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1)  compaction test
压实试验;压实测试
2)  compaction test
压实试验
1.
A series of tests have been carried out, such as standard compaction test, static compaction test so as to analyze static and dynamic mechanics characteristics systemically and get to know the engineering property of silt soil.
通过标准击实试验、静力压实试验,系统地研究粉质土的动、静力学击实性能,明确粉质土的工程特性,并最终得出粉质土的静压力和压实的难易程度与颗粒级配以及液限等物理量之间的变化规律。
3)  compaction testing
压实测试
1.
By the comparison between traditional compaction testing method and dynamic compaction controlling method,it can be validated that dynamic compaction controlling method carried on the roller is a method with high efficiency and great value of information.
通过对传统压实测试方法与机载动态压实控制方法的比较,说明了机载动态压实控制法是一种具有更高效率和巨大信息价值的压实控制方法。
4)  experiment test
实验测试
1.
This article introduces the methods, the existent problems andthe suggestions on the experiment test of entrance exam of middle school at Luoyang, Henan Province.
介绍了河南省洛阳市中招实验测试的方法、存在问题及建议。
5)  experimental test
实验测试
1.
And the indirect experimental tests of synchro axis damping short-loop loss and current in a synchronous control system were carried out,and proved this method was feasible.
用该方法对同步控制系统中的自整角机交轴阻尼短路环的损耗和电流进行了间接的实验测试,证实该方法可行。
2.
In the paper,we introduces another method of experimental test about moment self-adjusting angle machine lockout winding quadrature一axis short impedance, namely “three-meter method”,former method is“oscillograph method” introduced in reference 1iterature~([l]).
力矩式自整角机整步绕组交轴短路阻抗实验测试是继“示波器法”后的另一种方法,即“三表法”,与参考文献[1]中采用的"示波器法"进行了比铰,并与设计值进行了对比,证实本文给出的方法可行,通过研究力矩式自整角机整步绕组交轴短路阻抗参数的实验测试,相信对力矩式自整角机的研制、阻尼绕组的设计及使用都是有益的。
3.
In order to reduce the air-condition energy consumption and the local heat island effect in communication rooms,the CFD(Computational Fluid Dynamics) method is employed to reveal the airflow organization characteristics,and a sample room is used to make some experimental tests and verification analyses.
为降低通信机房空调能耗、减少机房局部热岛效应,运用计算流体动力学方法对通信机房空调气流的组织特性进行了研究,并对样本机房进行了实验测试与验证分析。
6)  experimental measurement
实验测试
补充资料:激波压实
分子式:
CAS号:

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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