静压注浆,Static pressure grouting
1)Static pressure grouting静压注浆
1.Application of static pressure grouting and root pile in foundation reinforcement;静压注浆和树根桩在地基加固中的应用
2.The combination of root piles with static pressure grouting can be adapted to this reinforcement engineering.结合具体工程实例探讨了复合地基在地基加固中的应用机理,指出对于该加固工程,可采用静压注浆及树根桩相结合形成的复合地基进行加固。
3.The method of combining the root piles and static pressure grouting can be adopted to a residental building reinforcement engineering after the synthesis considering the various factor.在综合考虑多方面因素后,认为对于某住宅楼房屋开裂加固工程,可采用树根桩及静压注浆相结合形成的复合地基技术进行加固处理,工程应用表明,根据工程实际情况合理运用复合地基进行地基加固处理能取得良好的加固效果,本工程的成功施工,对类似工程具有一定的借鉴作用。
英文短句/例句

1.Seepage Control Effect of Static Pressure Grouting in Dam Shell for Danjiangkou Earth-rock Dam Ⅰ: Two-dimensional Seepage Calculation丹江口土石坝砂卵石坝壳静压注浆渗控效果研究Ⅰ:二维渗流计算
2.Seepage Control Effect of Static Pressure Grouting in Dam Shell for Danjiangkou Earth-rock Dam Ⅱ:Three-dimensional Seepage Calculation丹江口土石坝砂卵石坝壳静压注浆渗控效果研究Ⅱ:三维渗流计算
3.Technical specification for jet grouting高压旋喷注浆技术规程
4.Post Grouting Construction Technique for Bored Piles with Slurry-supported Wall泥浆护壁钻孔灌注桩后压浆施工技术
5.POST GROUTING PILES TECHNIQUE(2)--TECHINQUE OF PRESSURE GROUTING AT BASE OF SLURRY-DRILLED PILES后注浆桩技术(2)——泥浆护壁钻孔灌注桩桩端压力注浆工艺
6.POST GROUTING PILE TECHNIQUE(5)--HE VERTICAL COMPRESSIVE BEARING CAPACITY OF POST GROUTING PILES后注浆桩技术(5)——后注浆桩的竖向抗压承载力
7.Laboratory tests on compaction grouting and fracture grouting of clay黏土中压密注浆及劈裂注浆室内模拟试验分析
8.Construction techniques of shaft water control by sanding and grouting at hydrostatic level静水抛砂注浆治理井筒突水施工技术
9.Research on the Use of Later Low-pressure Grouting to the Drilling Hole Pour Pile;钻孔灌注桩低压力后压浆的应用研究
10.A Model Tester for Grouting Simulation under High Pressure in Rock Fissure and Model Exper-imental Research on Plastic and Early-strength Grout by Grouting Simulation高压裂隙注浆试验台研制及塑性早强浆材注浆试验研究
11.TECHNOLOGY OF POST-GROUTING PILES(3) --THE CONSTRUCTION TECHNIQUE OF GROUTING AT TIP OF AUGER-DRILLED PILES IN A DRY CONDITIONS后注浆桩技术(3)——干作业钻孔灌注桩桩端压力注浆工艺
12.FEM Analysis for Post-grouting Piles Considering Grouting Process;考虑注浆过程的后压浆桩有限元模拟与分析
13.New Understanding on the Mechanism of Post Grout Injection for Bored Piles钻孔灌注桩后压浆技术机理的新认识
14.The application of the post grouting technology of bored concrete pile in Taiyuan region灌注桩后压浆工艺在太原地区的应用
15.Research on Mechanism and Efficacy of Post-Grouting Pile Technology;灌注桩后压浆技术的机理与功效研究
16.Study on Post-grouting Technologies of Bored Piles and Their Application;钻孔灌注桩后压浆技术的研究和应用
17.Curtain Grouting Technique for Broken Large fault Under High Pressure and Enriched Water高压富水破碎大断层围岩幕注浆技术
18.Comparison study on bored piles before and after the application of post grouting technique灌注桩后压浆技术使用前后对比研究
相关短句/例句

injection[英][?n'd?ek?n][美][?n'd??k??n]静压注浆
3)static pressure injection method静压注浆法
1.This paper presents composite injection method, and it consists of static pressure injection method and high-pressure whirl injection method sequence in time.复合注浆法是将静压注浆法和高压旋喷注浆法进行时序上的结合,分别发挥两种注浆加固方法各自的优点,又可克服各自的技术和工艺缺陷的一种基础加固新方法,它可以较好地对既有建筑物地基和新建建筑基础出现质量问题进行加固处理。
4)static grouting technique静压注浆技术
5)static pressure and fracture grouting静压与劈裂注浆
1.This paper analyze the construction effect by static pressure and fracture grouting process on soft ground at a section of railway foundation of Bin Sui railway, and presents some problems which need to be noticed in the design of ground process in analogous formations.本文通过对滨绥铁路某段软地基进行静压与劈裂注浆处理施工效果的分析,提出在类似地层中进行软地基处理设计应注意的问
6)sleeve valve tube static pressure grouting袖阀管式静压注浆
1.Combining with the situation of accruing subgrade disease in provincial road Lao-Song line,the author analyzes the causes of disease,provides treatment scheme of sleeve valve tube static pressure grouting,introduces its reinforcement technology and reinforcement mechanism,and discusses the sleeve valve tube grouting,so as to improve application of this technology.结合省道老松线发生路基病害的情况,对病害的产生原因进行了分析,提出了袖阀管式静压注浆处理方案,对该加固工艺及其加固机理进行了介绍,探讨了袖阀管注浆施工,以推广该工艺的应用
延伸阅读

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。