山东科技大学学报:自然科学版
山東科技大學學報:自然科學版
산동과기대학학보:자연과학판
Journal of Shandong Univ of Sci and Technol: Nat Sci
2011年
6期
8-14
,共7页
超高水材料%充填工艺系统%浆体制备%半连续
超高水材料%充填工藝繫統%漿體製備%半連續
초고수재료%충전공예계통%장체제비%반련속
ultrahigh-water material%system of filling technology%preparation of slurry%semi-continuous
制浆系统是整个充填系统的核心。为使超高水材料充填开采技术适应于工业化应用,以陶一矿超高水材料充填开采试验为背景,结合该材料特性.对制浆系统进行了较为深入的研究。确定了制浆系统的形式和生产能力;对半连续制浆系统各组成部分进行了详细设计,并评价了其应用效果。研究表明:超高水材料浆液制备宜选用丰连续制浆系统,该系统运行稳定可靠、制浆能力大、浆液配比准确、操作简便(完全由PLC自动控制),能够满足超高水材料充填开采的制浆要求;该系统占用体积较大,运行环节较多,布置在井下时硐蜜通风备件较差,生产时易产生较大粉尘和噪声,应进行进一步改进;系统更适宜布置在地面上,若布置在井下,应加强硐室的通风管理。
製漿繫統是整箇充填繫統的覈心。為使超高水材料充填開採技術適應于工業化應用,以陶一礦超高水材料充填開採試驗為揹景,結閤該材料特性.對製漿繫統進行瞭較為深入的研究。確定瞭製漿繫統的形式和生產能力;對半連續製漿繫統各組成部分進行瞭詳細設計,併評價瞭其應用效果。研究錶明:超高水材料漿液製備宜選用豐連續製漿繫統,該繫統運行穩定可靠、製漿能力大、漿液配比準確、操作簡便(完全由PLC自動控製),能夠滿足超高水材料充填開採的製漿要求;該繫統佔用體積較大,運行環節較多,佈置在井下時硐蜜通風備件較差,生產時易產生較大粉塵和譟聲,應進行進一步改進;繫統更適宜佈置在地麵上,若佈置在井下,應加彊硐室的通風管理。
제장계통시정개충전계통적핵심。위사초고수재료충전개채기술괄응우공업화응용,이도일광초고수재료충전개채시험위배경,결합해재료특성.대제장계통진행료교위심입적연구。학정료제장계통적형식화생산능력;대반련속제장계통각조성부분진행료상세설계,병평개료기응용효과。연구표명:초고수재료장액제비의선용봉련속제장계통,해계통운행은정가고、제장능력대、장액배비준학、조작간편(완전유PLC자동공제),능구만족초고수재료충전개채적제장요구;해계통점용체적교대,운행배절교다,포치재정하시동밀통풍비건교차,생산시역산생교대분진화조성,응진행진일보개진;계통경괄의포치재지면상,약포치재정하,응가강동실적통풍관리。
Slurrying system is the core of the whole filling system. In order to let the ultrahigh-water material backfill mining technology adapt to industrialized application, the slurrying system was studied in-depth with the background of the technical test in Tao-one Coalmine. The form of slurrying system and the production capacity were determined. Each part of the semi-continuous slurrying system was designed in detail and its application effect was evaluated. The results show that the semi-continuous slurrying system is the better choice for the preparation of ultrahighwater material grout and the system not only runs stable and reliable and makes accuracy ratio of slurry,but also it is of great slurrying ability and simple operation (all operations are controlled by PLC), satisfying the needs of slurry preparation. However,it has a larger volume and more operation links and underground chambers have poor ventilation. Besides,dust and noise are bigger in the production process. Therefore, further improvement should be done in the future. In general, this system should be placed on the ground, if not, the chamber ventilation management would be strengthened.