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1)  surface grouting
地面注浆
1.
According to geological condition of this mined-out area,a three hole-ins well has designed to carry out surface grouting and fire-area sealing.
根据该采空区地质条件,设计了三开井身结构,对采空区进行地面注浆及封堵处理。
2.
Approach to prevent linig breakage of shaft buried in alluvium by surface grouting is proposed, and the method was applied successfully to restoration of a second shaft.
针对徐淮矿区发生的多起立井井壁破坏现象,综合分析井壁破坏机理和治理方法,提出用地面注浆加固技术治理井简冲积层段井壁破坏的途径和方法,并成功地应用于某矿副井井壁破坏的治理,取得了良好的经济效益和社会效益。
2)  Grouting from the surface
地面注浆
1.
The engineering techniques mending shaft lining ruptures in coal mine area covered by thick overburden soils in Eastern China are introduced, and two grouting techniques (grouting from the surface and grouting through the shaftlining) are chiefly discussed on their technics flows and their advantages disadvantages.
对黄淮地区厚松散表土层覆盖区矿山竖井破裂的治理方法进行了讨论 ,分析了地面注浆与破壁注浆方法应用于井壁破裂治理工程中的基本工艺流程及其优缺点 。
3)  ground pre-grouting
地面预注浆
1.
Using directional technology, the ground pre-grouting holes were bored into the goal strata along the "S" track to give room for freezing holes boring.
利用定向技术使得地面预注浆钻孔沿“S”形轨迹进入注浆目的层,让出井盘空间施工冻结钻孔,并应用高精度测斜技术和定向技术,使得冻结钻孔有效避开注浆套管,从而实现地面预注浆与冻结造孔工程完全平行作业,缩短建井准备工期。
4)  surface pre-grouting
地面预注浆
1.
After analyzing primary difficulties exiting in surface pre-grouting of the main shaft in Wangfenggang coalmine, the paper put forward counterplots to be should adopted in construction.
通过对望峰岗矿井主井井筒地面预注浆施工中的主要难点分析,给出施工采用的对策。
2.
The thesis presents the application of surface pre-grouting to construction of auxiliary shaft in Yangliu coalmine.
本文介绍了地面预注浆施工技术在杨柳煤矿副井中的应用。
3.
Shaft surface pre-grouting effects the deformation of surface.
本文通过对袁店一矿井筒地面预注浆过程中地表变形的定期监测和计算,评价了地表变形等级及对地面构(建)筑物的影响程度,保证了煤矿顺利建设和安全生产,同时为其他地表变形研究提供了工作方法和实践基础。
5)  surface pre-grouting of mine shaft sinking
井筒地面预注浆
6)  grouting in weak planes
弱面注浆
1.
The macroscopical effect of grouting in weak planes of slope rockmass;
边坡岩体弱面注浆宏观效应数值模拟分析
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。

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