不同硅藻土含量下的沥青路面性能评估

Atakan AKSOY, Mustafa Taha ASLAN, Erol İSKENDER, Dündar AYYILDIZ, Celaleddin Ensar ŞENGÜL
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引用次数: 0

摘要

大多数钢和钢筋混凝土桥梁都是用沥青路面制造的。这样做的原因是为了保护钢和混凝土结构免受水和降解盐添加剂的影响,并提高其耐久性。沥青桥梁上部结构多采用四层结构。这些层是底漆粘接层、防水层、保护层和表面沥青耐磨层。上层建筑必须保护配套的下层建筑。它应保护结构的寿命,保证结构的完整性,防止永久变形、老化、脱落、水损和化学作用。硅藻土添加剂在许多方面被用作性能增强剂。根据沥青质量,一般优选在5%-15%范围内。硅藻土添加剂的粒度和化学性质是影响硅藻土添加剂性能的其他因素。在本研究中,研究了选定硅藻土添加剂级配比例为5%和10%的常规和硅藻土改性沥青路面的抗车辙性能。通过重复蠕变试验,研究了两种不同掺量比例的水损混合料和防治混合料对路面抗车辙性能的影响。在无条件样品中,5%硅藻土改性混合物;在条件样品中,10%硅藻土改性混合物表现出最大的变形抗力。
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FARKLI DİATOMİT İÇERİĞİ İÇİN ASFALT KAPLAMA PERFORMANSININ DEĞERLENDİRİLMESİ
The majority of steel and reinforced concrete bridges are produced with asphalt pavement. The reason for this is to protect steel and concrete structures from the effects of water and degrading salt additives and to increase their durability. Asphalt bridge superstructures are mostly manufactured with four layers. These layers are the primer bonding layer, waterproofing layer, protection layer and surface asphalt wearing layers. The superstructure must protect the supporting substructure. It should protect the life of the structure and ensure the integrity of the structure against permanent deformation, aging, raveling, water damage and chemical effects. Diatomite additive is used as a performance enhancer in various aspects. It is generally preferred in the region of 5%-15% according to the bitumen mass. The granulometric size and chemical properties of the diatomite additive are other effective factors. In this study, the rutting resistance of conventional and diatomite-modified asphalt pavement for 5% and 10% ratios for selected diatomite additive gradation is investigated. The rutting resistance of the pavements is investigated by repeated creep tests for two different additive ratios on water-damaged and control mixtures. In unconditioned samples, 5% diatomite-modified mixtures; in conditioned samples, 10% diatomite-modified mixtures showed the greatest deformation resistance.
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