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Conceptual Design of Super Environment-Conscious Intelligent Composites Incorporated with Life-Cycle Program of Self-Repair and Self-Collapse and Application for Environment-Conscious Interior Planning in Buildings

机译:结合自修复和自塌陷生命周期程序的超级环保智能复合材料的概念设计及其在建筑中进行环保室内设计的应用

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Super environment-conscious intelligent composite materials incorporated with life-cycle program of self-repair during in service and self-collapse after designed service life are proposed. One example is carbon short-cut fiber reinforced composites (CFRC) incorporated into matrix mortar with numerous two kinds of micro capsules imbedded with two smaller capsules containing nanometer-size reacting particle (calcium oxide (CaO) or cement) and initiating one (highly water-containing resin particle). These double capsules are incorporated during mixing mortar and fiber as chemical admixture, but they are stably dispersed, not breaking during in service of composites. By triggering these double capsules by external electromagnetic wave having two different frequencies, these capsules are broken, and chemical reaction occurs. As the results, self-repair is made to occur in the crack part during in service by the rather mild hydration reaction of cement, and self-collapse after designed service life by the rapid expansive hydration reaction of CaO. These cement composites are intelligent due to the appropriate response to the controlled external electromagnetic trigger, and environment-friendly due to the elongation of service life by self-repair, and the easiness of demolition and recycling by self-collapse. The same concept is also applied to carbon continuous fiber reinforced plastic reinforced concrete (CFRPRC). Other than double microcapsules, glass optical fibers are also imbedded into matrix resin of FRP. By detecting the change of electric resistance of CFRP. we can predict the collapse. By triggering the embedded double capsules, self-repair and self-collapse are made to occur. These pseudo-biological functions of self-repair and self-collapse are also incorporated into base concrete. These CFRPRC are enough to become intelligent and environment-friendly. By using well designed these super environment-conscious intelligent composites, 1 try to realize environment-conscious interior planning in which non-adhesive, but joint or set-in type interior construction are considered.
机译:提出了一种超级环保型智能复合材料,该材料结合了在役期间的自我修复生命周期程序和在设计使用寿命后的自我坍塌性。一个例子是将碳短纤维增强复合材料(CFRC)掺入基质砂浆中,将许多两种微胶囊嵌入到两个较小的包含纳米级反应颗粒(氧化钙(CaO)或水泥)的胶囊中并引发一个(高度水)含树脂颗粒)。这些双胶囊是在将砂浆和纤维作为化学混合物混合时掺入的,但它们稳定分散,在使用复合材料时不会破裂。通过用具有两个不同频率的外部电磁波触发这些双胶囊,这些胶囊破裂,并发生化学反应。结果,在使用中,由于水泥的适度的水合反应而使裂纹部分发生了自我修复,而由于CaO的快速膨胀水化反应,在设计的使用寿命后,其自身发生了塌陷。这些水泥复合材料由于对受控的外部电磁触发器具有适当的响应而具有智能性,并且由于自我修复可延长使用寿命,并且由于自身坍塌而易于拆卸和回收,因此对环境友好。同样的概念也适用于碳纤维连续增强塑料(CFRPRC)。除了双层微囊,玻璃纤维也被嵌入到FRP的基质树脂中。通过检测CFRP电阻的变化。我们可以预测崩溃。通过触发嵌入的双胶囊,可以进行自我修复和自我破坏。这些自我修复和自我崩溃的伪生物学功能也被纳入基础混凝土中。这些CFRPRC足以使其变得智能和环境友好。通过使用精心设计的这些超级环保型智能复合材料,1试图实现一种环保型室内规划,其中考虑了非粘合型,但考虑了联合或镶嵌式室内构造。

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