药壶
- 网络Springing;squibbed
-
介绍采用孔径140mm的深孔药壶爆破结合浅眼扩壶爆破的施工工艺及参数计算方法。
The use of 140 mm ′ s aperture the construction craft and parameter calculation methods of the technique combined with the technique of shallow-hole and pot blasting are introduced .
-
并阐述了药壶体积测量仪器的硬件设计和软件设计。
Designs of hardware and software of the instrument are presented .
-
深孔爆破施工深孔药壶爆破初次爆扩用量药研究
Research on Charge Weight of First Hole-Springing Explosion in Deep-hole Springing Blasting
-
药壶爆破技术在城镇土岩工程中的应用
Application of Springing Blasting for Excavation Project in City Area
-
药壶爆破是一种集中药包爆破方法。
Spring blasting is one of blasting methods of concentrated detonating charges .
-
水介质药壶爆破技术应用探讨
Study on Application of Water - medium Springing Blasting
-
泉州师院场平中的药壶爆破
The Spring Blasting of Building in Quanzhou Normal College
-
城市药壶爆破的控制技术
Controlled Technique of Springing Blasting in Urban Area
-
浅孔爆破与药壶爆破综合应用实践
Comprehensive application of SPRINGING-BENCH blasting and short-hole blasting
-
药壶体积测量仪的研究
The Study of Instrumental Measure of Spring Volume
-
薄壁钢筋砼结构物的药壶控制爆破
Controlled Spring Blasting of Reinforced Concrete Shell Structures
-
药壶体积仪器测量方法的构想
Conformation on Instrumental Measure Methods of Spring Volume
-
浅谈大孔径药壶爆破的飞石控制
Large hole coyote blast fly rock control
-
药壶法控制爆破的应用
Application of explosive flask controlled blasting method
-
碎石质土壤药壶控制爆破
Spring Controlled Blasting in Debris Soil
-
药壶&台阶控制爆破实践
Application of Springing - Bench Blasting
-
深孔药壶爆破中的安全问题
Safety in Deep-Hole Chamber Springing Blasts
-
药壶爆破法在砂岩矿山中的应用
Application of Springing Blasting Method
-
在生产实践的基础上,对药壶爆破法的应用进行了详细的阐述。
On the basis of practice , the application of springing blasting method is described in detail .
-
介绍了药壶台阶爆破法在广东省和平县东山岭大型滑坡群治理施工的应用。
The application of bulled bank blasting method for Dongshanling large landslide groups control construction in Heping country in Guangdong province is introduced .
-
对平孔药壶爆破与竖孔药壶爆破在扩壶工艺、装药作业等方面进行了比较,提出了这两种形式药壶爆破的适用条件。
The difference of hole springing , hole loading and applicable condition are given by contrasting horizontal-hole springing blasting with shear-hole springing blasting .
-
一种分体式自动电药壶,由壶体、壶盖、底座、发热体、温控器组成;
A detachable electric medical pot comprises a body , a bottom , a cover , a heating unit , and a temperature controller .
-
结合工程实践,介绍在复杂条件下,进行浅眼光面爆破与药壶控制爆破相接合的设计与施工经验。
The design and implementation of shallow hole smooth blasting and springing blasting in complicated circumstances are introduced on the basis of field test .
-
介绍了深孔药壶爆扩工艺、爆破参数以及在应用中的注意事项。
So the deep-hole springing blasting is suggested , then , the technique of expanding 、 parameters of blasting and matters needing attention are introduced .
-
提出了比较系统的药壶爆破设计方法,包括药壶爆破参数的确定、扩壶施工、起爆网络等。
A relative systemic spring blasting design is put forward , including the blasting parameters choice , the expanding springing engineering and the initiating system .
-
文章以乌龙泉矿西区原始缓边坡为例,从理论上分析了出现这一问题的原因,提出采用大直径孔药壶爆破可较好地处理这一问题。
Taking the west area in Wulongquan Limestone Mine of WISCO as an example , the reason is analyzed and large diameter deep-hole springing blasting is suggested .
-
结合工程实例介绍了利用药壶爆破法爆破石料的爆破参数、扩壶工艺、施工安全等,可为类似工程提供较有价值的参考。
Taking practical activities as examples , the blasting parameters , exclusive-pot expansion process and execution safety of explosive-pot technology used for blasting work in quarry are explained .
-
利用能量方法,对初次爆扩用药量的问题进行了探讨,确定了深孔药壶爆破初次爆扩的用药量。
In the paper , the charge weight is discussed using the energy method , and the charge weight of the first hole-springing explosion is determined for deep-hole springing blasting .
-
介绍深孔爆破、预裂爆破、光面爆破、浅眼爆破和药壶爆破等控制爆破技术在大连港矿石专用码头中的应用。
Application of controlled blasting techniques such as deep-hole blasting , pre-splitting blasting , smooth blasting , shallow-hole blasting and kettle blasting , etc. in the specialized ore terminal of Dalian Port were introduced .
-
通过改进爆破技术设计,充分利用水介质扩壶、水介质药壶爆破与微差爆破技术相结合,达到安全增效、降耗的目的。
By making full use of the combination of water-medium squabbling , water-medium springing blasting and millisecond blasting technology , the blasting design is modified to achieve the goal of safety , efficiency and consumption reduction .