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1)  cement-stabilized gravel base course
水泥稳定级配碎石基层
1.
207,this article describes the composition of materials for the cement-stabilized gravel base course,the mix design,the construction technology,and the quality control.
以内蒙古锡林浩特-桑根达来207线一级公路为例,对水泥稳定级配碎石基层材料的组成、配合比设计、施工工艺、质量控制等方面进行了阐述。
2)  cement and red mud stabilized crushed stone base course
水泥赤泥稳定级配碎石基层
1.
This project proposed two application measure technologies about the utilization of red mud on highway, there are named cement lime and red mud stabilized clay sub base, cement and red mud stabilized crushed stone base course.
本文提出了赤泥在公路中的两项应用措施技术:水泥石灰赤泥稳定土底基层和水泥赤泥稳定级配碎石基层。
3)  cement stable grade debris
水泥稳定级配碎石
1.
Constructing skill of cement stable grade debris basement on high-grade road;
高等级公路水泥稳定级配碎石基层施工技术
4)  the hoggin grass root
稳定级配碎石基层
5)  cement stabilized macadam base
水泥稳定碎石基层
1.
Construction technology control of cement stabilized macadam base;
水泥稳定碎石基层施工技术控制
2.
Study on the causes of cracks in cement stabilized macadam base and prevention measures;
水泥稳定碎石基层裂缝的成因及防治
3.
Study on application of polypropylene fibre in cement stabilized macadam base;
聚丙烯纤维在水泥稳定碎石基层中的应用研究
6)  Cement-stabilized macadam base
水泥稳定碎石基层
1.
Cement-stabilized macadam base is a common structural type of cement-stabilized macadam base in our country,but there exist a factor that the cement dose depends directly on compression stregth,leading to addition of desiccation fissure.
水泥稳定碎石基层是我国常用的基层结构型式,但存在水泥剂量与抗压强度成正比上升的因素,导致干缩裂缝增多的不利现象。
2.
In the paper , rely on the south highway of the Runyang Yangtze River Bridge,and through scanning electronic microscopic photo of cement-stabilized macadam base course, studied crack mechanism of the microstructure and the physica-mechanical characteristics as well as the influernce of cement-stabilized macadam base course,and about some fly-ash,additons etc.
本文结合润扬大桥南接线高速公路水泥稳定碎石基层的应用,通过水泥稳定碎石基层混合料微结构扫描电镜照片,初步比较研究了水泥稳定碎石基层混合料掺加粉煤灰、外加剂的物理力学强度形成机理,并就该基层抗裂机理进行了微观分析。
3.
Connecting with the engineering reality, this paper analyzes the quality control of the construction of cement-stabilized macadam base from aspects of the raw materials, mix proportion design, construction technology, and construction process control, etc.
结合工程实际,从原材料、配合比设计、施工工艺及施工过程控制等方面探讨了水泥稳定碎石基层施工质量控制。
补充资料:配体场稳定化能
分子式:
CAS号:

性质:在配位化合物中,中心原子(或离子)的d轨道能级在配体场作用下分裂后,d电子从分布的假如未分裂的d轨道到按照分裂能△和电子成对能P的相对大小分布在分裂后的d轨道,由此产生的总能量的下降值称配体场稳定化能(LFSE)。例如Co(NH363+的分裂能△0=23000 l/cm,电子成对能P=22000 1/cm,△0>p,故d电子倾向配对,占据低能级的t2g轨道,组态为(t2g)6(eg*)0。而分裂后轨道能量eg*升高0.6△0 (以分裂后轨道的加权平均值作为零),t2g降低了0.4△0,故Co(NH3)63+LFSE=(-0.4△0×6)+2P=-2.4△0+2P。

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