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纤维陶粒混凝土抗压疲劳性能试验研究 被引量:1
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作者 朱红兵 向杰 +1 位作者 李秀 邱志成 《四川建筑科学研究》 2018年第2期1-4,共4页
纤维陶粒混凝土具有自重轻的突出优点,研究其疲劳性能对工程推广应用意义深远。对掺加了聚丙烯纤维(掺量为0.9 kg/m^3)的陶粒混凝土进行了抗压试验及抗压疲劳试验,得到了如下结论:(1)纤维陶粒混凝土的棱柱体抗压强度与立方体抗压强度的... 纤维陶粒混凝土具有自重轻的突出优点,研究其疲劳性能对工程推广应用意义深远。对掺加了聚丙烯纤维(掺量为0.9 kg/m^3)的陶粒混凝土进行了抗压试验及抗压疲劳试验,得到了如下结论:(1)纤维陶粒混凝土的棱柱体抗压强度与立方体抗压强度的比值在0.90左右,明显高于纤维混凝土(约为0.70);(2)同一应力水平条件下,相同强度等级纤维混凝土的抗压疲劳寿命均较纤维陶粒混凝土高,二者的抗压疲劳寿命随混凝土强度的升高而增加;(3)纤维混凝土及纤维陶粒混凝土的疲劳强度折减系数可统一取0.68。利用试验数据建立了纤维混凝土和纤维陶粒混凝土的S-N疲劳方程。 展开更多
关键词 纤维陶粒混凝土 试验研究 抗压疲劳寿命 S-N曲线
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Mechanistic Classification of Cement Treated Base in Western Australia
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作者 Yang Sheng Yeo P. Jitsangiam H. Nikraz 《Journal of Civil Engineering and Architecture》 2012年第8期1076-1081,共6页
In the past decade alone, the BITRE has indicated an increase of 40% in road users, escalating demands for quality pavements to service tmprecedented traffic conditions. An abundance of crushed rocks are available in ... In the past decade alone, the BITRE has indicated an increase of 40% in road users, escalating demands for quality pavements to service tmprecedented traffic conditions. An abundance of crushed rocks are available in Western Australia but do not meet strength requirements for road construction. However, cement treatment of crushed rocks, forming Cement Treated Crushed Rocks (CTCR), improves the mechanical properties of the material, allowing wider application. In order to streamline the mix design of CTCR, the classification of its behaviour is pivotal. Austroad classifies cement treated pavement materials as either being modified or bound based on its Unconfined Compressive Strength (UCS) and performance attributes. Bound materials are def'med by its susceptibility to fatigue failure which, in the mechanistic-empirical design for flexible pavements, is dictated by the flexural modulus. However, in the study of damage mechanics, fatigue life is suggested to be an accumulation of micro-scale damage in lieu of dependency to ultimate stresses. Strain dependent damage functions are used phenomologically to explain the evolution of fatigue for various engineering materials. This paper therefore investigates a theoretical relationship between strain and fatigue life prediction supported by a laboratory investigation on the use of UCS for classification. This is achieved by providing regression analysis with strain parameters used in fatigue life prediction. The Indirect Tensile Strength (ITS) test is also employed to this end. It is observed that strain at onset of micro-cracking coalescence (ε30) is independent of test type undertaken and potentially capable of acting as a more superior blanket classification for cemented materials. 展开更多
关键词 Cement treated materials unconfined compressive strength FATIGUE
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