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Investigation of the Self-Healing Behaviors of Microcapsules/Bitumen Composites by a Repetitive Direct Tension Test

机译:通过反复直接拉伸试验研究微胶囊/复合材料复合材料的自愈性能

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摘要

The aim of this work was to evaluate the self-healing behaviors of bitumen using microcapsules containing rejuvenator by a modified fracture healing–refracture method through a repetitive tension test. Microcapsules had mean size values of 10, 20 and 30 μm with a same core/shell ratio of 1/1. Various microcapsules/bitumen samples were fabricated with microcapsule contents of 1.0, 3.0 and 5.0 wt. %, respectively. Tension strength values of microcapsules/bitumen samples were measured by a reparative fracture-healing process under different temperatures. It was found that these samples had tensile strength values larger than the data of pure bitumen samples under the same conditions after the four tensile fracture-healing cycles. Fracture morphology investigation and mechanism analysis indicated that the self-healing process was a process consisting of microcapsules being broken, penetrated and diffused. Moreover, the crack healing of bitumen can be considered as a viscosity driven process. The self-healing ability partly repaired the damage of bitumen during service life by comparing the properties of virgin and rejuvenated bitumen.
机译:这项工作的目的是通过改良的骨折愈合-断裂方法,通过反复拉伸试验,使用含有回春剂的微胶囊,评估沥青的自愈性能。微胶囊的平均大小值为10、20和30μm,相同的核/壳比为1/1。制备具有1.0、3.0和5.0重量%的微胶囊含量的各种微胶囊/沥青样品。 %, 分别。微胶囊/沥青样品的拉伸强度值是通过在不同温度下的修复性骨折愈合过程来测量的。发现在四个拉伸断裂愈合循环之后,在相同条件下,这些样品的拉伸强度值大于纯沥青样品的数据。断裂形态学研究和机理分析表明,自修复过程是由微囊破裂,渗透和扩散组成的过程。而且,沥青的裂纹愈合可以被认为是粘度驱动的过程。通过比较原始沥青和再生沥青的性能,自我修复能力可以部分修复沥青在使用寿命期间的损坏。

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