresh state deformations. This study investigates the fresh state stability of concrete prisms that consist of two vertical layers of different mixes. Experiments are performed to invoke stable or unstable behaviour. The results show that, for a given geometry, a relationship between the material parameters and system stability exists.
机译:水泥的工业生产目前负责5-7%的全球CO_2排放。 通过在体积上改变材料组成来优化功能梯度混凝土结构的制造,通过改变材料组成,开辟了巨大的机会,以减少水泥的使用。 在功能梯度混凝土中,通过铸造具有均相性质的垂直层来实现水平灰度。 然而,这种应用的主要问题是控制新鲜状态变形。 本研究研究了混凝土棱镜的新鲜状态稳定性,其包括两个不同混合物的垂直层。 进行实验以调用稳定或不稳定的行为。 结果表明,对于给定的几何形状,存在材料参数和系统稳定性之间的关系。

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