1) pressing-density pouring plasma technique
压密注浆技术
1.
Application of pressing-density pouring plasma technique in bridge around-weir construction;
压密注浆技术在桥梁围堰施工中的应用
3) static grouting technique
静压注浆技术
4) pressure grouting technology
压力注浆技术
1.
By using pressure grouting technology for treating back settlement of small bridges and culverts in Beijing-Fuzhou expressway,features,construction organization and the technical measures of pressure grouting technology are introduced,some ideas and proposals are put forward based on this bridge treatment.
通过对京福高速公路山东枣庄段组织实施的压力注浆技术处理小桥涵台背沉陷,介绍了注浆技术的特点、施工组织和具体的技术措施,并对此类桥梁病害的处理提出一点想法和建议。
5) compaction grouting
压密注浆
1.
The application of compaction grouting in water conservancy project;
压密注浆在水利工程中的应用
2.
Method of energy analysis for compaction grouting;
压密注浆的能量分析方法
3.
Effects of average plastic volumetric strain on compaction grouting in saturated clay;
饱和粘土中平均塑性体积应变对压密注浆的影响
6) pressure grouting
压密注浆
1.
Application of the pressure grouting technique to deal with subsidence in soft road foundation;
采用压密注浆技术处理公路软土路基沉降
2.
To reduce the non-uniform settlement caused by the abutting buildings extension,the means of applying the pressure grouting techniques to reinforce the foundations of original buildings,the mechanism of strengthening the foundation and decreasing the settlement are introduced.
从减少因毗邻房屋接建而引起原有房屋地基不均匀沉降的目标出发,提出了用压密注浆技术加固原有房屋软土地基的方法,并对该方法加固地基、减少沉降的机理作了介绍。
3.
The method of pressure grouting for ground stabilization is a kind of reinforced ground method that the tailor-made grout is highly pressed into the deep ground so as to change its physical and chemical capabilities, and the effect would be nice in the actual construction.
压密注浆是一种利用高压把特制浆液压入地层以改变地层的物理、化学性能的地基加固方法,在实际施工过程中取得了良好收效。
补充资料:电泳注浆成型
分子式:
CAS号:
性质:陶瓷浆料的成型方法之一。利用浆料中颗粒荷负电,在直流电场作用下向阳极运动而沉积在模型(阳极)上形成坯体的成型方法。此法可加快坯体形成速度,坯体较致密,可用于面砖,基板等的成型,但有时会因水的电解作用产生气泡,电场不均匀会造成坯体厚薄不均或脱模困难,故尚未得到广泛使用。
CAS号:
性质:陶瓷浆料的成型方法之一。利用浆料中颗粒荷负电,在直流电场作用下向阳极运动而沉积在模型(阳极)上形成坯体的成型方法。此法可加快坯体形成速度,坯体较致密,可用于面砖,基板等的成型,但有时会因水的电解作用产生气泡,电场不均匀会造成坯体厚薄不均或脱模困难,故尚未得到广泛使用。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条