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Evaluation of Optimum Rubblized Depth to Prevent Reflection Cracks

机译:评估最佳碎石深度以防止反射裂缝

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Reflection cracking is a common distress in asphalt overlays on cracked concrete pavements. Rubblization, which can minimize reflection cracks, has been used as an efficient rehabilitation method for aged concrete pavements in the United States. When applying the rubblization method, it is typical for the upper layer of aged concrete pavement to be rubblized to 40-70 mm in size, while the lower layer of the aged concrete pavement remains at a larger size, often over 300 mm. For thick concrete slabs, it is difficult to rubblize the entire depth of thick concrete slabs in terms of both construction and cost. The high impact energy necessary to rabblize the entire depth may cause degradation of the structural capacity of the pavement substructure. Korean highways are typically paved with thick concrete pavement slabs (30-33 cm concrete slabs with 15 cm lean concrete bases on granular subbases). This study conducted in Korea determined the minimum depth of effective 40-70 mm size rubblization to deter a reflection crack. An indoor simulation experiment was designed to assess the effects of the depth of the 40-70 mm rubblized layer on the prevention of reflection cracks. The experiment simulated two modes of reflection crack initiation: Mode Ⅰ (bending failure) and Mode Ⅱ (shear failure). Modes Ⅰ and Ⅱ tests were carried out for rubblization depths of 0, 10, and 20 cm. Reflection cracking did not occur with the simulated rubblization depths of 10 cm or 20 cm.
机译:反射开裂是开裂的混凝土路面沥青覆盖层的常见困扰。在美国,已将可最大限度减少反射裂缝的碎石化用作老化混凝土路面的有效修复方法。当采用磨碎法时,通常将老化混凝土路面的上层磨成40-70毫米的尺寸,而老化混凝土路面的下层则保持较大的尺寸,通常超过300毫米。对于厚混凝土板,从结构和成本两方面都难以使厚混凝土板的整个深度碎屑化。刨花整个深度所需的高冲击能量可能会导致路面下部结构的结构能力下降。韩国高速公路通常铺有厚实的混凝土路面板(30-33厘米的混凝土板,以15厘米的贫瘠混凝土为基础的颗粒状基础)。在韩国进行的这项研究确定了有效的40-70 mm大小的碎石最小深度,以阻止反射裂缝。设计了室内模拟实验,以评估40-70 mm碎石层的深度对防止反射裂缝的影响。实验模拟了两种反射裂纹萌生模式:Ⅰ型(弯曲破坏)和Ⅱ型(剪切破坏)。进行模式Ⅰ和Ⅱ测试,磨碎深度分别为0、10和20 cm。在10厘米或20厘米的模拟碎石深度下不会发生反射裂纹。

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