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基于DIP技术的碎石粗骨料粒形测试与修正 被引量:3
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作者 黄亚梅 王立华 陈锡容 《长江科学院院报》 CSCD 北大核心 2018年第4期129-133,共5页
骨料粒形对混凝土的工作性能和力学性能具有重要影响,但骨料颗粒为不规则形状,难以充分定义及度量,对混凝土的影响也无法精确评价。为了精确测量骨料粒形,运用数字图形处理(Digital Image Processing,DIP)技术研究了灰岩碎石粗骨料的粒... 骨料粒形对混凝土的工作性能和力学性能具有重要影响,但骨料颗粒为不规则形状,难以充分定义及度量,对混凝土的影响也无法精确评价。为了精确测量骨料粒形,运用数字图形处理(Digital Image Processing,DIP)技术研究了灰岩碎石粗骨料的粒形和粒径,并与游标卡尺测量结果进行比较。研究发现,数字图形处理技术测量得到的碎石骨料的长度、宽度以及长径比与游标卡尺测量值相等,无需修正,但厚度、扁平比、球度以及粒形因数与游标卡尺测量值差异显著,需要对扁平比λ进行修正,修正系数为1.82,修正后两者偏差在2%以内。 展开更多
关键词 碎石粗骨料 DIP技术 粒形 扁平比 修正系数
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道路面层再生混凝土抗压抗折强度影响因素分析
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作者 齐会贤 《工程建设与设计》 2024年第23期139-141,共3页
以天然砾石、碎石为粗骨料基础制作两组再生混凝土,在确定水泥、粗骨料以及细骨料等原材料技术指标符合规范要求的基础上,将粗骨料取代率、砂率以及水灰比作为试验的变量,通过正交试验方法确定碎石和砾石再生混凝土抗折强度最大影响因... 以天然砾石、碎石为粗骨料基础制作两组再生混凝土,在确定水泥、粗骨料以及细骨料等原材料技术指标符合规范要求的基础上,将粗骨料取代率、砂率以及水灰比作为试验的变量,通过正交试验方法确定碎石和砾石再生混凝土抗折强度最大影响因素是粗骨料取代率;而碎石再生混凝土抗压强度的最大影响因素是水灰比,砾石再生混凝土抗压强度的最大影响因素是粗骨料取代率。 展开更多
关键词 再生混凝土 砾石骨料 碎石粗骨料 抗压 抗折 影响因素
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Recycling of Crushed Demolished Concrete in Structures
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作者 A. E. Sayed Rabiee All Sadeek Mohamed 《Journal of Civil Engineering and Architecture》 2010年第11期65-69,共5页
Most important problems arising from industrial and technological developments are abundance and harmful effects of post-productive wastes. In most of the developed countries, these effects are avoided by orderly stor... Most important problems arising from industrial and technological developments are abundance and harmful effects of post-productive wastes. In most of the developed countries, these effects are avoided by orderly storing methods. Storing the wastes in random stacks in the site, and their effect on wide areas gives a rise to the risk of ground, air and under water pollution e.g., pollution of the surrounding environments. Therefore, in most engineering branches, effects and nature of harmful wastes are investigated and solution methods are developed. When structures made of concrete are to be demolished. Concrete recycling is an increasingly common method of disposing of the rubble. Concrete debris was once routinely shipped to landfills for disposal, but recycling has a number of benefits that have been made it a more attractive option in this age of greater environmental awareness, more environmental lows, and the desire to keep constant costs down. The purpose of this research is to study the effect of using demolished concrete as a reproducible coarse aggregate in fabricating normal and high strength concrete mixes. The effect of constituent materials in general and the recycled coarse aggregate in particular on the mechanical performance of the produced concrete mixes is investigated. The characteristics of using the by-pass product of cement industry as cementitious material in recycled concrete mixes with a percentage of 50% as a replacement of cement content is investigated too. Test results presented in this research leads to the promising use of crushed demolished concrete along with the by-pass product of cement as waste materials in producing concrete mixes as well as the optimistic results in enhancing the strength properties of plain concrete beside their benefits of the cost savings and reducing environmental impact. 展开更多
关键词 RECYCLE WASTE demolished crushed concrete.
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