Quality Acceptance Methods and Standards for Continuous Compaction Control Technology

Zhang Daoxiu, Jiang Huihuang, Gao Ming-xian, Zhang Jiandong, Xiang Weiguo, Yan Xiaoxia, Guo Dong, Zhao Chongji, Wu Longliang
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引用次数: 1

Abstract

In order to promote the wide application of continuous compaction control technology in China, the continuous compaction control technical regulations of various countries and regions in the world are taken as research objects, and the technical characteristics and application conditions of various countries' regulations are compared and analyzed. The current continuous compaction control technology is analyzed. The main quality acceptance methods and standards, summed up the application experience of the technology around the world. The results show that the comprehensive evaluation of the comprehensive evaluation of compaction degree, compaction uniformity and compaction stability is the trend of quality control standards development. The calibration method is mainly used. The problem of water content of fine particle fillers has a significant impact on continuous compaction control and has been widely recognized. The water content of the filler needs to be controlled in engineering applications. The basic theory of continuous compaction control method is becoming more and more mature, and the development direction of the actual compaction problem is gradually developed. The accuracy requirement of continuous compaction control is gradually improved. The weak area identification method is supplemented by the incremental method of measurement. The reasonable selection of evaluation methods for engineering characteristics is an effective way to promote the successful application of continuous compaction control technology.
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连续压实控制技术质量验收方法与标准
为了促进连续压实控制技术在中国的广泛应用,以世界各国和地区的连续压实控制技术法规为研究对象,对各国法规的技术特点和应用条件进行了比较分析。分析了当前连续压实控制技术。介绍了主要的质量验收方法和标准,总结了世界各国技术的应用经验。结果表明,对压实度、压实均匀性和压实稳定性进行综合评价是质量控制标准发展的趋势。主要采用标定法。细颗粒填料的含水率问题对连续压实控制有重要影响,已得到广泛认可。在工程应用中,填料的含水量需要控制。连续压实控制方法的基本理论日趋成熟,实际压实问题的发展方向也逐渐发展起来。连续压实控制精度要求逐步提高。弱区识别法辅以增量测量法。合理选择工程特性评价方法是促进连续压实控制技术成功应用的有效途径。
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