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1)  middle-high pressure grouting
中高压注浆
2)  High pressure injection
高压注浆
1.
Mathematical model of high pressure injection cement liquid and its application;
高压注浆渗流数学模型与工程应用
2.
Seepage analysis and engineering application ofhigh pressure injection of cement liquid;
高压注浆渗流分析与工程应用
3)  high pressure grouting
高压注浆
1.
Meanwhile the method of high pressure grouting also is applied to effectively solve the problems caused by the quality of the piles.
本文结合工程实例,通过对缺陷桩的低应变动测报告进行分析,判定缺陷的类型和位置,并用钻芯法进行对比研究,确定缺陷的准确位置,同时采用高压注浆的方法,有效完成了对桩身质量缺陷的处理。
2.
Based on the above- mentioned analysis,the statement of integrated repairing method,which employs high pressure grouting and permeation crystalline water repellent composite compound,is put forward in the paper.
结合南京翠屏山某别墅的实际工程,针对该工程地下室渗漏结露现象的原因进行了具体的分析,并在此基础上,提出了采用高压注浆堵漏和涂刷渗透结晶复合防水剂进行综合性维修方案。
3.
High pressure grouting can reform the characteristics of physics & mechanics of rock & soil effectively, and improve the bearing capacity of bolt pile.
中高压注浆单孔复合锚杆桩技术能使粘结应力均匀分布在整个锚杆桩体长度上,不会发生粘结效应逐步弱化现象;高压注浆能有效改善岩土体的物理力学性质,显著提高锚杆桩承载能力。
4)  High-pressure grouting
高压注浆
1.
In order to improve and manage effectively the construction technique and jam problem of high-pressure grouting,some useful measures are put forward in this paper based on engineering case,attaining good effect.
本文从改进高压注浆的施工工艺角度,结合工程实例有效的解决或减少了高压注浆管堵塞的发生,取得了良好的效果。
2.
Aimed to the reinforcement of reinforced soil retaining walls at Wutai cloverleaf junction of Zibo, Shandong province of China and based on the correlative theoretical calculation, a method of enhancing the anchoring force by high-pressure grouting was discussed.
根据山东省淄博市梧台立交桥加筋土挡土墙加固的工程实际,结合理论计算,讨论了高压注浆提高锚固力的原理,提出了局部采用双层钢筋网的喷浆支护方法。
5)  high pressure injection pt
高压注浆泵
6)  high pressure grouting method
高压注浆法
1.
Through comparison of reinforcement effects the advantages of the high pressure grouting method are proposed.
分析了盐化医院的工程概况及裂缝产生的原因 ,阐述了静压注浆加固的原理、范围及静力压浆方案 ,经对其加固效果进行比较 ,提出了高压注浆法的加固优点。
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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