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1)  compacting factor
压实因数
2)  compaction times
压实次数
3)  compacting factor
压实系数
1.
For land leveling of any construction project,compacting factor is not an easy thing to be determined.
在对建设项目的场地平整中,压实系数值的确定实属一件不易之事。
2.
In the course of implementation, the author thinks it is difficult to comprehend the conception of compacting factor, degree of compaction of sub-grade is lower, and there is a little choice of aggregate gradation in line flyash gravel, then the author puts forward the suggestion.
《城镇道路工程施工与质量验收规范》(CJJ1-2008)颁布实施快一周年了,在执行过程中,作者认为规范条文中压实系数的概念难于理解、路基压实度指标偏低,石灰、粉煤灰稳定碎石中集料级配选择余地较小等,并对此提出修编建议。
4)  compaction parameter
压实参数
1.
Subgrade compaction parameters of foreign countries and engineering significance;
路基压实参数及其工程意义
2.
Determination of compaction parameters of clay-core dam of Ni erji Reservoir;
尼尔基水利枢纽工程心墙坝粘性土料压实参数的确定
3.
Through the test of solidified blow sand characteristics, based on the experimental road practice of base course construction of Tonglian Road, the compaction parameters and construction technologies of blow sand are studied.
通过对固化风积沙工程特性的试验,结合通连公路固化风积沙基层试验路的工程实践,研究了固化风积沙的压实参数以及施工工艺。
5)  compaction coefficient
压实系数
1.
Discussion of compaction coefficient K and ground coefficient K_(30) evaluating filled-soil compaction quality together;
压实系数和地基系数双控路基压实质量的探讨
2.
Ground cofficient K_(30) and compaction coefficient K are used for evaluating filled-soil compaction quality based on practice and ground coefficient K_(30) value for evaluating filled-soil compaction quality is given based on in-situ detection.
结合路基填土压实质量评定,通过现场K30测试,认为以地基系数K30与压实系数K综合评定路基填土压实质量是可行的,并且得出了评定填土压实质量的K30指标。
6)  compaction factor
压实系数
1.
The evaluation on quality of compacted fill ground is directly influenced by the reliability of compaction factors.
压实系数指标的可靠性直接影响压实填土地基的质量评价。
2.
The experimental results show that the compaction factor of clay soil has a great impact upon compressibility,and if the compaction factor of backfilling soil is less than or equal to 0.
试验结果表明,粘质回填土压实系数对其压缩性会产生明显的影响,压实系数小于或等于0。
补充资料:激波压实
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性质:又称激波固结或激波压实。利用滑移爆轰波掠过试件所产生的斜入射激波,使金属或非金属粉末在瞬态高温、高压下发生烧结或合成的一种高技术。爆炸烧结是烧结非晶、微晶等新型材料最有发展前途的技术。可使脆性材料达到比常规方法高得多的性能。与化学放热反应相结合可大幅减少或消除陶瓷、超硬、高强度材料在室温下爆炸所难避免的宏观和微观裂纹,提高材料的烧结制品的密度和强度。爆炸烧结按加载方式不同可分为三类:平面加载、柱面加载和高速锤锻压等三种方法。工业上用此技术进行非晶磁粉末烧结、陶瓷材料、铝-锂合金制取等。

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