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1)  block up water grouting in wallback
壁后注浆堵水
2)  blocking water and concreting
堵水注浆
1.
The craft and the method of blocking water and concreting are simplified by technological reform which speeds up the construction progress,guarantees seals quality,and accumulates the experience.
井筒堵水注浆采用的工艺及方法,通过科技术攻关,简化了施工环节,加快了施工进度,保证了封堵质量,并给井筒注浆堵水积累了经验,该技术值得推广。
3)  grouting for stopping up water
注浆堵水
1.
Reliability design of grouting for stopping up water in rock mass;
岩体注浆堵水的可靠性设计
2.
An entire reliability design system of grouting for stopping up water in eoilmass has been cstablished in this paper.
建立了一套完整的土体注浆堵水可靠性设计系统。
4)  grouting and blocking water
注浆堵水
1.
Technology of grouting and blocking water in fault broken zone;
断层破碎带注浆堵水技术
2.
Based on failure causation analysis on initial grouting and blocking water method,the grouting and blocking water method was adjusted in time,meanwhile the arrangement of drillholes was coordinated reasonably.
在分析初期注浆堵水失败原因的基础上,对注浆堵水方案及时进行了调整,通过合理布置钻孔,保证了堵水工程的成功,快速、有效地治理了矿井水患。
5)  backwall grouting
壁后注浆
1.
By using the combined support technology of concrete sprayed anchored net,anchorage cable and backwall grouting in the mechanical and electronic underground chamber of Shuangmiao extending area of Gedian Mine,Shenhuo Coal and Electricity Joint-stock Company,the tunnel condition is effectively improved,the deformation of the surrounding rock is inhibited.
介绍了根据硐室布置的岩层和地质条件及机电硐室设备布置的具体要求,神火煤电股份有限公司葛店煤矿双庙扩大区井底车场机电硐室(泵房、变电所)成功采用锚网、锚索、壁后注浆联合支护技术;实现了多次支护的抗压作用,保证了大断面机电硐室的有效施工,确保了机电设备的安全运行。
2.
This paper introduced backwall grouting process and grouting effect of-290 level downcast shaft in Jilongshan Gold Mine.
介绍了湖北鸡笼山金矿-290中段进风井壁后注浆施工工艺过程和注浆效果,并对壁后注浆技术经济效益进行了分析。
6)  grouting behind segment
壁后注浆
1.
Test and Application of GPR Detecting of Grouting Behind Segment of the Shield Tunnel Across the River;
越江公路盾构隧道壁后注浆探地雷达探测试验及应用研究
2.
When we use the ground penetrating radar(GPR) to detect the effect of grouting behind segment at the shield tunnel tail,it is very important to ascertain the velocity of electromagnetic wave(EMW) to obtain accurate results.
利用探地雷达(GPR)方法探测软土盾构隧道盾尾壁后注浆分布效果时,电磁波在介质中的传播速度是准确识别介质界面的关键。
3.
And the grouting behind segment at the tail is more focused on for controlling the surface settlement.
盾构隧道的纵向力学与变形性态研究,尤其是盾尾壁后注浆效果已经引起国内外学者的广泛关注,笔者首次利用探地雷达方法,对上海某盾构隧道盾尾壁后注浆分布进行探测,并进行了初步的分析,结果表明,利用该方法可有效地探测隧道壁后的注浆分布,为隧道纵向力学变形性态的控制提供一定依据。
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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