Adoptting the blasting system with deck charge in blasthole and same-section hole-by-hole mil-lisecond ...
采用间隔装孔内同段孔间微差侧向挤压崩矿爆
方案,达到了理想
崩矿效果。
Adoptting the blasting system with deck charge in blasthole and same-section hole-by-hole mil-lisecond ...
采用间隔装孔内同段孔间微差侧向挤压崩矿爆
方案,达到了理想
崩矿效果。
From the angle that the energy of an explosive is used for shearing and crushing of a medium, the charge weight per blasthole is calculated.
能量主要用
介质
剪切、
角度,计算单孔装
量。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件观点;若发现问题,欢迎向我们指正。
Adoptting the blasting system with deck charge in blasthole and same-section hole-by-hole mil-lisecond ...
采用间隔内同段
间微差侧向挤压崩矿爆破方案,达到了理想的崩矿效果。
From the angle that the energy of an explosive is used for shearing and crushing of a medium, the charge weight per blasthole is calculated.
从炸能量主要用
介质的剪切、破碎的角度,计算单
量。
声明:以上例句、词性分类均由互联网资源自,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
Adoptting the blasting system with deck charge in blasthole and same-section hole-by-hole mil-lisecond ...
采用间隔装药孔内同段孔间微差侧向挤压崩矿案,达到了理想的崩矿效果。
From the angle that the energy of an explosive is used for shearing and crushing of a medium, the charge weight per blasthole is calculated.
从炸药能量主要用介质的剪切、
碎的角度,计算单孔装药量。
声明:句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
Adoptting the blasting system with deck charge in blasthole and same-section hole-by-hole mil-lisecond ...
采用间隔装药孔内同段孔间微差侧向挤压崩矿爆破方,
了理想的崩矿效果。
From the angle that the energy of an explosive is used for shearing and crushing of a medium, the charge weight per blasthole is calculated.
从炸药能主要用
介质的剪切、破碎的角度,计算单孔装药
。
:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表
内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
Adoptting the blasting system with deck charge in blasthole and same-section hole-by-hole mil-lisecond ...
采用隔装药孔内同段孔
侧向挤压崩矿爆破方案,达到了理想的崩矿效果。
From the angle that the energy of an explosive is used for shearing and crushing of a medium, the charge weight per blasthole is calculated.
从炸药能量主要用介质的剪切、破碎的角度,计算单孔装药量。
声明:以上例句、词性分类均网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
Adoptting the blasting system with deck charge in blasthole and same-section hole-by-hole mil-lisecond ...
采用间隔装药孔内同段孔间微差侧向挤压崩矿爆破方案,达到了理想崩矿
。
From the angle that the energy of an explosive is used for shearing and crushing of a medium, the charge weight per blasthole is calculated.
炸药能量主要用
介质
剪切、破碎
,计算单孔装药量。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件观点;若发现问题,欢迎向我们指正。
Adoptting the blasting system with deck charge in blasthole and same-section hole-by-hole mil-lisecond ...
采用间隔装孔内同段孔间微差侧向挤压崩矿爆
方案,达到了理想的崩矿效果。
From the angle that the energy of an explosive is used for shearing and crushing of a medium, the charge weight per blasthole is calculated.
从量主要用
介质的剪
、
的角度,计算单孔装
量。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
Adoptting the blasting system with deck charge in blasthole and same-section hole-by-hole mil-lisecond ...
采用间隔装药孔内同段孔间微差侧向挤压崩矿爆破,
到了理想的崩矿效果。
From the angle that the energy of an explosive is used for shearing and crushing of a medium, the charge weight per blasthole is calculated.
从炸药能量主要用介质的剪切、破碎的角度,计算单孔装药量。
:
上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表
内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
Adoptting the blasting system with deck charge in blasthole and same-section hole-by-hole mil-lisecond ...
间隔装药孔内同段孔间微差侧向挤压崩矿爆破方案,达到了理想的崩矿效果。
From the angle that the energy of an explosive is used for shearing and crushing of a medium, the charge weight per blasthole is calculated.
从炸药能量主要介质的剪切、破碎的角度,计算单孔装药量。
声明:以上例句、词性分类均由互联网资源自动生成,部分人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。